TWM521064U - Cassette body capable of reducing liquid turbulence when soaking into a liquid - Google Patents

Cassette body capable of reducing liquid turbulence when soaking into a liquid Download PDF

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Publication number
TWM521064U
TWM521064U TW105200045U TW105200045U TWM521064U TW M521064 U TWM521064 U TW M521064U TW 105200045 U TW105200045 U TW 105200045U TW 105200045 U TW105200045 U TW 105200045U TW M521064 U TWM521064 U TW M521064U
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TW
Taiwan
Prior art keywords
column
post
plate member
pillar
width
Prior art date
Application number
TW105200045U
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Chinese (zh)
Inventor
林子中
黃榮龍
呂峻杰
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盟立自動化股份有限公司
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Publication of TWM521064U publication Critical patent/TWM521064U/en

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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02PCLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
    • Y02P40/00Technologies relating to the processing of minerals
    • Y02P40/50Glass production, e.g. reusing waste heat during processing or shaping
    • Y02P40/57Improving the yield, e-g- reduction of reject rates

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  • Container, Conveyance, Adherence, Positioning, Of Wafer (AREA)
  • Cleaning By Liquid Or Steam (AREA)
  • Feeding, Discharge, Calcimining, Fusing, And Gas-Generation Devices (AREA)
  • Casting Support Devices, Ladles, And Melt Control Thereby (AREA)
  • Clamps And Clips (AREA)
  • Chemical & Material Sciences (AREA)
  • Chemical Kinetics & Catalysis (AREA)
  • General Chemical & Material Sciences (AREA)

Abstract

A cassette body capable of reducing turbulence as being into a liquid is disclosed. The cassette body includes a first lateral post, a second lateral post, a bottom post and a first diving structure. The second lateral post is opposite to the first lateral post. The bottom post connects the first lateral post and the second lateral post and is oriented in a longitudinal direction. The first lateral post, the second lateral post and the bottom post cooperatively hold a plate member into the liquid along a diving direction. The first diving structure protrudes from the first lateral post, and an end of the bottom post is installed inside the first diving structure. The first diving structure has a first width along a width direction perpendicular to the longitudinal direction and the diving direction, and the first width gradually decreases along the diving direction.

Description

可於浸入浸泡液時降低液面擾流之卡匣本體The body of the cassette which can reduce the liquid surface turbulence when immersed in the soaking liquid

本創作關於一種卡匣本體,尤指一種可於浸入浸泡液時降低液面擾流之卡匣本體。The present invention relates to a card body, and more particularly to a card body that can reduce liquid level turbulence when immersed in an infusion solution.

近來,玻璃基材大量地使用在不同的產品上,尤其是顯示器面板,因此各製造廠商紛紛引進不同的自動化設備搭配用以承載玻璃基材的卡匣本體以提升產能,藉此應付日益增加的需求量,然而於浸鍍玻璃基材時,若浸鍍液擾流過大則會導致玻璃基材表面平整度降低,因此如何提供一種可於浸入浸泡液時降低液面擾流之卡匣本體便成為業界努力的課題之一。Recently, glass substrates have been used in a large number of different products, especially display panels. Therefore, various manufacturers have introduced different automation equipments to match the card body of the glass substrate to increase the production capacity, thereby coping with the increasing The amount of demand, however, when immersing the glass substrate, if the turbidity of the immersion solution is too large, the flatness of the surface of the glass substrate is lowered, so how to provide a card body which can reduce the surface turbulence when immersed in the immersion liquid Become one of the topics of the industry's efforts.

本創作提供一種可於浸入一浸泡液時降低液面擾流之卡匣本體,以解決上述問題。The present invention provides a card body that can reduce liquid level turbulence when immersed in a soaking liquid to solve the above problems.

為了達成上述目的,本創作揭露一種卡匣本體,包含一第一側柱、一第二側柱、一底柱以及一第一切水結構,該第一側柱具有一第一側柱頂端與相對該第一側柱頂端之一第一側柱底端,該第二側柱相對該第一側柱,該第二側柱具有一第二側柱頂端及相對該第二側柱頂端之一第二側柱底端,該底柱沿一長軸方向連接該第一側柱的該第一側柱底端與該第二側柱的該第二側柱底端,該第一側柱、該第二側柱與該底柱共同承載一平板構件沿該第一側柱頂端朝向該第一側柱底端之一入水方向浸入該浸泡液中,該第一切水結構突出於該第一側柱,該底柱的一端安裝於該第一切水結構內,該第一切水結構沿垂直於該長軸方向與該入水方向的一寬度方向定義一第一結構寬度,且該第一結構寬度沿該入水方向為漸減。In order to achieve the above object, the present invention discloses a cartridge body comprising a first side pillar, a second side pillar, a bottom pillar and a first water cut structure, the first side pillar having a first side pillar top and a second side post opposite to the first side post, the second side post having a second side post top and one of the second side post top opposite the first side post bottom end of the first side post a bottom end of the second side pillar, the bottom pillar connecting the bottom side end of the first side pillar of the first side pillar and the bottom side end of the second side pillar of the second side pillar along a long axis direction, the first side pillar, The second side column and the bottom column jointly carry a plate member immersed in the infusion liquid along a water inlet direction of the first side column top toward the bottom end of the first side column, the first water cut structure protruding from the first a side pillar, one end of the bottom pillar is installed in the first water cut structure, the first water cut structure defines a first structure width along a width direction perpendicular to the long axis direction and the water inlet direction, and the first The width of the structure is gradually decreasing along the direction of the water entering.

根據本創作之其中之一實施方式,該卡匣本體另包含一第二切水結構,突出於該第二側柱,該底柱的另一端安裝於該第二切水結構內,該第二切水結構沿該寬度方向定義一第二結構寬度,且該第二結構寬度沿該入水方向為漸減。According to one embodiment of the present invention, the cartridge body further includes a second water cut structure protruding from the second side pillar, the other end of the bottom pillar being installed in the second water cut structure, the second The water cut structure defines a second structure width along the width direction, and the second structure width is gradually decreased along the water inlet direction.

根據本創作之其中之一實施方式,該第一切水結構與該第二切水結構分別實質上為一三角形結構。According to one embodiment of the present invention, the first water cut structure and the second water cut structure are each substantially a triangular structure.

根據本創作之其中之一實施方式,該底柱實質上為一圓柱。According to one of the embodiments of the present invention, the bottom post is substantially a cylinder.

根據本創作之其中之一實施方式,該平板構件具有一第一側面、相對該第一側面之一第二側面以及連接該第一側面與該第二側面之一底面,該第一側柱上形成有一第一夾持槽,該平板構件的該第一側面可活動地設置於該第一夾持槽內,該第二側柱,相對該第一側柱,該第二側柱上形成有一第二夾持槽,該平板構件的該第二側面可活動地設置於該第二夾持槽內,該底柱連接該第一側柱與該第二側柱且用以抵接該平板構件的該底面。According to one embodiment of the present invention, the plate member has a first side, a second side opposite the first side, and a bottom surface connecting the first side and the second side, the first side post Forming a first clamping slot, the first side of the plate member is movably disposed in the first clamping slot, and the second side pillar is opposite to the first side pillar, and the second side pillar is formed a second clamping slot, the second side of the plate member is movably disposed in the second clamping slot, the bottom post connecting the first side post and the second side post and abutting the flat member The bottom surface.

根據本創作之其中之一實施方式,該底柱的柱寬實質上等於該底面的寬度。According to one of the embodiments of the present invention, the column width of the bottom post is substantially equal to the width of the bottom surface.

綜上所述,當卡匣結構沿入水方向浸入浸泡液時,本創作利用第一切水結構以及第二切水結構減少第一側柱與第二側柱進入浸泡液液面時所產生的水紋,以減低卡匣結構沿入水方向浸入浸泡液時對浸泡液所產生的擾動,有助於平板構件在浸泡液內的製程。有關本創作之前述及其他技術內容、特點與功效,在以下配合參考圖式之實施例的詳細說明中,將可清楚的呈現。In summary, when the cassette structure is immersed in the infusion solution along the water inlet direction, the present invention utilizes the first water cut structure and the second water cut structure to reduce the occurrence of the first side column and the second side column entering the soaking liquid level. The water pattern is used to reduce the disturbance of the infusion liquid when the cassette structure is immersed in the infusion liquid along the water inlet direction, and contributes to the process of the flat member in the soaking liquid. The foregoing and other technical contents, features, and advantages of the present invention will be apparent from the following detailed description of the embodiments of the invention.

以下實施例中所提到的方向用語,例如:上、下、左、右、前或後等,僅是參考附加圖式的方向。因此,使用的方向用語是用來說明並非用來限制本創作。請參閱第1圖,第1圖為本創作實施例一自動化系統1的外觀示意圖。如第1圖所示,自動化系統1用來浸鍍及清洗一平板構件2,且包含有一底座10、一槽體11、一卡匣結構12以及一移載機構13,槽體11設置於底座10上,且其內區隔有一第一槽室C1、一第二槽室C2、一第三槽室C3及一第四槽室C4,卡匣結構12可選擇性地設置於第一槽室C1、第二槽室C2、第三槽室C3或第四槽室C4內並用以承載平板構件2,移載機構13包含有一第一軌道130、一第一驅動裝置131、一第二軌道132以及一第二驅動裝置133,第一軌道130設置於底座10上且具有一第一軸向S1,第一驅動裝置131包含有一第一基座1310以及一第一驅動件1311,第一基座1310可滑動地設置於第一軌道130上,第一驅動件1311的一頂端固持於卡匣結構12之一側。第二軌道132設置於底座10上且與第一軌道130平行,第二驅動裝置133包含有一第二基座1330以及一第二驅動件1331,第二基座1330可滑動地設置於第二軌道132上,第二驅動件1331的一頂端固持於卡匣結構12之另一側。The directional terms mentioned in the following embodiments, such as up, down, left, right, front or back, etc., are only directions referring to the additional drawings. Therefore, the directional terminology used is used to illustrate that it is not intended to limit the creation. Please refer to FIG. 1 , which is a schematic diagram of the appearance of an automation system 1 according to an embodiment of the present invention. As shown in FIG. 1 , the automation system 1 is used for immersing and cleaning a flat plate member 2 , and includes a base 10 , a slot body 11 , a latching structure 12 , and a transfer mechanism 13 . The slot body 11 is disposed on the base. 10, and the inner compartment is separated by a first trough chamber C1, a second trough chamber C2, a third trough chamber C3 and a fourth trough chamber C4, and the cassette structure 12 is selectively disposed in the first trough chamber The C1, the second trough chamber C2, the third trough chamber C3 or the fourth trough chamber C4 are used to carry the plate member 2. The transfer mechanism 13 includes a first rail 130, a first driving device 131, and a second rail 132. And a second driving device 133, the first rail 130 is disposed on the base 10 and has a first axial direction S1. The first driving device 131 includes a first base 1310 and a first driving member 1311. The first base 1310 is slidably disposed on the first rail 130, and a top end of the first driving member 1311 is held on one side of the latch structure 12. The second track 132 is disposed on the base 10 and parallel to the first track 130. The second driving device 133 includes a second base 1330 and a second driving member 1331. The second base 1330 is slidably disposed on the second track. 132, a top end of the second driving member 1331 is held on the other side of the latch structure 12.

於實務上,可利用一控制晶片(未繪示於圖中)控制第一基座1310與第二基座1330同動,以使第一基座1310與第二基座1330能同時沿第一軸向S1朝一第一方向D1移動或沿第一軸向S1朝相反於第一方向D1之一第二方向D2移動。進一步地,第一驅動件1311具有一第二軸向S2,第一驅動件1311可伸縮地安裝於第一基座1310上,且第二驅動件1331可伸縮地安裝於第二基座1330上。值得注意的是,該控制晶片另可控制第一驅動件1311與第二驅動件1331同動,以使第一驅動件1311與第二驅動件1331能同時沿第二軸向S2朝一伸出方向D3而分別伸出於第一基座1310與第二基座1330或是沿第二軸向S2朝相反於伸出方向D3之一縮回方向D4而分別縮回於第一基座1310與第二基座1330。於本實施例中,第一軸向S1實質上垂直於第二軸向S2,即第一軌道130與第一基座1310互相垂直,且第二軌道132與第二基座1330互相垂直,而本創作並不侷限於此。In practice, the first pedestal 1310 and the second pedestal 1330 can be controlled by a control chip (not shown) so that the first pedestal 1310 and the second pedestal 1330 can simultaneously follow the first The axial direction S1 moves toward a first direction D1 or moves along the first axial direction S1 in a second direction D2 opposite to the first direction D1. Further, the first driving member 1311 has a second axial direction S2, the first driving member 1311 is telescopically mounted on the first base 1310, and the second driving member 1331 is telescopically mounted on the second base 1330. . It should be noted that the control chip can also control the first driving member 1311 to be co-operating with the second driving member 1331, so that the first driving member 1311 and the second driving member 1331 can simultaneously extend in the second axial direction S2 toward a protruding direction. D3 respectively protrudes from the first base 1310 and the second base 1330 or retracts to the first base 1310 and the first base 1310 in the second axial direction S2 in a retracting direction D4 opposite to the protruding direction D3 Two pedestals 1330. In this embodiment, the first axis S1 is substantially perpendicular to the second axis S2, that is, the first track 130 and the first pedestal 1310 are perpendicular to each other, and the second track 132 and the second pedestal 1330 are perpendicular to each other. This creation is not limited to this.

請參閱第2圖,第2圖為本創作實施例卡匣結構12與平板構件2的爆炸示意圖。如第2圖所示,平板構件2具有一第一側面20、相對第一側面20之一第二側面21以及連接第一側面20與第二側面21之一底面22,卡匣結構12包含一卡匣本體120、五個第一滾輪121以及五個第二滾輪122,各第一滾輪121係對應第二滾輪122的其中之一,且第一滾輪121與第二滾輪122用以共同夾持平板構件2,使平板構件2可安裝於卡匣本體120,第一滾輪121與第二滾輪122的數量及設置位置可不侷限於此實施例圖式所繪示,端視實際需求而定,即只要是卡匣結構12包含至少一第一滾輪121與至少一第二滾輪122的結構設計,均在本創作所保護的範疇內。Referring to FIG. 2, FIG. 2 is a schematic exploded view of the cassette structure 12 and the plate member 2 according to the present embodiment. As shown in FIG. 2, the plate member 2 has a first side surface 20, a second side surface 21 opposite to the first side surface 20, and a bottom surface 22 connecting the first side surface 20 and the second side surface 21. The cassette structure 12 includes a The first roller 121 corresponds to one of the second rollers 122, and the first roller 121 and the second roller 122 are used for common clamping. The plate member 2 is such that the plate member 2 can be mounted on the card body 120. The number and arrangement positions of the first roller 121 and the second roller 122 are not limited to those illustrated in the embodiment, and are determined according to actual needs, that is, The structural design of the cassette structure 12 including at least one of the first roller 121 and the at least one second roller 122 is within the scope of the present invention.

此外,卡匣本體120包含一第一側柱1201、一第二側柱1202以及一底柱1203,第一側柱1201上形成有一第一夾持槽1204,第二側柱1202相對第一側柱1201,第二側柱1202上形成有一第二夾持槽1205。另外,第一側柱1201具有一第一側柱頂端1206與相對第一側柱頂端1206之一第一側柱底端1207,第二側柱1202具有一第二側柱頂端1208及相對第二側柱頂端1208之一第二側柱底端1209,底柱1203沿一長軸方向X連接第一側柱1201的第一側柱底端1207與第二側柱1202的第二側柱底端1209。In addition, the first body column 1201, a second side column 1202, and a bottom column 1203 are formed on the first side column 1201, and the first side column 1202 is opposite to the first side. A second clamping groove 1205 is formed on the column 1201 and the second side column 1202. In addition, the first side post 1201 has a first side post top end 1206 and a first side post top end 1207 opposite the first side post top end 1206. The second side post 1202 has a second side post top end 1208 and a second side. a second side pillar bottom end 1209 of the side pillar top 1208, the bottom pillar 1203 connecting the first side pillar bottom end 1207 of the first side pillar 1201 and the second side pillar bottom end of the second side pillar 1202 along a long axis direction X 1209.

於此實施例中,第一滾輪121可滾動地設置於第一夾持槽1204內,使平板構件2的第一側面20可活動地設置於第一夾持槽1204內,且第二滾輪122可滾動地設置於第二夾持槽1205內,使平板構件2的第二側面21可活動地設置於第二夾持槽1205內。除此之外,第一側柱1201、第二側柱1202與底柱1203間定義一平板構件容置空間120A。當平板構件2的第一側面20利用第一滾輪121設置於第一夾持槽1204內且平板構件2的第二側面21利用第二滾輪122設置於第二夾持槽1205內,直到平板構件2的底面22抵接卡匣本體120的底柱1203時,平板構件2便可完全容置於容置空間120A內,即容置空間120A可用以容置平板構件2,使卡匣本體120的第一側柱1201、第二側柱1202與底柱1203共同承載平板構件2。In this embodiment, the first roller 121 is movably disposed in the first clamping groove 1204, so that the first side surface 20 of the plate member 2 is movably disposed in the first clamping groove 1204, and the second roller 122 The second side surface 21 of the plate member 2 is movably disposed in the second clamping groove 1205. In addition, a flat plate member accommodating space 120A is defined between the first side column 1201, the second side column 1202 and the bottom column 1203. When the first side surface 20 of the plate member 2 is disposed in the first clamping groove 1204 by the first roller 121 and the second side surface 21 of the plate member 2 is disposed in the second clamping groove 1205 by the second roller 122 until the plate member When the bottom surface 22 of the second bottom surface of the latching body 120 is abutted, the flat panel member 2 can be completely accommodated in the accommodating space 120A, that is, the accommodating space 120A can be used to accommodate the flat panel member 2, so that the latching body 120 can be The first side pillar 1201, the second side pillar 1202 and the bottom pillar 1203 jointly carry the plate member 2.

如第1圖以及第2圖所示,卡匣本體120另包含一第一固持柱120B以及一第二固持柱120C,第一固持柱120B連接於第一側柱頂端1206與第二側柱底端1209,第二固持柱120C連接於第二側柱頂端1208與第一側柱底端1207,即第一固持柱120B以及第二固持柱120C係彼此交錯且分別用以連接第一側柱1201與第二側柱1202,以加強卡匣本體120的結構剛性。此外,卡匣本體120另包含複數個連接柱120D,且該複數個連接柱120D彼此間隔設置且分別連接第一側柱1201與第二側柱1202,以進一步加強卡匣本體120的結構剛性。As shown in FIG. 1 and FIG. 2 , the cassette body 120 further includes a first holding column 120B and a second holding column 120C. The first holding column 120B is connected to the first side column top end 1206 and the second side column bottom. The first holding column 120C is connected to the second side column top end 1208 and the first side column bottom end 1207, that is, the first holding column 120B and the second holding column 120C are interlaced with each other and are respectively connected to the first side column 1201. And the second side post 1202 to reinforce the structural rigidity of the cassette body 120. In addition, the cassette body 120 further includes a plurality of connecting posts 120D, and the plurality of connecting posts 120D are spaced apart from each other and respectively connect the first side post 1201 and the second side post 1202 to further strengthen the structural rigidity of the latch body 120.

除此之外,卡匣本體120另包含一第一固定耳部120E以及一第二固定耳部120F,第一固定耳部120E突出於第一側柱頂端1206,且第二固定耳部120F突出於第二側柱頂端1208。第一固定耳部120E用以固定於移載機構13的第一驅動裝置131的第一驅動件1311的該頂端,以使第一驅動件1311的該頂端固持於卡匣結構12之一側,第二固定耳部120F用以固定於移載機構13的第二驅動裝置133的第二驅動件1331的該頂端,以使第二驅動件1331的該頂端固持於卡匣結構12之另一側。如此一來,移載機構13便可驅動卡匣本體120沿伸出方向D3(即沿第一側柱底端1207朝向第一側柱頂端1206的一出水方向Y1)脫離槽體11內的浸泡液,或是移載機構13另可驅動卡匣本體120沿縮回方向D4 (即沿第一側柱頂端1206朝向第一側柱底端1207的一入水方向Y2)浸入槽體11內的浸泡液中。In addition, the latch body 120 further includes a first fixed ear portion 120E and a second fixed ear portion 120F. The first fixed ear portion 120E protrudes from the first side pillar top end 1206, and the second fixed ear portion 120F protrudes. At the top of the second side column 1208. The first fixed ear portion 120E is fixed to the top end of the first driving member 1311 of the first driving device 131 of the transfer mechanism 13 such that the top end of the first driving member 1311 is held on one side of the latch structure 12, The second fixing ear 120F is fixed to the top end of the second driving member 1331 of the second driving device 133 of the transfer mechanism 13 such that the top end of the second driving member 1331 is held on the other side of the latching structure 12 . In this way, the transfer mechanism 13 can drive the cassette body 120 to be immersed in the groove body 11 in the extending direction D3 (ie, a water discharge direction Y1 along the first side column bottom end 1207 toward the first side column top end 1206). The liquid or the transfer mechanism 13 can further drive the cassette body 120 to be immersed in the groove body 11 in the retracting direction D4 (ie, a water entering direction Y2 along the first side column top end 1206 toward the first side column bottom end 1207). In the liquid.

在本實施例中,卡匣本體120的底柱1203可實質上為一圓柱,因此當移載機構13驅動卡匣本體120沿入水方向Y2浸入槽體11內的浸泡液時,該圓柱(即底柱1203)的截面形狀有助於進入浸泡液,即該圓柱(即底柱1203)的截面形狀在卡匣本體120沿入水方向Y2浸入浸泡液時有助於將浸泡液排開,進而降低卡匣本體120沿入水方向Y2浸入浸泡液時對浸泡液所產生的擾動,有利於平板構件2在浸泡液內的製程,例如浸鍍等。另外,該圓柱(即底柱1203) 的柱寬實質上等於平板構件2的底面22的寬度,以使該圓柱(即底柱1203)的截面形狀可函蓋全部的平板構件2的底面22,進一步減低平板構件2的底面22在平板構件2沿入水方向Y2浸入浸泡液時對浸泡液所產生的擾動,而本創作該圓柱(即底柱1203) 的柱寬與平板構件2的底面22的寬度的關係可不侷限於此實施例圖式所繪示,例如該圓柱(即底柱1203) 的柱寬亦可大於平板構件2的底面22的寬度。In this embodiment, the bottom post 1203 of the cassette body 120 can be substantially a cylinder. Therefore, when the transfer mechanism 13 drives the immersion liquid of the cassette body 120 immersed in the tank body 11 in the water inlet direction Y2, the cylinder (ie, The cross-sectional shape of the bottom post 1203) facilitates entry into the soaking liquid, that is, the cross-sectional shape of the column (ie, the bottom post 1203) helps the soaking liquid to be discharged when the kneading body 120 is immersed in the infusion liquid in the water inflow direction Y2, thereby reducing The disturbance of the infusion liquid when the cassette body 120 is immersed in the infusion liquid in the water inlet direction Y2 is advantageous for the process of the flat member 2 in the infusion liquid, such as dip plating. In addition, the column width of the cylinder (ie, the bottom pillar 1203) is substantially equal to the width of the bottom surface 22 of the plate member 2 such that the cross-sectional shape of the cylinder (ie, the bottom pillar 1203) can cover the bottom surface 22 of the entire plate member 2, Further, the bottom surface 22 of the plate member 2 is further disturbed by the infusion liquid when the plate member 2 is immersed in the infusion liquid in the water inlet direction Y2, and the column width of the column (ie, the bottom column 1203) and the bottom surface 22 of the plate member 2 are created. The relationship of the width may not be limited to that illustrated in this embodiment. For example, the column width of the cylinder (ie, the bottom pillar 1203) may be greater than the width of the bottom surface 22 of the flat member 2.

如第2圖所示,卡匣本體120另包含一第一切水結構120G以及一第二切水結構120H。請參閱第3圖至第5圖,第3圖為本創作實施例卡匣結構12與平板構件2的正視示意圖,第4圖為第3圖所示卡匣結構12與平板構件2沿剖面線A-A的剖面示意圖,第5圖為第3圖所示卡匣結構12與平板構件2沿剖面線B-B的剖面示意圖。如第3圖至第5圖所示,第一切水結構120G突出於第一側柱1201,第二切水結構120H突出於第二側柱1202,卡匣本體120的底柱1203的一端安裝於第一切水結構120G內,且卡匣本體120的底柱1203的另一端安裝於第二切水結構120H內。As shown in FIG. 2, the cartridge body 120 further includes a first water cut structure 120G and a second water cut structure 120H. Please refer to FIG. 3 to FIG. 5 . FIG. 3 is a front view of the cassette structure 12 and the plate member 2 according to the embodiment of the present invention, and FIG. 4 is a cross-sectional view of the cassette structure 12 and the plate member 2 shown in FIG. 3 . A schematic cross-sectional view of the AA, and Fig. 5 is a schematic cross-sectional view of the cassette structure 12 and the plate member 2 along the section line BB shown in Fig. 3. As shown in FIG. 3 to FIG. 5 , the first water cut structure 120G protrudes from the first side pillar 1201 , and the second water cut structure 120H protrudes from the second side pillar 1202 , and one end of the bottom pillar 1203 of the cassette body 120 is installed. The first end of the bottom water column 1203 of the cassette body 120 is mounted in the second water cut structure 120H.

除此之外,係可將垂直於底柱1203的長軸方向X與卡匣本體120的入水方向Y2定義為一寬度方向Z,第一切水結構120G與第二切水結構120H沿寬度方向Z分別定義一第一結構寬度W1以及一第二結構寬度W2,且第一結構寬度W1與第二結構寬度W2沿入水方向Y2漸減。藉此,當卡匣結構12沿入水方向Y2浸入浸泡液時,第一切水結構120G與第二切水結構120H便可減少第一側柱1201與第二側柱1202進入浸泡液液面時所產生的水紋,以減低卡匣結構12沿入水方向Y2浸入浸泡液時對浸泡液所產生的擾動,有助於平板構件2在浸泡液內的製程。In addition, the longitudinal direction X perpendicular to the bottom pillar 1203 and the water inlet direction Y2 of the cassette body 120 may be defined as a width direction Z, and the first water cut structure 120G and the second water cut structure 120H are along the width direction. Z defines a first structure width W1 and a second structure width W2, respectively, and the first structure width W1 and the second structure width W2 are gradually decreased in the water inlet direction Y2. Thereby, when the cassette structure 12 is immersed in the infusion liquid in the water inlet direction Y2, the first water cut structure 120G and the second water cut structure 120H can reduce the first side column 1201 and the second side column 1202 entering the soaking liquid level. The water pattern generated is used to reduce the disturbance of the infusion liquid when the cassette structure 12 is immersed in the infusion liquid in the water inlet direction Y2, which contributes to the process of the flat member 2 in the infusion liquid.

在本實施例中,第一切水結構120G與第二切水結構120H可分別實質上為一三角形結構,但本創作不受此限,例如第一切水結構120G與第二切水結構120H亦可分別實質上為一半圓形結構或一子彈型結構,即只要是第一切水結構120G的第一結構寬度W1與第二切水結構120H的第二結構寬度W2在沿入水方向Y2為漸減的結構設計,均在本創作所保護的範疇內,至於採用上述何者設計,端視實際情況而定。In this embodiment, the first water cut structure 120G and the second water cut structure 120H may each be substantially a triangular structure, but the creation is not limited thereto, for example, the first water cut structure 120G and the second water cut structure 120H. Each of the first structure width W1 of the first water cut structure 120G and the second structure width W2 of the second water cut structure 120H may be substantially in the water inlet direction Y2. The decreasing structural design is within the scope of protection of this creation. As for the above design, it depends on the actual situation.

請參閱第3圖、第6圖以及第7圖,第6圖為第3圖所示卡匣結構12與平板構件2沿剖面線C-C的剖面示意圖,第7圖為第3圖所示卡匣結構12與平板構件2沿剖面線D-D的剖面示意圖。如第3圖、第6圖以及第7圖所示,平板構件2另具有一操作面23及一背面24,操作面23連接第一側面20、第二側面21與底面22,且背面24相對於操作面23。第一滾輪121包含一第一滾柱部1210、一第一凸緣部1211以及一第一凸起部1212,第二滾輪122包含一第二滾柱部1220、一第二凸緣部1221以及一第二凸起部1222。第一滾柱部1210具有一第一滾動周面1213,第一滾動周面1213可滾動地抵接於平板構件2的第一側面20,第二滾柱部1220具有一第二滾動周面1223,第二滾動周面1223可滾動地抵接於平板構件2的第二側面21,藉此第一滾輪121與第二滾輪122便可共同將平板構件2夾持於由第一側柱1201、第二側柱1202與底柱1203所定義的平板構件容置空間120A內。Please refer to FIG. 3, FIG. 6 and FIG. 7. FIG. 6 is a cross-sectional view of the cassette structure 12 and the plate member 2 along the section line CC shown in FIG. 3, and FIG. 7 is a card diagram shown in FIG. A schematic cross-sectional view of the structure 12 and the plate member 2 along section line DD. As shown in FIG. 3, FIG. 6, and FIG. 7, the plate member 2 further has an operation surface 23 and a back surface 24, and the operation surface 23 connects the first side surface 20, the second side surface 21 and the bottom surface 22, and the back surface 24 is opposite. On the operation surface 23. The first roller 121 includes a first roller portion 1210, a first flange portion 1211, and a first protrusion portion 1212. The second roller 122 includes a second roller portion 1220, a second flange portion 1221, and A second raised portion 1222. The first roller portion 1210 has a first rolling circumferential surface 1213. The first rolling circumferential surface 1213 is rollably abutted against the first side surface 20 of the plate member 2, and the second roller portion 1220 has a second rolling circumferential surface 1223. The second rolling circumferential surface 1223 is slidably abutted against the second side surface 21 of the flat plate member 2, whereby the first roller 121 and the second roller 122 can collectively clamp the plate member 2 by the first side column 1201. The second side post 1202 and the flat member accommodation space 120A defined by the bottom post 1203 are disposed.

值得一提的是,第一滾動周面1213與第二滾動周面1223分別為一凸起曲面,藉此當第一滾動周面1213與第二滾動周面1223分別抵接第一側面20與第二側面21時,上述之凸起曲面的結構設計可使第一滾動周面1213與第一側面20的接觸以及第二滾動周面1223與第二側面21的接觸為線接觸的形式,以降低第一滾動周面1213對第一側面20以及第二滾動周面1223對第二側面21的影響。It is to be noted that the first rolling circumferential surface 1213 and the second rolling circumferential surface 1223 are respectively a convex curved surface, whereby the first rolling circumferential surface 1213 and the second rolling circumferential surface 1223 respectively abut the first side surface 20 and In the second side 21, the above-mentioned convex curved surface is designed in such a manner that the contact of the first rolling circumferential surface 1213 with the first side surface 20 and the contact of the second rolling circumferential surface 1223 with the second side surface 21 are in line contact form. The influence of the first rolling circumferential surface 1213 on the first side surface 20 and the second rolling circumferential surface 1223 on the second side surface 21 is reduced.

如第6圖所示,第一凸緣部1211連接於第一滾柱部1210的端部,第一凸緣部1211具有一第一凸緣周面1214,第一凸緣周面1214連接於第一滾動周面1213且對應平板構件2的操作面23,第一凸緣周面1214與第一滾動周面1213的夾角大於90度,而平板構件2的第一側面20與操作面23的夾角為90度,因此當第一滾輪121的第一滾動周面1213抵接於平板構件2的第一側面20時,第一凸緣周面1214是不與平板構件2的操作面23接觸的。在本實施例中,第一凸緣周面1214與第一滾動周面1213的夾角可介於120度與150度之間,因此當第一滾輪121的第一滾動周面1213抵接於平板構件2的第一側面20時,第一凸緣周面1214與操作面23的夾角可介於30度與60度之間,但本創作不受此限。As shown in FIG. 6, the first flange portion 1211 is connected to the end of the first roller portion 1210, and the first flange portion 1211 has a first flange circumferential surface 1214, and the first flange circumferential surface 1214 is connected to The first rolling circumferential surface 1213 and corresponding to the operation surface 23 of the plate member 2, the angle between the first flange circumferential surface 1214 and the first rolling circumferential surface 1213 is greater than 90 degrees, and the first side surface 20 of the plate member 2 and the operation surface 23 The angle is 90 degrees, so when the first rolling circumferential surface 1213 of the first roller 121 abuts against the first side surface 20 of the plate member 2, the first flange circumferential surface 1214 is not in contact with the operation surface 23 of the plate member 2. . In this embodiment, the angle between the first flange circumferential surface 1214 and the first rolling circumferential surface 1213 may be between 120 degrees and 150 degrees, so when the first rolling circumferential surface 1213 of the first roller 121 abuts the flat plate When the first side 20 of the member 2 is used, the angle between the first flange peripheral surface 1214 and the operation surface 23 may be between 30 degrees and 60 degrees, but the creation is not limited thereto.

在實際應用中,平板構件2可為一觸控裝置(例如智慧型手機或平板電腦等)的觸控玻璃,而平板構件2的操作面23係為使用者操控接觸面,具有一定之表面平整度,因此藉由本創作第一滾輪121的第一凸緣周面1214與第一滾動周面1213的夾角大於90度的結構設計,使得本創作第一滾輪121於夾持平板構件2時不會接觸平板構件2的操作面23的邊緣,因而可進一步確保平板構件2的操作面23於製造過程中的平整性。In practical applications, the tablet member 2 can be a touch glass of a touch device (such as a smart phone or a tablet computer), and the operation surface 23 of the tablet member 2 is a user-controlled contact surface with a certain surface flatness. Therefore, by the structural design that the first flange circumferential surface 1214 of the first roller 121 and the first rolling circumferential surface 1213 are greater than 90 degrees, the first roller 121 of the present invention does not clamp the plate member 2 The edge of the operation surface 23 of the plate member 2 is contacted, and thus the flatness of the operation surface 23 of the plate member 2 during the manufacturing process can be further ensured.

除此之外,第一凸起部1212連接於第一滾柱部1210的另一端部,第一凸起部1212具有一第一凸起周面1215,第一凸起周面1215連接於第一滾動周面1213且對應平板構件2的背面24,第一凸起周面1215與第一滾動周面1213間的夾角大於90度,而平板構件2的第一側面20與背面24的夾角為90度,因此當第一滾輪121的第一滾動周面1213抵接於平板構件2的第一側面20時,第一凸起周面1215是不與平板構件2的背面24接觸的。在本實施例中,第一凸起周面1215與第一滾動周面1213的夾角可介於120度與150度之間,因此,當第一滾輪121的第一滾動周面1213抵接於平板構件2的第一側面20時,第一凸起周面1215與背面24的夾角可介於30度與60度之間,但本創作不受此限。In addition, the first convex portion 1212 is connected to the other end portion of the first roller portion 1210, and the first convex portion 1212 has a first convex peripheral surface 1215, and the first convex peripheral surface 1215 is connected to the first A rolling circumferential surface 1213 corresponding to the back surface 24 of the flat member 2, the angle between the first convex circumferential surface 1215 and the first rolling circumferential surface 1213 is greater than 90 degrees, and the angle between the first side surface 20 of the flat member 2 and the back surface 24 is 90 degrees, so when the first rolling circumferential surface 1213 of the first roller 121 abuts against the first side surface 20 of the plate member 2, the first convex peripheral surface 1215 is not in contact with the back surface 24 of the flat member 2. In this embodiment, the angle between the first convex peripheral surface 1215 and the first rolling circumferential surface 1213 may be between 120 degrees and 150 degrees. Therefore, when the first rolling circumferential surface 1213 of the first roller 121 abuts In the first side 20 of the plate member 2, the angle between the first convex peripheral surface 1215 and the back surface 24 may be between 30 degrees and 60 degrees, but the creation is not limited thereto.

如第7圖所示,第二凸緣部1221連接於第二滾柱部1220的端部,第二凸緣部1221具有一第二凸緣周面1224,第二凸緣周面1224連接於第二滾動周面1223且對應平板構件2的操作面23,第二凸緣周面1224與第二滾動周面1223的夾角大於90度,而平板構件2的第一側面20與操作面23的夾角為90度,因此當第二滾輪122的第二滾動周面1223抵接於平板構件2的第二側面21時,第二凸緣周面1224是不與平板構件2的操作面23接觸的。在本實施例中,第二凸緣周面1224與第二滾動周面1223的夾角可介於120度與150度之間,因此當第二滾輪122的第二滾動周面1223抵接於平板構件2的第二側面21時,第二凸緣周面1224與操作面23的夾角可介於30度與60度之間,但本創作不受此限。As shown in Fig. 7, the second flange portion 1221 is connected to the end of the second roller portion 1220, the second flange portion 1221 has a second flange peripheral surface 1224, and the second flange peripheral surface 1224 is connected to The second rolling circumferential surface 1223 corresponds to the operation surface 23 of the plate member 2, the angle between the second flange circumferential surface 1224 and the second rolling circumferential surface 1223 is greater than 90 degrees, and the first side surface 20 of the plate member 2 and the operation surface 23 The angle is 90 degrees, so when the second rolling circumferential surface 1223 of the second roller 122 abuts against the second side surface 21 of the plate member 2, the second flange circumferential surface 1224 is not in contact with the operation surface 23 of the plate member 2. . In this embodiment, the angle between the second flange circumferential surface 1224 and the second rolling circumferential surface 1223 may be between 120 degrees and 150 degrees, so when the second rolling circumferential surface 1223 of the second roller 122 abuts the flat plate When the second side 21 of the member 2, the angle between the second flange peripheral surface 1224 and the operation surface 23 may be between 30 degrees and 60 degrees, but the creation is not limited thereto.

除此之外,第二凸起部1222連接於第二滾柱部1220的另一端部,第二凸起部1222具有一第二凸起周面1225,第二凸起周面1225連接於第二滾動周面1223且對應平板構件2的背面24,第二凸起周面1225與第二滾動周面1223間的夾角大於90度,而平板構件2的第二側面21與背面24的夾角為90度,因此當第二滾輪122的第二滾動周面1223抵接於平板構件2的第二側面21時,第二凸起周面1225是不與平板構件2的背面24接觸的。在本實施例中,第二凸起周面1225與第二滾動周面1223的夾角可介於120度與150度之間,因此,當第二滾輪122的第二滾動周面1223抵接於平板構件2的第二側面21時,第二凸起周面1225與背面24的夾角可介於30度與60度之間,但本創作不受此限。In addition, the second raised portion 1222 is connected to the other end portion of the second roller portion 1220, the second raised portion 1222 has a second raised peripheral surface 1225, and the second raised peripheral surface 1225 is connected to the second The rolling peripheral surface 1223 corresponds to the back surface 24 of the flat member 2, the angle between the second convex peripheral surface 1225 and the second rolling circumferential surface 1223 is greater than 90 degrees, and the angle between the second side surface 21 of the flat member 2 and the back surface 24 is 90 degrees, so when the second rolling peripheral surface 1223 of the second roller 122 abuts against the second side surface 21 of the plate member 2, the second convex peripheral surface 1225 is not in contact with the back surface 24 of the plate member 2. In this embodiment, the angle between the second convex peripheral surface 1225 and the second rolling circumferential surface 1223 may be between 120 degrees and 150 degrees. Therefore, when the second rolling circumferential surface 1223 of the second roller 122 abuts When the second side 21 of the plate member 2 is used, the angle between the second raised peripheral surface 1225 and the back surface 24 may be between 30 degrees and 60 degrees, but the creation is not limited thereto.

相較於先前技術,綜上所述,當卡匣結構沿入水方向浸入浸泡液時,本創作利用第一切水結構以及第二切水結構減少第一側柱與第二側柱進入浸泡液液面時所產生的水紋,以減低卡匣結構沿入水方向浸入浸泡液時對浸泡液所產生的擾動,有助於平板構件在浸泡液內的製程。以上所述僅為本創作之較佳實施例,凡依本創作申請專利範圍所做之均等變化與修飾,皆應屬本創作之涵蓋範圍。Compared with the prior art, in summary, when the cassette structure is immersed in the infusion liquid along the water inlet direction, the present invention uses the first water cut structure and the second water cut structure to reduce the first side column and the second side column into the soaking liquid. The water ripple generated during the liquid level is used to reduce the disturbance of the infusion solution when the cassette structure is immersed in the infusion liquid along the water inlet direction, which contributes to the process of the flat member in the soaking liquid. The above descriptions are only preferred embodiments of the present invention, and all changes and modifications made by the scope of the patent application of the present invention should be covered by the present invention.

1‧‧‧自動化系統
10‧‧‧底座
11‧‧‧槽體
C1‧‧‧第一槽室
C2‧‧‧第二槽室
C3‧‧‧第三槽室
C4‧‧‧第四槽室
12‧‧‧卡匣結構
120‧‧‧卡匣本體
1201‧‧‧第一側柱
1202‧‧‧第二側柱
1203‧‧‧底柱
1204‧‧‧第一夾持槽
1205‧‧‧第二夾持槽
1206‧‧‧第一側柱頂端
1207‧‧‧第一側柱底端
1208‧‧‧第二側柱頂端
1209‧‧‧第二側柱底端
120A‧‧‧平板構件容置空間
120B‧‧‧第一固持柱
120C‧‧‧第二固持柱
120D‧‧‧連接柱
120E‧‧‧第一固定耳部
120F‧‧‧第二固定耳部
120G‧‧‧第一切水結構
120H‧‧‧第二切水結構
121‧‧‧第一滾輪
1210‧‧‧第一滾柱部
1211‧‧‧第一凸緣部
1212‧‧‧第一凸起部
1213‧‧‧第一滾動周面
1214‧‧‧第一凸緣周面
1215‧‧‧第一凸起周面
122‧‧‧第二滾輪
1220‧‧‧第二滾柱部
1221‧‧‧第二凸緣部
1222‧‧‧第二凸起部
1223‧‧‧第二滾動周面
1224‧‧‧第二凸緣周面
1225‧‧‧第二凸起周面
13‧‧‧移載機構
130‧‧‧第一軌道
S1‧‧‧第一軸向
131‧‧‧第一驅動裝置
1310‧‧‧第一基座
1311‧‧‧第一驅動件
132‧‧‧第二軌道
S2‧‧‧第二軸向
133‧‧‧第二驅動裝置
1330‧‧‧第二基座
1331‧‧‧第二驅動件
2‧‧‧平板構件
20‧‧‧第一側面
21‧‧‧第二側面
22‧‧‧底面
23‧‧‧操作面
24‧‧‧背面
D1‧‧‧第一方向
D2‧‧‧第二方向
D3‧‧‧伸出方向
D4‧‧‧縮回方向
X‧‧‧長軸方向
Y1‧‧‧出水方向
Y2‧‧‧入水方向
Z‧‧‧寬度方向
A-A、B-B、C-C、D-D‧‧‧剖面線
W1‧‧‧第一結構寬度
W2‧‧‧第二結構寬度
1‧‧‧Automation system
10‧‧‧Base
11‧‧‧
C1‧‧‧ first chamber
C2‧‧‧Second trough room
C3‧‧‧ third chamber
C4‧‧‧4th chamber
12‧‧‧Card structure
120‧‧‧ card body
1201‧‧‧ first side column
1202‧‧‧Second side column
1203‧‧‧ bottom column
1204‧‧‧First clamping slot
1205‧‧‧Second clamping slot
1206‧‧‧The top of the first side column
1207‧‧‧The bottom of the first side column
1208‧‧‧The top of the second side column
1209‧‧‧ bottom side of the second side column
120A‧‧‧Table component accommodation space
120B‧‧‧First holding column
120C‧‧‧second holding column
120D‧‧‧Connecting column
120E‧‧‧First fixed ear
120F‧‧‧Second fixed ear
120G‧‧‧First water cut structure
120H‧‧‧Second water cut structure
121‧‧‧First wheel
1210‧‧‧First Roller
1211‧‧‧First flange
1212‧‧‧First raised part
1213‧‧‧First rolling circumference
1214‧‧‧First flange circumferential surface
1215‧‧‧First raised circumferential surface
122‧‧‧Second wheel
1220‧‧‧Second roller section
1221‧‧‧Second flange
1222‧‧‧second raised part
1223‧‧‧Second rolling circumference
1224‧‧‧Second flange circumferential surface
1225‧‧‧second raised circumferential surface
13‧‧‧Transportation agency
130‧‧‧First track
S1‧‧‧first axial direction
131‧‧‧First drive
1310‧‧‧First base
1311‧‧‧First drive
132‧‧‧second track
S2‧‧‧second axial
133‧‧‧Second drive
1330‧‧‧Second base
1331‧‧‧second drive
2‧‧‧Table components
20‧‧‧ first side
21‧‧‧ second side
22‧‧‧ bottom
23‧‧‧Operation surface
24‧‧‧Back
D1‧‧‧ first direction
D2‧‧‧ second direction
D3‧‧‧Outward direction
D4‧‧‧ retraction direction
X‧‧‧ long axis direction
Y1‧‧‧Water direction
Y2‧‧‧ into the water direction
Z‧‧‧Width direction
AA, BB, CC, DD‧‧‧ hatching
W1‧‧‧First structure width
W2‧‧‧Second structure width

第1圖為本創作實施例自動化系統的外觀示意圖。 第2圖為本創作實施例卡匣結構與平板構件的爆炸示意圖。 第3圖為本創作實施例卡匣結構與平板構件的正視示意圖。 第4圖為第3圖所示卡匣結構與平板構件沿剖面線A-A的剖面示意圖。 第5圖為第3圖所示卡匣結構與平板構件沿剖面線B-B的剖面示意圖。 第6圖為第3圖所示卡匣結構與平板構件沿剖面線C-C的剖面示意圖。 第7圖為第3圖所示卡匣結構與平板構件沿剖面線D-D的剖面示意圖。FIG. 1 is a schematic diagram of the appearance of an automation system of the present embodiment. Fig. 2 is a schematic exploded view of the cassette structure and the plate member of the present embodiment. Fig. 3 is a front elevational view showing the card structure and the plate member of the present embodiment. Figure 4 is a schematic cross-sectional view of the cassette structure and the plate member shown in Figure 3 along section line A-A. Figure 5 is a schematic cross-sectional view of the cassette structure and the plate member shown in Figure 3 along section line B-B. Fig. 6 is a schematic cross-sectional view showing the cassette structure and the plate member shown in Fig. 3 along a section line C-C. Figure 7 is a schematic cross-sectional view of the cassette structure and the plate member shown in Figure 3 along section line D-D.

12‧‧‧卡匣結構 12‧‧‧Card structure

1203‧‧‧底柱 1203‧‧‧ bottom column

120G‧‧‧第一切水結構 120G‧‧‧First water cut structure

121‧‧‧第一滾輪 121‧‧‧First wheel

1210‧‧‧第一滾柱部 1210‧‧‧First Roller

1211‧‧‧第一凸緣部 1211‧‧‧First flange

1212‧‧‧第一凸起部 1212‧‧‧First raised part

1213‧‧‧第一滾動周面 1213‧‧‧First rolling circumference

1214‧‧‧第一凸緣周面 1214‧‧‧First flange circumferential surface

1215‧‧‧第一凸起周面 1215‧‧‧First raised circumferential surface

2‧‧‧平板構件 2‧‧‧Table components

20‧‧‧第一側面 20‧‧‧ first side

22‧‧‧底面 22‧‧‧ bottom

23‧‧‧操作面 23‧‧‧Operation surface

24‧‧‧背面 24‧‧‧Back

D3‧‧‧伸出方向 D3‧‧‧Outward direction

D4‧‧‧縮回方向 D4‧‧‧ retraction direction

X‧‧‧長軸方向 X‧‧‧ long axis direction

Y1‧‧‧出水方向 Y1‧‧‧Water direction

Y2‧‧‧入水方向 Y2‧‧‧ into the water direction

Z‧‧‧寬度方向 Z‧‧‧Width direction

W1‧‧‧第一結構寬度 W1‧‧‧First structure width

Claims (6)

一種可於浸入一浸泡液時降低液面擾流之卡匣本體,包含: 一第一側柱,具有一第一側柱頂端與相對該第一側柱頂端之一第一側柱底端; 一第二側柱,相對該第一側柱,該第二側柱具有一第二側柱頂端及相對該第二側柱頂端之一第二側柱底端; 一底柱,沿一長軸方向連接該第一側柱的該第一側柱底端與該第二側柱的該第二側柱底端,該第一側柱、該第二側柱與該底柱共同承載一平板構件沿該第一側柱頂端朝向該第一側柱底端之一入水方向浸入該浸泡液中;以及 一第一切水結構,突出於該第一側柱,該底柱的一端安裝於該第一切水結構內,該第一切水結構沿垂直於該長軸方向與該入水方向的一寬度方向定義一第一結構寬度,且該第一結構寬度沿該入水方向為漸減。A card body capable of reducing liquid level turbulence when immersed in a soaking liquid, comprising: a first side column having a first side column top end and a first side column bottom end opposite to the first side column top end; a second side post opposite to the first side post, the second side post having a second side post top and a second side post bottom end opposite the second side post; a bottom post along a long axis Connecting the first side pillar bottom end of the first side pillar and the second side pillar bottom end of the second side pillar, the first side pillar, the second side pillar and the bottom pillar jointly carrying a flat member Dipping into the soaking liquid along a water inlet direction of the first side column toward the bottom end of the first side column; and a first water cutting structure protruding from the first side column, one end of the bottom column being mounted on the first side column In all the water structures, the first water cut structure defines a first structure width along a width direction perpendicular to the long axis direction and the water inlet direction, and the first structure width is gradually decreased along the water inlet direction. 如請求項1所述之卡匣本體,另包含: 一第二切水結構,突出於該第二側柱,該底柱的另一端安裝於該第二切水結構內,該第二切水結構沿該寬度方向定義一第二結構寬度,且該第二結構寬度沿該入水方向為漸減。The card body as claimed in claim 1, further comprising: a second water cut structure protruding from the second side column, the other end of the bottom column being installed in the second water cut structure, the second water cut The structure defines a second structure width along the width direction, and the second structure width is tapered along the water inlet direction. 如請求項2所述之卡匣本體,其中該第一切水結構與該第二切水結構分別實質上為一三角形結構。The cassette body of claim 2, wherein the first water cut structure and the second water cut structure are each substantially a triangular structure. 如請求項1所述之卡匣本體,其中該底柱實質上為一圓柱。The cassette body of claim 1, wherein the bottom post is substantially a cylinder. 如請求項1所述之卡匣本體,其中該平板構件具有一第一側面、相對該第一側面之一第二側面以及連接該第一側面與該第二側面之一底面,該第一側柱上形成有一第一夾持槽,該平板構件的該第一側面可活動地設置於該第一夾持槽內,該第二側柱,相對該第一側柱,該第二側柱上形成有一第二夾持槽,該平板構件的該第二側面可活動地設置於該第二夾持槽內,該底柱連接該第一側柱與該第二側柱且用以抵接該平板構件的該底面。The cassette body of claim 1, wherein the plate member has a first side, a second side opposite the first side, and a bottom surface connecting the first side and the second side, the first side Forming a first clamping groove on the column, the first side of the plate member is movably disposed in the first clamping groove, and the second side column is opposite to the first side column, the second side column Forming a second clamping slot, the second side of the plate member is movably disposed in the second clamping slot, the bottom post connecting the first side post and the second side post and abutting the The bottom surface of the plate member. 如請求項5所述之卡匣本體,其中該底柱的柱寬實質上等於該底面的寬度。The cassette body of claim 5, wherein the column width of the bottom post is substantially equal to the width of the bottom surface.
TW105200045U 2015-07-27 2016-01-04 Cassette body capable of reducing liquid turbulence when soaking into a liquid TWM521064U (en)

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US201562197105P 2015-07-27 2015-07-27

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TW104217353U TWM515418U (en) 2015-07-27 2015-10-30 Basin for washing a plate member
TW104135695A TWI571320B (en) 2015-07-27 2015-10-30 Basin for washing a plate member
TW104218819U TWM519645U (en) 2015-07-27 2015-11-24 Liquid recycling system capable of reducing liquid turbulence
TW104138864A TW201704129A (en) 2015-07-27 2015-11-24 Liquid recycling system capable of reducing liquid turbulence
TW104219574U TWM522082U (en) 2015-07-27 2015-12-07 Automation system for washing a plate member
TW104140900A TWI571321B (en) 2015-07-27 2015-12-07 Automation system for washing a plate member
TW105100030A TWI572533B (en) 2015-07-27 2016-01-04 Cassette body for holding a plate member
TW105200045U TWM521064U (en) 2015-07-27 2016-01-04 Cassette body capable of reducing liquid turbulence when soaking into a liquid
TW105200012U TWM523187U (en) 2015-07-27 2016-01-04 Cassette body for holding a plate member
TW105200022U TWM520515U (en) 2015-07-27 2016-01-04 Cassette body for holding a plate member
TW105100047A TWI574895B (en) 2015-07-27 2016-01-04 Cassette body for holding a plate member
TW105100094A TWI561452B (en) 2015-07-27 2016-01-04 Cassette body capable of reducing liquid turbulence when soaking into a liquid

Family Applications Before (7)

Application Number Title Priority Date Filing Date
TW104217353U TWM515418U (en) 2015-07-27 2015-10-30 Basin for washing a plate member
TW104135695A TWI571320B (en) 2015-07-27 2015-10-30 Basin for washing a plate member
TW104218819U TWM519645U (en) 2015-07-27 2015-11-24 Liquid recycling system capable of reducing liquid turbulence
TW104138864A TW201704129A (en) 2015-07-27 2015-11-24 Liquid recycling system capable of reducing liquid turbulence
TW104219574U TWM522082U (en) 2015-07-27 2015-12-07 Automation system for washing a plate member
TW104140900A TWI571321B (en) 2015-07-27 2015-12-07 Automation system for washing a plate member
TW105100030A TWI572533B (en) 2015-07-27 2016-01-04 Cassette body for holding a plate member

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TW105200012U TWM523187U (en) 2015-07-27 2016-01-04 Cassette body for holding a plate member
TW105200022U TWM520515U (en) 2015-07-27 2016-01-04 Cassette body for holding a plate member
TW105100047A TWI574895B (en) 2015-07-27 2016-01-04 Cassette body for holding a plate member
TW105100094A TWI561452B (en) 2015-07-27 2016-01-04 Cassette body capable of reducing liquid turbulence when soaking into a liquid

Country Status (2)

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CN (2) CN205362162U (en)
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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
TWI561452B (en) * 2015-07-27 2016-12-11 Mirle Automation Corp Cassette body capable of reducing liquid turbulence when soaking into a liquid

Families Citing this family (2)

* Cited by examiner, † Cited by third party
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