WO2019047341A1 - 一种缓冲件及压合装置 - Google Patents
一种缓冲件及压合装置 Download PDFInfo
- Publication number
- WO2019047341A1 WO2019047341A1 PCT/CN2017/107254 CN2017107254W WO2019047341A1 WO 2019047341 A1 WO2019047341 A1 WO 2019047341A1 CN 2017107254 W CN2017107254 W CN 2017107254W WO 2019047341 A1 WO2019047341 A1 WO 2019047341A1
- Authority
- WO
- WIPO (PCT)
- Prior art keywords
- conductive film
- anisotropic conductive
- cushioning member
- buffer
- pressing device
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Ceased
Links
Classifications
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B30—PRESSES
- B30B—PRESSES IN GENERAL
- B30B15/00—Details of, or accessories for, presses; Auxiliary measures in connection with pressing
- B30B15/06—Platens or press rams
- B30B15/061—Cushion plates
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B32—LAYERED PRODUCTS
- B32B—LAYERED PRODUCTS, i.e. PRODUCTS BUILT-UP OF STRATA OF FLAT OR NON-FLAT, e.g. CELLULAR OR HONEYCOMB, FORM
- B32B37/00—Methods or apparatus for laminating, e.g. by curing or by ultrasonic bonding
- B32B37/0046—Methods or apparatus for laminating, e.g. by curing or by ultrasonic bonding characterised by constructional aspects of the apparatus
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B32—LAYERED PRODUCTS
- B32B—LAYERED PRODUCTS, i.e. PRODUCTS BUILT-UP OF STRATA OF FLAT OR NON-FLAT, e.g. CELLULAR OR HONEYCOMB, FORM
- B32B37/00—Methods or apparatus for laminating, e.g. by curing or by ultrasonic bonding
- B32B37/10—Methods or apparatus for laminating, e.g. by curing or by ultrasonic bonding characterised by the pressing technique, e.g. using action of vacuum or fluid pressure
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- G—PHYSICS
- G02—OPTICS
- G02F—OPTICAL DEVICES OR ARRANGEMENTS FOR THE CONTROL OF LIGHT BY MODIFICATION OF THE OPTICAL PROPERTIES OF THE MEDIA OF THE ELEMENTS INVOLVED THEREIN; NON-LINEAR OPTICS; FREQUENCY-CHANGING OF LIGHT; OPTICAL LOGIC ELEMENTS; OPTICAL ANALOGUE/DIGITAL CONVERTERS
- G02F1/00—Devices or arrangements for the control of the intensity, colour, phase, polarisation or direction of light arriving from an independent light source, e.g. switching, gating or modulating; Non-linear optics
- G02F1/01—Devices or arrangements for the control of the intensity, colour, phase, polarisation or direction of light arriving from an independent light source, e.g. switching, gating or modulating; Non-linear optics for the control of the intensity, phase, polarisation or colour
- G02F1/13—Devices or arrangements for the control of the intensity, colour, phase, polarisation or direction of light arriving from an independent light source, e.g. switching, gating or modulating; Non-linear optics for the control of the intensity, phase, polarisation or colour based on liquid crystals, e.g. single liquid crystal display cells
- G02F1/1303—Apparatus specially adapted to the manufacture of LCDs
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B32—LAYERED PRODUCTS
- B32B—LAYERED PRODUCTS, i.e. PRODUCTS BUILT-UP OF STRATA OF FLAT OR NON-FLAT, e.g. CELLULAR OR HONEYCOMB, FORM
- B32B2457/00—Electrical equipment
- B32B2457/20—Displays, e.g. liquid crystal displays, plasma displays
Definitions
- the present application relates to the field of processing equipment, and in particular to attaching an anisotropic conductive film on an display panel (Anisotropic) Conductive Film (ACF) is a press-fit device and a cushioning member on the device.
- ACF anisotropic Conductive Film
- liquid crystal displays As display panels, and liquid crystal displays are already an important component.
- the liquid crystal display In addition to the liquid crystal panel, the liquid crystal display must be connected to the driver chip as a display signal for control purposes.
- ACF thermo-welding technology uses ACF to bond IC or integrated circuit on LCD glass substrate by pre-compression. When pre-pressing, different buffers on the press device will affect the success rate of attaching.
- the cushioning member is mainly a wrap-around cushioning member and a box-type cushioning member, wherein the wrapped cushioning member is not fixed firmly, the use is easy to fall off, and the failure rate of attaching is high, more than 2%; the box-shaped cushioning member is large in volume, and is replaced when it is replaced. It is easy to touch the product and cause fragmentation. It is inconvenient to use and replace, which affects the use efficiency of the attached machine. Moreover, the two types of buffer members are frequently replaced, and are replaced once in two days, and the replacement time is long, which takes 10 minutes, resulting in long downtime and low work efficiency.
- the utility model provides a buffering device and a pressing device, which can improve the success rate of attaching the ACF film to the pressing device, the fixing effect of the buffering member is good, the use and replacement are convenient, the use efficiency of the ACF attaching machine is improved, and the downtime is reduced. Reduce the risk of fragmentation during the process of replacing the cushioning material.
- the present application provides a cushioning member for use in a press-fit apparatus, the press-fit device comprising an anisotropic conductive film press, the cushioning member comprising:
- the embedding portion is made of an elastic material for inserting and mounting to the anisotropic conductive film pressure
- the buffer portion is made of a second elastic material, and the buffer portion is in close contact with the lower end surface of the lower end portion of the anisotropic conductive film press.
- the present application provides a cushioning member for use in a press-fit apparatus, the press-fit device comprising an anisotropic conductive film press, the cushioning member comprising:
- An inserting portion for inserting and mounting to a lower end portion of the anisotropic conductive film presser
- the buffer portion is connected to the embedded portion for abutting against a lower end surface of the lower end portion of the anisotropic conductive film press, the buffer portion having a rectangular cross section;
- the buffer member is an integrally formed silicone member.
- the present application provides a pressing device for pressing an anisotropic conductive film on a liquid crystal display panel, wherein the pressing device includes an anisotropic conductive film pressing blade and a buffering member, wherein The lower end portion of the anisotropic conductive film pressing knife is provided with a groove, and the buffering member comprises:
- the embedding portion is made of a first elastic material and embedded in the groove of the anisotropic conductive film pressing knife;
- the buffer portion is made of a second elastic material, and the buffer portion is in close contact with the lower end surface of the lower end portion of the anisotropic conductive film press.
- the embodiment of the present application discloses a cushioning member and a pressing device.
- the buffering member is divided into an embedding portion and a buffer portion.
- the embedding portion is embedded in the anisotropic conductive film pressing knife, and the buffering member is fixed on the anisotropic conductive rubber.
- the lower portion of the film pressing blade is attached to the lower end surface of the anisotropic conductive film pressing blade, and the embedding portion and the buffer portion are made of an elastic material, and the buffer portion can be attached to the ACF film in the pressing device.
- the buffer is provided to improve the adhesion rate and the pass rate; the buffer member is combined with the anisotropic conductive film pressing knife, and the combination is firmer, not easy to fall off and break, save the internal space of the device, improve the replacement cycle, and shorten the time. Replacement time, easy replacement and management, reduce downtime of ACF attached machine, and improve the efficiency of ACF attaching machine.
- FIG. 1 is a schematic perspective structural view of a cushioning member disclosed in an embodiment of the present application.
- FIG. 2 is a schematic perspective structural view of an anisotropic conductive film press in a press-fit apparatus according to an embodiment of the present application.
- FIG. 3 is a schematic view showing the installation of the cushioning member shown in FIG. 1 to the anisotropic conductive film pressing knife shown in FIG. 2.
- FIG. 4 is a schematic perspective structural view of another cushioning member disclosed in an embodiment of the present application.
- FIG. 5 is a schematic cross-sectional view of a cushioning member embedded portion according to an embodiment of the present application.
- FIG. 1 is a schematic perspective view of a buffer member 10 according to an embodiment of the present application.
- the cushioning member 10 of the present embodiment is used for mounting to the anisotropic conductive film press 20 in the press-fitting device, as shown in FIGS. 2 and 3.
- the cushioning member 10 includes an embedded portion 101 and a buffer portion 102.
- the embedding portion 101 is made of a first elastic material for embedding in a recess 201 mounted to a lower end portion of the anisotropic conductive film press 20; the buffer portion 102 is made of a second elastic material The buffer portion is in close contact with the lower end surface of the lower end portion of the anisotropic conductive film press 20 .
- the first elastic material and the second elastic material may be the same elastic material or different elastic materials; the elastic material is used for the anisotropic conductive film in the pressing device.
- the pressure knives 20 provide cushioning so that the ACF film is not easily broken when the ACF film is attached to the liquid crystal panel, and the adhesion rate and the yield are improved.
- the first elastic material and the second elastic material are the same, both are silicone materials, and the embedded portion 101 and the buffer portion 102 are integrally formed, and the elastic portion is understandably
- the material can also be rubber or elastic plastic.
- the embedding portion 101 includes an upper end surface embedded in a lower end portion of the anisotropic conductive film press 20 and a lower end surface connected to the buffer portion 102, and the cross section of the embedding portion 101 is a regular polygon.
- the embedded portion 101 has a trapezoidal cross section, and the embedded portion 101 can be caught in the recess 201 of the anisotropic conductive film pressing blade 20, thereby fixing the buffering member 10 in the seat. It is not easy to fall off on the press-fit device.
- the cross section of the embedded portion 101 is a trapezoid having an upper width and a lower width to fix the cushioning member 10 in the recess 201 of the anisotropic conductive film press 20 .
- the trapezoid upper base W1 has a value of 1.6 cm
- the lower bottom W2 has a value of 1 cm
- the high H1 has a value of 1.5 cm.
- the buffer portion 102 has a rectangular cross section, and the buffer portion 102 is consistent with the length and width of the anisotropic conductive film press 20, and is in close contact with the anisotropic conductive film press 20
- the end face provides cushioning for the anisotropic conductive film press 20 .
- the length L of the rectangle is 3 cm
- the height H2 is 1 cm.
- the embodiment of the present application is used in a pressing device by a cushioning device, the pressing device includes an anisotropic conductive film pressing knife, and the buffering member comprises: an inserting portion, which is made of a first elastic material, Embedded in the lower end portion of the anisotropic conductive film press; the buffer portion is made of a second elastic material, and the buffer portion is connected to the embedded portion for adhering to the anisotropy
- the lower end surface of the lower end of the conductive film pressing knife can improve the success rate of the ACF film attached to the pressing device, the fixing effect of the buffering member is good, and the use and replacement are convenient, and the use condition of the buffering member can be quantified, convenient for management, and the ACF is improved.
- the efficiency of the attaching machine reduces the downtime and reduces the risk of fragmentation during the replacement of the cushioning material.
- FIG. 1 is a cushioning member disclosed in an embodiment of the present application, which is used in a pressing device, and the pressing device includes an anisotropic conductive film pressing knife 20 , and the buffering member 10 is integrally formed.
- the silicone member includes an embedded portion 101 and a buffer portion 102.
- the embedding portion 101 is configured to be embedded in the lower end groove 201 of the anisotropic conductive film press.
- the cross section of the embedding portion 101 is a regular polygon, and the embedding portion 101 can be stuck.
- the anisotropic conductive film press 20 is recessed in the groove 201 to fix the buffer member 10 to the anisotropic conductive film press 20, which is not easy to fall off.
- the buffer portion 102 has a rectangular cross section connected to the embedded portion, and has the same length and width as the anisotropic conductive film press 20, and is in close contact with the lower end portion of the anisotropic conductive film press The lower end surface provides a buffer for the anisotropic conductive film press 20 .
- Embodiments of the present application provide a cushioning member for use in a press-fit apparatus, the press-fit device including an anisotropic conductive film press, wherein the buffer member includes: an insert portion for embedding and mounting a lower end portion of the anisotropic conductive film press, the cross section of the embedding portion is a regular polygon; a buffer portion connected to the embedding portion for adhering to the anisotropic conductive adhesive a lower end surface of the lower end portion of the film pressing blade, wherein the buffer portion has a rectangular cross section, wherein the buffering member is an integrally formed silicone member, which can improve the success rate of attaching the ACF film to the pressing device, and the cushioning member has a good fixing effect. It is convenient to use and replace, and the use condition of the buffer member can be quantified, convenient to manage, improve the use efficiency of the ACF attaching machine, reduce the downtime, and reduce the risk of fragmentation during the process of replacing the buffer material.
- FIG. 2 is a schematic perspective structural view of an anisotropic conductive film pressing knife in a pressing device according to an embodiment of the present application.
- FIG. 3 is a schematic view showing the installation of the cushioning member shown in FIG. 1 to the anisotropic conductive film pressing knife shown in FIG. 2.
- the pressing device of the embodiment includes an anisotropic conductive film presser 20 and a buffer member 10 mounted on the lower end of the anisotropic conductive film press 20, and of course, other There are parts and will not be described here.
- the anisotropic conductive film presser 20 is connected to a power device (not shown) of the ACF attaching machine, so that the power device provides power to the anisotropic conductive film presser 20,
- the lower end portion of the anisotropic conductive film pressing blade 20 has a groove 201, and the shape of the groove 201 matches the shape of the embedded portion 101 of the cushioning member 10, and is a long and narrow elongated three-dimensional structure.
- the embedding portion 101 of the cushioning member 10 and the recess 201 of the anisotropic conductive film pressing blade 20 in the present embodiment are both trapezoidal structures.
- the embedded portion 101 has a trapezoidal cross section
- the trapezoidal upper base W1 has a value of 1.6 cm
- the lower bottom W2 has a value of 1 cm, which is high.
- the value of H1 is 1.5 cm.
- the groove 201 has a trapezoidal structure in cross section.
- the buffer portion 102 has a rectangular cross section, the length L of the rectangle is 3 cm, and the height H2 is 1 cm.
- the buffer portion 102 is Consistent with the length and width of the lower end surface of the anisotropic conductive film press 20, the buffer portion 102 is in close contact with the lower end surface of the anisotropic conductive film press 20, and operates in the press device. At this time, the buffer portion 102 provides a buffer between the anisotropic conductive film press 20 and the ACF film to improve the attaching success rate.
- the embedding portion 101 is embedded in the groove 201, and the buffer member 10 is fixed on the anisotropic conductive film pressing blade 20.
- the cushioning member 10 is not easy to fall off due to its trapezoidal shape;
- the embedded portion 101 of the member 10 and the groove 201 of the anisotropic conductive film press 20 are matched in shape, and the replacement buffer member 10 can gradually fill the recess portion 201 of the cushion member 10 along the groove 201.
- the cushioning member 10 can be mounted on the anisotropic conductive film pressing blade 20 from left to right or from right to left, which is convenient for replacement, reduces downtime, and improves efficiency.
- the embodiment of the present application provides a pressing device for pressing an anisotropic conductive film on a display panel, wherein the pressing device includes: an anisotropic conductive film pressing knife, and the anisotropic conductive a lower end portion of the film press knife is provided with a groove; and a buffer member comprising: an insert portion made of a first elastic material embedded in the concave portion of the anisotropic conductive film press knife The buffer portion is made of a second elastic material, and the buffer portion is connected to the embedded portion and is in close contact with the lower end surface of the lower end portion of the anisotropic conductive film pressing blade, so that the pressing device can be improved.
- the cushioning member has a good fixing effect, and is convenient to use and replace, and the use condition of the cushioning member can be quantified, convenient for management, improve the use efficiency of the ACF attaching machine, reduce the downtime, and reduce the replacement of the cushioning material.
- FIG. 4 is a schematic perspective view of a buffer member 40 according to another embodiment of the present application.
- the cushioning member 40 includes an embedded portion 401 and a buffer portion 402.
- the embedding portion 401 is made of a first elastic material for embedding in a groove mounted to a lower end portion of the anisotropic conductive film press 20; the buffer portion 402 is made of a second elastic material.
- the buffer portion is in close contact with the lower end surface of the lower end portion of the anisotropic conductive film press 20 .
- the first elastic material and the second elastic material may be the same elastic material or different elastic materials; the elastic material is used for pressing the anisotropic conductive film of the pressing device.
- the knife 20 provides cushioning so that the ACF film is not easily broken when the ACF film is attached to the liquid crystal panel, and the adhesion rate and the yield are improved.
- the first elastic material and the second elastic material are the same, both are silicone materials, and the embedded portion 401 and the buffer portion 402 are integrally formed, specifically, the elastic material. It can also be rubber or elastic plastic.
- the embedding portion 401 includes an upper end surface embedded in a lower end portion of the anisotropic conductive film pressing blade 20 and a lower end surface connected to the buffer portion 402. In the embodiment, the embedding portion 401 is a hexagonal structure. To fix the cushioning member 40 in the recess of the anisotropic conductive film presser 20.
- the embedding portion 401 may also be a structure of other regular polygons, and the buffer portion 402 is consistent with the length and width of the anisotropic conductive film pressing blade 20, And adhering to the lower end surface of the anisotropic conductive film press 20 to provide buffer for the anisotropic conductive film press 20 .
- a cushioning member and a pressing device are disclosed.
- the fitting portion of the cushioning member and the groove shape of the pressing device are matched to each other, so that the cushioning member and the pressing device are fixed more firmly and prevented from falling off.
- the cushioning member can be replaced along the groove when replacing the cushioning member, so that the replacement is convenient and quick, and the downtime of the ACF attaching machine due to the replacement of the cushioning member is reduced, and the use efficiency is improved. Easy to manage.
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Abstract
一种缓冲件及压合装置,缓冲件(10)用于压合装置中,压合装置包括异方性导电胶膜压刀(20),缓冲件(10)包括:嵌入部(101),由第一弹性材料制成,用于嵌入安装到异方性导电胶膜压刀(20)的下端部;缓冲部(102),由第二弹性材料制成,缓冲件紧贴于异方性导电胶膜压刀(20)下端部的下端面。
Description
技术领域
本申请涉及加工设备技术领域,尤其涉及用于在显示面板上贴附异方性导电胶膜(Anisotropic
Conductive Film,简称ACF)的压合装置以及该装置上的缓冲件。
背景技术
随着电子产品朝轻、薄、短、小化快速发展,各种携带式电子产品几乎都以液晶显示器作为显示面板,液晶显示器已是重要的组成组件。液晶显示器除了液晶面板外,在其外围必须连动驱动芯片作为显示讯号之控制用途。其中,我们可以使用ACF热压焊接技术将液晶面板与驱动芯片相接合。ACF热压焊接技术是运用ACF,通过预压将IC或集成电路邦定在LCD玻璃基板上,而预压时,压合装置上的不同的缓冲件会影响贴附的成功率,现有的缓冲件主要为包裹式缓冲件和箱式缓冲件,其中包裹式缓冲件固定不牢靠,使用容易脱落,贴附的失败率高,大于2%;箱式缓冲件冲材支架体积大,更换时容易触碰到产品造成破片,使用与更换不方便,影响贴附机的使用效率。而且这两种缓冲件更换频繁,基本两天就要更换一次,更换的时间长,均需要10分钟,导致停机的时间长,工作效率低。
发明内容
本申请提供了一种缓冲件及压合装置,能够提高压合装置贴附ACF膜的成功率,缓冲件固定效果好,方便使用与更换,提高ACF贴附机的使用效率,减少停机的时间,降低更换缓冲材料过程中造成破片的风险。
一方面,本申请提供了一种缓冲件,用于压合装置中,所述压合装置包括异方性导电胶膜压刀,所述缓冲件包括:
嵌入部,由一弹性材料制成,用于嵌入安装到所述异方性导电胶膜压
缓冲部,由第二弹性材料制成,所述缓冲部紧贴于所述异方性导电胶膜压刀下端部的下端面。
另一方面,本申请提供了一种缓冲件,用于压合装置中,所述压合装置包括异方性导电胶膜压刀,所述缓冲件包括:
嵌入部,用于嵌入安装到所述异方性导电胶膜压刀的下端部,所述嵌
缓冲部,所述缓冲部与所述嵌入部相连,用于紧贴于所述异方性导电胶膜压刀下端部的下端面,所述缓冲部的横截面为长方形;
其中,所述缓冲件为一体成型的硅胶部件。
又一方面,本申请提供了一种压合装置,用于将异向导电膜压合在液晶显示面板上,所述压合装置包括异方性导电胶膜压刀和缓冲件,其中,所述异方性导电胶膜压刀的下端部设有一凹槽,所述缓冲件包括:
嵌入部,由第一弹性材料制成,嵌入安装到所述异方性导电胶膜压刀的所述凹槽内;
缓冲部,由第二弹性材料制成,所述缓冲部紧贴于所述异方性导电胶膜压刀下端部的下端面。
本申请实施例揭示了一种缓冲件及压合装置,该缓冲件分为嵌入部与缓冲部,嵌入部嵌入在异方性导电胶膜压刀内,将缓冲件固定在异方性导电胶膜压刀的下部,缓冲部贴附于异方性导电胶膜压刀的下端面,嵌入部与缓冲部均由弹性材料制成,缓冲部能够在压合装置在进行ACF膜贴附的过程中提供缓冲,提高贴附率和合格率;缓冲件采用嵌入的方式与异方性导电胶膜压刀结合,结合更牢固,不易脱落和破损,节省设备内部空间,提高了更换周期,缩短了更换时间,便于更换与管理,减少ACF贴附机的停机时间,提高ACF贴附机的使用效率。
附图说明
为了更清楚地说明本申请实施例技术方案,下面将对实施例描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图是本申请的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图。
图1为本申请实施例公开的一种缓冲件的立体结构示意图。
图2为本申请实施例公开的一种压合装置中异方性导电胶膜压刀的立体结构示意图。
图3展示了图1所示缓冲件安装到图2所示异方性导电胶膜压刀的安装示意图。
图4为本申请实施例公开的另一种缓冲件的立体结构示意图。
图5为本申请实施例公开的一种缓冲件嵌入部的横截面示意图。
具体实施方式
下面将结合本申请实施例中的附图,对本申请实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例是本申请一部分实施例,而不是全部的实施例。基于本申请中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都属于本申请保护的范围。
应当理解,当在本说明书和所附权利要求书中使用时,术语“包括”和
“包含”指示所描述特征、整体、步骤、操作、元素和/或组件的存在,但并不排除一个或多个其它特征、整体、步骤、操作、元素、组件和/或其集合的存在或添加。
还应当理解,在此本申请说明书中所使用的术语仅仅是出于描述特定实施例的目的而并不意在限制本申请。如在本申请说明书和所附权利要求书中所使用的那样,除非上下文清楚地指明其它情况,否则单数形式的“一”、“一个”及“该”意在包括复数形式。
请参看图1,其为本申请实施例公开的一种缓冲件10的立体结构示意图。本实施例的缓冲件10用于安装到压合装置中的异方性导电胶膜压刀20上,如图2和图3所示。
参照图1并结合图2、图3和图5,在本实施例中,所述缓冲件10包括嵌入部101和缓冲部102。
所述嵌入部101由第一弹性材料制成,用于嵌入安装到所述异方性导电胶膜压刀20的下端部的凹槽201内;所述缓冲部102由第二弹性材料制成,所述缓冲部紧贴于所述异方性导电胶膜压刀20下端部的下端面。具体地,所述第一弹性材料和所述第二弹性材料可以是相同的弹性材料,也可以是不同的弹性材料;所述弹性材料是用来为压合装置中的异方性导电胶膜压刀20提供缓冲,使得压合装置在将ACF膜贴附在液晶面板时,ACF膜不易破碎,提高贴附率和合格率。
在本实施例中,所述第一弹性材料和所述第二弹性材料相同,均为硅胶材料,且所述嵌入部101和所述缓冲部102为一体成型的,可理解地,所述弹性材料还可以是橡胶,也可为弹性塑料。所述嵌入部101包括嵌入在所述异方性导电胶膜压刀20下端部的上端面和与缓冲部102连接的下端面,所述嵌入部101的横截面为规则多边形。具体地,所述嵌入部101的横截面为梯形,能够使所述嵌入部101卡在所述异方性导电胶膜压刀20的凹槽201内,从而将所述缓冲件10固定在所述压合装置上,不易脱落。在本实施例中,所述嵌入部101的横截面为上宽下窄的梯形,以将缓冲件10固定在所述异方性导电胶膜压刀20的凹槽201内。在某些可行实施例,例如本实施例中,所述梯形的上底W1的取值为1.6cm,其下底W2的取值为1cm,其高H1的取值为1.5cm。所述缓冲部102的横截面为长方形,所述缓冲部102与所述异方性导电胶膜压刀20的长宽一致,并紧贴于所述异方性导电胶膜压刀20的下端面,为所述异方性导电胶膜压刀20提供缓冲。在某些可行实施例,例如本实施例中,所述长方形的长L的取值为3cm,其高H2的取值为1cm。
本申请实施例通过一种缓冲件,用于压合装置中,所述压合装置包括异方性导电胶膜压刀,所述缓冲件包括:嵌入部,由第一弹性材料制成,用于嵌入安装到所述异方性导电胶膜压刀的下端部;缓冲部,由第二弹性材料制成,所述缓冲部与所述嵌入部相连,用于紧贴于所述异方性导电胶膜压刀下端部的下端面,可以提高压合装置贴附ACF膜的成功率,缓冲件固定效果好,方便使用与更换,而且该缓冲件的使用状况能够量化,方便管理,提高ACF贴附机的使用效率,减少停机的时间,降低更换缓冲材料过程中造成破片的风险。
请继续参考图1,其为本申请实施例公开的一种缓冲件,用于压合装置中,所述压合装置包括异方性导电胶膜压刀20,所述缓冲件10为一体成型的硅胶部件,其包括嵌入部101和缓冲部102。
所述嵌入部101,用于嵌入安装到所述异方性导电胶膜压刀的下端部凹槽201内,所述嵌入部101的横截面为规则多边形,能够使所述嵌入部101卡在所述异方性导电胶膜压刀20的凹槽201内,从而将所述缓冲件10固定在所述异方性导电胶膜压刀20上,不易脱落。所述缓冲部102的横截面为长方形与所述嵌入部相连,与所述异方性导电胶膜压刀20的长宽一致,并紧贴于所述异方性导电胶膜压刀下端部的下端面,为所述异方性导电胶膜压刀20提供缓冲。
本申请实施例通过提供一种缓冲件,用于压合装置中,所述压合装置包括异方性导电胶膜压刀,其中,所述缓冲件包括:嵌入部,用于嵌入安装到所述异方性导电胶膜压刀的下端部,所述嵌入部的横截面为规则多边形;缓冲部,所述缓冲部与所述嵌入部相连,用于紧贴于所述异方性导电胶膜压刀下端部的下端面,所述缓冲部的横截面为长方形,其中,所述缓冲件为一体成型的硅胶部件,可以提高压合装置贴附ACF膜的成功率,缓冲件固定效果好,方便使用与更换,而且该缓冲件的使用状况能够量化,方便管理,提高ACF贴附机的使用效率,减少停机的时间,降低更换缓冲材料过程中造成破片的风险。
请参看图2、图3和图5,图2为本申请实施例公开的一种压合装置中异方性导电胶膜压刀的立体结构示意图。图3展示了图1所示缓冲件安装到图2所示异方性导电胶膜压刀的安装示意图。
如图所示,本实施例的压合装置包括异方性导电胶膜压刀20以及安装于所述异方性导电胶膜压刀20下端部的缓冲件10,当然,还可包括其它现有部件,在此不再赘述。其中,所述异方性导电胶膜压刀20与ACF贴附机的动力装置(图未示)相连接,从而由该动力装置为所述异方性导电胶膜压刀20提供动力,该异方性导电胶膜压刀20的下端部有一凹槽201,所述凹槽201的形状与所述缓冲件10的嵌入部101形状相匹配,均为上宽下窄的长条形立体结构,例如,本实施例中所述缓冲件10的嵌入部101与所述异方性导电胶膜压刀20的凹槽201均为梯形结构。在某些可行实施例,例如本实施例中,所述嵌入部101的横截面为梯形,所述梯形的上底W1的取值为1.6cm,其下底W2的取值为1cm,其高H1的取值为1.5cm。在本实施例中,如图2所示,所述凹槽201的横截面为梯形结构。在某些可行实施例,例如本实施例中,所述缓冲部102的横截面为长方形,所述长方形的长L的取值为3cm,其高H2的取值为1cm,所述缓冲部102与所述异方性导电胶膜压刀20的下端面的长宽一致,所述缓冲部102紧贴于所述异方性导电胶膜压刀20的下端面,在所述压合装置工作时,所述缓冲部102在所述异方性导电胶膜压刀20与ACF膜之间提供缓冲,提高贴附成功率。所述嵌入部101嵌入在所述凹槽201内,将所述缓冲件10固定在所述异方性导电胶膜压刀20上,由于其梯形的形状,所述缓冲件10不易脱落;缓冲件10的嵌入部101和所述异方性导电胶膜压刀20的凹槽201形状相匹配,更换缓冲件10可以将缓冲件10的嵌入部101沿凹槽201逐渐填满凹槽201,如图3所示,可由左向右或由右向左将缓冲件10安装于所述异方性导电胶膜压刀20上,方便更换,减少停机时间,提高效率。
本申请实施例通过提供一种压合装置,用于将异向导电膜压合在显示面板上,其中,所述压合装置包括:异方性导电胶膜压刀,所述异方性导电胶膜压刀的下端部设有一凹槽;以及缓冲件,所述缓冲件包括:嵌入部,由第一弹性材料制成,嵌入安装到所述异方性导电胶膜压刀的所述凹槽内;以及缓冲部,由第二弹性材料制成,所述缓冲部与所述嵌入部相连且紧贴于所述异方性导电胶膜压刀下端部的下端面,可以提高压合装置贴附ACF膜的成功率,缓冲件固定效果好,方便使用与更换,而且该缓冲件的使用状况能够量化,方便管理,提高ACF贴附机的使用效率,减少停机的时间,降低更换缓冲材料过程中造成破片的风险。
请参看图4,其为本申请另一实施例公开的缓冲件40的立体结构示意图。在本实施例中,所述缓冲件40包括嵌入部401和缓冲部402。
所述嵌入部401由第一弹性材料制成,用于嵌入安装到所述异方性导电胶膜压刀20的下端部的凹槽内;所述缓冲部402由第二弹性材料制成,所述缓冲部紧贴于所述异方性导电胶膜压刀20下端部的下端面。具体地,所述第一弹性材料和所述第二弹性材料可以是相同的弹性材料,也可以是不同的弹性材料;所述弹性材料是用来为压合装置的异方性导电胶膜压刀20提供缓冲,使得压合装置在将ACF膜贴附在液晶面板时,ACF膜不易破碎,提高贴附率和合格率。在本实施例中,所述第一弹性材料和所述第二弹性材料相同,均为硅胶材料,且所述嵌入部401和所述缓冲部402为一体成型的,具体地,所述弹性材料还可以是橡胶,也可为弹性塑料。所述嵌入部401包括嵌入在所述异方性导电胶膜压刀20下端部的上端面和与缓冲部402连接的下端面,在本实施例中,所述嵌入部401为六边形结构,以将缓冲件40固定在所述异方性导电胶膜压刀20的凹槽内。可理解地,在本申请的其它实施例中,所述嵌入部401还可以是其他规则的多边形的结构,所述缓冲部402与所述异方性导电胶膜压刀20的长宽一致,并紧贴于所述异方性导电胶膜压刀20的下端面,为所述异方性导电胶膜压刀20提供缓冲。
上述实施例中,揭示了一种缓冲件及压合装置,该缓冲件的嵌入部和压合装置的凹槽形状为相匹配的结构,使缓冲件与压合装置固定的更牢固,防止脱落,提高ACF贴附机的贴附成功率。又因为缓冲件的嵌入部和压合装置的凹槽形状相匹配,更换缓冲件时可沿凹槽更换,使得更换方便快捷,减少ACF贴附机因更换缓冲件的停机时间,提高使用效率,方便管理。
以上所述,仅为本申请的具体实施方式,但本申请的保护范围并不局限于此,任何熟悉本技术领域的技术人员在本申请揭露的技术范围内,可轻易想到各种等效的修改或替换,这些修改或替换都应涵盖在本申请的保护范围之内。因此,本申请的保护范围应以权利要求的保护范围为准。
Claims (20)
- 一种缓冲件,用于压合装置中,所述压合装置包括异方性导电胶膜压刀,其中,所述缓冲件包括:嵌入部,由第一弹性材料制成,用于嵌入安装到所述异方性导电胶膜缓冲部,由第二弹性材料制成,所述缓冲部与所述嵌入部相连,用于紧贴于所述异方性导电胶膜压刀下端部的下端面。
- 根据权利要求1所述的缓冲件,其中,所述第一弹性材料和第二弹性材料相同,所述缓冲件为一体成型结构。
- 根据权利要求2所述的缓冲件,其中,所述缓冲件为一体成型的硅胶部件。
- 根据权利要求2所述的缓冲件,其中,所述缓冲件为一体成型的橡胶部件。
- 根据权利要求1所述的缓冲件,其中,所述嵌入部的横截面为规则多边形。
- 根据权利要求1所述的缓冲件,其中,所述嵌入部的横截面为梯形,所述缓冲部的横截面为长方形。
- 根据权利要求6所述的缓冲件,其中,所述梯形的上底为1.6cm,下底为1cm,高为1.5cm,所述长方形的长为3cm,高为1cm。
- 根据权利要求1所述的缓冲件,其中,所述缓冲部与所述异方性导电胶膜压刀的下端面长宽一致。
- 一种缓冲件,用于压合装置中,所述压合装置包括异方性导电胶膜压刀,其中,所述缓冲件包括:嵌入部,用于嵌入安装到所述异方性导电胶膜压刀的下端部,所述嵌缓冲部,所述缓冲部与所述嵌入部相连,用于紧贴于所述异方性导电胶膜压刀下端部的下端面,所述缓冲部的横截面为长方形;其中,所述缓冲件为一体成型的硅胶部件。
- 根据权利要求9所述的缓冲件,其中,所述嵌入部的横截面为梯形,其中所述梯形的上底为1.6cm,下底为1cm,高为1.5cm,所述缓冲部横截面长方形的长为3cm,高为1cm。
- 根据权利要求9所述的缓冲件,其中,所述缓冲部与所述异方性导电胶膜压刀的下端面长宽一致。
- 一种压合装置,用于将异向导电膜压合在显示面板上,其中,所述压合装置包括:异方性导电胶膜压刀,所述异方性导电胶膜压刀的下端部设有一凹槽;以及缓冲件,所述缓冲件包括:嵌入部,由第一弹性材料制成,嵌入安装到所述异方性导电胶膜压刀的所述凹槽内;以及缓冲部,由第二弹性材料制成,所述缓冲部与所述嵌入部相连且紧贴于所述异方性导电胶膜压刀下端部的下端面。
- 根据权利要求12所述的压合装置,其中,所述第一弹性材料和第二弹性材料相同,所述缓冲件为一体成型结构。
- 根据权利要求13所述的压合装置,其中,所述缓冲件为一体成型的硅胶部件。
- 根据权利要求13所述的压合装置,其中,所述缓冲件为一体成型的橡胶部件。
- 根据权利要求12所述的压合装置,其中,所述嵌入部的横截面为规则多边形。
- 根据权利要求12所述的压合装置,其中,所述嵌入部的横截面为梯形,所述缓冲部的横截面为长方形。
- 根据权利要求17所述的压合装置,其中,所述梯形的上底为1.6cm,下底为1cm,高为1.5cm,所述缓冲部的横截面为长方形,其中所述长方形的长为3cm,高为1cm。
- 根据权利要求12所述的压合装置,其中,所述缓冲部与所述异方性导电胶膜压刀的下端面长宽一致。
- 根据权利要求12所述的压合装置,其中,所述异方性导电胶膜压刀的所述凹槽与所述嵌入部的形状相匹配。
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| CN107450206A (zh) * | 2017-09-06 | 2017-12-08 | 惠科股份有限公司 | 一种缓冲件及压合装置 |
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2017
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- 2017-10-23 US US16/471,563 patent/US11312121B2/en active Active
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2022
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| TW476017B (en) * | 1999-01-22 | 2002-02-11 | Chunghwa Picture Tubes Ltd | Manufacturing method for liquid crystal panel and the device thereof |
| CN1434329A (zh) * | 2001-12-25 | 2003-08-06 | 株式会社东芝 | 热压接装置和热压接方法 |
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| CN207114947U (zh) * | 2017-09-06 | 2018-03-16 | 惠科股份有限公司 | 一种缓冲件及压合装置 |
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| US11312121B2 (en) | 2022-04-26 |
| US11745486B2 (en) | 2023-09-05 |
| US20190389192A1 (en) | 2019-12-26 |
| US20220212457A1 (en) | 2022-07-07 |
| CN107450206A (zh) | 2017-12-08 |
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