TW201622830A - Atomizing device - Google Patents
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- TW201622830A TW201622830A TW103145689A TW103145689A TW201622830A TW 201622830 A TW201622830 A TW 201622830A TW 103145689 A TW103145689 A TW 103145689A TW 103145689 A TW103145689 A TW 103145689A TW 201622830 A TW201622830 A TW 201622830A
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- 239000007788 liquid Substances 0.000 claims abstract description 137
- 238000000889 atomisation Methods 0.000 claims abstract description 19
- 239000007921 spray Substances 0.000 claims abstract description 16
- 238000006073 displacement reaction Methods 0.000 claims description 6
- 239000004743 Polypropylene Substances 0.000 claims description 3
- 238000004026 adhesive bonding Methods 0.000 claims description 3
- 239000004417 polycarbonate Substances 0.000 claims description 3
- 229920000515 polycarbonate Polymers 0.000 claims description 3
- -1 polypropylene Polymers 0.000 claims description 3
- 229920001155 polypropylene Polymers 0.000 claims description 3
- 230000000694 effects Effects 0.000 abstract description 10
- 230000006378 damage Effects 0.000 abstract description 2
- 230000035939 shock Effects 0.000 description 4
- 230000003796 beauty Effects 0.000 description 2
- 238000007599 discharging Methods 0.000 description 2
- 239000000203 mixture Substances 0.000 description 2
- 230000000717 retained effect Effects 0.000 description 2
- XLYOFNOQVPJJNP-UHFFFAOYSA-N water Substances O XLYOFNOQVPJJNP-UHFFFAOYSA-N 0.000 description 2
- 239000000853 adhesive Substances 0.000 description 1
- 230000001070 adhesive effect Effects 0.000 description 1
- 239000000443 aerosol Substances 0.000 description 1
- 239000003990 capacitor Substances 0.000 description 1
- 230000007423 decrease Effects 0.000 description 1
- 230000007547 defect Effects 0.000 description 1
- 238000009795 derivation Methods 0.000 description 1
- 238000013461 design Methods 0.000 description 1
- 230000007613 environmental effect Effects 0.000 description 1
- 230000020169 heat generation Effects 0.000 description 1
- 238000009688 liquid atomisation Methods 0.000 description 1
- 230000007774 longterm Effects 0.000 description 1
- 238000012423 maintenance Methods 0.000 description 1
- 238000000034 method Methods 0.000 description 1
- 239000003595 mist Substances 0.000 description 1
- 238000012986 modification Methods 0.000 description 1
- 230000004048 modification Effects 0.000 description 1
- 238000012552 review Methods 0.000 description 1
- 150000003384 small molecules Chemical class 0.000 description 1
- 238000005507 spraying Methods 0.000 description 1
- 230000000087 stabilizing effect Effects 0.000 description 1
- 239000013585 weight reducing agent Substances 0.000 description 1
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- Special Spraying Apparatus (AREA)
Abstract
Description
本發明係關於霧化裝置之領域,尤其是一種霧化元件漂浮於液體表面並保持單向接觸液體,以有效針對液體進行霧化之霧化裝置。 The present invention relates to the field of atomizing devices, and more particularly to an atomizing device in which an atomizing element floats on a surface of a liquid and maintains a unidirectional contact with the liquid to effectively atomize the liquid.
目前於醫療美容及日常生活範疇內,為了達到將液體分子霧化以利使用與應用之功效,係多採用霧化元件以振動及震盪方式使液體轉變為更微小之分子結構,如將美容保養液、香氛液體或是水透過霧化元件以將分子震盪為細小結構而更利皮膚吸收,或提升室內空氣濕度等。 At present, in the field of medical beauty and daily life, in order to achieve the effect of atomizing liquid molecules for use and application, the atomizing elements are used to vibrate and oscillate the liquid into a smaller molecular structure, such as beauty care. Liquid, scented liquid or water passes through the atomizing element to oscillate the molecule into a fine structure to absorb the skin more or to increase the humidity of the indoor air.
而目前使用之霧化裝置或器具係採用於盛裝液體之杯體內放置震盪片,以超音波震盪霧化方式,促使液體表面隆起,並於液面周圍發生空化作用,使液體霧化成小分子的氣霧,以達到如上述之功效,惟,直接將震盪片至於液體中進行霧化動作,於長時間使用下,由於該震盪片係持續地發出超音波震幅,故而會產生高溫導致液體溫度亦隨之升高,當液體為上述之保養液、香氛液體甚或為醫療用之藥液,其溫度提升會進一步影響液體本身的成分或效用,因此,採用超音波震盪片直接置於液體內進行霧化,極易因震盪片長時間驅動產生之高溫造成液體成分被破壞與改變。 The atomization device or device currently used is used to place a shock plate in a cup containing a liquid, and the ultrasonic wave is oscillated and atomized to promote the surface of the liquid to rise and cavitation around the liquid surface to atomize the liquid into small molecules. The aerosol is used to achieve the above-mentioned effect. However, the oscillating piece is directly sprayed into the liquid for atomization. Under the long-term use, since the oscillating film continuously emits ultrasonic wave amplitude, high temperature is caused to cause liquid. The temperature also increases. When the liquid is the above-mentioned maintenance liquid, scented liquid or even medical liquid, the temperature increase will further affect the composition or utility of the liquid itself. Therefore, the ultrasonic oscillating piece is directly placed in the liquid. The atomization in the body is extremely easy to destroy and change the liquid component due to the high temperature generated by the shock plate for a long time.
故為了解決震盪片使用後影響液體成分之問題缺失,係致力於降低震盪片與液體接觸的體積,以防止產生之熱能提高液體溫度,進而 衍生使震盪片固定保持於液面之需求,藉由與液面接觸以逐漸針對液體分子進行霧化動作,同時避免熱能影響液體的整體溫度。然而非置於液體內之震盪片,則僅能單向進行震盪霧化,亦即由接觸液面之側經由震盪片導電震動後將液體分子霧化並朝向相對側溢散,因此當液體同時充斥於震盪片之相對兩側,即無法順利地將液體霧化而使用,故如何保持震盪片於液面上並防止液體晃動或回溢至進水面之相對側係為當前提升霧化效果與應用功效之主要課題之一。 Therefore, in order to solve the problem of affecting the liquid component after the use of the oscillating plate, the purpose is to reduce the volume of contact between the oscillating plate and the liquid, so as to prevent the generated heat from increasing the temperature of the liquid, and thus The derivation allows the oscillating plate to be fixed at the liquid level, and is brought into contact with the liquid surface to gradually atomize the liquid molecules while avoiding the thermal energy affecting the overall temperature of the liquid. However, the oscillating sheet which is not placed in the liquid can only be oscillated and atomized in one direction, that is, the liquid molecules are atomized by the oscillating sheet on the side contacting the liquid surface, and the liquid molecules are scattered toward the opposite side, so when the liquid is simultaneously Filled on the opposite sides of the shock plate, that is, the liquid cannot be atomized smoothly, so how to maintain the shock plate on the liquid surface and prevent the liquid from shaking or overflowing to the opposite side of the water inlet surface is the current lifting atomization effect and One of the main topics of application efficacy.
綜合上述,本發明人係構思一種霧化裝置,希冀可解決習知液體霧化時具備的各項缺失。 In summary, the present inventors have conceived an atomizing device which is capable of solving various defects possessed by conventional liquid atomization.
本發明之一目的,旨在提供一種霧化裝置,係藉漂浮於液體表面之霧化元件,有效地將液體霧化為細小分子以供使用,且透過本發明之結構設計使霧化元件可常態保持單向與液面接觸的狀態,並可防止液體表面震幅過大或是回流而充斥於整個霧化元件之情況,同時,亦可有效驅使霧化後的分子移動而避免滯留不前等不利於使用的情況產生。 An object of the present invention is to provide an atomizing device which is effective for atomizing a liquid into fine molecules by means of an atomizing element floating on a surface of a liquid, and the atomizing element can be designed through the structural design of the present invention. The normal state maintains the state of unidirectional contact with the liquid surface, and prevents the liquid surface from being excessively shaken or recirculated and flooding the entire atomizing element. At the same time, it can effectively drive the molecular movement after atomization to avoid stagnation. It is not conducive to the use of the situation.
本發明之另一目的,旨在提供一種霧化裝置,其係可有效保持液面穩定,避免外力因素導致液面晃動幅度過大而影響霧化效果,使其可於較不穩定之環境下使用。 Another object of the present invention is to provide an atomizing device which can effectively maintain the liquid level stability, avoid external force factors, cause the liquid surface swaying amplitude to be too large, and affect the atomization effect, so that it can be used in a relatively unstable environment. .
為達上述目的,本發明之霧化裝置,包括:一容器,具有一容置槽供以裝填一液體;一浮動組件,設於該容器內並緊貼該液體之一液面形成漂浮狀態,該浮動組件底面並設有一容置孔且其相對側設有一第一導引噴管,且該第一導引噴管係為漸縮態樣;一霧化元件,緊密設於該容 置孔內,其一側係與該液面接觸以導引該液體經由該霧化元件進行霧化動作,並自該第一導引噴管流出;及一噴霧元件,對應該第一導引噴管設置且與該容器組接,並具有一第二導引噴管,供以將已霧化之該液體導出至外部,且該第二導引噴管亦呈漸縮態樣。 In order to achieve the above object, the atomizing device of the present invention comprises: a container having a receiving groove for loading a liquid; and a floating assembly disposed in the container and in close contact with a liquid surface of the liquid to form a floating state, The bottom surface of the floating component is provided with a receiving hole and a first guiding nozzle is disposed on the opposite side thereof, and the first guiding nozzle is in a tapered state; an atomizing component is closely disposed on the capacitor Inside the hole, one side of the hole is in contact with the liquid surface to guide the liquid through the atomizing element for atomization, and flows out from the first guiding nozzle; and a spray element corresponding to the first guide The nozzle is disposed and assembled with the container and has a second guiding nozzle for discharging the atomized liquid to the outside, and the second guiding nozzle is also tapered.
其中,該浮動組件包括一底盤及一頂蓋,該底盤設有該容置孔並與該液面緊貼,該頂蓋設有該第一導引噴管並蓋設於該底盤頂側,且該霧化元件係透過膠合方式固定於該容置孔內,以防止該液體回溢至該底盤內影響該霧化元件作動,並該噴霧元件之底側係呈板狀結構體以與該容器內側表面組接,且較佳者,該第一導引噴管與該第二導引噴管係分別為一錐形結構體,以使霧化後的該液體分子以流速漸增之方式流動至外部使用,並可防止該液體分子滯留於該容器內部,影響後續霧化動作。 The floating assembly includes a chassis and a top cover, the chassis is provided with the receiving hole and is in close contact with the liquid surface, and the top cover is provided with the first guiding nozzle and is disposed on the top side of the chassis. And the atomizing element is fixed in the receiving hole by gluing, so as to prevent the liquid from overflowing into the chassis to affect the operation of the atomizing element, and the bottom side of the spraying element is a plate-like structure to The inner side surface of the container is assembled, and preferably, the first guiding nozzle and the second guiding nozzle are respectively a tapered structure, so that the atomized liquid molecules are gradually increased in flow rate. Flow to the outside and prevent the liquid molecules from staying inside the container, affecting subsequent atomization.
又為了達到減輕重量與維持該浮動組件漂浮之目的,該浮動組件、該容器及該噴霧元件係選用聚丙烯製成。 In order to achieve weight reduction and to maintain the floating of the floating assembly, the floating assembly, the container and the spray element are made of polypropylene.
本發明更具有一外殼體及一外蓋,該外殼體係套設於該容器外部,並透過一固定件與該容器連接,該外蓋係蓋設於該容器頂側,並對應該第二導引噴管具有一透孔,使該第二導引噴管穿設出該外蓋,藉該外殼體及該外蓋係可進一步達到保護該霧化裝置之功效,且較佳者,該外殼體及該外蓋係由聚碳酸脂製成。 The invention further has an outer casing and an outer cover. The outer casing system is sleeved on the outside of the container and connected to the container through a fixing member. The outer cover is disposed on the top side of the container and corresponds to the second guide. The nozzle has a through hole, so that the second guiding nozzle passes through the outer cover, and the outer casing and the outer cover can further protect the atomizing device, and preferably, the outer casing The body and the outer cover are made of polycarbonate.
於另一實施態樣中,該容器內部設有一對限位柱,供以限制該浮動組件於該液面之移動位移,該底盤對應該對限位柱設有一對限位孔,使該對限位柱係穿設於該對限位孔,藉此,係可有效限制該浮動組件相對該液面之移動範圍,以防止該液面晃動幅度過大導致該液體回溢或是 影響該霧化元件作動之情況發生。 In another embodiment, the container is internally provided with a pair of limiting posts for limiting the displacement displacement of the floating component on the liquid surface, and the chassis correspondingly has a pair of limiting holes for the limiting post, so that the pair The limiting column is disposed in the pair of limiting holes, thereby effectively limiting the range of movement of the floating component relative to the liquid surface, so as to prevent the liquid surface from being excessively shaken to cause the liquid to overflow or The situation affecting the operation of the atomizing element occurs.
本發明之霧化裝置,係藉該浮動組件有效地使該霧化元件常保與該液面單向接觸之狀態,並且可隨著液面高低垂直向位移,同時防止該液體回溢而影響該霧化元件之作動,有效地解決霧化元件產生之熱能對該液體之破壞,且於使用上,亦藉該第一導引噴管及該第二導引噴管之漸縮結構,供被霧化之該液體分子可順利地散出至外部使用,避免滯留情形產生。此外於一實施態樣中係藉該對限位柱的設置,限制該浮動組件垂直向外的位移,並利用該浮動組件相對該液面之附著力,防止該液面晃動幅度過大造成該液體回溢或是影響霧化動作。 The atomizing device of the present invention is characterized in that the floating component effectively keeps the atomizing element in a state of one-way contact with the liquid surface, and can be vertically displaced with the liquid level, while preventing the liquid from overflowing and affecting the liquid. The action of the atomizing element effectively solves the damage of the heat generated by the atomizing element to the liquid, and in use, the tapered structure of the first guiding nozzle and the second guiding nozzle is also provided The atomized liquid molecules can be smoothly released to the outside for use to avoid a stagnation situation. In an embodiment, the arrangement of the limiting column is used to limit the vertical outward displacement of the floating component, and the adhesion of the floating component to the liquid surface is utilized to prevent the liquid surface from being excessively shaken to cause the liquid to be caused. Back overflow or affect the atomization action.
1‧‧‧霧化裝置 1‧‧‧Atomizing device
10‧‧‧容器 10‧‧‧ Container
101‧‧‧容置槽 101‧‧‧ accommodating slots
102‧‧‧固定孔 102‧‧‧Fixed holes
103‧‧‧限位柱 103‧‧‧Limited column
11‧‧‧浮動組件 11‧‧‧ Floating components
111‧‧‧容置孔 111‧‧‧ accommodating holes
112‧‧‧第一導引噴管 112‧‧‧First guiding nozzle
113‧‧‧底盤 113‧‧‧Chassis
114‧‧‧頂蓋 114‧‧‧Top cover
115‧‧‧限位孔 115‧‧‧Limited holes
12‧‧‧霧化元件 12‧‧‧Atomizing element
13‧‧‧噴霧元件 13‧‧‧Spray components
131‧‧‧第二導引噴管 131‧‧‧Second guiding nozzle
14‧‧‧外殼體 14‧‧‧Outer casing
141‧‧‧固定件 141‧‧‧Fixed parts
15‧‧‧外蓋 15‧‧‧ Cover
151‧‧‧透孔 151‧‧‧through hole
2‧‧‧液體 2‧‧‧Liquid
20‧‧‧液面 20‧‧‧ liquid level
第1圖,為本發明較佳實施例之立體分解示意圖。 Figure 1 is a perspective exploded view of a preferred embodiment of the present invention.
第2圖,為本發明較佳實施例之立體組裝示意圖。 2 is a perspective view of a three-dimensional assembly of a preferred embodiment of the present invention.
第3圖,為本發明較佳實施例之剖面應用示意圖。 Figure 3 is a schematic cross-sectional view of a preferred embodiment of the present invention.
第4圖,為本發明較佳實施例另一實施態樣之立體分解示意圖。 Figure 4 is a perspective exploded view of another embodiment of the preferred embodiment of the present invention.
第5圖,為本發明較佳實施例另一實施態樣之剖面應用示意圖。 Figure 5 is a schematic cross-sectional view showing another embodiment of the preferred embodiment of the present invention.
為使 貴審查委員能清楚了解本發明之內容,謹以下列說明搭配圖式,敬請參閱。 In order for your review board to have a clear understanding of the contents of the present invention, please refer to the following description for matching drawings.
請參閱第1、2及3圖,其係為本發明較佳實施例之立體分解示意圖、立體組裝示意圖及剖面應用示意圖。本發明之霧化裝置1,供以將一液體2透過震動方式將該液體2之分子結構霧化形成微小分子以進行 使用,其包括一容器10、一浮動組件11、一霧化元件12及一噴霧元件13。 Please refer to Figures 1, 2 and 3, which are schematic exploded perspective views, a schematic view of a three-dimensional assembly and a schematic view of a cross-sectional application according to a preferred embodiment of the present invention. The atomizing device 1 of the present invention is configured to atomize the molecular structure of the liquid 2 to form a minute molecule by vibrating a liquid 2 Used, it includes a container 10, a floating assembly 11, an atomizing element 12, and a spray element 13.
該容器10具有一容置槽101供以裝填該液體2,該浮動組件11係設於該容器10內並緊貼該液體2之一液面20形成漂浮狀態,該浮動組件11底面係設有一容置孔111且其相對側設有一第一導引噴管112,該第一導引噴管112並為漸縮態樣。其中,較佳者,該浮動組件11係包括一底盤113及一頂蓋114,該底盤113設有該容置孔111並與該液面20緊貼,該頂蓋114設有該第一導引噴管112並蓋設於該底盤113頂側,且該容置孔111係一體成型於該底盤113,該第一導引噴管112係一體成形於該頂蓋114,該頂蓋114與該底盤113係可以相互卡固方式結合為一體。再者,本發明該浮動組件11係常態漂浮於該液面20,因此當該液體2之該液面20隨使用時間而逐漸下降時,該浮動組件11係可保持與該液面20接觸之狀態並隨該液面20下降做垂直向之位移。 The container 10 has a receiving slot 101 for loading the liquid 2. The floating component 11 is disposed in the container 10 and is in a floating state adjacent to a liquid surface 20 of the liquid 2. The bottom surface of the floating component 11 is provided with a The first guiding nozzle 112 is disposed on the opposite side of the hole 111, and the first guiding nozzle 112 is in a tapered state. Preferably, the floating component 11 includes a chassis 113 and a top cover 114. The chassis 113 is provided with the receiving hole 111 and is in close contact with the liquid surface 20. The top cover 114 is provided with the first guiding The nozzle 112 is disposed on the top side of the chassis 113, and the receiving hole 111 is integrally formed on the chassis 113. The first guiding nozzle 112 is integrally formed on the top cover 114, and the top cover 114 is The chassis 113 can be integrally coupled to each other in a snap-fit manner. Furthermore, the floating component 11 of the present invention floats normally on the liquid surface 20, so that when the liquid surface 20 of the liquid 2 gradually decreases with the use time, the floating component 11 can remain in contact with the liquid surface 20. The state is displaced vertically as the liquid level 20 is lowered.
該霧化元件12係緊密設於該容置孔111中,其一側則與該液面20接觸以導引該液體2經由該霧化元件12進行霧化動作,霧化後的該液體2再自該第一導引噴管112流出,其中較佳者,該霧化元件12係透過膠合方式固定於該容置孔111內,並使黏膠填充於該霧化元件12與該容置孔111之微小間隙中,進一步防止該液體2回溢至該底盤113內。霧化後之該液體2分子受該第一導引噴管112之漸縮結構影響,而使該液體2分子留至該第一導引噴管112較窄截面積區域時會增進其流速,以順利地利用流速牽引霧化後的該液體2分子流動,避免留滯於該第一導引噴管112內,且亦可避免使陸續被霧化之該液體2分子逐漸堆積於該第一導引噴管112而影響使用。 The atomizing element 12 is closely disposed in the receiving hole 111, and one side thereof is in contact with the liquid surface 20 to guide the liquid 2 to perform an atomizing operation via the atomizing element 12, and the atomized liquid 2 And then the first atomizing nozzle 112 is discharged from the first guiding nozzle 112. Preferably, the atomizing element 12 is fixed in the receiving hole 111 by gluing, and the adhesive is filled in the atomizing element 12 and the receiving portion. In the minute gap of the hole 111, the liquid 2 is further prevented from overflowing into the chassis 113. After the atomization, the liquid 2 molecules are affected by the tapered structure of the first guiding nozzle 112, and the liquid 2 molecules are retained to the narrower cross-sectional area of the first guiding nozzle 112 to increase the flow rate thereof. To smoothly use the flow rate to draw the liquid 2 molecules of the liquid after atomization, to avoid staying in the first guiding nozzle 112, and to prevent the liquid 2 molecules which are successively atomized from gradually accumulating in the first The nozzle 112 is guided to affect the use.
該噴霧元件13對應該第一導引噴管112設置且與該容器10組接,並具有該第二導引噴管131,供將已霧化之該液體2導出至外部,且該第二導引噴管131亦呈漸縮態樣,如前述,該液體2經該霧化元件12轉變為微小霧狀分子後,係自該第一導引噴管112流至該第二導引噴管131處,同於該第一導引噴管112,該第二導引噴管131亦為漸縮態樣,故而該液體2之分子亦可受限於漸縮態樣而於最後流往外部以供使用時達到最高流速,藉此防止該液體分子滯留於該第一導引噴管112及該第二導引噴管131處而影響使用功效。其中,於本實施例中,該第一導引噴管112及該第二導引噴管131係分別為一錐形結構體,以達到最佳之霧化使用效果。此外,該噴霧元件13之底側係呈板狀結構體以與該容器10內側表面組接,於本實施例中,該噴霧元件13之底側係為圓形板狀結構體,並使其邊緣卡抵於該容器10之內表面。其中,該浮動組件11、該容器10及該噴霧元件12係由聚丙烯製成,以使各元件具有輕量之特性,並使該浮動組件11可漂浮於該液體2之該液面20。 The spray element 13 is disposed corresponding to the first guide nozzle 112 and assembled with the container 10, and has the second guide nozzle 131 for discharging the atomized liquid 2 to the outside, and the second The guiding nozzle 131 is also in a tapered state. As described above, after the liquid 2 is converted into micro-mist molecules by the atomizing element 12, the first guiding nozzle 112 flows to the second guiding nozzle. The tube 131 is the same as the first guiding nozzle 112, and the second guiding nozzle 131 is also in a tapered state, so that the molecules of the liquid 2 can also be restricted to the tapered state and flow to the last. The external flow reaches a maximum flow rate for use, thereby preventing the liquid molecules from remaining at the first guiding nozzle 112 and the second guiding nozzle 131 to affect the use efficiency. In this embodiment, the first guiding nozzle 112 and the second guiding nozzle 131 are respectively a tapered structure to achieve an optimal atomization effect. In addition, the bottom side of the spray element 13 is a plate-like structure to be assembled with the inner surface of the container 10. In the embodiment, the bottom side of the spray element 13 is a circular plate-like structure, and The edge card abuts against the inner surface of the container 10. Wherein, the floating assembly 11, the container 10 and the spray element 12 are made of polypropylene so that the components have a lightweight characteristic and the floating assembly 11 can float on the liquid surface 20 of the liquid 2.
本發明更具有一外殼體14及一外蓋15,該外殼體14係套設於該容器10外部,並透過一固定件141與該容器10連接,較佳者該固定件141係為一柱體,該容器10並對應該固定件141設有一固定孔102,以組接該外殼體14及該容器10,其中該外殼體14內並可設有與該霧化元件12電性連接之電路驅動元件供以控制該霧化元件12;該外蓋15係蓋設於該容器10頂側,並對應該第二導引噴管131具有一透孔151,使該第二導引噴管131穿設出該外蓋15,於本實施例中,該外蓋15係為圓弧狀蓋體。其中,較佳者該外殼體14及該外蓋15係由聚碳酸脂製成,以透過該外殼體 14及該外蓋15達到保護該容器10及內部各項組件之功效。 The present invention further has an outer casing 14 and an outer cover 15. The outer casing 14 is sleeved on the outside of the container 10 and connected to the container 10 through a fixing member 141. Preferably, the fixing member 141 is a column. The container 10 is provided with a fixing hole 102 for the fixing member 141 to assemble the outer casing 14 and the container 10. The outer casing 14 can be provided with a circuit electrically connected to the atomizing element 12. The driving element is configured to control the atomizing element 12; the outer cover 15 is disposed on the top side of the container 10, and has a through hole 151 corresponding to the second guiding nozzle 131, so that the second guiding nozzle 131 The outer cover 15 is worn. In the embodiment, the outer cover 15 is an arc-shaped cover. Preferably, the outer casing 14 and the outer cover 15 are made of polycarbonate to penetrate the outer casing. 14 and the outer cover 15 achieve the effect of protecting the container 10 and various components therein.
應用時,將該浮動組件11、該霧化元件12及該噴霧元件13組裝於該容器10,並於該容器10內注入該液體2,使該浮動組件11漂浮於該液體2之該液面20,該霧化元件12之一側面並與該液面20緊貼接觸,啟動該霧化裝置1後,該霧化元件12即開始導引該液體2並對其進行霧化動作,接著霧化後的微小分子係沿該第一導引噴管112流動,同時藉該第一導引噴管112之漸縮結構特徵使該液體2分子之流速漸增,以防止該液體2分子滯留於該第一噴引導管112內而影響後續霧化動作,霧化後之該液體2分子係接續流動至該第二導引噴管131,由於該第二導引噴管131亦為漸縮結構,因此同樣可使該液體2分子之流速漸增,以導出至外部使用。 In application, the floating assembly 11, the atomizing element 12 and the spray element 13 are assembled to the container 10, and the liquid 2 is injected into the container 10 to float the floating assembly 11 on the liquid surface of the liquid 2. 20, one side of the atomizing element 12 is in close contact with the liquid surface 20, and after the atomizing device 1 is activated, the atomizing element 12 starts to guide the liquid 2 and atomizes it, followed by fog. The formed micro-molecular system flows along the first guiding nozzle 112, and the flow velocity of the liquid 2 molecules is gradually increased by the tapered structural feature of the first guiding nozzle 112 to prevent the liquid 2 molecules from staying at The first spray guiding tube 112 affects the subsequent atomizing action, and the atomized liquid 2 molecules are successively flowed to the second guiding nozzle 131, since the second guiding nozzle 131 is also a tapered structure. Therefore, the flow rate of the liquid 2 molecules can also be increased to be exported to external use.
請繼續參閱第4及5圖,其係為本發明較佳實施例另一實施態樣之立體分解示意圖及剖面應用示意圖。於本實施態樣中,該容器10內部設有一對限位柱103,供以限制該浮動組件11於該液面20之移動位移,且該浮動組件11之該底盤113係對應該對限位柱103設有一對限位孔115,使該對限位柱103穿設於該對限位孔115內,因此如圖5所示,該浮動組件11置於該容器10後,係可透過該對限位柱103限制該浮動組件11於該容器10中相對該液面20之移動方向與位移,其中,較佳者該對限位柱103係為圓柱,且該對限位孔115之直徑係大於該對限位柱103之直徑。由於該霧化元件12需貼合於該液面20以利導引該液體2進行霧化動作,因此當該液面20非呈水平狀態時容易影響該霧化元件12作動效果,故而當該霧化裝置1如置於較不穩定之使用環境如行進中的車內,受到環境因素導致該液面20容易晃動而無法保持水平時,本發明係藉該底盤113之底面相對該液 面20之附著力,有效地防止該液面20晃動幅度過大影響霧化效果,且配合該對限位柱103及該對限位孔115之結構,而讓該浮動組件11於該容器10內維持一定之移動範圍,更可有效地保持該液面20之水平狀態。 Please refer to FIGS. 4 and 5, which are schematic exploded perspective views and cross-sectional views of another embodiment of the preferred embodiment of the present invention. In the embodiment, the container 10 is internally provided with a pair of limiting posts 103 for limiting the displacement of the floating component 11 on the liquid surface 20, and the chassis 113 of the floating component 11 is correspondingly facing the limit. The column 103 is provided with a pair of limiting holes 115, so that the pair of limiting posts 103 are disposed in the pair of limiting holes 115. Therefore, as shown in FIG. 5, the floating component 11 is placed in the container 10 and is permeable to the The limiting column 103 limits the moving direction and displacement of the floating component 11 in the container 10 relative to the liquid surface 20, wherein preferably, the pair of limiting posts 103 are cylindrical, and the diameter of the pair of limiting holes 115 The diameter is greater than the diameter of the pair of limit posts 103. Since the atomizing element 12 needs to be attached to the liquid surface 20 to guide the liquid 2 to perform the atomizing action, when the liquid surface 20 is not in a horizontal state, the atomizing element 12 is easily affected, so when When the atomizing device 1 is placed in a relatively unstable use environment such as a traveling vehicle, the liquid level 20 is easily shaken by environmental factors and cannot be maintained horizontally, and the present invention is opposite to the liquid by the bottom surface of the chassis 113. The adhesion of the surface 20 effectively prevents the sloshing amplitude of the liquid surface 20 from affecting the atomization effect, and the floating assembly 11 is placed in the container 10 in cooperation with the structure of the pair of limiting posts 103 and the pair of limiting holes 115. Maintaining a certain range of movement can effectively maintain the level of the liquid level 20.
綜上所述,本發明之該霧化裝置1,係透過設置有該霧化元件12之該浮動組件11常態漂浮於該液體上,使該霧化元件12保持單側貼合於該液面20之狀態,有效地防止該液體2回溢至該霧化元件12之另側面造成無法進行霧化之情況發生,且相較於習知霧化技術,更可防止因產生熱能導致該液體2溫度升高破壞其組成成分及效用,同時兼具極佳的霧化效果。此外,透過該第一導引噴管112及該第二導引噴管131之漸縮結構,可使經霧化後之該液體2分子依據白努利定理而逐漸增強流速,以避免該液體2之分子滯留於該容器10內,導致霧化後之該液體2無法順利流出至外部使用之情形。再者,於一實施態樣中,透過該對限位柱103之結構,係可限制該浮動組件11相對該液面20之漂浮移動範圍,而藉該浮動組件11之底側與該液面20之附著力達到穩固該液面20之功效,使該霧化裝置1亦可應用於較為不穩定之使用環境。 In summary, the atomizing device 1 of the present invention is normally floated on the liquid through the floating assembly 11 provided with the atomizing element 12, so that the atomizing element 12 is kept attached to the liquid surface on one side. The state of 20 effectively prevents the liquid 2 from overflowing to the other side of the atomizing element 12, thereby preventing the atomization from occurring, and preventing the liquid 2 from being generated due to heat generation compared with the conventional atomization technique. The increase in temperature destroys its composition and utility, and at the same time has an excellent atomization effect. In addition, through the tapered structure of the first guiding nozzle 112 and the second guiding nozzle 131, the atomized liquid 2 molecules can gradually increase the flow rate according to the Bainuuli theorem to avoid the liquid. The molecule of 2 is retained in the container 10, resulting in a situation in which the liquid 2 after atomization cannot smoothly flow out to the outside. Furthermore, in an embodiment, the structure of the pair of limiting posts 103 can limit the floating range of the floating component 11 relative to the liquid surface 20, and the bottom side of the floating component 11 and the liquid surface The adhesion of 20 reaches the effect of stabilizing the liquid level 20, so that the atomizing device 1 can also be applied to a relatively unstable use environment.
惟,以上所述者,僅為本發明之較佳實施例而已,並非用以限定本發明實施之範圍;故在不脫離本發明之精神與範圍下所作之均等變化與修飾,皆應涵蓋於本發明之專利範圍內。 However, the above description is only for the preferred embodiment of the present invention and is not intended to limit the scope of the present invention; therefore, equivalent changes and modifications may be made without departing from the spirit and scope of the invention. Within the scope of the patent of the present invention.
1‧‧‧霧化裝置 1‧‧‧Atomizing device
10‧‧‧容器 10‧‧‧ Container
101‧‧‧容置槽 101‧‧‧ accommodating slots
102‧‧‧固定孔 102‧‧‧Fixed holes
11‧‧‧浮動組件 11‧‧‧ Floating components
111‧‧‧容置孔 111‧‧‧ accommodating holes
112‧‧‧第一導引噴管 112‧‧‧First guiding nozzle
113‧‧‧底盤 113‧‧‧Chassis
114‧‧‧頂蓋 114‧‧‧Top cover
12‧‧‧霧化元件 12‧‧‧Atomizing element
13‧‧‧噴霧元件 13‧‧‧Spray components
131‧‧‧第二導引噴管 131‧‧‧Second guiding nozzle
14‧‧‧外殼體 14‧‧‧Outer casing
141‧‧‧固定件 141‧‧‧Fixed parts
15‧‧‧外蓋 15‧‧‧ Cover
151‧‧‧透孔 151‧‧‧through hole
Claims (10)
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| TW103145689A TW201622830A (en) | 2014-12-26 | 2014-12-26 | Atomizing device |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| TW103145689A TW201622830A (en) | 2014-12-26 | 2014-12-26 | Atomizing device |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| TW201622830A true TW201622830A (en) | 2016-07-01 |
Family
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Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
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| TW103145689A TW201622830A (en) | 2014-12-26 | 2014-12-26 | Atomizing device |
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| Country | Link |
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| TW (1) | TW201622830A (en) |
Cited By (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN108744183A (en) * | 2018-06-29 | 2018-11-06 | 中国人民解放军第五三中心医院 | A kind of liquid level controllable type supersonic atomizing inhalator |
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2014
- 2014-12-26 TW TW103145689A patent/TW201622830A/en unknown
Cited By (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN108744183A (en) * | 2018-06-29 | 2018-11-06 | 中国人民解放军第五三中心医院 | A kind of liquid level controllable type supersonic atomizing inhalator |
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