TW201634958A - Processing device - Google Patents
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- TW201634958A TW201634958A TW104114398A TW104114398A TW201634958A TW 201634958 A TW201634958 A TW 201634958A TW 104114398 A TW104114398 A TW 104114398A TW 104114398 A TW104114398 A TW 104114398A TW 201634958 A TW201634958 A TW 201634958A
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- 230000002093 peripheral effect Effects 0.000 claims abstract description 61
- 238000000034 method Methods 0.000 claims abstract description 22
- 238000005520 cutting process Methods 0.000 claims description 24
- 230000002452 interceptive effect Effects 0.000 abstract description 6
- 238000003754 machining Methods 0.000 description 8
- 239000010408 film Substances 0.000 description 7
- 239000000853 adhesive Substances 0.000 description 3
- 230000001070 adhesive effect Effects 0.000 description 3
- 238000004519 manufacturing process Methods 0.000 description 3
- 238000004080 punching Methods 0.000 description 3
- 239000004973 liquid crystal related substance Substances 0.000 description 2
- 239000011241 protective layer Substances 0.000 description 2
- 238000010030 laminating Methods 0.000 description 1
- 229920003002 synthetic resin Polymers 0.000 description 1
- 239000000057 synthetic resin Substances 0.000 description 1
- 239000010409 thin film Substances 0.000 description 1
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- Polarising Elements (AREA)
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- General Physics & Mathematics (AREA)
- Optics & Photonics (AREA)
- Jigs For Machine Tools (AREA)
Abstract
Description
本發明是關於對薄膜的層疊體等工件進行加工的加工裝置。 The present invention relates to a processing apparatus for processing a workpiece such as a laminate of a film.
作為液晶顯示器、行動電話及行動資訊終端等的顯示部分的結構而使用偏光板。 A polarizing plate is used as a structure of a display portion of a liquid crystal display, a mobile phone, and a mobile information terminal.
偏光板例如由偏光鏡和在偏光鏡的上下層疊的保護層構成,偏光鏡和保護層經由粘結劑、接著劑而層疊。偏光板為了使用於上述產品等,在將偏光板層疊多張的狀態下,透過基於刃形的沖孔加工等而切斷成規定的尺寸。 The polarizing plate is composed of, for example, a polarizer and a protective layer laminated on the upper and lower sides of the polarizer, and the polarizer and the protective layer are laminated via an adhesive and an adhesive. In order to use the above-mentioned product or the like, the polarizing plate is cut into a predetermined size by punching or the like by a blade shape in a state in which a plurality of polarizing plates are stacked.
當透過沖加工等將偏光板切斷時,粘結劑會從偏光板的切斷面(外周部)露出,而且在偏光板的加工中要求高尺寸精度的情況下,由於無法確保這樣的尺寸精度,因此在沖孔加工等之後,另行進行偏光板的切斷面的加工。 When the polarizing plate is cut by punching or the like, the adhesive is exposed from the cut surface (outer peripheral portion) of the polarizing plate, and when high dimensional accuracy is required in processing of the polarizing plate, such a size cannot be secured. Since the precision is made, the punched surface of the polarizing plate is separately processed after punching or the like.
然而,偏光板中使用於行動電話或智慧手機的偏光板要求尺寸為小型且以高尺寸精度進行加工。而且,關於這些偏光板,要求對切斷面的角部進行倒圓角加工、或使切斷面向內側凹陷等將切斷面形成為任意的形狀的加工。 However, a polarizing plate used in a polarizing plate for a mobile phone or a smart phone requires a small size and is processed with high dimensional accuracy. Further, in these polarizing plates, it is required to perform a process of forming a cut surface into an arbitrary shape by rounding the corner portion of the cut surface or by recessing the cut surface inward.
作為對偏光板的切斷面進行加工的裝置,在專利文獻1中公開了一種對切斷成矩形的層疊片的切斷面進行切削加工的切削加工裝置,該裝置具備:夾緊機構,將層疊多張層疊片而形成的被切削體固定;及切削構件,具有與被切削體的切斷面垂直的旋轉軸及向所述被切削體的切斷面側突出地設置的切削刃。 As an apparatus for processing a cut surface of a polarizing plate, Patent Document 1 discloses a cutting apparatus for cutting a cut surface of a laminated sheet cut into a rectangular shape, and the apparatus includes a clamping mechanism The workpiece to be formed by laminating a plurality of laminated sheets is fixed; and the cutting member has a rotation axis perpendicular to the cut surface of the workpiece and a cutting edge which is provided to protrude toward the cut surface side of the workpiece.
另外,在專利文獻2中公開了一種端面加工偏光板的製造方法,使用兩個切削旋轉體,對偏光板的層疊體的端面進行切削,該切削旋轉體具備:圓柱狀旋轉體,旋轉軸與偏光板的層疊體的應切削加工的端面平行,且與厚度方向平行或具有一定角度而延伸;及多個切削刃,沿著該圓柱狀旋轉體的側面的旋轉軸方向配置。 Further, Patent Document 2 discloses a method of manufacturing an end face processing polarizing plate in which an end surface of a laminated body of a polarizing plate is cut using two cutting rotating bodies, the cutting rotating body including a cylindrical rotating body, a rotating shaft and The end faces of the laminated body of the polarizing plate are parallel to each other and extend parallel to the thickness direction or at a constant angle; and the plurality of cutting edges are arranged along the rotation axis direction of the side surface of the cylindrical rotating body.
然而,專利文獻1記載的裝置由於其切削構件的形態,而無法對偏光板的切斷面的角部進行倒圓角加工,或將偏光板的切斷面加工成任意的形狀。而且,專利文獻1記載的裝置主要以使用於液晶顯示器等的比較大的偏光板為對象,因此對於行動電話或智慧手機用的小型的偏光板而言,無法進行尺寸精度高的加工。 However, in the device described in Patent Document 1, the corner portion of the cut surface of the polarizing plate cannot be rounded by the shape of the cutting member, or the cut surface of the polarizing plate can be processed into an arbitrary shape. Further, since the device described in Patent Document 1 is mainly used for a relatively large polarizing plate used for a liquid crystal display or the like, it is not possible to perform processing with high dimensional accuracy for a small polarizing plate for a mobile phone or a smart phone.
另外,在專利文獻2記載的製造方法中,在偏光板的切斷面上,能夠進行角部的切削,但是切削旋轉體相對於偏光板的前後或左右的尺寸來說比較大,無法進行精細的加工,因此無法對偏光板的切斷面的角部進行倒圓角加工、或者將偏光板的切斷面加工成任意的形狀。 Further, in the manufacturing method described in Patent Document 2, the cutting of the corner portion can be performed on the cut surface of the polarizing plate, but the size of the cutting rotating body with respect to the front, back, or left and right of the polarizing plate is relatively large, and fineness cannot be performed. Since the processing is performed, the corner portion of the cut surface of the polarizing plate cannot be rounded or the cut surface of the polarizing plate can be processed into an arbitrary shape.
而且,在專利文獻2記載的製造方法中,在對小型的 偏光板進行加工的情況下,對切削旋轉體進行支承的部分等比切削旋轉體更向裝置側突出,因此存在該部分等與對工件進行固定的固定部等的裝置的結構發生干涉而無法加工工件的可能性。 Further, in the manufacturing method described in Patent Document 2, it is small When the polarizing plate is processed, the portion that supports the cutting rotor and the like protrudes more toward the device than the cutting rotor. Therefore, the structure of the portion such as the fixing portion that fixes the workpiece interferes with the structure and cannot be processed. The possibility of the workpiece.
[專利文獻1]日本特開2005-224935號 [Patent Document 1] Japanese Patent Laid-Open No. 2005-224935
[專利文獻2]日本特開2012-203209號 [Patent Document 2] Japanese Patent Laid-Open No. 2012-203209
本發明之目的在於提供一種使對工件進行加工的加工部不與裝置的結構發生干涉而能夠以高尺寸精度將工件的外周部加工成任意的形狀的加工裝置。 An object of the present invention is to provide a processing apparatus capable of processing an outer peripheral portion of a workpiece into an arbitrary shape with high dimensional accuracy without causing a processed portion that processes the workpiece to interfere with the structure of the device.
對工件進行加工的加工裝置具備:第一加工部,具有:第一主軸,以z方向為旋轉軸而使工具旋轉;及第一工具,在與z方向平行的面上設有切削刃,且使前端朝向z方向的一方而安裝於第一主軸;第二加工部,具有:第二主軸,以z方向為旋轉軸而使工具旋轉;及第二工具,在與z方向平行的面上設有切削刃,且使前端朝向z方向的另一方而安裝於第二主軸;及固定裝置,在z方向上將工件夾持而固定。 The machining device for machining a workpiece includes: a first machining portion having a first main shaft that rotates a tool with a z-direction as a rotation axis; and a first tool having a cutting edge on a surface parallel to the z-direction, and The front end is attached to the first main shaft in the z direction, and the second processed portion has a second main shaft that rotates the tool in the z direction as a rotation axis, and a second tool that is disposed on a surface parallel to the z direction. There is a cutting edge, and the other end of the front end is attached to the second main shaft in the z direction; and the fixing device holds and fixes the workpiece in the z direction.
第一加工部及第二加工部的每一個與固定裝置能夠在與z方向正交的x方向及與x方向和z方向正交的y方向上相對移動。 Each of the first processed portion and the second processed portion can move relative to the fixed device in the x direction orthogonal to the z direction and the y direction orthogonal to the x direction and the z direction.
固定裝置具有從z方向的一方將工件固定的第一固定部和從z方向的另一方將工件固定的第二固定部,第一固定部及第二固定部中的雙方或一方能夠沿z方向移動。 The fixing device has a first fixing portion that fixes the workpiece from one of the z-directions and a second fixing portion that fixes the workpiece from the other of the z-directions, and both or one of the first fixing portion and the second fixing portion can be along the z direction mobile.
第一加工部及第二加工部透過旋轉的第一工具及第二工具的切削刃對從z方向觀察到的工件的外周部進行加工。 The first processed portion and the second processed portion process the outer peripheral portion of the workpiece viewed from the z direction through the rotating first tool and the cutting edge of the second tool.
第一加工部在工件的外周部的外周中的第一區域對工件的外周部進行加工的情況下,第一固定部位於第一加工部不干涉的區域,即第一不干涉區域。 When the first processing portion processes the outer peripheral portion of the workpiece in the first region of the outer circumference of the outer peripheral portion of the workpiece, the first fixing portion is located in a region where the first processing portion does not interfere, that is, the first non-interference region.
第二加工部在工件的外周部的外周中的第二區域對工件的外周部進行加工的情況下,第二固定部位於第二加工部不干涉的區域,即第二不干涉區域。 When the second processed portion processes the outer peripheral portion of the workpiece in the second region of the outer circumference of the outer peripheral portion of the workpiece, the second fixed portion is located in a region where the second processed portion does not interfere, that is, the second non-interference region.
假定第一加工部的第一工具沿著工件的目標形狀的外周部的外周在第一區域移動的情況下,第一不干涉區域能夠設為除了第一加工部移動的區域之外的區域。 Assuming that the first tool of the first processing portion moves along the outer circumference of the outer peripheral portion of the target shape of the workpiece in the first region, the first non-interference region can be set as the region other than the region in which the first processed portion moves.
而且,假定第二加工部的第二工具沿著工件的目標形狀的外周部的外周在第二區域移動的情況下,第二不干涉區域能夠設為除了第二加工部移動的區域之外的區域。 Further, assuming that the second tool of the second processed portion moves along the outer circumference of the outer peripheral portion of the target shape of the workpiece in the second region, the second non-interference region can be set to be other than the region where the second processed portion moves. region.
根據上述加工裝置,由於具備第一固定部及第二固定 部,因此能夠使第一加工部及第二加工部不與工件的固定裝置發生干涉,而高精度地加工工件的外周部。 According to the above processing apparatus, since the first fixing portion and the second fixing portion are provided Therefore, the first processed portion and the second processed portion can be processed with high precision without interfering with the fixing means of the workpiece.
另外,加工裝置能夠對工件的外周部的角部進行倒圓角加工,或者在工件的外周部形成凹陷等,將工件的外周部加工成任意的形狀。 Further, the processing apparatus can round the corner portion of the outer peripheral portion of the workpiece, or form a recess or the like on the outer peripheral portion of the workpiece, and machine the outer peripheral portion of the workpiece into an arbitrary shape.
10‧‧‧第一加工部 10‧‧‧First Processing Department
12‧‧‧第一主軸 12‧‧‧First spindle
14‧‧‧第一工具 14‧‧‧First tool
15‧‧‧切削刃 15‧‧‧ cutting edge
16‧‧‧第一馬達 16‧‧‧First motor
18‧‧‧第一加工部的支承部 18‧‧‧Support of the first processing department
20‧‧‧第二加工部 20‧‧‧ Second Processing Department
22‧‧‧第二主軸 22‧‧‧second spindle
24‧‧‧第二工具 24‧‧‧ second tool
25‧‧‧切削刃 25‧‧‧ cutting edge
26‧‧‧第二馬達 26‧‧‧second motor
28‧‧‧第二加工部的支承部 28‧‧‧Support section of the second processing section
30‧‧‧第一固定部(固定裝置) 30‧‧‧First fixed part (fixed device)
32‧‧‧第一工件固定部 32‧‧‧First workpiece fixing section
34‧‧‧第一支承部 34‧‧‧First support
36‧‧‧z方向軌道 36‧‧‧z direction orbit
40‧‧‧第二固定部(固定裝置) 40‧‧‧Second fixed part (fixed device)
42‧‧‧第二工件固定部 42‧‧‧Second workpiece fixing section
44‧‧‧第二支承部 44‧‧‧Second support
50‧‧‧z方向驅動裝置 50‧‧‧z direction drive
52‧‧‧桿 52‧‧‧ pole
54‧‧‧夾設部 54‧‧‧Clamping Department
60‧‧‧控制裝置 60‧‧‧Control device
70‧‧‧第一台車 70‧‧‧First car
72‧‧‧臂部 72‧‧‧ Arms
74‧‧‧y方向軌道 74‧‧‧y direction track
76‧‧‧y方向驅動裝置 76‧‧‧y direction drive
80‧‧‧第二台車 80‧‧‧ second car
82‧‧‧臂部 82‧‧‧arms
84‧‧‧y方向軌道 84‧‧‧y direction track
86‧‧‧y方向驅動裝置 86‧‧‧y direction drive
90‧‧‧第三台車 90‧‧‧ Third car
92‧‧‧柱部 92‧‧‧ Column Department
94‧‧‧底部 94‧‧‧ bottom
96‧‧‧x方向軌道 96‧‧‧x direction orbit
98‧‧‧x方向驅動裝置 98‧‧‧x direction drive
100‧‧‧外罩 100‧‧‧ Cover
110‧‧‧工件 110‧‧‧Workpiece
112‧‧‧工件的初始形狀 112‧‧‧The initial shape of the workpiece
114‧‧‧工件的目標形狀 114‧‧‧ target shape of the workpiece
116‧‧‧外周部 116‧‧‧The outer part
118‧‧‧外周 118‧‧‧Outer week
120‧‧‧第一區域 120‧‧‧First area
122‧‧‧第一不干涉區域 122‧‧‧First non-interference area
124‧‧‧第一干涉區域 124‧‧‧First interference area
130‧‧‧第二區域 130‧‧‧Second area
132‧‧‧第二不干涉區域 132‧‧‧Second non-interference area
134‧‧‧第二干涉區域 134‧‧‧Second interference area
第1圖是表示本發明的實施形態的加工裝置的俯視圖。 Fig. 1 is a plan view showing a processing apparatus according to an embodiment of the present invention.
第2圖是表示本發明的實施形態的加工裝置的一部分的前視圖。 Fig. 2 is a front elevational view showing a part of the processing apparatus according to the embodiment of the present invention.
第3圖是表示本發明的實施形態的加工裝置的一部分的側視圖。 Fig. 3 is a side view showing a part of the processing apparatus according to the embodiment of the present invention.
第4圖是將第3圖的固定裝置周邊放大的放大圖。 Fig. 4 is an enlarged plan view showing the periphery of the fixing device of Fig. 3.
第5圖是從上方觀察工件及第一工件固定部的模式圖。 Fig. 5 is a schematic view showing the workpiece and the first workpiece fixing portion viewed from above.
第6圖是從下方觀察工件及第二工件固定部的模式圖。 Fig. 6 is a schematic view of the workpiece and the second workpiece fixing portion viewed from below.
第7圖是從上方觀察第一不干涉區域的模式圖。 Fig. 7 is a schematic view of the first non-interference region as viewed from above.
第8圖是第7圖的VIII-VIII線端面圖。 Fig. 8 is an end view of the line VIII-VIII of Fig. 7.
第9圖是第7圖的IX-IX線端面圖。 Fig. 9 is an end view of the line IX-IX of Fig. 7.
第10圖是從下方觀察第二不干涉區域的模式圖。 Fig. 10 is a schematic view of the second non-interference region as viewed from below.
第11圖是第10圖的XI-XI線端面圖。 Fig. 11 is an end view of the XI-XI line of Fig. 10.
第12圖是第10圖的XII-XII線端面圖。 Fig. 12 is an end view of the XII-XII line of Fig. 10.
第13圖是從上方觀察利用第一加工部的第一工具進行的工件的加工狀況的模式圖。 Fig. 13 is a schematic view showing the processing state of the workpiece by the first tool of the first processed portion as viewed from above.
第14圖是從下方觀察利用第二加工部的第二工具進行的工件的加工狀況的模式圖。 Fig. 14 is a schematic view showing a state of processing of a workpiece by a second tool of the second processed portion as viewed from below.
第15圖是從上方觀察工件的加工狀況的模式圖。 Fig. 15 is a schematic view showing the processing state of the workpiece from above.
第16圖是從上方觀察工件的加工狀況的模式圖。 Fig. 16 is a schematic view showing the processing state of the workpiece from above.
以下,對本發明的實施形態的加工裝置進行說明。第1圖至第4圖示出本發明的實施形態的加工裝置。 Hereinafter, a processing apparatus according to an embodiment of the present invention will be described. Fig. 1 to Fig. 4 show a processing apparatus according to an embodiment of the present invention.
加工裝置具備外罩100、第一加工部10、第二加工部20、固定裝置30、40、控制裝置60。 The processing apparatus includes a cover 100, a first processed portion 10, a second processed portion 20, fixing devices 30 and 40, and a control device 60.
在以下的說明中,座標基本上基於三維正交座標(x,y,z)。x方向對應於左右方向,y方向對應於前後方向,z方向對應於上下方向。 In the following description, the coordinates are basically based on three-dimensional orthogonal coordinates (x, y, z). The x direction corresponds to the left and right direction, the y direction corresponds to the front and rear direction, and the z direction corresponds to the up and down direction.
由加工裝置加工的工件110沒有特別限定,但是在本實施形態中,是將從z方向觀察到的形狀為矩形形狀的薄膜沿z方向層疊多張而構成的薄膜的層疊體。作為矩形形狀的薄膜,可列舉例如偏光板。 The workpiece 110 processed by the processing apparatus is not particularly limited, but in the present embodiment, a laminate of a film in which a rectangular shape is observed in the z direction and a plurality of thin films are stacked in the z direction. As a film of a rectangular shape, a polarizing plate is mentioned, for example.
另外,在以下的說明中,工件110的外周部116是指工件110的外周的面,工件110的外周部116的外周118是指工件110的外周部116的周緣(外周的線)。在本實施形態中,工件110的外周部116對應於薄膜的層疊體的前後左右的4個側面。 In the following description, the outer peripheral portion 116 of the workpiece 110 refers to the outer peripheral surface of the workpiece 110, and the outer periphery 118 of the outer peripheral portion 116 of the workpiece 110 refers to the peripheral edge (the outer peripheral line) of the outer peripheral portion 116 of the workpiece 110. In the present embodiment, the outer peripheral portion 116 of the workpiece 110 corresponds to four front and rear side faces of the laminate of the film.
在外罩100中位於左側的與y方向平行的壁面上,上下設有兩個沿y方向延伸的一對y方向軌道74、74、84、84。在上下的一對y方向軌道74、74、84、84上分別以能夠沿y方向移動的方式安裝有第一台車70和第二台車80。而且,在外罩100上設有y方向驅動裝置76、86,以使第一台車70和第二台車80分別在y方向上移動。作為y方向驅動裝置76、86,例如,可以使用沿y方向軌道74、74、84、84延伸且分別安裝於第一台車70及第二台車80的滾珠絲杠、以及對各個滾珠絲杠進行驅動的馬達。 In the outer cover 100, on the left side wall surface parallel to the y direction, two upper and lower y-direction rails 74, 74, 84, 84 extending in the y direction are provided. The first carriage 70 and the second carriage 80 are attached to the pair of upper and lower y-direction rails 74, 74, 84, and 84 so as to be movable in the y direction. Further, y-direction driving devices 76, 86 are provided on the outer cover 100 to move the first carriage 70 and the second carriage 80 in the y direction, respectively. As the y-direction driving devices 76 and 86, for example, ball screws extending in the y-direction rails 74, 74, 84, and 84 and attached to the first bogie 70 and the second bogie 80, respectively, and the respective ball screws can be used. Driven motor.
第一台車70及第二台車80分別在右側的端部具備沿x方向延伸的臂部72、82。 Each of the first cart 70 and the second cart 80 has arm portions 72 and 82 extending in the x direction at the right end portion.
在第一台車70的臂部72的前端側的部分設有第一加工部的支承部18。而且,在第二台車80的臂部82的前端側的部分設有第二加工部的支承部28。 A support portion 18 of the first processed portion is provided at a portion on the distal end side of the arm portion 72 of the first cart 70. Further, a support portion 28 of the second processed portion is provided in a portion on the distal end side of the arm portion 82 of the second carriage 80.
第一加工部10向下地支承於第一加工部的支承部18。第一加工部10伴隨著第一台車70的移動而沿y方向移動。 The first processed portion 10 is supported downward by the support portion 18 of the first processed portion. The first processed portion 10 moves in the y direction in accordance with the movement of the first carriage 70.
第一加工部10具備第一主軸12、第一工具14、第一馬達16。 The first processing unit 10 includes a first main shaft 12, a first tool 14, and a first motor 16.
第一主軸12沿z方向具有旋轉軸,其前端部位於第一加工部10的下部。圓柱狀的第一工具14以軸與z方向平行且前端朝向下方的狀態安裝在第一主軸12的前端部。第一主軸12透過第一馬達16的驅動而以旋轉軸為中 心旋轉,伴隨於此,第一工具14旋轉。 The first main shaft 12 has a rotation axis in the z direction, and a front end portion thereof is located at a lower portion of the first processing portion 10. The cylindrical first tool 14 is attached to the front end portion of the first main shaft 12 in a state where the shaft is parallel to the z direction and the front end faces downward. The first spindle 12 is driven by the first motor 16 with the rotation axis as the middle The heart rotates, and along with this, the first tool 14 rotates.
此外,第一加工部10包括上述的第一加工部的支承部18。 Further, the first processed portion 10 includes the support portion 18 of the first processed portion described above.
第二加工部20向上地支承於第二加工部的支承部28。第二加工部20伴隨著第二台車80的移動而沿y方向移動。 The second processed portion 20 is supported upward by the support portion 28 of the second processed portion. The second processed portion 20 moves in the y direction in accordance with the movement of the second carriage 80.
第二加工部20具備第二主軸22、第二工具24、第二馬達26。 The second processing unit 20 includes a second main shaft 22 , a second tool 24 , and a second motor 26 .
第二主軸22沿z方向具有旋轉軸,其前端部位於第二加工部20的上部。圓柱狀的第二工具14以軸與z方向平行且前端朝向上方的狀態安裝於第二主軸22的前端部。第二主軸22透過第二馬達26的驅動而以旋轉軸為中心旋轉,伴隨於此,第二工具24旋轉。 The second main shaft 22 has a rotating shaft in the z direction, and a front end portion thereof is located at an upper portion of the second processed portion 20. The cylindrical second tool 14 is attached to the front end portion of the second main shaft 22 in a state where the shaft is parallel to the z direction and the front end faces upward. The second main shaft 22 is rotated about the rotation axis by the driving of the second motor 26, and accordingly, the second tool 24 rotates.
第二加工部20是與第一加工部10相同的結構,但是方向相差180°。 The second processed portion 20 has the same configuration as the first processed portion 10, but the directions are different by 180°.
此外,第二加工部20包括上述的第二加工部的支承部28。 Further, the second processed portion 20 includes the support portion 28 of the second processed portion described above.
第一工具14及第二工具24為圓柱狀,至少在與z方向平行的面、即側面具有切削刃15、25。第一工具14及第二工具24的直徑比工件110的x方向及y方向上的長度小。 The first tool 14 and the second tool 24 have a cylindrical shape, and have cutting edges 15, 25 at least on a surface parallel to the z direction, that is, a side surface. The diameters of the first tool 14 and the second tool 24 are smaller than the lengths of the workpiece 110 in the x direction and the y direction.
第一工具14及第二工具24一邊以z方向為旋轉軸旋轉,一邊利用側面的切削刃15、25對工件110的外周部116進行加工。 The first tool 14 and the second tool 24 rotate the outer peripheral portion 116 of the workpiece 110 by the cutting edges 15 and 25 on the side surface while rotating in the z direction.
作為第一工具14及第二工具24,可以使用例如立銑刀。 As the first tool 14 and the second tool 24, for example, an end mill can be used.
然而,加工裝置在工件110為薄膜的層疊體的情況下,由於工具的強度等的問題而需要限制第一工具14及第二工具24的長度,因此與以往的裝置或方法相比,一次能夠加工的薄膜的層疊體的層疊高度降低,存在加工效率下降的可能性。 However, in the case where the workpiece 110 is a laminate of the film, the processing tool needs to limit the lengths of the first tool 14 and the second tool 24 due to problems such as the strength of the tool, and thus can be compared with the conventional device or method. The laminated height of the laminated body of the processed film is lowered, and there is a possibility that the processing efficiency is lowered.
這種情況下,第一加工部10及第二加工部20以使第一工具14及第二工具24每分鐘旋轉40,000轉以上為佳,更佳為每分鐘旋轉60,000轉以上。 In this case, the first processing unit 10 and the second processing unit 20 preferably rotate the first tool 14 and the second tool 24 by 40,000 rpm or more per minute, and more preferably 60,000 rpm or more per minute.
當這樣形成第一加工部10及第二加工部20時,能夠高速地加工工件110,因此即使將層疊體的層疊高度抑制得較低,也能夠以與以往的裝置或方法相同或其以上的加工效率對工件110進行加工。 When the first processed portion 10 and the second processed portion 20 are formed in this manner, the workpiece 110 can be processed at a high speed. Therefore, even if the laminated height of the laminated body is kept low, it can be the same as or higher than the conventional apparatus or method. The machining efficiency is performed on the workpiece 110.
在外罩100中位於後側的與x方向平行的壁面上,上下設有三條沿x方向延伸的x方向軌道96、96、96。第三台車90以能夠沿x方向移動的方式安裝在x方向軌道96、96、96上。而且,在外罩100上設有x方向驅動裝置98,以使第三台車90沿x方向移動。作為x方向驅動裝置98,可以使用沿著x方向軌道96延伸且安裝於第三台車90的滾絲杠、及對滾珠絲杠進行驅動的馬達。 In the outer cover 100, on the wall surface parallel to the x direction on the rear side, three x-direction rails 96, 96, 96 extending in the x direction are provided above and below. The third carriage 90 is mounted on the x-direction rails 96, 96, 96 in such a manner as to be movable in the x-direction. Further, an x-direction driving device 98 is provided on the outer cover 100 to move the third carriage 90 in the x direction. As the x-direction driving device 98, a screw which extends along the x-direction rail 96 and is attached to the third carriage 90, and a motor that drives the ball screw can be used.
第三台車90具備柱部92、底部94。 The third cart 90 includes a column portion 92 and a bottom portion 94.
在第三台車90安裝有在z方向上夾持並固定工件110的固定裝置30、40。固定裝置30、40具備從z方向 的一方將工件110固定的第一固定部30和從z方向的另一方將工件110固定的第二固定部40。 The third vehicle 90 is mounted with fixing devices 30, 40 that clamp and fix the workpiece 110 in the z direction. Fixing devices 30, 40 are provided from the z direction One of the first fixing portions 30 that fixes the workpiece 110 and the second fixing portion 40 that fixes the workpiece 110 from the other side in the z direction.
第一固定部30及第二固定部40伴隨著第三台車90的移動而沿x方向移動。 The first fixing portion 30 and the second fixing portion 40 move in the x direction in accordance with the movement of the third carriage 90.
第一加工部10在工件110的外周部116的外周118中的第一區域120對工件110的外周部116進行加工的情況下,第一固定部30位於第一加工部10不干涉的區域,即第一不干涉區域122。 When the first processing portion 10 processes the outer peripheral portion 116 of the workpiece 110 in the first region 120 of the outer circumference 118 of the outer peripheral portion 116 of the workpiece 110, the first fixing portion 30 is located in a region where the first processing portion 10 does not interfere. That is, the first non-interference area 122.
而且,第二加工部20在工件110的外周部116的外周118中的第二區域130對工件110的外周部116進行加工的情況下,第二固定部40位於第二加工部20不干涉的區域即第二不干涉區域132。 Further, in the case where the second processed portion 20 processes the outer peripheral portion 116 of the workpiece 110 in the second region 130 of the outer periphery 118 of the outer peripheral portion 116 of the workpiece 110, the second fixed portion 40 is located at the second processed portion 20 without interfering. The area is the second non-interference area 132.
關於第一區域120及第二區域130,如第5圖及第6圖所示,在從z方向觀察到的工件110的外周部116的外周118中,以工件110的y方向的中心為界,前側(圖中的下側)的區域作為第一區域120,後側(圖中的上側)的區域作為第二區域130。此外,第一區域120和第二區域130在從z方向觀察到的工件110的外周部116的外周118,可以是彼此的區域重複的區域,也可以是彼此的區域不連續的區域。 Regarding the first region 120 and the second region 130, as shown in FIGS. 5 and 6, the outer circumference 118 of the outer peripheral portion 116 of the workpiece 110 viewed from the z direction is bounded by the center of the workpiece 110 in the y direction. The region on the front side (the lower side in the drawing) serves as the first region 120, and the region on the rear side (the upper side in the drawing) serves as the second region 130. Further, the first region 120 and the second region 130 may be regions in which the regions of the outer peripheral portion 116 of the workpiece 110 are viewed from the z direction, or may be regions in which the regions of the respective regions are discontinuous.
如第7圖、第8圖及第9圖所示,第一不干涉區域122可以設為除第一干涉區域124(圖中的斜線部分)之外的區域(圖中的填充部分)。 As shown in FIGS. 7 , 8 , and 9 , the first non-interference region 122 may be set as a region (filled portion in the drawing) other than the first interference region 124 (hatched portion in the drawing).
在此,假定為第一加工部10的第一工具14沿著工件 的目標形狀114的外周部116的外周118在第一區域120移動的情況下,第一干涉區域124是第一加工部10移動的區域。工件的目標形狀114是想要對工件110進行加工而形成的工件的形狀。而且,第7圖的虛線所示的工件的初始形狀112是加工前的工件的形狀。 Here, it is assumed that the first tool 14 of the first processing portion 10 is along the workpiece. In the case where the outer circumference 118 of the outer peripheral portion 116 of the target shape 114 moves in the first region 120, the first interference region 124 is a region in which the first processed portion 10 moves. The target shape 114 of the workpiece is the shape of the workpiece that is to be formed by machining the workpiece 110. Further, the initial shape 112 of the workpiece indicated by the broken line in Fig. 7 is the shape of the workpiece before machining.
此外,第7圖、第8圖及第9圖的填充部分只不過示出第一不干涉區域122中的一部分。 Further, the filling portions of FIGS. 7, 8, and 9 merely show a part of the first non-interference region 122.
另外,如第10圖、第11圖及第12圖所示,第二不干涉區域132可以設為除第二干涉區域134(圖中的斜線部分)之外的區域(圖中的填充部分)。 Further, as shown in FIGS. 10, 11 and 12, the second non-interference region 132 may be set as an area other than the second interference region 134 (hatched portion in the drawing) (filled portion in the drawing) .
在此,假定第二加工部20的第二工具24沿著工件的目標形狀114的外周部116的外周118在第二區域130移動的情況下,第二干涉區域134是第二加工部20移動的區域。 Here, assuming that the second tool 24 of the second processed portion 20 moves along the outer circumference 118 of the outer peripheral portion 116 of the target shape 114 of the workpiece in the second region 130, the second interference region 134 is moved by the second processed portion 20. Area.
此外,第10圖、第11圖及第12圖的填充部分只不過示出第二不干涉區域132中的一部分。 Further, the filling portions of FIGS. 10, 11 and 12 merely show a part of the second non-interference region 132.
第一固定部30及第二固定部40只要分別位於第一不干涉區域122或第二不干涉區域132,就可以是任意的方式,可以設為例如以下所示的形態。 The first fixing portion 30 and the second fixing portion 40 may be in any form as long as they are located in the first non-interference region 122 or the second non-interference region 132, and may be, for example, the following embodiments.
第一固定部30具備將工件110固定的第一工件固定部32和對第一工件固定部32進行支承的第一支承部34。第一工件固定部32的底面成為與工件110相接觸的部分。第一工件固定部32的底面從z方向觀察為矩形形狀,成為與xy平面平行的平坦面。第一支承部34為柱 狀,其下部與第一工件固定部32的上部連接。 The first fixing portion 30 includes a first workpiece fixing portion 32 that fixes the workpiece 110 and a first support portion 34 that supports the first workpiece fixing portion 32. The bottom surface of the first workpiece fixing portion 32 is a portion that comes into contact with the workpiece 110. The bottom surface of the first workpiece fixing portion 32 has a rectangular shape as viewed in the z direction and is a flat surface parallel to the xy plane. The first support portion 34 is a column The lower portion is connected to the upper portion of the first workpiece fixing portion 32.
第一工件固定部32及第一支承部34位於除第一干涉區域124之外的區域,即第一不干涉區域122。 The first workpiece fixing portion 32 and the first support portion 34 are located in a region other than the first interference region 124, that is, the first non-interference region 122.
在第三台車90的柱部92的正面設有沿z方向延伸的一對z方向軌道36、36。第一支承部34能夠沿z方向移動地安裝在z方向軌道36、36上。第三台車90的柱部92具備z方向驅動裝置50,該z方向驅動裝置50具有使桿52沿z方向進退的工作缸。z方向驅動裝置50的桿52的前端安裝在第一支承部34的上端。z方向驅動裝置50也位於除第一干涉區域124之外的區域,即第一不干涉區域122。 A pair of z-direction rails 36, 36 extending in the z direction are provided on the front surface of the column portion 92 of the third carriage 90. The first support portion 34 is movably mounted on the z-direction rails 36, 36 in the z direction. The column portion 92 of the third carriage 90 is provided with a z-direction driving device 50 having a cylinder that advances and retracts the rod 52 in the z direction. The front end of the rod 52 of the z-direction driving device 50 is attached to the upper end of the first support portion 34. The z-direction driving device 50 is also located in a region other than the first interference region 124, that is, the first non-interference region 122.
透過z方向驅動裝置50的驅動,第一固定部30在z方向上移動,進行工件110的固定及其解除。 The first fixing portion 30 is moved in the z direction by the driving of the z-direction driving device 50, and the workpiece 110 is fixed and released.
第二固定部40具備將工件110固定的第二工件固定部42和對第二工件固定部42進行支承的第二支承部44。第二工件固定部42的上表面成為與工件110相接觸的部分。第二工件固定部42的上表面從z方向觀察下為矩形形狀,成為與xy平面平行的平坦面。第二支承部44為柱狀,其上部與第二工件固定部42的下部連接,其下部與第三台車90的底部94連接。 The second fixing portion 40 includes a second workpiece fixing portion 42 that fixes the workpiece 110 and a second support portion 44 that supports the second workpiece fixing portion 42. The upper surface of the second workpiece fixing portion 42 becomes a portion that comes into contact with the workpiece 110. The upper surface of the second workpiece fixing portion 42 has a rectangular shape when viewed in the z direction, and is a flat surface parallel to the xy plane. The second support portion 44 has a columnar shape, the upper portion of which is connected to the lower portion of the second workpiece fixing portion 42, and the lower portion thereof is connected to the bottom portion 94 of the third carriage 90.
第二工件固定部42及第二支承部44位於除第二干涉區域134之外的區域,即第二不干涉區域132。 The second workpiece fixing portion 42 and the second support portion 44 are located in a region other than the second interference region 134, that is, the second non-interference region 132.
在利用固定裝置30、40將工件110固定的情況下,在第一工件固定部32或第二工件固定部42與工件110之 間夾設合成樹脂製的夾設部54而將工件110固定。透過設置夾設部54,能夠防止第二工具24與第一工件固定部32的底面的干涉、或第一工具14與第二工件固定部42的上表面的干涉。 In the case where the workpiece 110 is fixed by the fixing devices 30, 40, the first workpiece fixing portion 32 or the second workpiece fixing portion 42 and the workpiece 110 are The workpiece 110 is fixed by interposing a sandwich portion 54 made of a synthetic resin. By providing the interposition portion 54, interference between the second tool 24 and the bottom surface of the first workpiece fixing portion 32 or interference between the first tool 14 and the upper surface of the second workpiece fixing portion 42 can be prevented.
控制裝置60分別控制第一加工部10及第二加工部20,使第一工具14及第二工具24旋轉。而且,控制裝置60分別控制x方向驅動裝置98、y方向驅動裝置76、86及z方向驅動裝置50,使固定裝置30、40、第一加工部10及第二加工部20移動。 The control device 60 controls the first processing unit 10 and the second processing unit 20 to rotate the first tool 14 and the second tool 24, respectively. Further, the control device 60 controls the x-direction driving device 98, the y-direction driving devices 76, 86, and the z-direction driving device 50, and moves the fixing devices 30, 40, the first processing portion 10, and the second processing portion 20, respectively.
關於第一加工部10、第二加工部20及固定裝置30、40的移動,只要是它們在x方向及y方向上進行相對移動即可,可以是任意的形態。例如,加工裝置可以是第一加工部10及第二加工部20沿x方向及y方向移動,而固定裝置30、40不移動的結構。 The movement of the first processed portion 10, the second processed portion 20, and the fixing devices 30, 40 may be any form as long as they are relatively moved in the x direction and the y direction. For example, the processing apparatus may be configured such that the first processing unit 10 and the second processing unit 20 move in the x direction and the y direction, and the fixing devices 30 and 40 do not move.
而且,加工裝置可以是第一加工部10及第二加工部20沿z方向移動的結構。當這樣形成加工裝置時,在工件110上能夠形成孔等。 Further, the processing device may be configured such that the first processed portion 10 and the second processed portion 20 move in the z direction. When the processing apparatus is thus formed, a hole or the like can be formed on the workpiece 110.
另外,加工裝置可以不是第一固定部30而是第二固定部40沿z方向移動的結構,也可以是第一固定部30及第二固定部40雙方沿z方向移動的結構。 Further, the processing device may be configured not to move the second fixing portion 40 in the z direction instead of the first fixing portion 30, and may be configured to move both the first fixing portion 30 and the second fixing portion 40 in the z direction.
接著,對加工裝置的使用方法進行說明。首先,透過固定裝置30、40將工件110固定。具體而言,以使工件110的側面與x方向及y方向正交的方式將工件110設置在第二固定部40的第二工件固定部42的上表面。並且, 對z方向驅動裝置50進行驅動而使第一固定部30向下方下降,使工件110由第一工件固定部32和第二工件固定部42夾入並固定。 Next, a method of using the processing apparatus will be described. First, the workpiece 110 is fixed by the fixing devices 30, 40. Specifically, the workpiece 110 is placed on the upper surface of the second workpiece fixing portion 42 of the second fixing portion 40 such that the side surface of the workpiece 110 is orthogonal to the x direction and the y direction. and, The z-direction driving device 50 is driven to lower the first fixing portion 30 downward, and the workpiece 110 is sandwiched and fixed by the first workpiece fixing portion 32 and the second workpiece fixing portion 42.
接著,如第13圖所示,透過第一加工部10的第一工具14在工件110的外周部116(側面)的外周118中的第一區域120對工件110的外周部116進行加工(切削)。接著,如第14圖所示,透過第二加工部20的第二工具24在工件110的外周部116(側面)的外周118中的第一區域120對工件110的外周部116進行加工(切削)。具體而言,利用第一加工部10的第一工具14,從工件110的右側面的y方向上的中心位置到工件110的左側面的y方向上的中心位置,順時針地加工工件110的外周部116。接著,利用第二加工部20的第二工具24,從工件110的左側面的y方向上的中心位置到工件110的右側面的y方向上的中心位置,順時針地加工工件110的外周部116。 Next, as shown in FIG. 13, the first tool 14 that has passed through the first processing portion 10 processes the outer peripheral portion 116 of the workpiece 110 in the first region 120 in the outer periphery 118 of the outer peripheral portion 116 (side surface) of the workpiece 110 (cutting ). Next, as shown in FIG. 14, the second tool 24 that has passed through the second processed portion 20 processes the outer peripheral portion 116 of the workpiece 110 at the first region 120 in the outer periphery 118 of the outer peripheral portion 116 (side surface) of the workpiece 110 (cutting ). Specifically, the first tool 14 of the first processing portion 10 is used to process the workpiece 110 clockwise from the center position in the y direction of the right side surface of the workpiece 110 to the center position in the y direction of the left side surface of the workpiece 110. The outer peripheral portion 116. Next, the second tool 24 of the second processed portion 20 is used to machine the outer peripheral portion of the workpiece 110 clockwise from the center position in the y direction of the left side surface of the workpiece 110 to the center position in the y direction of the right side surface of the workpiece 110. 116.
加工裝置當然會在工件110的外周部116(側面)上,與工件110的面平行地進行切削,也能夠如第15圖所示,進行工件110的角部的倒圓角加工。而且,加工裝置能夠如第16圖所示,在工件110的外周部116形成凹陷等,將工件110的外周部116切削成任意的形狀。 The processing apparatus naturally cuts the surface of the workpiece 110 in parallel with the surface of the workpiece 110 on the outer peripheral portion 116 (side surface) of the workpiece 110, and as shown in Fig. 15, the corner portion of the workpiece 110 can be rounded. Further, as shown in Fig. 16, the processing apparatus can form a recess or the like on the outer peripheral portion 116 of the workpiece 110, and cut the outer peripheral portion 116 of the workpiece 110 into an arbitrary shape.
此外,第15圖及第16圖示出透過第一加工部10的第一工具14進行加工的狀況,但利用第二加工部20的第二工具24也能夠將工件110的外周部116切削成任意的 形狀。 15 and 16 show the state in which the first tool 14 of the first processing unit 10 is processed. However, the second tool 24 of the second processing unit 20 can also cut the outer peripheral portion 116 of the workpiece 110 into Arbitrary shape.
此外,第一區域120是第一加工部10能夠不與第一固定部30發生干涉地進行工件110的外周部116的加工的工件110的外周部116的外周118的區域,未必表示工件110的外周部116中的第一加工部10所加工的區域。 第一加工部10對工件110的外周部116進行加工的區域可以是第一區域120,也可以是第一區域120的範圍內,只要第一加工部10與第一固定部30不干涉,也可以是超過第一區域120的範圍。 Further, the first region 120 is a region of the outer periphery 118 of the outer peripheral portion 116 of the workpiece 110 in which the first processed portion 10 can perform the processing of the outer peripheral portion 116 of the workpiece 110 without interfering with the first fixed portion 30, and does not necessarily represent the workpiece 110. The area processed by the first processed portion 10 in the outer peripheral portion 116. The region in which the first processed portion 10 processes the outer peripheral portion 116 of the workpiece 110 may be the first region 120 or may be within the range of the first region 120 as long as the first processed portion 10 does not interfere with the first fixed portion 30. It may be a range that exceeds the first area 120.
另外,第二區域130與第一區域120同樣,是第二加工部20能夠不與第二固定部40發生干涉地進行工件110的外周部116的加工的工件110的外周部116的外周118的區域,未必表示工件110的外周部116中的第二加工部20所加工的區域。第二加工部20對工件110的外周部116進行加工的區域可以是第二區域130,也可以是第二區域130的範圍內,只要第二加工部20與第二固定部40不干涉,也可以是超過第二區域130的範圍。 Further, similarly to the first region 120, the second region 130 is the outer periphery 118 of the outer peripheral portion 116 of the workpiece 110 in which the second processed portion 20 can process the outer peripheral portion 116 of the workpiece 110 without interfering with the second fixed portion 40. The area does not necessarily indicate the area processed by the second processed portion 20 in the outer peripheral portion 116 of the workpiece 110. The region where the second processed portion 20 processes the outer peripheral portion 116 of the workpiece 110 may be the second region 130 or may be within the range of the second region 130 as long as the second processed portion 20 does not interfere with the second fixed portion 40. It may be a range that exceeds the second area 130.
上述加工裝置由於具備第一固定部30及第二固定部40,因此能夠使第一加工部10及第二加工部20與固定裝置30、40不干涉,而高精度地加工工件110的外周部116。 Since the processing apparatus includes the first fixing unit 30 and the second fixing unit 40, the first processing unit 10 and the second processing unit 20 can be processed with high precision without interfering with the fixing devices 30 and 40, and the outer peripheral portion of the workpiece 110 can be processed with high precision. 116.
另外,加工裝置由於具備第一加工部10及第二加工部20,因此能夠在工件110的加工中途將工件110的固定解除,不改變工件110的方向地進行工件110的外周部 116的加工,因此不會出現伴隨工件110的固定的解除及再固定以致工件110的加工精度下降的情況。 Further, since the processing apparatus includes the first processing unit 10 and the second processing unit 20, the fixing of the workpiece 110 can be canceled during the processing of the workpiece 110, and the outer peripheral portion of the workpiece 110 can be performed without changing the direction of the workpiece 110. Since the machining of 116 is performed, there is no possibility that the fixing of the workpiece 110 is released and re-fixed so that the machining accuracy of the workpiece 110 is lowered.
另外,加工裝置能夠對工件110的外周部116的角部進行倒圓角加工,或者在工件110的外周部116形成凹陷等,將工件110的外周部116加工成任意的形狀。 Further, the processing apparatus can round the corner portion of the outer peripheral portion 116 of the workpiece 110, or form a recess or the like on the outer peripheral portion 116 of the workpiece 110, and process the outer peripheral portion 116 of the workpiece 110 into an arbitrary shape.
另外,加工裝置在將第一工具14及第二工具24設為立銑刀時,能夠將工件110加工成更複雜的形狀,與以往的薄膜的層疊體的加工裝置相比,能夠以非常優良的尺寸精度進行加工。 Further, when the first tool 14 and the second tool 24 are used as end mills, the processing apparatus can process the workpiece 110 into a more complicated shape, and can be excellent as compared with the conventional film processing apparatus. The dimensional accuracy is processed.
本發明的加工裝置沒有特別限定於上述實施形態,而可在本發明的主旨的範圍內適當變更。 The processing apparatus of the present invention is not particularly limited to the above embodiment, and can be appropriately changed within the scope of the gist of the invention.
10‧‧‧第一加工部 10‧‧‧First Processing Department
18‧‧‧第一加工部的支承部 18‧‧‧Support of the first processing department
20‧‧‧第二加工部 20‧‧‧ Second Processing Department
28‧‧‧第二加工部的支承部 28‧‧‧Support section of the second processing section
30‧‧‧第一固定部(固定裝置) 30‧‧‧First fixed part (fixed device)
32‧‧‧第一工件固定部 32‧‧‧First workpiece fixing section
40‧‧‧第二固定部(固定裝置) 40‧‧‧Second fixed part (fixed device)
50‧‧‧z方向驅動裝置 50‧‧‧z direction drive
60‧‧‧控制裝置 60‧‧‧Control device
70‧‧‧第一台車 70‧‧‧First car
72‧‧‧臂部 72‧‧‧ Arms
74‧‧‧y方向軌道 74‧‧‧y direction track
76‧‧‧y方向驅動裝置 76‧‧‧y direction drive
80‧‧‧第二台車 80‧‧‧ second car
82‧‧‧臂部 82‧‧‧arms
90‧‧‧第三台車 90‧‧‧ Third car
92‧‧‧柱部 92‧‧‧ Column Department
96‧‧‧x方向軌道 96‧‧‧x direction orbit
98‧‧‧x方向驅動裝置 98‧‧‧x direction drive
100‧‧‧外罩 100‧‧‧ Cover
110‧‧‧工件 110‧‧‧Workpiece
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| JP2015-064756 | 2015-03-26 | ||
| JP2015064756A JP6277150B2 (en) | 2015-03-26 | 2015-03-26 | Processing equipment |
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| TW201634958A true TW201634958A (en) | 2016-10-01 |
| TWI673521B TWI673521B (en) | 2019-10-01 |
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| TW104114398A TWI673521B (en) | 2015-03-26 | 2015-05-06 | Processing device |
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| JP (1) | JP6277150B2 (en) |
| KR (1) | KR102288230B1 (en) |
| CN (1) | CN106182145B (en) |
| TW (1) | TWI673521B (en) |
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| TWI724804B (en) * | 2020-02-27 | 2021-04-11 | 惠亞工程股份有限公司 | Milling edge device |
| TWI783983B (en) * | 2017-03-29 | 2022-11-21 | 日商日東電工股份有限公司 | Manufacturing method of non-linearly processed optical laminate with adhesive layer |
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| US20180236569A1 (en) * | 2015-09-16 | 2018-08-23 | Sharp Kabushiki Kaisha | Method for producing differently shaped polarizing plate |
| JP6899721B2 (en) * | 2016-07-22 | 2021-07-07 | 日東電工株式会社 | Polarizing plate manufacturing method and its manufacturing equipment |
| WO2018016520A1 (en) * | 2016-07-22 | 2018-01-25 | 日東電工株式会社 | Method for manufacturing polarizing plate and apparatus for manufacturing same |
| WO2018180977A1 (en) * | 2017-03-29 | 2018-10-04 | 日東電工株式会社 | Manufacturing method for nonlinear machined optical laminate with pressure-sensitive adhesive layer |
| JP6777315B2 (en) * | 2017-03-31 | 2020-10-28 | 株式会社Bbs金明 | Cutting equipment |
| JP6634417B2 (en) * | 2017-07-20 | 2020-01-22 | 住友化学株式会社 | Manufacturing method of polarizing plate |
| KR102118378B1 (en) * | 2018-03-07 | 2020-06-03 | 주식회사 엘지화학 | Cutting apparatus and method for chamfering film stack using the same |
| JP7018339B2 (en) | 2018-03-22 | 2022-02-10 | 日東電工株式会社 | Manufacturing method of non-linearly processed resin sheet |
| JP7378716B2 (en) | 2018-10-24 | 2023-11-14 | 日東電工株式会社 | End mill manufacturing method |
| JP7197087B2 (en) | 2018-10-24 | 2022-12-27 | 日東電工株式会社 | End mill and its manufacturing method |
| KR102515538B1 (en) | 2018-12-21 | 2023-03-30 | 닛토덴코 가부시키가이샤 | cutting machine |
| JP7534963B2 (en) * | 2019-02-08 | 2024-08-15 | 日東電工株式会社 | Optical film manufacturing method |
| JP6737932B1 (en) * | 2019-03-05 | 2020-08-12 | 住友化学株式会社 | Manufacturing method of machined film |
| JP7335125B2 (en) * | 2019-10-15 | 2023-08-29 | 住友化学株式会社 | Method for manufacturing optical member |
| CN116234654B (en) * | 2021-06-25 | 2025-11-11 | 株式会社舒旺高 | Method for producing synthetic resin film |
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| JPH11239934A (en) * | 1998-02-23 | 1999-09-07 | Nippon Steel Corp | Machining center for impact test specimen processing |
| JP2004148419A (en) * | 2002-10-29 | 2004-05-27 | Nitto Denko Corp | Cutting method of laminated sheet, laminated sheet, optical element and image display device |
| JP2005125482A (en) * | 2003-10-03 | 2005-05-19 | Tsugami Corp | lathe |
| US20050158136A1 (en) * | 2004-01-15 | 2005-07-21 | Nitto Denko Corporation | Cutting method and cutting apparatus for layered sheet, layered sheet, optical element and image display |
| JP2005224935A (en) * | 2004-01-15 | 2005-08-25 | Nitto Denko Corp | LAMINATED SHEET CUTTING METHOD AND CUTTING DEVICE, LAMINATED SHEET, OPTICAL ELEMENT, IMAGE DISPLAY DEVICE |
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| KR20110137924A (en) * | 2010-06-18 | 2011-12-26 | (주)마하비전 | Lens processing equipment |
| JP5876990B2 (en) * | 2011-03-25 | 2016-03-02 | 住友化学株式会社 | Manufacturing method of end-face processed polarizing plate |
| CN202461622U (en) * | 2011-12-20 | 2012-10-03 | 杨怀宇 | Milling machine |
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2015
- 2015-03-26 JP JP2015064756A patent/JP6277150B2/en not_active Expired - Fee Related
- 2015-05-06 TW TW104114398A patent/TWI673521B/en not_active IP Right Cessation
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| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| TWI783983B (en) * | 2017-03-29 | 2022-11-21 | 日商日東電工股份有限公司 | Manufacturing method of non-linearly processed optical laminate with adhesive layer |
| TWI724804B (en) * | 2020-02-27 | 2021-04-11 | 惠亞工程股份有限公司 | Milling edge device |
Also Published As
| Publication number | Publication date |
|---|---|
| JP6277150B2 (en) | 2018-02-07 |
| TWI673521B (en) | 2019-10-01 |
| KR102288230B1 (en) | 2021-08-09 |
| CN106182145A (en) | 2016-12-07 |
| JP2016182658A (en) | 2016-10-20 |
| CN106182145B (en) | 2019-07-09 |
| KR20160115639A (en) | 2016-10-06 |
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