CN103802476B - Piezoelectric ink jet head - Google Patents

Piezoelectric ink jet head Download PDF

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CN103802476B
CN103802476B CN201210442799.0A CN201210442799A CN103802476B CN 103802476 B CN103802476 B CN 103802476B CN 201210442799 A CN201210442799 A CN 201210442799A CN 103802476 B CN103802476 B CN 103802476B
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braking plate
actuating
plate
ink jet
braking
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CN103802476A (en
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戴贤忠
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Microjet Technology Co Ltd
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Microjet Technology Co Ltd
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Abstract

The invention relates to a piezoelectric ink jet head, which comprises at least one ink jet unit and a liquid supply flow passage, wherein the ink jet unit comprises a pressure cavity and a vibrating plate, the pressure cavity is communicated with the liquid supply flow passage, and the vibrating plate is adjacently arranged in the pressure cavity; the jet orifice plate is provided with jet orifices corresponding to the ink jet units respectively, and the jet orifices are communicated with the pressure cavity and the liquid supply flow channel and used for jetting and printing liquid drops; the actuating unit is arranged on the vibrating plate and corresponds to the pressure cavity, and comprises a plurality of actuating sheets formed by cutting, and each actuating sheet receives a driving signal to act; each actuating sheet selectively receives a driving signal to drive the actuating sheets to act at a plurality of frequencies, and the driving signal is adjusted according to the aperture and the droplet characteristics of the jet orifice, so that the jet orifice jets droplets with different sizes and viscosities.

Description

压电喷墨头piezoelectric inkjet head

技术领域technical field

本发明系关于一种压电喷墨头,尤指一种具有多个致动片的压电喷墨头。The invention relates to a piezoelectric inkjet head, especially a piezoelectric inkjet head with a plurality of actuating plates.

背景技术Background technique

随着喷墨技术的进步,喷墨技术不再只是应用在传统打印市场上,近年更应用于平面显示器以及半导体产业的制程技术中,然而,为了降低成本以及节省制程时间,纷纷寻求新的喷墨技术,这之中最被广为应用的,就是压电式喷墨技术。With the advancement of inkjet technology, inkjet technology is no longer only used in the traditional printing market, but has been used in the process technology of flat panel displays and the semiconductor industry in recent years. However, in order to reduce costs and save process time, new inkjet technology has been sought Ink technology, the most widely used of which is piezoelectric inkjet technology.

请参阅第1A及1B图,其中图1A系为习知压电喷墨头的平面示意图,图1B系为图1A的A-A剖面图,如图1A所示,习知压电喷墨头1系具有供流体流入的供液流道11、单一致动片12,另如图1B所示,习知压电喷墨头1更包含有压力腔体13、出液流道14以及具有喷孔151的喷孔板15等微结构,且在压力腔体13、出液流道14及喷孔151等微结构上方系设置一振动板16,并在振动板16的上方,且对应于压力腔体13的位置设置该单一致动片12。Please refer to Figures 1A and 1B, wherein Figure 1A is a schematic plan view of a conventional piezoelectric inkjet head, and Figure 1B is a cross-sectional view of A-A of Figure 1A, as shown in Figure 1A, a conventional piezoelectric inkjet head 1 series It has a liquid supply channel 11 for the fluid to flow in, a single actuating plate 12, and as shown in FIG. Microstructures such as the spray orifice plate 15, and a vibrating plate 16 is arranged above the microstructures such as the pressure chamber 13, the liquid outlet flow channel 14 and the nozzle hole 151, and above the vibrating plate 16, and corresponding to the pressure chamber. The position of 13 sets the single actuating plate 12.

当一电压作用在致动片12的上下两极时,会产生一电场,使得致动片12在此电场的作用下产生弯曲变形,由于致动片12系设置于振动板16上,因此致动片12所产生的吸力及推力会传递至振动板16,使得振动板16也跟着被挤压变形,当致动片12产生吸力作用时,流体将经由供液流道11进入压电喷墨头1内部的压力腔体13中,当致动片12产生推力作用时,储存于压力腔体13中的流体将因压力腔体13被挤压而传送至出液流道14以经由喷孔151喷出。When a voltage acts on the upper and lower poles of the actuating piece 12, an electric field will be generated, causing the actuating piece 12 to bend and deform under the action of the electric field. Since the actuating piece 12 is arranged on the vibrating plate 16, the actuating The suction and thrust generated by the sheet 12 will be transmitted to the vibrating plate 16, so that the vibrating plate 16 will also be squeezed and deformed. When the actuating sheet 12 generates suction, the fluid will enter the piezoelectric inkjet head through the liquid supply channel 11 1, in the internal pressure chamber 13, when the actuating plate 12 produces a thrust, the fluid stored in the pressure chamber 13 will be sent to the outlet flow channel 14 due to the pressure chamber 13 being squeezed to pass through the nozzle hole 151 squirt.

请再参阅第1A及1B图,习知压电喷墨头1所使用的致动片12尺寸为2700umx2700um,且喷孔板15仅搭配一个喷孔151,喷孔151相对于致动片12呈对称或置中,其孔径介于30至120um之间。请参阅第2图,其系为习知压电喷墨头的驱动信号示意图,其中习知压电喷墨头1所使用的驱动信号V以30V为主,亦即波峰为+30V,波谷为-30V。Please refer to Figures 1A and 1B again. The size of the actuating sheet 12 used in the conventional piezoelectric inkjet head 1 is 2700umx2700um, and the orifice plate 15 is only equipped with one nozzle hole 151, and the nozzle hole 151 is in the shape of the actuating sheet 12. Symmetrical or centered, the pore size is between 30 and 120um. Please refer to Fig. 2, which is a schematic diagram of a driving signal of a conventional piezoelectric inkjet head, wherein the driving signal V used by the conventional piezoelectric inkjet head 1 is mainly 30V, that is, the peak is +30V, and the valley is -30V.

习知压电喷墨头1系使用单一个压力腔体13及单一个致动片12,即一个压力腔体13配置一个致动片12,虽然可藉由调整驱动信号来喷印不同尺寸及黏度的流体,但通用性不足,使得可适用的流体受到限制。习知压电喷墨头1于致动片12尺寸面积约1400000um2时可喷印纯水等低黏度流体,但若希望同时适用于更高黏度流体,目前业界采用直接配置一个大尺寸的致动片12来解决上述习知缺失,如使用3750um x 3750um的致动片12尺寸,其约10倍于前述1400000um2的可喷印面积,以达到使致动片12可同时适用于各种不同黏度的流体以进行喷印,但是采用此种解决方式却需要以较大的驱动信号才能够驱动致动片12运作,使得在喷印低黏度流体或小尺寸液滴时原本只需要使用低电压值的驱动信号即可进行喷印,但是习知却输出过大的驱动信号以驱动致动片12喷印低黏度流体,将会造成多余的能量浪费。The conventional piezoelectric inkjet head 1 uses a single pressure chamber 13 and a single actuating sheet 12, that is, one pressure chamber 13 is equipped with one actuating sheet 12, although it is possible to print different sizes and sizes by adjusting the driving signal. Viscosity of the fluid, but the lack of versatility, so that the applicable fluid is limited. It is known that the piezoelectric inkjet head 1 can print low-viscosity fluids such as pure water when the size and area of the actuator plate 12 is about 1400000um2. The movable piece 12 is used to solve the above-mentioned conventional deficiencies, such as using the size of the actuating piece 12 of 3750um x 3750um, which is about 10 times the printable area of the aforementioned 1400000um2 , so that the actuating piece 12 can be applied to various Viscosity of the fluid for printing, but this solution requires a relatively large drive signal to drive the actuator plate 12 to operate, so that when printing low-viscosity fluid or small-sized droplets originally only need to use low voltage However, it is known to output an excessively large driving signal to drive the actuating plate 12 to print low-viscosity fluid, which will cause unnecessary waste of energy.

因此,如何发展一种可改善上述习知技术缺失的具有多个致动片的压电喷墨头,实为目前迫切需要解决的问题。Therefore, how to develop a piezoelectric inkjet head with a plurality of actuating plates that can improve the lack of the above-mentioned conventional technology is an urgent problem to be solved at present.

发明内容Contents of the invention

本发明的主要目的在于提供一种具有多个致动片的压电喷墨头,俾解决习知压电喷墨头配置一个大尺寸的致动片以适用于各种不同黏度的流体喷印,但需要以较大的驱动信号才能够驱动致动片运作,使得在喷印低黏度液滴时过大的驱动信号会造成多余的能量浪费等缺点。The main purpose of the present invention is to provide a piezoelectric inkjet head with a plurality of actuating pieces, so as to solve the problem that the conventional piezoelectric inkjet head is equipped with a large-sized actuating piece to be suitable for printing various fluids with different viscosities. , but it requires a relatively large driving signal to drive the actuating plate to operate, so that an excessively large driving signal will cause redundant energy waste and other disadvantages when printing low-viscosity droplets.

为达上述目的,本发明的一较广义实施态样为提供一种压电喷墨头,包含至少一喷墨单元及一供液流道,该喷墨单元包括一压力腔体及一振动板,其中,该压力腔体与该供液流道连通,该振动板邻设于该压力腔体;一喷孔板,该喷孔板对应各该喷墨单元分别形成一喷孔,该喷孔与该压力腔体及该供液流道连通,用以喷印液滴;以及一致动单元,设置于该振动板上,并与该压力腔体相对应,该致动单元包括切割形成的多个致动片,各该致动片分别接收一驱动信号动作;其中,每一个致动片选择性接收该驱动信号,以驱动该多个致动片以多个频率动作,该驱动信号依该喷孔的孔径与液滴特性调整,使该喷孔喷印出不同尺寸与不同黏度的液滴。In order to achieve the above object, a broader embodiment of the present invention provides a piezoelectric inkjet head, comprising at least one inkjet unit and a liquid supply channel, the inkjet unit includes a pressure chamber and a vibrating plate , wherein, the pressure chamber communicates with the liquid supply channel, the vibrating plate is adjacent to the pressure chamber; an orifice plate, the orifice plate forms a nozzle hole corresponding to each inkjet unit, and the nozzle hole communicated with the pressure chamber and the liquid supply flow channel, and is used for printing droplets; actuating pieces, each of which respectively receives a driving signal to act; wherein, each actuating piece selectively receives the driving signal to drive the plurality of actuating pieces to move at multiple frequencies, and the driving signal depends on the The aperture of the nozzle hole and the droplet characteristics are adjusted so that the nozzle hole prints droplets of different sizes and different viscosities.

附图说明Description of drawings

图1A系为习知压电喷墨头的平面示意图。FIG. 1A is a schematic plan view of a conventional piezoelectric inkjet head.

图1B系为图1A的A-A剖面图。FIG. 1B is a cross-sectional view along line A-A of FIG. 1A.

图2系为习知压电喷墨头的驱动信号示意图。FIG. 2 is a schematic diagram of driving signals of a conventional piezoelectric inkjet head.

图3A系为本发明第一较佳实施例的压电喷墨头的平面示意图。3A is a schematic plan view of a piezoelectric inkjet head according to a first preferred embodiment of the present invention.

图3B系为图3A的B-B剖面图。FIG. 3B is a B-B sectional view of FIG. 3A.

图4A~4E系为图3A所示的压电喷墨头的驱动信号示意图。4A-4E are schematic diagrams of driving signals of the piezoelectric inkjet head shown in FIG. 3A.

图5A系为本发明第二较佳实施例的压电喷墨头的平面示意图。5A is a schematic plan view of a piezoelectric inkjet head according to a second preferred embodiment of the present invention.

图5B系为图5A的C-C剖面图。FIG. 5B is a sectional view along line C-C of FIG. 5A.

图6A~6I系为图5A所示的压电喷墨头的驱动信号示意图。6A-6I are schematic diagrams of driving signals of the piezoelectric inkjet head shown in FIG. 5A.

图7A系为本发明第三较佳实施例的压电喷墨头的切割示意图。FIG. 7A is a schematic cut diagram of a piezoelectric inkjet head according to a third preferred embodiment of the present invention.

图7B系为本发明第三较佳实施例压电喷墨头致动片的切割方法的流程图。FIG. 7B is a flow chart of the cutting method of the piezoelectric inkjet head actuating sheet according to the third preferred embodiment of the present invention.

图7C系为本发明第三较佳实施例的压电喷墨头的示意图。FIG. 7C is a schematic diagram of a piezoelectric inkjet head according to a third preferred embodiment of the present invention.

图8A系为本发明第四较佳实施例的压电喷墨头的切割示意图。FIG. 8A is a schematic cut diagram of a piezoelectric inkjet head according to a fourth preferred embodiment of the present invention.

图8B系为本发明第四较佳实施例压电喷墨头致动片的切割方法的流程图。FIG. 8B is a flow chart of the cutting method of the piezoelectric inkjet head actuating sheet according to the fourth preferred embodiment of the present invention.

图8C系为本发明第四较佳实施例的压电喷墨头的示意图。FIG. 8C is a schematic diagram of a piezoelectric inkjet head according to a fourth preferred embodiment of the present invention.

图9A系为本发明第五较佳实施例的压电喷墨头的切割示意图。FIG. 9A is a schematic cut diagram of a piezoelectric inkjet head according to a fifth preferred embodiment of the present invention.

图9B系为本发明第五较佳实施例压电喷墨头致动片的切割方法的流程图。FIG. 9B is a flow chart of the cutting method of the piezoelectric inkjet head actuator sheet according to the fifth preferred embodiment of the present invention.

图9C系为本发明第五较佳实施例的压电喷墨头的示意图。FIG. 9C is a schematic diagram of a piezoelectric inkjet head according to a fifth preferred embodiment of the present invention.

【主要组件符号说明】[Description of main component symbols]

压电喷墨头:1、2、3、7、8、9Piezoelectric inkjet head: 1, 2, 3, 7, 8, 9

致动片:12Actuation pieces: 12

压力腔体:13、23Pressure chamber: 13, 23

出液流道:14、24Outlet channel: 14, 24

喷孔板:15、25Orifice plate: 15, 25

喷孔:151、251、74、83、93Orifice: 151, 251, 74, 83, 93

振动板:16、26Vibration plate: 16, 26

致动单元:22、32、73、82、92Actuation unit: 22, 32, 73, 82, 92

第一致动片:221、321The first action film: 221, 321

第二致动片:222、322Second actuator: 222, 322

第三致动片:323The third actuator piece: 323

供液流道:11、21、71Liquid supply channel: 11, 21, 71

喷墨单元:72、811、812、813、814、911、912、913、914Inkjet unit: 72, 811, 812, 813, 814, 911, 912, 913, 914

致动片:731、732、733、734、821、822、823、824、921、922、923、924Actuation piece: 731, 732, 733, 734, 821, 822, 823, 824, 921, 922, 923, 924

定位记号:75Locating mark: 75

长度:X1、X2、X3、X4Length: X1, X2, X3, X4

宽度:Y1、Y2、Y3Width: Y1, Y2, Y3

驱动信号:VDrive signal: V

切割距离:X5、X6、X8、Y4、Y6、Y8、Y10、Y11、Y13Cutting distance: X5, X6, X8, Y4, Y6, Y8, Y10, Y11, Y13

间格距离:X7、Y5、Y7、Y9、Y12Grid distance: X7, Y5, Y7, Y9, Y12

切割线:L1~L10、C1~C8Cutting line: L1~L10, C1~C8

S71-S75、S81-S86、S91-96:压电喷墨头致动片的切割步骤S71-S75, S81-S86, S91-96: Cutting steps of piezoelectric inkjet head actuator sheet

具体实施方式Detailed ways

体现本发明特征与优点的一些典型实施例将在后段的说明中详细叙述。应理解的是本发明能够在不同的态样上具有各种的变化,其皆不脱离本发明的范围,且其中的说明及图示在本质上系当作说明的用,而非用以限制本发明。Some typical embodiments embodying the features and advantages of the present invention will be described in detail in the description in the following paragraphs. It should be understood that the invention is capable of various changes in different aspects without departing from the scope of the invention, and that the description and illustrations therein are illustrative in nature and not limiting. this invention.

请参阅图3A及3B,其中图3A系为本发明第一较佳实施例的压电喷墨头的平面示意图,图3B系为图3A的B-B剖面图,如图所示,本实施例的压电喷墨头2具有供流体流入的供液流道21、至少一喷墨单元、出液流道24、喷孔板25以及致动单元22,于本实施例中,致动单元22包括切割所形成的第一致动片221及第二致动片222,喷孔板25于对应各该喷墨单元分别形成一喷孔251,用以喷印液滴,而喷墨单元包含压力腔体23及振动板26,压力腔体23系与喷孔251及供液流道21连通,且在压力腔体23、出液流道24及喷孔251等微结构上方系设置该振动板26,振动板26系邻设于压力腔体23,并在振动板26的上方且对应于压力腔体23的位置设置该第一致动片221及第二致动片222。Please refer to Fig. 3A and 3B, wherein Fig. 3A is a schematic plan view of the piezoelectric inkjet head of the first preferred embodiment of the present invention, and Fig. 3B is a B-B sectional view of Fig. 3A, as shown in the figure, the present embodiment The piezoelectric inkjet head 2 has a liquid supply channel 21 for fluid to flow in, at least one inkjet unit, a liquid outlet channel 24, an orifice plate 25, and an actuating unit 22. In this embodiment, the actuating unit 22 includes The formed first actuating piece 221 and the second actuating piece 222 are cut, and the orifice plate 25 forms an orifice 251 corresponding to each inkjet unit for printing droplets, and the inkjet unit includes a pressure chamber body 23 and vibrating plate 26, the pressure chamber 23 is in communication with the nozzle hole 251 and the liquid supply channel 21, and the vibration plate 26 is arranged above the microstructures such as the pressure chamber 23, the liquid outlet channel 24 and the nozzle hole 251 The vibrating plate 26 is adjacent to the pressure cavity 23 , and the first actuating piece 221 and the second actuating piece 222 are disposed above the vibrating plate 26 and corresponding to the position of the pressure cavity 23 .

请再参阅图3A,本较佳实施例的第一致动片221与第二致动片222系利用激光切割设备以横切的方式切割例如图1A所示的致动片所形成,且两者的长度X1系相同,宽度Y1及Y2亦相同,于本实施例中,长度X可为但不限为3800um,宽度Y1及Y2可为但不限为1900um,当然第一致动片221与第二致动片222的尺寸并不以此为限,且两者的尺寸大小亦可相异,可使用芯片切割设备依照需求切出所需的尺寸。Please refer to FIG. 3A again. The first actuating piece 221 and the second actuating piece 222 of this preferred embodiment are formed by cutting the actuating piece such as shown in FIG. The length X1 of them is the same, and the widths Y1 and Y2 are also the same. In this embodiment, the length X can be but not limited to 3800um, and the widths Y1 and Y2 can be but not limited to 1900um. Of course, the first actuating piece 221 and The size of the second actuating piece 222 is not limited thereto, and the size of the two can also be different, and a chip cutting device can be used to cut out the required size according to the requirement.

本发明的该第一致动片221及该第二致动片222系为一压电板,可采用高压电系数的锆钛酸铅(PZT)系列的压电粉末制造而成。The first actuating piece 221 and the second actuating piece 222 of the present invention are piezoelectric plates, which can be made of lead zirconate titanate (PZT) series piezoelectric powder with high piezoelectric coefficient.

请再参阅图3B,该第一致动片221及该第二致动片222可分别接收一驱动信号V而动作,其运作方式系藉由分别将一驱动信号V作用在第一致动片221及第二致动片222的上下两极,以产生一电场,使得第一致动片221及第二致动片222在此电场的作用下产生弯曲变形,由于第一致动片221及第二致动片222系设置于振动板26上,因此第一致动片221及第二致动片222所产生的吸力及推力会传递至振动板26,使得振动板26也跟着被挤压变形,当第一致动片221及第二致动片222产生吸力作用时,即向上膨胀变形,流体将经由供液流道21进入压电喷墨头2内部的压力腔体23中,当第一致动片221及第二致动片222产生推力作用时,即向下挤压变形,储存于压力腔体23中的流体将因压力腔体23被挤压而传送至出液流道24以经由喷孔251喷出。Please refer to FIG. 3B again, the first actuating piece 221 and the second actuating piece 222 can respectively receive a driving signal V to act, and the mode of operation is to apply a driving signal V to the first actuating piece respectively. 221 and the upper and lower poles of the second actuating piece 222 to generate an electric field, so that the first actuating piece 221 and the second actuating piece 222 are bent and deformed under the action of the electric field, because the first actuating piece 221 and the second actuating piece 221 The two actuating pieces 222 are arranged on the vibrating plate 26, so the suction and thrust generated by the first actuating piece 221 and the second actuating piece 222 will be transmitted to the vibrating plate 26, so that the vibrating plate 26 is also squeezed and deformed. , when the first actuating piece 221 and the second actuating piece 222 generate suction, that is, upward expansion and deformation, the fluid will enter the pressure cavity 23 inside the piezoelectric inkjet head 2 through the liquid supply channel 21, when the second When the first actuating piece 221 and the second actuating piece 222 generate thrust, they are squeezed downwards and deformed, and the fluid stored in the pressure chamber 23 will be sent to the liquid outlet channel 24 due to the pressure chamber 23 being squeezed to be ejected through the nozzle hole 251.

请再参阅图3A及3B,本发明的第一致动片221及第二致动片222系上下相对应设置,因此可使第一致动片221及第二致动片222选择性接收该驱动信号V,以驱动第一致动片221及第二致动片222以多个频率动作,且该驱动信号V依喷孔251的孔径与液滴特性调整,使该喷孔251喷印出不同尺寸与不同黏度的液滴,即选择性地藉由不同的驱动信号V来驱动该第一致动片221及该第二致动片222中至少一个致动片运作,可达到因应不同喷印尺寸、不同黏度的流体以及不同喷印速度的需求,以下将举例说明使用不同驱动信号V来驱动该第一致动片221及该第二致动片222中至少一个致动片进行运作,以及可达到的功效。3A and 3B, the first actuating piece 221 and the second actuating piece 222 of the present invention are set up and down correspondingly, so the first actuating piece 221 and the second actuating piece 222 can be selectively received. The driving signal V is used to drive the first actuating piece 221 and the second actuating piece 222 to operate at multiple frequencies, and the driving signal V is adjusted according to the aperture and droplet characteristics of the nozzle hole 251, so that the nozzle hole 251 prints Droplets of different sizes and different viscosities, that is, selectively drive at least one of the first actuating piece 221 and the second actuating piece 222 to operate through different driving signals V, so as to respond to different sprays. Print sizes, fluids with different viscosities and different printing speed requirements, the following will illustrate using different driving signals V to drive at least one of the first actuating piece 221 and the second actuating piece 222 to operate, and achievable effects.

请参阅图3B及图4A及4B,于本实施例中,第一致动片221及第二致动片222其中之一可单独接收到该驱动信号V,以控制仅单一个致动片动作,即单独驱动第一致动片221而第二致动片222不运作(如第4A图所示),或是单独驱动第二致动片222而第一致动片221不运作(如第4B所示),可达到使喷孔251喷出小尺寸或低黏度的液滴。Please refer to FIG. 3B and FIGS. 4A and 4B. In this embodiment, one of the first actuating piece 221 and the second actuating piece 222 can receive the driving signal V independently to control the movement of only one actuating piece. , that is, the first actuating piece 221 is driven alone while the second actuating piece 222 is not in operation (as shown in FIG. 4B), it is possible to make the spray hole 251 spray small-sized or low-viscosity liquid droplets.

请参阅图3B及4C,于本实施例中,第一致动片221及第二致动片222可同时接收到同相位移的驱动信号V,以使两者成同相位移动作,可达到使喷孔251喷出大尺寸或高黏度的液滴。3B and 4C, in this embodiment, the first actuating piece 221 and the second actuating piece 222 can simultaneously receive the driving signal V of the same phase displacement, so that the two move in the same phase, which can achieve The nozzle hole 251 ejects large-sized or high-viscosity liquid droplets.

请参阅图3B及4D,于本实施例中,第一致动片221及第二致动片222可同时接收到反相位移的驱动信号V,以使两者成反相位移动作,即第一致动片221及第二致动片222两者成一上一下的反相位移动作,可达到依使用者需求使喷孔251喷出所需尺寸或黏度的液滴。3B and 4D, in this embodiment, the first actuating piece 221 and the second actuating piece 222 can receive the driving signal V of the opposite phase displacement at the same time, so that the two move in opposite phases, that is, the first The first actuating piece 221 and the second actuating piece 222 move up and down in opposite phases, so that the spray holes 251 can spray droplets of required size or viscosity according to the user's needs.

请参阅图3B及4E,于本实施例中,第一致动片221及第二致动片222可轮流接收到驱动信号V,以使两者成轮流动作,以增加单一喷孔251的喷墨频率至两倍,可达到提升喷墨速度的功效。3B and 4E, in this embodiment, the first actuating piece 221 and the second actuating piece 222 can receive the drive signal V in turn, so that the two act in turn to increase the injection rate of the single nozzle hole 251. The ink frequency is doubled to achieve the effect of increasing the inkjet speed.

上述的喷孔251孔径介于30至120um之间,以及上述的驱动信号V的电压值可以+/-30V为主,但不以此为限亦可依照需求调整至例如+/-50V,当然驱动信号V的电压值并不局限于上述+/-30V或是+/-50V可依需求调整。The diameter of the nozzle hole 251 mentioned above is between 30 and 120um, and the voltage value of the above driving signal V can be +/-30V, but it is not limited to this and can also be adjusted to +/-50V according to the demand, of course The voltage value of the driving signal V is not limited to the above +/-30V or +/-50V and can be adjusted according to requirements.

请参阅图5A及5B,其中图5A系为本发明第二较佳实施例的压电喷墨头的平面示意图,图5B系为图5A的C-C剖面图,如图5A所示,本实施例的压电喷墨头3具有供液流道21、致动单元32,于本实施例中,致动单元32包括切割所形成的第一致动片321、第二致动片322及第三致动片323,另如图5B所示,压电喷墨头3更包含有压力腔体23、出液流道24、具有喷孔251的喷孔板25以及振动板26等微结构,其中,供液流道21、单一压力腔体23、出液流道24、具有喷孔251的喷孔板25以及振动板26的设置位置及所能达成的目的及功效系已详述于第一较佳实施例中,因此不再赘述。Please refer to Fig. 5A and 5B, wherein Fig. 5A is a schematic plan view of the piezoelectric inkjet head of the second preferred embodiment of the present invention, and Fig. 5B is a C-C sectional view of Fig. 5A, as shown in Fig. 5A, this embodiment The piezoelectric inkjet head 3 has a liquid supply channel 21 and an actuating unit 32. In this embodiment, the actuating unit 32 includes a first actuating piece 321, a second actuating piece 322 and a third actuating piece formed by cutting. Actuating plate 323, and as shown in Figure 5B, piezoelectric inkjet head 3 further includes microstructures such as pressure cavity 23, liquid outlet channel 24, nozzle hole plate 25 with nozzle hole 251, and vibration plate 26, among which , the setting positions of the liquid supply channel 21, the single pressure chamber 23, the liquid outlet channel 24, the nozzle hole plate 25 with the nozzle hole 251 and the vibrating plate 26 and the purpose and effect that can be achieved have been described in detail in the first In a preferred embodiment, therefore no more details are given.

与第一实施例相较,本实施例的压电喷墨头3包含第一致动片321、第二致动片322及第三致动片323,且如图5B所示,第一致动片321、第二致动片322及第三致动片323系设置于振动板26的上方,且对应于压力腔体23的位置设置,三者之间系左右两两相邻设置且第二致动片322系设置于第一致动片321及第三致动片323之间,使喷孔251对应设置于该第二致动片322,可利用激光切割设备以纵切的方式切割例如图1A所示的致动片所形成,且三者的长度X2、X3、X4可相似,宽度Y3则可相同,于本实施例中,长度X2、X3、X4可分别为1266um、1268um、1266um,宽度Y3可为但不限为3800um,当然第一致动片321、第二致动片322及第三致动片323的尺寸并不以此为限,且体积大小亦可相异,可使用芯片切割设备依照需求切出所需的尺寸。Compared with the first embodiment, the piezoelectric inkjet head 3 of this embodiment includes a first actuation piece 321, a second actuation piece 322 and a third actuation piece 323, and as shown in FIG. 5B, the first actuation piece The moving piece 321, the second actuating piece 322 and the third actuating piece 323 are arranged above the vibrating plate 26 and corresponding to the position of the pressure chamber 23, and the three are adjacently arranged in pairs on the left and right and the third The second actuating piece 322 is arranged between the first actuating piece 321 and the third actuating piece 323, so that the nozzle hole 251 is correspondingly arranged on the second actuating piece 322, and can be cut in a slitting manner by using a laser cutting device. For example, the actuator plate shown in Figure 1A is formed, and the lengths X2, X3, and X4 of the three can be similar, and the width Y3 can be the same. In this embodiment, the lengths X2, X3, and X4 can be 1266um, 1268um, respectively. 1266um, the width Y3 can be but not limited to 3800um, of course, the size of the first actuating piece 321, the second actuating piece 322 and the third actuating piece 323 is not limited to this, and the size can also be different, Die cutting equipment can be used to cut out the required size according to requirements.

至于,第一致动片321、第二致动片322及第三致动片323可为一压电板,可采用高压电系数的锆钛酸铅(PZT)系列的压电粉末制造而成,且其运作方式及所能达成的目的及功效系已详述于第一较佳实施例中,因此不再赘述。As for, the first actuating piece 321, the second actuating piece 322 and the third actuating piece 323 can be a piezoelectric plate, which can be made of lead zirconate titanate (PZT) series piezoelectric powder with high piezoelectric coefficient. , and its mode of operation and the purpose and effect it can achieve have been described in detail in the first preferred embodiment, so it will not be described again.

请再参阅图5A及5B,由于本发明仅包含单一压力腔体23,且第一致动片321、第二致动片322及第三致动片323之间系左右两两相邻设置,且第二致动片322系设置于第一致动片321及第三致动片323之间,使喷孔251对应设置于该第二致动片322,因此可使第一致动片321、第二致动片322及第三致动片323选择性接收该驱动信号V,以驱动第一致动片321、第二致动片322及第三致动片323以多个频率动作,使该喷孔251喷印出不同尺寸与不同黏度的液滴,即选择性藉由不同的驱动信号V来驱动第一致动片321、第二致动片322及第三致动片323中至少一个致动片运作,可达到因应不同喷印尺寸、不同黏度的流体以及不同喷印速度的需求,以下将举例说明使用不同驱动信号V来驱动第一致动片321、第二致动片322及第三致动片323中至少一个致动片进行运作,以及可达到的功效。Please refer to FIGS. 5A and 5B again. Since the present invention only includes a single pressure cavity 23, and the first actuating piece 321, the second actuating piece 322 and the third actuating piece 323 are adjacently arranged in pairs on the left and right, And the second actuating piece 322 is arranged between the first actuating piece 321 and the third actuating piece 323, so that the nozzle hole 251 is correspondingly arranged on the second actuating piece 322, so the first actuating piece 321 can be , the second actuating piece 322 and the third actuating piece 323 selectively receive the drive signal V to drive the first actuating piece 321, the second actuating piece 322 and the third actuating piece 323 to move at multiple frequencies, Make the nozzle hole 251 print droplets of different sizes and different viscosities, that is, selectively drive the first actuating piece 321, the second actuating piece 322 and the third actuating piece 323 by different driving signals V The operation of at least one actuating piece can meet the needs of different printing sizes, fluids of different viscosities and different printing speeds. The following will illustrate the use of different driving signals V to drive the first actuating piece 321 and the second actuating piece. 322 and the third actuating piece 323 at least one actuating piece operates, and the effect that can be achieved.

请参阅图5B及图6A、6B及6C,于本实施例中,第一致动片321、第二致动片322及第三致动片323其中之一单独接收到驱动信号V,以控制仅单一个致动片在振动区域动作,即单独驱动第一致动片321而第二致动片322及第三致动片323不运作(如第6A图所示)、单独驱动第二致动片322而第一致动片321及第三致动片323不运作(如第6B图所示)或是单独驱动第三致动片323而第一致动片321及第二致动片322不运作(如第6C图所示),可达到使喷孔251喷出小尺寸或低黏度的液滴,但是若喷孔251相对于第一致动片321、第二致动片322及第三致动片323所构成的面积系呈置中,则以驱动第二致动片322为佳。Please refer to Fig. 5B and Fig. 6A, 6B and 6C, in this embodiment, one of the first actuating piece 321, the second actuating piece 322 and the third actuating piece 323 alone receives the driving signal V to control Only a single actuation piece acts in the vibration area, that is, the first actuation piece 321 is driven alone, the second actuation piece 322 and the third actuation piece 323 are not in operation (as shown in Figure 6A), and the second actuation piece 323 is driven independently. The moving piece 322 and the first actuating piece 321 and the third actuating piece 323 are not in operation (as shown in Figure 6B) or the third actuating piece 323 is driven independently while the first actuating piece 321 and the second actuating piece 322 does not work (as shown in the 6th figure), it can reach the nozzle hole 251 to eject small-size or low-viscosity droplets, but if the nozzle hole 251 is relatively to the first actuating piece 321, the second actuating piece 322 and If the area formed by the third actuating piece 323 is centered, it is better to drive the second actuating piece 322 .

请参阅图5B及图6D,于本实施例中,第一致动片321、第二致动片322及第三致动片323可同时接收到同相位移的驱动信号V,以使三者成同相位移动作,可达到使喷孔251喷出大尺寸或高黏度的液滴。Please refer to Fig. 5B and Fig. 6D, in this embodiment, the first actuating piece 321, the second actuating piece 322 and the third actuating piece 323 can simultaneously receive the driving signal V of the same phase displacement, so that the three become The same phase shifting can make the nozzle hole 251 eject large-size or high-viscosity liquid droplets.

请参阅图5B及图6E、6F及6G,于本实施例中,第一致动片321、第二致动片322及第三致动片323其中二个接收到驱动信号V,以使该多个致动片中部分数个致动片动作,即同时驱动第一致动片321及第二致动片322而第三致动片323不运作(如第6E图所示),或同时驱动第二致动片322及第三致动片323而第一致动片321不运作(如第6F图所示),或同时驱动第一致动片321及第三致动片323而第二致动片322不运作(如第6F图所示),可达到使喷孔251喷出中等尺寸或黏度适中的液滴。Please refer to Fig. 5B and Fig. 6E, 6F and 6G, in this embodiment, two of the first actuating piece 321, the second actuating piece 322 and the third actuating piece 323 receive the drive signal V, so that the Some of the actuating pieces in the plurality of actuating pieces act, that is, the first actuating piece 321 and the second actuating piece 322 are simultaneously driven while the third actuating piece 323 is not in operation (as shown in Figure 6E), or simultaneously Drive the second actuating piece 322 and the third actuating piece 323 while the first actuating piece 321 is not in operation (as shown in Figure 6F), or drive the first actuating piece 321 and the third actuating piece 323 simultaneously while the first actuating piece 321 is inactive. The two actuating pieces 322 are not in operation (as shown in FIG. 6F ), so that the spray hole 251 can spray medium-sized or medium-viscosity liquid droplets.

请参阅图5B及图6H,于本实施例中,第一致动片321、第二致动片322及第三致动片323系同时接收到驱动信号V,且使两相邻致动片之间成反相位移动作,即两相邻致动片之间成一上一下的反向位移动作,其中的第一致动片321及第三致动片323位移方向相同,第二致动片322位移方向相反,以达到依使用者需求使喷孔251喷出所需尺寸或黏度的液滴。Please refer to FIG. 5B and FIG. 6H. In this embodiment, the first actuating piece 321, the second actuating piece 322 and the third actuating piece 323 receive the driving signal V at the same time, and make two adjacent actuating pieces The opposite phase movement between two adjacent actuating pieces, that is, a reverse displacement action between two adjacent actuating pieces, wherein the first actuating piece 321 and the third actuating piece 323 have the same displacement direction, and the second actuating piece The direction of displacement of 322 is opposite, so as to make the nozzle hole 251 eject liquid droplets of required size or viscosity according to user's requirements.

请参阅图5B及图6I,于本实施例中,第一致动片321、第二致动片322及第三致动片323系轮流接收到驱动信号V,以使三者成轮流动作,以增加单一喷孔251的喷墨频率至三倍,可达到提升喷墨速度的功效。Please refer to FIG. 5B and FIG. 6I. In this embodiment, the first actuating piece 321, the second actuating piece 322 and the third actuating piece 323 receive the drive signal V in turn, so that the three act in turn. By increasing the ink ejection frequency of the single nozzle hole 251 to three times, the effect of increasing the ink ejection speed can be achieved.

上述的驱动信号V的电压值可以+/-30V为主,但不以此为限亦可依照需求调整至例如+/-50V,当然驱动信号V的电压值并不局限于上述+/-30V或是+/-50V可依需求调整。The above-mentioned voltage value of the drive signal V can be +/-30V, but it is not limited to this and can be adjusted to, for example, +/-50V according to the needs. Of course, the voltage value of the drive signal V is not limited to the above-mentioned +/-30V Or +/-50V can be adjusted according to demand.

本发明的压电喷墨头所包含的多个致动片的尺寸大小并不局限于实质上相同,亦可藉由芯片切割设备切割为不同尺寸,以图5A所示的切成第一致动片321、第二致动片322及第三致动片323三区块为例,其中设置于中间区域的第二致动片322的体积可大于第一致动片321及第三致动片323,而此时仅以个别驱动设置于中间区块的第二致动片322可喷墨为原则。The size of the plurality of actuating sheets included in the piezoelectric inkjet head of the present invention is not limited to being substantially the same, and can also be cut into different sizes by a chip cutting device. Taking the three blocks of the moving piece 321, the second actuating piece 322 and the third actuating piece 323 as an example, the volume of the second actuating piece 322 arranged in the middle area can be larger than that of the first actuating piece 321 and the third actuating piece 321. sheet 323, and at this time only the second actuating sheet 322 arranged in the middle block can be individually driven to eject ink.

同理,本发明的压电喷墨头2、3所包含的致动片数量并不局限于第3A及5A图所示的2或3个,可依照需求使用芯片切割设备切出所需的区块数目,仅要求驱动较靠近喷孔的致动片为可喷墨,设置于其它区块的致动片则仅为配合使有效驱动的致动片的总面积增加,藉以喷出各种尺寸或黏度的液滴。Similarly, the number of actuating pieces included in the piezoelectric inkjet heads 2 and 3 of the present invention is not limited to 2 or 3 as shown in Figures 3A and 5A, and chip cutting equipment can be used to cut out the required pieces according to requirements. The number of blocks is only required to drive the actuating sheet closer to the nozzle hole to be able to eject ink, and the actuating sheet arranged in other blocks is only required to increase the total area of the effectively driven actuating sheet to eject various inks. droplet size or viscosity.

由上述内容可知,本发明的压电喷墨头藉由单一压力腔体配置多个致动片,并根据不同需求来调整驱动信号以同时驱动其中一个或多个致动片,即针对喷印不同尺寸、不同黏度的液滴以及不同喷墨频率的需求条件,使本发明可灵活调配驱动致动片的数量以及驱动信号的电压值来达到目的,例如在喷印低黏度液滴时只需减少致动片运作的数量并降低驱动信号的电压值即可符合需求,而采用降低驱动信号的电压值的方式更可避免不必要的能量浪费,而且,以使用相同总致动面积来比较,习知技术仅使用单一致动片其可喷印的液滴尺寸有所限制,反观,本发明则可根据需求控制致动片的驱动数量来达到可喷印更多不同尺寸液滴的需求,以提升通用性。As can be seen from the above, the piezoelectric inkjet head of the present invention configures multiple actuating plates in a single pressure chamber, and adjusts the driving signal according to different needs to simultaneously drive one or more of the actuating plates, that is, for printing Droplets of different sizes, different viscosities, and different inkjet frequency requirements enable the present invention to flexibly adjust the number of drive actuators and the voltage value of the drive signal to achieve the goal. For example, when printing low-viscosity droplets, only Reducing the number of actuating pieces and reducing the voltage value of the driving signal can meet the requirements, and the method of reducing the voltage value of the driving signal can avoid unnecessary waste of energy. Moreover, using the same total actuating area for comparison, The conventional technology only uses a single actuator to limit the size of the droplets that can be printed. On the other hand, the present invention can control the number of drives of the actuator to meet the needs of printing more droplets of different sizes. to improve versatility.

请参阅图7A及图7B,其中图7A系为本发明第三较佳实施例的压电喷墨头的结构示意图,图7B系为本发明第三较佳实施例压电喷墨头致动片的切割方法的流程图,如图7A所示,本发明压电喷墨头7系为一多层结构,主要系由一振动板及多个板件(未图标)堆栈设置而成,且压电喷墨头7具有一供液流道71以及多个喷墨单元72,其中,于本实施例中,该多个喷墨单元72的致动面积系分布于四个不同象限中但彼此之间并未对称设置,每一喷墨单元72具有一压力腔体(未图示),且压电喷墨头7更包含具有该多个喷孔74的一喷孔板(未图示),于每一喷墨单元72分别对应设置一喷孔74,且每一喷墨单元72的压力腔体均与供液流道71相连通,使喷印流体可由供液流道71流入每一压力腔体中,且于多个喷墨单元72的压力腔体处设置有一致动单元73,其中,致动单元73系可由但不限由锆钛酸铅(Lead Zirconate Titanate,PZT)压电材料所形成,可藉由一切割设备对致动单元73进行切割,使致动单元73对应于每一喷墨单元72的压力腔体之处分别产生一致动片,即图7A所示的致动片731、732、733、734,致动片731、732、733、734分别形成于该多个喷墨单元72的压力腔体上,并选择性地接收一驱动信号V而动作,且各喷孔74分别形成于对应致动片731、732、733、734概呈置中的相对位置。其中,各压力腔体的体积与致动片731、732、733、734的尺寸及各喷孔74的孔径大致成比例关系,借此,各致动片731、732、733、734选择性接收该驱动信号V,该驱动信号V依各喷孔74的孔径与液滴特性调整,以驱动该多个致动片731、732、733、734以多个频率动作,使该喷孔74喷印出不同尺寸与不同黏度的液滴。Please refer to FIG. 7A and FIG. 7B, wherein FIG. 7A is a structural schematic diagram of a piezoelectric inkjet head according to a third preferred embodiment of the present invention, and FIG. 7B is an actuation diagram of a piezoelectric inkjet head according to a third preferred embodiment of the present invention. The flow chart of the sheet cutting method, as shown in Figure 7A, the piezoelectric inkjet head 7 of the present invention is a multi-layer structure, mainly composed of a vibrating plate and a plurality of plates (not shown) stacked, and The piezoelectric inkjet head 7 has a liquid supply channel 71 and a plurality of inkjet units 72, wherein, in this embodiment, the actuation areas of the plurality of inkjet units 72 are distributed in four different quadrants but mutually Not arranged symmetrically, each inkjet unit 72 has a pressure chamber (not shown), and the piezoelectric inkjet head 7 further includes an orifice plate (not shown) with the plurality of nozzle holes 74 Each inkjet unit 72 is respectively provided with a nozzle hole 74, and the pressure chamber of each inkjet unit 72 is connected with the liquid supply channel 71, so that the printing fluid can flow into each inkjet unit from the liquid supply channel 71. In the pressure cavity, an actuating unit 73 is arranged at the pressure cavity of a plurality of inkjet units 72, wherein the actuating unit 73 can be made of, but not limited to, lead zirconate titanate (Lead Zirconate Titanate, PZT) piezoelectric The material is formed, and the actuating unit 73 can be cut by a cutting device, so that the actuating unit 73 corresponding to the pressure cavity of each inkjet unit 72 produces an actuating piece, that is, the actuating piece shown in FIG. 7A The moving pieces 731, 732, 733, 734 and the actuating pieces 731, 732, 733, 734 are respectively formed on the pressure chambers of the plurality of inkjet units 72, and selectively receive a driving signal V to act, and each The nozzle holes 74 are respectively formed at relative positions corresponding to the corresponding actuating pieces 731 , 732 , 733 , and 734 . Wherein, the volume of each pressure cavity is roughly proportional to the size of the actuating pieces 731, 732, 733, 734 and the diameters of the nozzle holes 74, whereby each actuating pieces 731, 732, 733, 734 selectively receive The driving signal V, the driving signal V is adjusted according to the aperture and droplet characteristics of each nozzle hole 74, so as to drive the plurality of actuating plates 731, 732, 733, 734 to operate at multiple frequencies, so that the nozzle holes 74 are sprayed. droplets of different sizes and viscosities.

请参阅图7B,其系为本发明第三较佳实施例的压电喷墨头致动片的切割方法的流程图,如图所示,本实施例的压电喷墨头致动片的切割方法系包含下列步骤:首先,提供压电喷墨头7,其系具有一供液流道71以及多个喷墨单元72,其中多个喷墨单元72分别具有与供液流道71相连通的一压力腔体,并于每一喷墨单元72分别形成一喷孔74(如步骤S71所示),且于本实施例中,多个喷墨单元72可为但不限为系分别设置于四个象限中,接着,于多个喷墨单元72的压力腔体上方设置一致动单元73,致动单元73包含多个致动片731、732、733、734,且致动片731、732、733、734分别形成于多个喷墨单元72的压力腔体上,并选择性地接收驱动信号V而动作,且各喷孔74分别形成于对应致动片731、732、733、734大概呈置中的相对位置(如步骤S72所示),后续则设定致动片731、732、733、734的致动面积,并可于该压电喷墨头7上标示多个定位记号75,例如:以划线方式标示呈现L型的定位记号75,将致动单元73固设于该多个定位记号75所形成的范围内,以使致动单元73可对应设置于多个喷墨单元72的压力腔体上方(如步骤S73所示),当然,本发明致动单元73的定位方式并不局限于以划线方式标示定位记号75来实施,且定位记号75并不局限为L型,任何可达到使致动单元73固设于多个喷墨单元72的压力腔体上方的方式均为本发明所保护的范围。Please refer to Fig. 7B, which is a flow chart of the cutting method of the piezoelectric inkjet head actuating sheet of the third preferred embodiment of the present invention, as shown in the figure, the piezoelectric inkjet head actuating sheet of the present embodiment The cutting method comprises the following steps: first, the piezoelectric inkjet head 7 is provided, which has a liquid supply flow path 71 and a plurality of inkjet units 72, wherein the plurality of inkjet units 72 have respectively connected to the liquid supply flow path 71. A pressure chamber through which each inkjet unit 72 forms a nozzle hole 74 (as shown in step S71), and in this embodiment, a plurality of inkjet units 72 can be, but not limited to, respectively Arranged in four quadrants, then, an actuation unit 73 is arranged above the pressure chambers of a plurality of inkjet units 72, the actuation unit 73 includes a plurality of actuation pieces 731, 732, 733, 734, and the actuation piece 731 . 734 is approximately in the relative position of the center (as shown in step S72), and subsequently the actuation areas of the actuation pieces 731, 732, 733, 734 are set, and multiple positions can be marked on the piezoelectric inkjet head 7 The mark 75, for example: marking the positioning mark 75 presenting an L shape in a dashed manner, the actuating unit 73 is fixed in the range formed by the multiple positioning marks 75, so that the actuating unit 73 can be correspondingly arranged on a plurality of positioning marks 75 Above the pressure chamber of the inkjet unit 72 (as shown in step S73), of course, the positioning method of the actuating unit 73 of the present invention is not limited to marking the positioning mark 75 in a scribed manner, and the positioning mark 75 is not limited to It is L-shaped, and any method that can achieve the actuation unit 73 being fixed above the pressure chambers of the plurality of inkjet units 72 is within the protection scope of the present invention.

接着,以一切割设备根据步骤S73所设定的关于每一个致动片的面积对该致动单元73进行切割(如步骤S74所示),以使致动单元73对应于每一该压力腔体的处分别产生一致动片,即图7A所示的致动片731、732、733、734(如步骤S75所示),借此,各压力腔体分别具预定面积的致动片731、732、733、734,并选择性地接收驱动信号V动作,驱动信号V依各喷孔74的孔径与液滴特性调整,以驱动致动片731、732、733、734以多个频率动作,使致动片731、732、733、734对应不同尺寸与不同黏度的液滴而选择动作。Next, the actuating unit 73 is cut with a cutting device according to the area of each actuating piece set in step S73 (as shown in step S74), so that the actuating unit 73 corresponds to each pressure chamber Each of the pressure chambers has an actuating piece, that is, the actuating piece 731, 732, 733, 734 shown in FIG. 732, 733, 734, and selectively receive the driving signal V to act, the driving signal V is adjusted according to the aperture of each nozzle hole 74 and the droplet characteristics, so as to drive the actuating pieces 731, 732, 733, 734 to operate at multiple frequencies, The actuating pieces 731 , 732 , 733 , 734 are selected to act corresponding to liquid droplets of different sizes and different viscosities.

其中,本实施例所使用的切割设备可为但不限为一晶圆切割设备,例如:激光机台,最后,将致动单元73中除了致动片731、732、733、734以外的废料移除即可形成如图7C所示的压电喷墨头7。Among them, the cutting equipment used in this embodiment can be but not limited to a wafer cutting equipment, such as: laser machine, finally, the waste materials in the actuating unit 73 except the actuating pieces 731, 732, 733, 734 After removal, the piezoelectric inkjet head 7 as shown in FIG. 7C can be formed.

于本实施例中,致动片731、732、733、734可为不同尺寸且均为正方形结构并分布于四个不同象限中,举例而言:若图1A所示的致动片12的致动面积为10个单位,则图7A所示的致动片731、732、733、734的致动面积可分别为约3、5、8、10个单位,而每一喷墨单元72的喷孔74的孔径大致与对应的压力腔体的体积及喷墨单元72的致动面积成比例,即每一喷墨单元72的喷孔74的孔径大致与致动片731、732、733、734的尺寸以及压力腔体的体积成比例关系,致动片731、732、733、734所对应的喷孔74的孔径可分别为例如30、45、60、90um,当然致动片731、732、733、734的致动面积以及所对应的喷孔74的孔径大小并不以此为限,可根据实际的需求而改变。In this embodiment, the actuating pieces 731, 732, 733, 734 can be of different sizes and all have a square structure and are distributed in four different quadrants. For example: if the actuating piece 12 shown in FIG. 1A If the actuating area is 10 units, the actuating areas of the actuating pieces 731, 732, 733, and 734 shown in FIG. 7A can be about 3, 5, 8, and 10 units respectively. The aperture of the hole 74 is approximately proportional to the volume of the corresponding pressure chamber and the actuation area of the inkjet unit 72, that is, the aperture of the nozzle hole 74 of each inkjet unit 72 is approximately the same as the actuation plate 731, 732, 733, 734 The size of the pressure chamber and the volume of the pressure chamber are proportional to each other. The diameters of the nozzle holes 74 corresponding to the actuation pieces 731, 732, 733, and 734 can be, for example, 30, 45, 60, and 90um respectively. Of course, the actuation pieces 731, 732, The actuating areas of 733 and 734 and the size of the corresponding nozzle holes 74 are not limited thereto, and can be changed according to actual requirements.

请参阅图8A及图8B,其中图8A系为本发明第四较佳实施例的压电喷墨头的切割示意图,图8B系为本发明第四较佳实施例压电喷墨头致动片的切割方法的流程图,如图8A所示,本实施例的压电喷墨头8系为一多层结构,同样系由一振动板及多个板件(未图标)堆栈设置而成,且压电喷墨头8具有一供液流道71以及多个喷墨单元811、812、813、814,其中,于本实施例中,该多个喷墨单元811、812、813、814之间系以纵向排列的方式相互对称设置,但不以此为限,亦可依需求变更为以横向排列的方式相互对称设置,喷墨单元811、812、813、814分别具有一压力腔体(未图示),该等压力腔体以一方向等长度等距及另一方向不等距排列,且压电喷墨头8更包含具有该多个喷孔83的一喷孔板(未图标),于喷墨单元811、812、813、814分别对应设置一喷孔83,且喷墨单元811、812、813、814的压力腔体均与供液流道71相连通,使喷印流体可由供液流道71流入每一压力腔体中,且于喷墨单元811、812、813、814的压力腔体处设置有一致动单元82,其中,致动单元82系可由但不限由锆钛酸铅(Lead Zirconate Titanate,PZT)压电材料所形成,可藉由一切割设备对致动单元82进行切割,使致动单元82对应于每一喷墨单元811、812、813、814的压力腔体的处分别产生一致动片,即第8A及8C图所示的致动片821、822、823、824,致动片821、822、823、824分别形成于喷墨单元811、812、813、814的压力腔体上,且致动片821、822、823、824的长宽比为2以下,并选择性地分别接收一驱动信号V而动作,且各喷孔83分别形成于对应致动片821、822、823、824概呈置中的相对位置。Please refer to Fig. 8A and Fig. 8B, wherein Fig. 8A is the cutting diagram of the piezoelectric inkjet head of the fourth preferred embodiment of the present invention, and Fig. 8B is the actuation of the piezoelectric inkjet head of the fourth preferred embodiment of the present invention The flow chart of the sheet cutting method, as shown in Figure 8A, the piezoelectric inkjet head 8 of the present embodiment is a multi-layer structure, which is also formed by stacking a vibrating plate and a plurality of plates (not shown). , and the piezoelectric inkjet head 8 has a liquid supply channel 71 and a plurality of inkjet units 811, 812, 813, 814, wherein, in this embodiment, the plurality of inkjet units 811, 812, 813, 814 They are symmetrically arranged in a vertical arrangement, but not limited thereto, and can also be arranged symmetrically in a horizontal arrangement according to requirements. The inkjet units 811, 812, 813, and 814 each have a pressure chamber (not shown), the pressure chambers are arranged equidistantly in one direction and unequal in the other direction, and the piezoelectric inkjet head 8 further includes an orifice plate (not shown) with the plurality of nozzle holes 83 Icon), a spray hole 83 is set in the inkjet units 811, 812, 813, 814 respectively, and the pressure chambers of the inkjet units 811, 812, 813, 814 are connected with the liquid supply channel 71, so that the inkjet Fluid can flow into each pressure cavity from the liquid supply channel 71, and an actuation unit 82 is provided at the pressure cavity of the inkjet units 811, 812, 813, 814, wherein the actuation unit 82 can be controlled by but not limited to Formed from lead zirconate titanate (Lead Zirconate Titanate, PZT) piezoelectric material, the actuating unit 82 can be cut by a cutting device, so that the actuating unit 82 corresponds to each inkjet unit 811, 812, 813, The place of the pressure chamber body of 814 produces an actuating sheet respectively, namely the actuating sheet 821,822,823,824 shown in Figure 8A and 8C, and the actuating sheet 821,822,823,824 is respectively formed in the inkjet unit 811 , 812, 813, 814 on the pressure chamber body, and the aspect ratio of the actuating piece 821, 822, 823, 824 is 2 or less, and selectively receive a driving signal V to act respectively, and each nozzle hole 83 is respectively It is formed at relative positions corresponding to the actuation pieces 821 , 822 , 823 , and 824 which are approximately centered.

其中,各压力腔体的体积与致动片821、822、823、824的尺寸及各喷孔83的孔径大致成比例关系,借此,各致动片821、822、823、824选择性接收该驱动信号V,该驱动信号V依各喷孔83的孔径与液滴特性调整,以驱动该多个致动片821、822、823、824以多个频率动作,使该喷孔83喷印出不同尺寸与不同黏度的液滴。Wherein, the volume of each pressure cavity is roughly proportional to the size of the actuator plates 821, 822, 823, 824 and the diameters of the nozzle holes 83, whereby each actuator plate 821, 822, 823, 824 selectively receives The drive signal V, the drive signal V is adjusted according to the aperture and droplet characteristics of each nozzle hole 83, so as to drive the plurality of actuating plates 821, 822, 823, 824 to operate at multiple frequencies, so that the nozzle holes 83 print droplets of different sizes and viscosities.

请参阅图8A及8B,其中图8B系为本发明第四较佳实施例的压电喷墨头致动片的切割方法的流程图,如图所示,本实施例的压电喷墨头致动片的切割方法系包含下列步骤:首先,提供压电喷墨头8,其系具有一供液流道71以及喷墨单元811、812、813、814,其中喷墨单元811、812、813、814分别具有与供液流道71相连通的一压力腔体,并于喷墨单元811、812、813、814分别形成一喷孔83(如步骤S81所示),且于本实施例中,喷墨单元811、812、813、814之间系以纵向排列的方式相互对称设置,但不以此为限,亦可依需求变更为以横向排列的方式相互对称设置,接着,于喷墨单元811、812、813、814的压力腔体上方设置一致动单元82,致动单元82包含多个致动片821、822、823、824,且致动片821、822、823、824分别形成于喷墨单元811、812、813、814的压力腔体上,并选择性地接收驱动信号V而动作(如步骤S82所示),后续则设定每一个喷墨单元811、812、813、814的致动面积、一第一方向的切割距离以及该多个喷墨单元811、812、813、814之间的间隔距离(如步骤S83所示),其中该第一方向可为但不限为X方向,且每一个喷墨单元811、812、813、814的该第一方向的切割距离系相等,即如图8A所示的喷墨单元811、812、813、814于X方向的切割距离X5系相等,至于喷墨单元811、812、813、814之间的间隔距离即分别如图8A所示的间隔距离Y5、Y7、Y9。Please refer to FIGS. 8A and 8B, wherein FIG. 8B is a flow chart of the cutting method of the piezoelectric inkjet head actuating sheet of the fourth preferred embodiment of the present invention. As shown in the figure, the piezoelectric inkjet head of this embodiment The cutting method of the actuating sheet comprises the following steps: First, the piezoelectric inkjet head 8 is provided, which has a liquid supply channel 71 and inkjet units 811, 812, 813, 814, wherein the inkjet units 811, 812, 813, 814 respectively have a pressure cavity communicated with the liquid supply channel 71, and respectively form a nozzle hole 83 in the inkjet unit 811, 812, 813, 814 (as shown in step S81), and in this embodiment Among them, the inkjet units 811, 812, 813, and 814 are symmetrically arranged in a vertical arrangement, but it is not limited to this, and can also be changed to be symmetrical in a horizontal arrangement according to requirements. An actuation unit 82 is arranged above the pressure chambers of the ink units 811, 812, 813, 814. The actuation unit 82 includes a plurality of actuation pieces 821, 822, 823, 824, and the actuation pieces 821, 822, 823, 824 are respectively Formed on the pressure chambers of the inkjet units 811, 812, 813, 814, and selectively receive the drive signal V to act (as shown in step S82), and then set each inkjet unit 811, 812, 813 , the actuation area of 814, the cutting distance in a first direction and the distance between the plurality of inkjet units 811, 812, 813, 814 (as shown in step S83), wherein the first direction can be but not is limited to the X direction, and the cutting distance of each inkjet unit 811, 812, 813, 814 in the first direction is equal, that is, the inkjet units 811, 812, 813, 814 in the X direction as shown in FIG. 8A The cutting distance X5 is equal, and the distances between the inkjet units 811 , 812 , 813 , 814 are the distances Y5 , Y7 , and Y9 as shown in FIG. 8A .

接着,根据步骤S83所设定的每一个喷墨单元811、812、813、814的致动面积以及该第一方向的切割距离,即依X方向的切割距离X5来计算每一个喷墨单元811、812、813、814于一第二方向的切割距离,第二方向可为但不限为Y方向,即如图8A所示的喷墨单元811于Y方向的切割距离Y4、喷墨单元812于Y方向的切割距离Y3、喷墨单元813于Y方向的切割距离Y8、喷墨单元814于Y方向的切割距离Y10(如步骤S84所示)。Next, calculate each inkjet unit 811 according to the actuation area of each inkjet unit 811, 812, 813, 814 set in step S83 and the cutting distance in the first direction, that is, the cutting distance X5 in the X direction , 812, 813, 814 in a second direction of the cutting distance, the second direction can be but not limited to the Y direction, that is, the cutting distance Y4 of the inkjet unit 811 in the Y direction as shown in Figure 8A, the inkjet unit 812 The cutting distance Y3 in the Y direction, the cutting distance Y8 of the inkjet unit 813 in the Y direction, and the cutting distance Y10 of the inkjet unit 814 in the Y direction (shown in step S84 ).

后续则可于该压电喷墨头8上标示多个定位记号75,例如:以划线方式标示呈现L型的定位记号75,以将致动单元82固设于该多个定位记号25所形成的范围内,以使致动单元82可对应设置于多个喷墨单元811、812、813、814的压力腔体上方(如步骤S85所示),当然,本发明致动单元82的定位方式并不局限于以划线方式标示定位记号75来实施,且定位记号75并不局限为L型,任何可达到使致动单元82固设于多个喷墨单元811、812、813、814的压力腔体上方的方式均为本发明所保护的范围。Subsequently, a plurality of positioning marks 75 can be marked on the piezoelectric inkjet head 8, for example, an L-shaped positioning mark 75 can be marked in a scribed manner, so that the actuating unit 82 can be fixed on the position of the plurality of positioning marks 25. within the range formed so that the actuating unit 82 can be correspondingly arranged above the pressure chambers of a plurality of inkjet units 811, 812, 813, 814 (as shown in step S85), of course, the positioning of the actuating unit 82 of the present invention The method is not limited to marking the positioning mark 75 in a scribing manner, and the positioning mark 75 is not limited to an L shape. The methods above the pressure chamber are all within the protection scope of the present invention.

接着,以一切割设备根据步骤S83所设定的该多个喷墨单元811、812、813、814于第一方向的切割距离、该多个喷墨单元811、812、813、814之间的间隔距离,以及步骤S84计算所得的每一个喷墨单元811、812、813、814于第二方向的切割距离对该致动单元82进行切割,即该多个喷墨单元811、812、813、814于X方向的切割距离X5、该多个喷墨单元811、812、813、814之间的间隔距离Y5、Y7、Y9,以及喷墨单元811于Y方向的切割距离Y4、喷墨单元812于Y方向的切割距离Y6、喷墨单元813于Y方向的切割距离Y8、喷墨单元814于Y方向的切割距离Y10来对该致动单元82进行切割,以使致动单元82分别于每一该压力腔体的处对应形成一致动片,即图8C所示的致动片821、822、823、824,并使各该喷孔分别形成于对应各该致动片概呈置中的相对位置(如步骤S86所示),借此,各压力腔体分别具预定面积的致动片821、822、823、824,并选择性地接收驱动信号V动作,驱动信号V依各喷孔83的孔径与液滴特性调整,以驱动致动片821、822、823、824以多个频率动作,使致动片821、822、823、824对应不同尺寸与不同黏度的液滴而选择动作。Next, using a cutting device according to the cutting distance of the plurality of inkjet units 811, 812, 813, 814 in the first direction set in step S83, the distance between the plurality of inkjet units 811, 812, 813, 814 The separation distance and the cutting distance of each inkjet unit 811, 812, 813, 814 calculated in step S84 in the second direction cut the actuating unit 82, that is, the plurality of inkjet units 811, 812, 813, The cutting distance X5 of 814 in the X direction, the spacing distances Y5, Y7, and Y9 between the plurality of inkjet units 811, 812, 813, and 814, the cutting distance Y4 of the inkjet unit 811 in the Y direction, and the inkjet unit 812 The cutting distance Y6 in the Y direction, the cutting distance Y8 of the inkjet unit 813 in the Y direction, and the cutting distance Y10 of the inkjet unit 814 in the Y direction are used to cut the actuating unit 82, so that the actuating unit 82 is cut in each An actuating piece is correspondingly formed at a position of the pressure chamber, that is, the actuating piece 821, 822, 823, 824 shown in FIG. Relative position (as shown in step S86), whereby each pressure cavity has a predetermined area of the actuating plate 821, 822, 823, 824, and selectively receives the drive signal V to act, and the drive signal V depends on each nozzle hole The aperture of 83 and the droplet characteristics are adjusted to drive the actuating pieces 821, 822, 823, and 824 to operate at multiple frequencies, so that the actuating pieces 821, 822, 823, and 824 can select actions corresponding to liquid droplets of different sizes and different viscosities .

于本实施例中,可根据切割距离Y4、Y6、Y8、Y10以及间隔距离Y5、Y7、Y9于致动单元82上标示切割线L1~L8以及根据切割距离X1于致动单元82上标示切割线L9~L10,使切割设备沿着切割线L1~L10对致动单元82进行切割,即可于致动单元82上切割形成致动片821、822、823、824并分别对应于每一喷墨单元811、812、813、814的压力腔体,当然切割设备切割的顺序并不局限于依照切割线L1~L10的顺序进行切割,可依实据需求变更切割顺序,且本发明可使用的切割方式亦不局限于以划线方式标示切割线来实施,任何可根据多个喷墨单元811、812、813、814于第一方向的切割距离、多个喷墨单元811、812、813、814之间的间隔距离,以及每一个喷墨单元811、812、813、814于第二方向的切割距离而于致动单元82上切割形成致动片821、822、823、824的方式均为本发明所保护的范围。In this embodiment, the cutting lines L1-L8 can be marked on the actuating unit 82 according to the cutting distances Y4, Y6, Y8, Y10 and the spacing distances Y5, Y7, Y9, and the cutting can be marked on the actuating unit 82 according to the cutting distance X1. line L9~L10, so that the cutting equipment can cut the actuating unit 82 along the cutting line L1~L10, that is, the actuating piece 821, 822, 823, 824 can be cut on the actuating unit 82 and correspond to each nozzle respectively. The pressure chambers of the ink units 811, 812, 813, 814, of course, the cutting order of the cutting equipment is not limited to cutting according to the order of the cutting lines L1~L10, the cutting order can be changed according to actual needs, and the cutting order that can be used in the present invention The method is not limited to marking the cutting line by scribing, any method can be implemented according to the cutting distance of the plurality of inkjet units 811, 812, 813, 814 in the first direction, the plurality of inkjet units 811, 812, 813, 814 The spacing distance between them, and the cutting distance of each inkjet unit 811, 812, 813, 814 in the second direction and the way of cutting and forming the actuating piece 821, 822, 823, 824 on the actuating unit 82 are all in this scope of protection for the invention.

其中,本实施例所使用的切割设备可为但不限为一晶圆切割设备,例如:激光机台,最后,将致动单元82中除了致动片即图8A所示的致动片821、822、823、824以外的废料移除即可形成如图8C所示的压电喷墨头8。Wherein, the cutting equipment used in this embodiment can be but not limited to a wafer cutting equipment, for example: a laser machine, finally, except the actuating piece in the actuating unit 82, that is, the actuating piece 821 shown in FIG. 8A , 822 , 823 , and 824 are removed to form the piezoelectric inkjet head 8 as shown in FIG. 8C .

于本实施例中,致动片821、822、823、824可为不同尺寸并以纵向排列的方式相互对称设置,且致动片821、822、823、824的第一方向的尺寸大小系相同,即于X方向的切割距离X5相同,因此可使用一般的切割设备来对致动单元82进行割出,可降低制造成本外,其废料也较第一实施例使用激光切割制程来得少。举例而言:若图1A所示的致动片12的致动面积为10个单位,则图8A所示的致动片821、822、823、824的致动面积可分别为约10、3、5、8个单位,由于致动片821、822、823、824的第一方向的尺寸大小系相同,即X方向尺寸相同,因此致动片821、822、823、824于第二方向的尺寸,即Y方向尺寸,将会有10:3:5:8的比例关系,使得致动片821、822、823、824为长方形而不为正方形,在这种情况下,致动片821、822、823、824的X、Y方向尺寸仍须谨慎调配,以免因致动片821、822、823、824的过长而影响动作,因此,请参阅下列表一,于本实施例中致动片821、822、823、824的长宽比(X/Y)皆控制在约2或以下。In this embodiment, the actuating pieces 821, 822, 823, 824 can be of different sizes and arranged symmetrically with each other in a longitudinal arrangement, and the dimensions of the actuating pieces 821, 822, 823, 824 in the first direction are the same , that is, the cutting distance X5 in the X direction is the same, so common cutting equipment can be used to cut out the actuator unit 82, which can reduce the manufacturing cost, and the waste is less than that of the first embodiment using the laser cutting process. For example: if the actuation area of the actuation plate 12 shown in FIG. 1A is 10 units, the actuation areas of the actuation plates 821, 822, 823, and 824 shown in FIG. 8A can be about 10, 3 units, respectively. , 5, 8 units, since the size of the first direction of the actuating piece 821, 822, 823, 824 is the same, that is, the size of the X direction is the same, so the actuating piece 821, 822, 823, 824 in the second direction The size, that is, the size in the Y direction, will have a ratio of 10:3:5:8, so that the actuating pieces 821, 822, 823, 824 are rectangular rather than square. In this case, the actuating pieces 821, The dimensions in the X and Y directions of 822, 823, 824 still need to be adjusted carefully, so as not to affect the action due to the excessive length of the actuating piece 821, 822, 823, 824. Therefore, please refer to the following table 1 to actuate in this embodiment The aspect ratios (X/Y) of the slices 821, 822, 823, 824 are all controlled to be about 2 or below.

表一:Table I:

而每一喷墨单元811、812、813、814的喷孔83的孔径大致与对应的致动片821、822、823、824的尺寸及压力腔体的面积成比例关系,即致动片821、822、823、824所对应的喷孔83的孔径可分别为例如90、30、45、60um,当然致动片821、822、823、824的致动面积以及所对应的喷孔83的孔径大小并不以此为限,可根据实际的需求而改变。And the diameter of the nozzle hole 83 of each inkjet unit 811, 812, 813, 814 is roughly proportional to the size of the corresponding actuating piece 821, 822, 823, 824 and the area of the pressure chamber, that is, the actuating piece 821 , 822, 823, 824 corresponding to the aperture of the nozzle hole 83 can be, for example, 90, 30, 45, 60um respectively, of course, the actuation area of the actuation plate 821, 822, 823, 824 and the aperture of the corresponding nozzle hole 83 The size is not limited thereto, and can be changed according to actual needs.

此外,致动片821、822、823、824摆放的顺序并不局限于图8C所示的态样,但因越靠近供液流道21中段的区域提供喷印的流体越通顺,所以本实施例将使用相对较频繁的3、5个致动面积单位的致动片822及823摆于中间,当然,此位置也可改摆有高黏度或大流量需求的8、10个致动面积单位的致动片824及821。In addition, the order in which the actuating pieces 821, 822, 823, and 824 are placed is not limited to that shown in FIG. In the embodiment, the actuating pieces 822 and 823 with relatively frequently used 3 and 5 actuating area units are placed in the middle. Of course, this position can also be changed to 8 or 10 actuating areas with high viscosity or large flow requirements. The actuator pieces 824 and 821 of the unit.

请参阅图9A及图9B,其中图9A系为本发明第五较佳实施例的压电喷墨头的切割示意图,图9B系为本发明第五较佳实施例压电喷墨头致动片的切割方法的流程图,如图9A所示,本实施例的压电喷墨头9系为一多层结构,同样系由一振动板及多个板件(未图标)堆栈设置而成,且压电喷墨头9具有一供液流道71以及多个喷墨单元911、912、913、914,其中,于本实施例中,该多个喷墨单元911、912、913、914系分布于四个不同象限中且相互对称设置,喷墨单元911、912、913、914分别具有一压力腔体(未图示),且压电喷墨头9更包含具有该多个喷孔93的一喷孔板(未图标),于喷墨单元911、912、913、914分别对应设置一喷孔93,且喷墨单元911、912、913、914的压力腔体均与供液流道71相连通,使喷印流体可由供液流道71流入每一压力腔体中,且于喷墨单元911、912、913、914的压力腔体处设置有一致动单元92,其中,致动单元92系可由但不限由锆钛酸铅(Lead Zirconate Titanate,PZT)压电材料所形成,可藉由一切割设备对致动单元92进行切割,使致动单元92对应于每一喷墨单元911、912、913、914的压力腔体的处分别产生一致动片,即第9A及9C图所示的致动片921、922、923、924,致动片921、922、923、924分别形成于喷墨单元911、912、913、914的压力腔体上并排列于不同象限且呈相互对应设置,又各致动片921、922、923、924其尺寸的长宽比例为2或以下,并选择性地接收一驱动信号V而动作,且各喷孔93分别形成于对应致动片921、922、923、924概呈置中的相对位置。Please refer to FIG. 9A and FIG. 9B, wherein FIG. 9A is a schematic diagram of the cutting of the piezoelectric inkjet head of the fifth preferred embodiment of the present invention, and FIG. 9B is the actuation of the piezoelectric inkjet head of the fifth preferred embodiment of the present invention. The flow chart of the sheet cutting method, as shown in Figure 9A, the piezoelectric inkjet head 9 of the present embodiment is a multi-layer structure, which is also formed by stacking a vibrating plate and a plurality of plates (not shown). , and the piezoelectric inkjet head 9 has a liquid supply channel 71 and a plurality of inkjet units 911, 912, 913, 914, wherein, in this embodiment, the plurality of inkjet units 911, 912, 913, 914 They are distributed in four different quadrants and arranged symmetrically with each other. The inkjet units 911, 912, 913, and 914 each have a pressure chamber (not shown), and the piezoelectric inkjet head 9 further includes the plurality of nozzle holes. An orifice plate (not shown) of 93 is provided with an orifice 93 corresponding to the inkjet units 911, 912, 913, and 914 respectively, and the pressure chambers of the inkjet units 911, 912, 913, and 914 are all connected to the liquid supply flow. The channels 71 are connected so that the printing fluid can flow into each pressure chamber from the liquid supply channel 71, and an actuation unit 92 is arranged at the pressure chambers of the inkjet units 911, 912, 913, 914, wherein the The actuating unit 92 can be formed by but not limited to lead zirconate titanate (Lead Zirconate Titanate, PZT) piezoelectric material, and the actuating unit 92 can be cut by a cutting device, so that the actuating unit 92 corresponds to each nozzle. The places of the pressure chambers of the ink units 911, 912, 913, 914 respectively produce an actuating sheet, namely the actuating sheet 921, 922, 923, 924 shown in Figures 9A and 9C, the actuating sheet 921, 922, 923, 924 are respectively formed on the pressure chambers of the inkjet units 911, 912, 913, 914 and are arranged in different quadrants and are arranged corresponding to each other, and the aspect ratio of the size of each actuating piece 921, 922, 923, 924 is 2 or below, and selectively receive a driving signal V to act, and each nozzle hole 93 is respectively formed in the relative position corresponding to the actuating piece 921 , 922 , 923 , 924 which is roughly centered.

其中,各压力腔体的体积与致动片921、922、923、924的尺寸及各喷孔93的孔径大致成比例关系,借此,各致动片921、922、923、924选择性接收驱动信号V,驱动信号V依各喷孔93的孔径与液滴特性调整,以驱动该多个致动片921、922、923、924以多个频率动作,使喷孔93喷印出不同尺寸与不同黏度的液滴。Wherein, the volume of each pressure chamber is roughly proportional to the size of the actuating pieces 921, 922, 923, 924 and the diameter of each nozzle hole 93, whereby each actuating piece 921, 922, 923, 924 selectively receives The driving signal V, the driving signal V is adjusted according to the aperture and droplet characteristics of each nozzle hole 93, so as to drive the multiple actuating pieces 921, 922, 923, 924 to operate at multiple frequencies, so that the nozzle holes 93 can print different sizes. Droplets with different viscosities.

请参阅图9A及9B,其中图9B系为本发明第五较佳实施例的压电喷墨头致动片的切割方法的流程图,如图所示,本实施例的压电喷墨头致动片的切割方法系包含下列步骤:首先,提供压电喷墨头9,其系具有一供液流道71以及多个喷墨单元911、912、913、914,其中每一个喷墨单元911、912、913、914分别具有与供液流道71相连通的一压力腔体(如步骤S91所示),且于本实施例中,该多个喷墨单元911、912、913、914系分布于四个不同象限中且相互对称设置,接着,于喷墨单元911、912、913、914的压力腔体上方设置一致动单元92,致动单元92包含多个致动片921、922、923、924,且致动片921、922、923、924分别形成于喷墨单元911、912、913、914的压力腔体上,并选择性地接收驱动信号V而动作(如步骤S92所示)。Please refer to FIGS. 9A and 9B, wherein FIG. 9B is a flow chart of the cutting method of the piezoelectric inkjet head actuating sheet of the fifth preferred embodiment of the present invention. As shown in the figure, the piezoelectric inkjet head of this embodiment The cutting method of the actuating sheet comprises the following steps: First, the piezoelectric inkjet head 9 is provided, which has a liquid supply channel 71 and a plurality of inkjet units 911, 912, 913, 914, wherein each inkjet unit 911, 912, 913, 914 respectively have a pressure cavity communicated with the liquid supply channel 71 (as shown in step S91), and in this embodiment, the plurality of inkjet units 911, 912, 913, 914 They are distributed in four different quadrants and arranged symmetrically with each other. Then, an actuation unit 92 is arranged above the pressure chambers of the inkjet units 911, 912, 913, and 914. The actuation unit 92 includes a plurality of actuation pieces 921, 922 , 923, 924, and the actuating pieces 921, 922, 923, 924 are respectively formed on the pressure chambers of the inkjet units 911, 912, 913, 914, and selectively receive the driving signal V to act (as shown in step S92 Show).

后续则设定每一个喷墨单元911、912、913、914的致动面积、一第一方向的切割距离以及该多个喷墨单元911、912、913、914之间的间隔距离(如步骤S93所示),其中该第一方向可为但不限为X方向,且该多个喷墨单元911、912、913、914中上下相邻的该喷墨单元的该第一方向的切割距离系相等,如图9A所示的喷墨单元911及912之间系成上下关系设置,即以纵向排列的方式相互对称设置,因此喷墨单元911及912于X方向的切割距离X6系相等,另外,喷墨单元913及914之间同样系成上下关系设置,即以纵向排列的方式相互对称设置,因此喷墨单元913及914于X方向的切割距离X8系相等,至于该多个喷墨单元911、912、913、914之间的间隔距离即分别如图9A所示之间隔距离X7、Y12。另外,该多个喷墨单元911、912、913、914中喷墨单元914的致动面积为最大而喷墨单元911的致动面积为最小,因此喷墨单元914的致动面积与喷墨单元911的致动面积相乘系等于喷墨单元912、913的致动面积相乘。Then set the actuation area of each inkjet unit 911, 912, 913, 914, the cutting distance in a first direction and the distance between the plurality of inkjet units 911, 912, 913, 914 (as in step S93), wherein the first direction can be but not limited to the X direction, and the cutting distance in the first direction of the vertically adjacent inkjet units among the plurality of inkjet units 911, 912, 913, 914 The systems are equal, and the inkjet units 911 and 912 shown in FIG. 9A are arranged in a vertical relationship, that is, arranged symmetrically to each other in a longitudinal arrangement, so the cutting distance X6 of the inkjet units 911 and 912 in the X direction is equal. In addition, the inkjet units 913 and 914 are also arranged in a vertical relationship, that is, they are symmetrically arranged in a vertical arrangement, so the cutting distance X8 of the inkjet units 913 and 914 in the X direction is equal. As for the plurality of inkjet units The distances between the units 911 , 912 , 913 , and 914 are the distances X7 and Y12 as shown in FIG. 9A . In addition, among the plurality of inkjet units 911, 912, 913, 914, the actuation area of the inkjet unit 914 is the largest and the actuation area of the inkjet unit 911 is the smallest, so the actuation area of the inkjet unit 914 and the inkjet unit The multiplication of the actuation areas of the unit 911 is equal to the multiplication of the actuation areas of the inkjet units 912,913.

接着,根据步骤S93所设定的每一个喷墨单元911、912、913、914的致动面积以及该第一方向的切割距离,即于X方向的切割距离X6、X8来计算每一个喷墨单元911、912、913、914于第二方向的切割距离,其中该第二方向可为但不限为Y方向,而且该多个喷墨单元911、912、913、914中左右相邻的该喷墨单元的该第二方向的切割距离系相等,且该多个喷墨单元911、912、913、914中最大的致动面积与最小的致动面积相乘系等于其它致动面积相乘(如步骤S94所示),如图9A所示的喷墨单元911及913之间系成左右关系设置,即以横向排列的方式相互对称设置,因此喷墨单元911及913于Y方向的切割距离Y13系相等,而喷墨单元912及914之间同样系成左右关系设置,即以横向排列的方式相互对称设置,因此喷墨单元912及914于Y方向的切割距离Y11系相等。Then, according to the actuation area of each inkjet unit 911, 912, 913, 914 set in step S93 and the cutting distance in the first direction, that is, the cutting distance X6, X8 in the X direction to calculate each inkjet The cutting distance of the units 911, 912, 913, 914 in the second direction, wherein the second direction can be but not limited to the Y direction, and the left and right adjacent of the plurality of inkjet units 911, 912, 913, 914 The cutting distances in the second direction of the inkjet units are equal, and the multiplication of the largest actuation area and the smallest actuation area among the plurality of inkjet units 911, 912, 913, 914 is equal to the multiplication of other actuation areas (As shown in step S94), the inkjet units 911 and 913 as shown in FIG. The distance Y13 is equal, and the inkjet units 912 and 914 are also arranged in a left-right relationship, that is, they are symmetrically arranged in a horizontal arrangement, so the cutting distance Y11 of the inkjet units 912 and 914 in the Y direction is equal.

后续则可于该压电喷墨头9上标示多个定位记号75,例如:以划线方式标示呈现L型的定位记号75,以将致动单元92固设于该多个定位记号75所形成的范围内,以使致动单元92可对应设置于多个喷墨单元911、912、913、914的压力腔体上方(如步骤S95所示),当然,本发明致动单元92的定位方式并不局限于以划线方式标示定位记号75来实施,且定位记号75并不局限为L型,任何可达到使致动单元92固设于于多个喷墨单元911、912、913、914的压力腔体上方的方式均为本发明所保护的范围。Subsequently, a plurality of positioning marks 75 can be marked on the piezoelectric inkjet head 9, for example, an L-shaped positioning mark 75 can be marked in a scribed manner, so that the actuating unit 92 can be fixed on the position of the plurality of positioning marks 75. within the range formed so that the actuating unit 92 can be correspondingly arranged above the pressure chambers of a plurality of inkjet units 911, 912, 913, 914 (as shown in step S95), of course, the positioning of the actuating unit 92 of the present invention The method is not limited to marking the positioning mark 75 in a scribing manner, and the positioning mark 75 is not limited to an L shape. The methods above the pressure chamber of 914 are all within the protection scope of the present invention.

接着,以一切割设备根据步骤S93所设定的该多个喷墨单元911、912、913、914于第一方向的切割距离、该多个喷墨单元911、912、913、914之间的间隔距离,以及步骤S94计算所得的每一个喷墨单元911、912、913、914于一第二方向的切割距离对该致动单元92进行切割,即根据喷墨单元911、912于X方向的切割距离62,喷墨单元913、914于X方向的切割距离X8,该多个喷墨单元911、912、913、914之间的间隔距离X7、Y12,以及喷墨单元911、913于Y方向的切割距离Y13,喷墨单元912、914于Y方向的切割距离Y11来对该致动单元92进行切割,以使致动单元92分别于每一该压力腔体的处对应形成一致动片,即第9A及9C图所示的致动片921、922、923、924,并使各该喷孔分别形成于对应各该致动片概呈置中的相对位置(如步骤S96所示),借此,各压力腔体分别具预定面积的致动片921、922、923、924,并选择性地接收驱动信号V动作,驱动信号V依各喷孔93的孔径与液滴特性调整,以驱动致动片921、922、923、924以多个频率动作,使致动片921、922、923、924对应不同尺寸与不同黏度的液滴而选择动作。Next, using a cutting device according to the cutting distance of the plurality of inkjet units 911, 912, 913, 914 in the first direction set in step S93, the distance between the plurality of inkjet units 911, 912, 913, 914 The separation distance, and the cutting distance of each inkjet unit 911, 912, 913, 914 calculated in step S94 in a second direction cut the actuating unit 92, that is, according to the inkjet unit 911, 912 in the X direction The cutting distance 62, the cutting distance X8 of the inkjet units 913, 914 in the X direction, the distance X7, Y12 between the plurality of inkjet units 911, 912, 913, 914, and the distances X7, Y12 between the inkjet units 911, 913 in the Y direction The cutting distance Y13 of the inkjet unit 912, 914 cuts the actuating unit 92 at the cutting distance Y11 in the Y direction, so that the actuating unit 92 forms an actuating sheet correspondingly at each of the pressure chambers, That is, the actuating pieces 921, 922, 923, 924 shown in Figures 9A and 9C, and each of the injection holes is formed in a relative position corresponding to each of the actuating pieces, which is roughly centered (as shown in step S96), In this way, each pressure chamber has an actuating piece 921, 922, 923, 924 with a predetermined area, and selectively receives the driving signal V to act, and the driving signal V is adjusted according to the aperture and droplet characteristics of each nozzle hole 93, so as to The actuating pieces 921 , 922 , 923 , 924 are driven to move at multiple frequencies, so that the actuating pieces 921 , 922 , 923 , 924 act selectively corresponding to liquid droplets of different sizes and different viscosities.

于本实施例中,可根据切割距离Y11、Y13及间隔距离Y12于致动单元92上标示切割线C1~C4,以及根据切割距离X6、X8及间隔距离X7于致动单元92上标示切割线C5~C8,使晶圆切割设备沿着切割线C1~C8对致动单元92进行切割,即可于致动单元92上切割形成致动片921、922、923、924,当然晶圆切割设备切割的顺序并不局限于依照切割线C1~C8的顺序进行切割,可依实据需求变更切割顺序,且本发明可使用的切割方式亦不局限于以划线方式标示切割线来实施,任何可根据多个喷墨单元911、912、913、914于第一方向的切割距离、多个喷墨单元911、912、913、914之间的间隔距离,以及每一该多个喷墨单元911、912、913、914于一第二方向的切割距离而于致动单元92上切割形成致动片921、922、923、924的方式均为本发明所保护的范围。In this embodiment, the cutting lines C1-C4 can be marked on the actuating unit 92 according to the cutting distances Y11, Y13 and the spacing distance Y12, and the cutting lines can be marked on the actuating unit 92 according to the cutting distances X6, X8 and the spacing distance X7 C5-C8, make the wafer cutting equipment cut the actuating unit 92 along the cutting lines C1-C8, that is, cut and form the actuating pieces 921, 922, 923, 924 on the actuating unit 92, of course the wafer cutting equipment The order of cutting is not limited to cutting according to the order of cutting lines C1-C8, the cutting order can be changed according to actual needs, and the cutting method that can be used in the present invention is not limited to marking the cutting line by scribing. According to the cutting distance of the plurality of inkjet units 911, 912, 913, 914 in the first direction, the distance between the plurality of inkjet units 911, 912, 913, 914, and each of the plurality of inkjet units 911, 912 , 913 , 914 cut the actuating unit 92 with a cutting distance in a second direction to form the actuating pieces 921 , 922 , 923 , 924 are within the protection scope of the present invention.

其中,本实施例所使用的切割设备可为但不限为一晶圆切割设备,例如:激光机台,最后,将致动单元92中除了致动片即图9A所示的致动片921、922、923、924以外的废料移除即可形成如图9C所示的压电喷墨头9。Wherein, the cutting equipment used in this embodiment can be but not limited to a wafer cutting equipment, such as: a laser machine, finally, except the actuating piece in the actuating unit 92, that is, the actuating piece 921 shown in FIG. 9A , 922 , 923 , and 924 are removed to form the piezoelectric inkjet head 9 as shown in FIG. 9C .

于本实施例中,致动片921、922、923、924可为不同尺寸并分布于四个不同象限中且相互对称设置,且致动片921、922、923、924中上下相邻的致动片的第一方向的尺寸大小系相同、左右相邻的致动片的第二方向的尺寸大小系相同以及最大的致动面积与最小的致动面积相乘系等于其它致动面积相乘,因此可使用一般的芯片切割设备来对致动单元92进行割出,可降低制造成本外,其废料也较第一实施例使用激光切割制程来得少,而且本实施例的配置另有空间利用最佳化的好处,以使各个喷墨单元之间的间隔距离因此可较第二较佳实施例来得大,更能降低流体于压力腔体之间不当互通(cross-talk)的情况发生。举例而言:若图1A所示的致动片12的致动面积为10个单位,则图9A所示的致动片921、922、923、924的致动面积可分别为约3、5、7.5、12.5个单位,而其X、Y方向尺寸则如下列表二所示,满足了3及12.5个单位面积相乘等于5及7.5个单位面积相乘的关系。同样地,其致动片921、922、923、924的长宽比皆控制在约2或以下,以免致动片921、922、923、924过长而影响动作。In this embodiment, the actuating pieces 921, 922, 923, 924 can be of different sizes and distributed in four different quadrants and arranged symmetrically with each other, and the actuating pieces 921, 922, 923, 924 adjacent up and down The size of the first direction of the moving plate is the same, the size of the second direction of the left and right adjacent actuating plates is the same, and the multiplication of the largest actuating area and the smallest actuating area is equal to the multiplication of other actuating areas Therefore, general chip cutting equipment can be used to cut out the actuating unit 92, which can reduce the manufacturing cost, and its waste is less than the laser cutting process used in the first embodiment, and the configuration of this embodiment has another space to utilize The advantage of optimization is that the distance between the inkjet units can be larger than that of the second preferred embodiment, and the occurrence of improper cross-talk between fluids and pressure chambers can be reduced. For example: if the actuation area of the actuation plate 12 shown in FIG. 1A is 10 units, the actuation areas of the actuation plates 921, 922, 923, and 924 shown in FIG. 9A can be about 3, 5 units, respectively. , 7.5, and 12.5 units, and the dimensions in the X and Y directions are shown in Table 2 below, which satisfies the relationship that the multiplication of 3 and 12.5 unit areas equals the multiplication of 5 and 7.5 unit areas. Similarly, the aspect ratios of the actuating pieces 921, 922, 923, 924 are all controlled at about 2 or less, so as to prevent the actuating pieces 921, 922, 923, 924 from being too long and affecting the action.

表二Table II

而每一喷墨单元911、912、913、914的喷孔93的孔径大致与对应的致动片921、922、923、924的尺寸及压力腔体的面积成比例关系,即致动片921、922、923、924所对应的喷孔93的孔径可分别为例如30、50、75、120um,当然,致动片921、922、923、924的致动面积以及所对应的喷孔93的孔径大小并不以此为限,可根据实际的需求而改变。另外,每个致动片921、922、923、924皆对应搭配一个喷孔93,且喷孔93一般相对于其所对应的致动片921、922、923、924呈对称或置中,而此情况下各个喷孔93之间的距离通常并不相等。因此,若压电喷墨头9有补点或多喷孔93同时喷印的考虑,也可将喷孔93之间的距离设计成相等,即将图9A所示的喷孔93位置改成图9C所示的位置,相邻两喷孔93之间的距离可为4064um,但不以此为限。And the aperture of the nozzle hole 93 of each inkjet unit 911, 912, 913, 914 is roughly proportional to the size of the corresponding actuating piece 921, 922, 923, 924 and the area of the pressure chamber, that is, the actuating piece 921 , 922, 923, 924 corresponding to the hole diameter of the nozzle hole 93 can be, for example, 30, 50, 75, 120um respectively, of course, the actuation area of the actuation piece 921, 922, 923, 924 and the corresponding nozzle hole 93 The aperture size is not limited thereto, and can be changed according to actual requirements. In addition, each actuating piece 921, 922, 923, 924 is correspondingly matched with a nozzle hole 93, and the nozzle hole 93 is generally symmetrical or centered with respect to the corresponding actuating piece 921, 922, 923, 924, and In this case, the distances between the individual nozzle holes 93 are generally not equal. Therefore, if the piezoelectric inkjet head 9 has the consideration of supplementing dots or multi-jetholes 93 simultaneous printing, the distance between the nozzle holes 93 can also be designed to be equal, that is, the position of the nozzle holes 93 shown in FIG. 9A is changed to In the position shown in 9C, the distance between two adjacent nozzle holes 93 may be 4064um, but it is not limited thereto.

此外,致动片921、922、923、924摆放的顺序并不局限于图9C所示的态样,可依照实际喷印的需求来调整。In addition, the arrangement order of the actuating pieces 921 , 922 , 923 , 924 is not limited to that shown in FIG. 9C , and can be adjusted according to actual printing requirements.

再者,本发明压电喷墨头上所配置的致动片数量并不局限于4个,亦可配置4个以上或是以下,可根据压电喷墨头的空间及致动片的面积以及其X、Y方向尺寸调配状况来调整。Furthermore, the number of actuating pieces configured on the piezoelectric inkjet head of the present invention is not limited to four, and more than four or less can also be configured, depending on the space of the piezoelectric inkjet head and the area of the actuating pieces. And its X, Y direction size distribution status to adjust.

综上所述,本发明的具有多个致动片的压电喷墨头藉由设置单一压力腔体及多个致动片,并根据不同需求来调整驱动信号以同时驱动其中一个或多个致动片,可达到喷印不同尺寸、不同黏度的液滴以及增加喷墨频率等功效,在喷印低黏度液滴时可藉由调整驱动信号的电压值。To sum up, the piezoelectric inkjet head with multiple actuating slices of the present invention sets a single pressure cavity and multiple actuating slices, and adjusts the driving signal according to different requirements to simultaneously drive one or more of them. The actuating sheet can achieve the effects of printing droplets of different sizes and different viscosities and increasing the inkjet frequency. When printing low-viscosity droplets, the voltage value of the driving signal can be adjusted.

再者,藉由本发明的喷墨头压电致动单元的切割方法主要系利用设定每一个喷墨单元的致动面积,以使本发明的压电喷墨头中每一喷墨单元设置一压力腔体的处分别产生一致动片,可根据不同喷印需求来选择驱动合适的致动片以喷印不同尺寸、不同黏度的液滴,本发明可灵活选择驱动合适的致动片以及以适当的驱动信号电压值来达到目的,例如在喷印低黏度液滴时只需选择致动面积较小的致动片来运作并降低驱动电压的电压值即可符合需求,而采用降低驱动信号的电压值的方式更可避免不必要的能量浪费,以解决习知压电喷墨头配置一个大尺寸的致动片以适用于各种不同黏度的流体喷印,但需要以较大的驱动信号才能够驱动致动片运作,使得在喷印低黏度液滴时过大的驱动信号会造成多余的能量浪费等缺点。Furthermore, the cutting method of the piezoelectric actuator unit of the inkjet head of the present invention mainly utilizes setting the actuation area of each inkjet unit, so that each inkjet unit in the piezoelectric inkjet head of the present invention is set An actuating sheet is generated at each pressure chamber, and the appropriate actuating sheet can be selected and driven according to different printing requirements to print droplets of different sizes and different viscosities. The present invention can flexibly select and drive the appropriate actuating sheet and To achieve the goal with an appropriate drive signal voltage value, for example, when printing low-viscosity droplets, you only need to select the actuation piece with a smaller actuation area to operate and reduce the voltage value of the drive voltage to meet the requirements. The way of the voltage value of the signal can avoid unnecessary waste of energy, so as to solve the problem that the conventional piezoelectric inkjet head is equipped with a large-sized actuating sheet to be suitable for various fluids with different viscosities. Only the driving signal can drive the actuating plate to operate, so that when the low-viscosity liquid droplets are printed, an excessively large driving signal will cause redundant energy waste and other disadvantages.

本发明得由熟知此技术的人士任施匠思而为诸般修饰,然皆不脱如附申请专利范围所欲保护者。The present invention can be modified in various ways by those who are familiar with this technology, but all of them do not break away from the intended protection of the scope of the appended patent application.

Claims (17)

1. a piezoelectric ink jet head, comprise at least one ink jet unit and a feed flow runner, this ink jet unit comprises a pressure cavity and an oscillating plate, wherein, and this pressure cavity and this feed flow flow passage, this oscillating plate is adjacent to this pressure cavity;
One jet orifice plate, this jet orifice plate correspondence respectively this ink jet unit forms a spray orifice respectively, and this spray orifice and this pressure cavity and this feed flow flow passage, in order to spray printing drop; And
One actuating unit, is arranged on this oscillating plate, and corresponding with this pressure cavity, this actuating unit comprise to should pressure cavity cutting formed multiple braking plates, respectively this braking plate receives a drive singal action respectively;
Wherein, this drive singal of the selective reception of each braking plate, to drive the plurality of braking plate with multiple frequency action, this drive singal adjusts according to the aperture of this spray orifice and drop characteristics, makes this spray orifice spray printing go out the drop of different size and different viscosity.
2. piezoelectric ink jet head as claimed in claim 1, it is characterized in that, the plurality of braking plate comprises one first braking plate and one second braking plate, and this first braking plate and this second braking plate one of them receive separately this drive singal, to control this braking plate action single.
3. piezoelectric ink jet head as claimed in claim 1, it is characterized in that, the plurality of braking plate comprises one first braking plate and one second braking plate, and this first braking plate and this second braking plate receive this drive singal of homophase displacement simultaneously, becomes homophase displacement action to make both.
4. piezoelectric ink jet head as claimed in claim 1, it is characterized in that, the plurality of braking plate comprises one first braking plate and one second braking plate, and this first braking plate and this second braking plate receive this drive singal of anti-phase displacement simultaneously, becomes anti-phase displacement action to make both.
5. piezoelectric ink jet head as claimed in claim 1, it is characterized in that, the plurality of braking plate comprises one first braking plate and one second braking plate, and this first braking plate and this second braking plate receive this drive singal in turn, becomes action in turn to make both.
6. piezoelectric ink jet head as claimed in claim 1, it is characterized in that, the plurality of braking plate comprises one first braking plate, one second braking plate and one the 3rd braking plate, this second braking plate is positioned between this first braking plate and the 3rd braking plate, this spray orifice correspondence is made to be arranged at this second braking plate, and this first braking plate, this second braking plate and the 3rd braking plate one of them receive separately this drive singal, to control this braking plate single in vibration area action.
7. piezoelectric ink jet head as claimed in claim 1, it is characterized in that, the plurality of braking plate comprises one first braking plate, one second braking plate and one the 3rd braking plate, this second braking plate is positioned between this first braking plate and the 3rd braking plate, this spray orifice correspondence is made to be arranged at this second braking plate, and this first braking plate, this second braking plate and the 3rd braking plate receive this drive singal of homophase displacement, become homophase displacement action to make three simultaneously.
8. piezoelectric ink jet head as claimed in claim 1, it is characterized in that, the plurality of braking plate comprises one first braking plate, one second braking plate and one the 3rd braking plate, this second braking plate is positioned between this first braking plate and the 3rd braking plate, this spray orifice correspondence is made to be arranged at this second braking plate, and this first braking plate, this second braking plate and the 3rd braking plate wherein two receive this drive singal, to make the several braking plate action of part in the plurality of braking plate.
9. piezoelectric ink jet head as claimed in claim 1, it is characterized in that, the plurality of braking plate comprises one first braking plate, one second braking plate and one the 3rd braking plate, this second braking plate is positioned between this first braking plate and the 3rd braking plate, this spray orifice correspondence is made to be arranged at this second braking plate, and this first braking plate, this second braking plate and the 3rd braking plate receive this drive singal simultaneously, make to become anti-phase displacement action between two adjacent braking plates.
10. piezoelectric ink jet head as claimed in claim 1, it is characterized in that, the plurality of braking plate comprises one first braking plate, one second braking plate and one the 3rd braking plate, this second braking plate is positioned between this first braking plate and the 3rd braking plate, this spray orifice correspondence is made to be arranged at this second braking plate, and this first braking plate, this second braking plate and the 3rd braking plate receive this drive singal in turn, become action in turn to make three.
11. piezoelectric ink jet heads as claimed in claim 1, is characterized in that, this spray orifice aperture is between 30 to 120um, and the magnitude of voltage of this drive singal is better with +/-30 volts.
12. 1 kinds of piezoelectric ink jet heads, it comprises:
Multiple ink jet unit and a feed flow runner, respectively this ink jet unit has the pressure cavity be connected with this feed flow runner respectively;
One jet orifice plate, this jet orifice plate correspondence respectively this ink jet unit forms a spray orifice respectively, in order to spray printing drop; And
One actuating unit, this actuating unit comprises multiple braking plates that cutting is formed, respectively this braking plate correspondence respectively this pressure cavity respectively, and receives a drive singal action respectively;
Wherein, the roughly proportional relation in aperture of the volume of each pressure cavity and the size of this braking plate and this spray orifice, whereby, respectively this drive singal of the selective reception of this braking plate, this drive singal adjusts according to the aperture of this spray orifice and drop characteristics, to drive the plurality of braking plate with multiple frequency action, this spray orifice spray printing is made to go out the drop of different size and different viscosity.
13. piezoelectric ink jet heads as claimed in claim 12, is characterized in that, this actuating unit comprises with the plurality of braking plate of laser cutting device cutting formation.
14. 1 kinds of piezoelectric ink jet heads, it comprises:
Multiple ink jet unit and a feed flow runner, respectively this ink jet unit has the pressure cavity be connected with this feed flow runner respectively, and respectively this pressure cavity equidistant and other direction Unequal distance arrangement with a direction equal length;
One jet orifice plate, this jet orifice plate correspondence respectively this ink jet unit forms a spray orifice respectively, in order to spray printing drop; And
One actuating unit, this actuating unit comprises multiple braking plates that cutting is formed, respectively this braking plate respectively correspondence be arranged at respectively this pressure cavity place, and respectively the length-width ratio of this braking plate is less than 2, to receive a drive singal action respectively;
Wherein, the respectively roughly proportional relation in the aperture of the volume of this pressure cavity and the size of this braking plate and this spray orifice, whereby, respectively this drive singal of the selective reception of this braking plate, this drive singal adjusts according to the aperture of this spray orifice and drop characteristics, to drive the plurality of braking plate with multiple frequency action, this spray orifice spray printing is made to go out the drop of different size and different viscosity.
15. piezoelectric ink jet heads as claimed in claim 14, is characterized in that, this actuating unit comprises the plurality of braking plate formed with wafer cutting equipment cutting.
16. 1 kinds of piezoelectric ink jet heads, it comprises:
Multiple ink jet unit and a feed flow runner, respectively this ink jet unit has the pressure cavity be connected with this feed flow runner respectively;
One jet orifice plate, this jet orifice plate correspondence respectively this ink jet unit forms a spray orifice respectively, in order to spray printing drop; And
One actuating unit, this actuating unit comprises multiple braking plates that cutting is formed, respectively this braking plate respectively correspondence be arranged at each pressure cavity and be arranged in different quadrant and arrange in mutually corresponding, respectively the Aspect Ratio of this its size of braking plate is 2 or following again, to receive a drive singal action respectively;
Wherein, the respectively roughly proportional relation in the aperture of the volume of this pressure cavity and the size of this braking plate and this spray orifice, whereby, respectively this drive singal of the selective reception of this braking plate, this drive singal adjusts according to the aperture of this spray orifice and drop characteristics, to drive the plurality of braking plate with multiple frequency action, this spray orifice spray printing is made to go out the drop of different size and different viscosity.
17. piezoelectric ink jet heads as claimed in claim 16, is characterized in that, this actuating unit comprises with the plurality of braking plate of wafer cutting equipment cutting formation.
CN201210442799.0A 2012-11-08 2012-11-08 Piezoelectric ink jet head Expired - Fee Related CN103802476B (en)

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Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1406753A (en) * 2001-07-13 2003-04-02 伊利诺斯器械工程公司 Electrode arrangement form for piezoelectric ink-jet printer
CN1925985A (en) * 2004-02-26 2007-03-07 Xaar科技有限公司 Droplet deposition apparatus
CN1990244A (en) * 2005-12-27 2007-07-04 兄弟工业株式会社 Inkjet printer
CN102398419A (en) * 2010-09-08 2012-04-04 研能科技股份有限公司 Cutting method for ink jet head piezoelectric actuating unit

Family Cites Families (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP3991894B2 (en) * 2002-03-18 2007-10-17 セイコーエプソン株式会社 Piezoelectric actuator manufacturing method, liquid jet head manufacturing method, and actuator base member

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1406753A (en) * 2001-07-13 2003-04-02 伊利诺斯器械工程公司 Electrode arrangement form for piezoelectric ink-jet printer
CN1925985A (en) * 2004-02-26 2007-03-07 Xaar科技有限公司 Droplet deposition apparatus
CN1990244A (en) * 2005-12-27 2007-07-04 兄弟工业株式会社 Inkjet printer
CN102398419A (en) * 2010-09-08 2012-04-04 研能科技股份有限公司 Cutting method for ink jet head piezoelectric actuating unit

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