WO2020082591A1 - 面板切割装置 - Google Patents
面板切割装置 Download PDFInfo
- Publication number
- WO2020082591A1 WO2020082591A1 PCT/CN2018/124501 CN2018124501W WO2020082591A1 WO 2020082591 A1 WO2020082591 A1 WO 2020082591A1 CN 2018124501 W CN2018124501 W CN 2018124501W WO 2020082591 A1 WO2020082591 A1 WO 2020082591A1
- Authority
- WO
- WIPO (PCT)
- Prior art keywords
- rail
- cutting device
- panel cutting
- panel
- base
- 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
-
- C—CHEMISTRY; METALLURGY
- C03—GLASS; MINERAL OR SLAG WOOL
- C03B—MANUFACTURE, SHAPING, OR SUPPLEMENTARY PROCESSES
- C03B33/00—Severing cooled glass
- C03B33/02—Cutting or splitting sheet glass or ribbons; Apparatus or machines therefor
- C03B33/023—Cutting or splitting sheet glass or ribbons; Apparatus or machines therefor the sheet or ribbon being in a horizontal position
- C03B33/027—Scoring tool holders; Driving mechanisms therefor
Definitions
- the present application relates to the technical field of panel processing, in particular to a panel cutting device.
- the cutting head moves in the Z axis direction through the screw guide rail to the set cutting position. After the cutting head reaches the cutting position, the Z axis pressure is supplied to the positive pressure cylinder to apply positive pressure and The Z-axis motor exerts torsion to make the cutting head cut the panel.
- the friction force on the surface of the screw guide rail increases, resulting in the phenomenon that the cutting head slides smoothly in the Z-axis direction, resulting in poor cutting caused by the change in cutting depth when the panel is cut. .
- the purpose of the present application is to provide a panel cutting device that can smoothly move the cutting head in a predetermined direction, thereby avoiding the problem of poor panel cutting.
- the panel cutting device includes:
- a cutting head, the cutting head is used for cutting a panel
- An air-floating guide rail for moving the cutting head in a predetermined direction; the panel is any one of a glass substrate, a color film substrate, a thin-film transistor substrate, a liquid crystal cell, or an organic light-emitting display.
- the air float guide rail includes:
- a fixed base the fixed base has a base and a T-shaped guide rail
- the T-shaped rail includes a rail bottom and a rail waist perpendicular to the rail bottom, one end of the rail waist is connected to the base, and the other end of the rail waist is connected to the rail bottom;
- a sliding board, the sliding board includes:
- a T-shaped cavity matched with the T-shaped guide rail, the T-shaped guide rail of the fixed base is located in the T-shaped cavity of the slide plate;
- a plurality of throttles are arranged on the inner wall of the slide plate, and the inner wall of the slide plate surrounds the T-shaped cavity;
- a ventilation groove, the ventilation groove is provided inside the sliding plate, and the ventilation groove communicates with the throttle;
- At least one air inlet which is located inside the sliding plate and communicates with the ventilation groove.
- the restrictor is at least one of a small hole restrictor, a capillary restrictor, a toroidal restrictor, or a porous restrictor.
- the preparation material of the sliding board is any one of stainless steel, aluminum or carbon fiber reinforced material.
- the preparation material of the base is any one of stainless steel, aluminum or carbon fiber reinforced material.
- the T-shaped guide rail and the base are integrally formed.
- the T-shaped guide rail is located in the middle of the base.
- the size of the rail bottom rail horizontally placed on the first plane is smaller than the size of the base horizontally placed on the first plane, the first plane is where the rail bottom rail is located level.
- the inner wall of the sliding plate is further provided with a plurality of ring-shaped grooves, and the throttle is evenly distributed in the ring-shaped grooves.
- the vent groove is T-shaped and is disposed around the T-shaped cavity.
- the panel cutting device includes:
- a cutting head, the cutting head is used for cutting a panel
- An air-floating guide for moving the cutting head in a predetermined direction.
- the air float guide rail includes:
- a fixed base the fixed base has a base and a T-shaped guide rail
- the T-shaped rail includes a rail bottom and a rail waist perpendicular to the rail bottom, one end of the rail waist is connected to the base, and the other end of the rail waist is connected to the rail bottom;
- a sliding board, the sliding board includes:
- a T-shaped cavity matched with the T-shaped guide rail, the T-shaped guide rail of the fixed base is located in the T-shaped cavity of the slide plate;
- a plurality of throttles are arranged on the inner wall of the slide plate, and the inner wall of the slide plate surrounds the T-shaped cavity;
- a ventilation groove, the ventilation groove is provided inside the sliding plate, and the ventilation groove communicates with the throttle;
- At least one air inlet which is located inside the sliding plate and communicates with the ventilation groove.
- the restrictor is at least one of a small hole restrictor, a capillary restrictor, a toroidal restrictor, or a porous restrictor.
- the sliding plate is made of any one of stainless steel, aluminum, or carbon fiber reinforced materials.
- the preparation material of the base is any one of stainless steel, aluminum or carbon fiber reinforced material.
- the T-shaped guide rail and the base are integrally formed.
- the T-shaped guide rail is located in the middle of the base.
- the size of the rail bottom rail horizontally placed on the first plane is smaller than the size of the base horizontally placed on the first plane, the first plane is where the rail bottom rail is located flat.
- the inner wall of the sliding plate is further provided with a plurality of ring-shaped grooves, and the throttle is evenly distributed in the ring-shaped grooves.
- the vent groove is T-shaped and is disposed around the T-shaped cavity.
- the panel cutting device of the present application includes a cutting head and an air-floating guide.
- the air-floating guide moves the cutting head in a predetermined direction. Because the air-floating guide slides without contact, the air-floating guide wears very little, which can avoid wear due to the guide It causes bad problems when the cutting head cuts the panel.
- the air guide rail wear is extremely small, which can improve the use time of the guide rail and maintain the manufacturing accuracy of the guide rail for a long time, reducing maintenance work.
- the panel cutting device of the present application includes a cutting head and an air-floating guide.
- the air-floating guide moves the cutting head in a predetermined direction. Since the air-floating guide slides without contact, the air-floating guide wears very little, which can avoid the cutting head due to the guide rail wear. There are bad problems when cutting the panel. In addition, the wear of the air guide rail is extremely small, which can improve the use time of the guide rail and maintain the manufacturing accuracy of the guide rail for a long time, reducing maintenance work.
- FIG. 1 is a schematic structural diagram of a panel cutting device according to an embodiment of the application.
- FIG. 2 is a top view of the air float rail in the panel cutting device of FIG. 1.
- FIG. 2 is a top view of the air float rail in the panel cutting device of FIG. 1.
- the panel cutting device includes:
- Cutting head 11 the cutting head is used to cut the panel
- the air float guide 12 is used to move the cutting head 11 in a predetermined direction.
- the cutting head 11 is a cutter wheel, and the cutting head 11 cuts the horizontally placed panel by moving in the horizontal direction and the vertical direction.
- the cutting head moves in the vertical direction by The air-floating guide rail is implemented.
- the movement of the cutting head in the horizontal direction can also be realized by the movement of the air-floating guide rail.
- the air float guide 12 is based on the static pressure effect of the gas to achieve smooth movement without friction and vibration.
- This application uses the air float guide to move the cutting head in a predetermined direction. Since the air float guide moves without friction, vibration, and smooth movement, that is, the air float guide wears very little during the work process, which can avoid cutting due to the guide rail wear. There are bad problems in the head cutting panel; in addition, the air guide rail wear is extremely small, which can improve the use time of the guide rail and maintain the manufacturing accuracy of the guide rail for a long time, reducing maintenance work.
- FIG. 2 it is a top view of the air float guide rail 12 in the panel cutting device of this embodiment.
- the air float guide rail 12 includes:
- a fixed base 120 the fixed base 120 has a base 122 and a T-shaped rail 124,
- the T-shaped guide rail 124 includes a guide rail bottom 1240 and a rail waist 1242 perpendicular to the rail bottom 1240.
- One end of the rail waist 1242 is connected to the base 122, and the other end of the rail waist 1242 is connected to the rail bottom 1240;
- a sliding board 126, the sliding board 126 includes:
- the T-shaped cavity matched with the T-shaped rail 124, the T-shaped rail 124 of the fixed base 120 is located in the T-shaped cavity of the slide plate 126;
- a plurality of restrictors 1262, the restrictors 1262 are disposed on the inner wall of the sliding plate 126, and the inner wall of the sliding plate 126 forms a T-shaped cavity;
- the ventilation groove 1264 is arranged inside the sliding plate 126, and the ventilation groove 1264 communicates with the throttle 1262;
- At least one air inlet 1266 is located inside the sliding plate and communicates with the ventilation groove 1264.
- the air float guide rail of this embodiment injects compressed air through the air inlet, and then the compressed air enters the ventilation groove communicating with the air inlet, and then enters a plurality of ventilation grooves provided on the inner wall
- the connected restrictor enters the gap between the T-shaped guide rail and the inner wall of the slide plate from the restrictor.
- the gap between the T-shaped guide rail and the inner wall of the slide plate forms a gas film support.
- due to the The air-floating guide is open, and air will enter the gap between the base plate and the slide plate to return to the air along the gap between the rail waist and the slide plate, thereby forming an air film support between the base plate and the slide plate.
- one end of an air pipe is inserted into the air inlet of the slide plate through a pipe joint, the other end of the air pipe is connected to the compressed air supply device, and an electric proportional valve is also provided between the air inlet and the compressed air device. Control the flow of compressed air flowing into the air inlet, and continuously supply air to the air float guide when the air float guide works.
- the panel cutting device further includes a driving motor 20 and a driving part 30.
- the driving motor 20 moves the driving part downward through a screw connected to the driving motor 20, the driving part moves the slider 13 downward, and the slider 13 Is fixedly connected to the sliding plate 126 of the air-floating guide 12.
- the sliding plate 126 moves down along the T-shaped guide 124 until the positive pressure cylinder 14 contacts the connecting block 15 and the connecting block 15
- a cutting head 11 is provided at one end of the cutting head, and the cutting head 11 cuts the panel under the action of the positive pressure of the positive pressure cylinder and the torque of the drive motor 20.
- the restrictors 1262 are evenly distributed on the inner wall of the slide plate, so that the air holes can be uniformly injected into the gap between the inner wall of the slide plate 126 and the T-shaped guide rail 124 to form a stable gas film support.
- the restrictor 1262 is at least one of a small hole restrictor, a capillary restrictor, a toroidal restrictor, or a porous restrictor.
- the type of the restrictor 1262 can be based on the actual size and weight of the sliding plate 126 The selection is made so that the fixed base 120 and the sliding plate 126 can form a weight-balanced air float guide rail, which is not specifically limited in this application.
- the sliding board 126 is composed of a bottom, two vertical parts located at both ends of the bottom, and two support parts parallel to the bottom.
- the two support parts are vertically connected to the two vertical parts respectively.
- the two support portions are located on both sides of the T-shaped guide rail 124 respectively, and air enters the gap between the two support portions and the base 122 along the gap between the T-shaped guide rail 124 and the two support portions to form an air film support.
- the sliding plate 126 is integrally formed, and the preparation material of the sliding plate 126 is any one of stainless steel, aluminum, or carbon fiber reinforced materials, or other hard materials such as high-hardness metal alloys, etc. Specific restrictions.
- the base 122 is fixed in the panel cutting device, so that the T-shaped rail 124 fixedly connected to the base 122 is fixed, and the slide plate 126 can slide up and down along the T-shaped rail 124.
- the base 122 and the T-shaped guide rail 124 are integrally formed. In other embodiments, the base 122 and the T-shaped guide rail 124 may also be separated.
- the preparation material of the base 122 is any of stainless steel, aluminum, or carbon fiber reinforced materials One kind may also be other hard materials, such as high-hardness metal alloys, etc., which is not specifically limited in this application.
- the T-shaped guide rail 124 provides a slide rail for the slide plate 126 to move up and down.
- the T-shaped guide rail 124 is located in the middle of the base 122, and the guide rail bottom rail 1240 constituting the T-shaped guide rail 124 is parallel to the base 122
- the size of the bottom 1240 placed horizontally on the first plane is smaller than the size of the base 122 book review placed on the first plane.
- the first plane is the horizontal plane where the bottom rail 1240 of the guide rail is located.
- the T-shaped guide rail is made of stainless steel, aluminum or carbon fiber reinforced material Any one of them may also be other hard materials, such as high-hardness metal alloys, etc., which is not specifically limited in this application.
- the ventilation groove 1264 is provided inside the slide plate 126, and the ventilation groove 1264 is T-shaped and is disposed around the T-shaped cavity.
- a plurality of annular grooves are further provided on the inner wall of the slide plate 126, and the throttle 1262 is evenly distributed in the annular groove.
- the panel is any one of a glass substrate, a color filter substrate, a thin film transistor substrate, a liquid crystal cell, or an organic light-emitting display.
- the panel is a liquid crystal cell.
Landscapes
- Chemical & Material Sciences (AREA)
- Engineering & Computer Science (AREA)
- Materials Engineering (AREA)
- Organic Chemistry (AREA)
- Processing Of Stones Or Stones Resemblance Materials (AREA)
- Liquid Crystal (AREA)
Abstract
一种面板切割装置,其包括切割头(11)和气浮导轨(12),气浮导轨(12)使切割头(11)在预定方向上移动,由于气浮导轨(12)为无接触地滑动,气浮导轨(12)磨损极小,能够避免由于导轨磨损导致切割头(11)切割面板切割时出现不良问题,此外,气浮导轨(12)磨损极小,能提高导轨使用时间且使导轨长期保持制造精度,减少维修工作。
Description
本申请涉及面板加工技术领域,尤其涉及一种面板切割装置。
在液晶面板生产行业,玻璃面板切割机切割面板时,切割头在Z轴方向通过丝杆导轨移动到达设定的切割位置,切割头到达切割位置后,Z轴压力供给正压气缸施加正压且Z轴马达施加扭力,使切割头对面板进行切割。然而,由于丝杆导轨长时间使用导致丝杆导轨表面的摩擦力上升,从而出现切割头在Z轴方向滑动不顺畅的现象,导致面板在被切割时会出现切割深度发生变化引起的切割不良问题。
因此,有必要提出一种技术方案以解决现有面板切割机切割面板时由于切割头在Z轴方向滑动不顺畅而导致的面板切割不良问题。
本申请的目的在于提供一种面板切割装置,该面板切割装能使切割头在预定方向顺畅地移动,从而避免出现面板切割不良的问题。
一种面板切割装置,所述面板切割装置包括:
切割头,所述切割头用于切割面板;
气浮导轨,所述气浮导轨用于使所述切割头在预定方向移动;所述面板为玻璃基板、彩膜基板、薄膜晶体管基板、液晶盒或有机发光显示器的任意一种。
在上述面板切割装置中,所述气浮导轨包括:
一固定底座,所述固定底座具有一基座及一T型导轨,
所述T型导轨包括一导轨轨底和垂直于所述导轨轨底的轨腰,所述轨腰的一端与所述基座连接,所述轨腰的另一端与所述导轨轨底连接;
一溜板,所述溜板包括:
与所述T型导轨相配合的T型空腔,所述固定底座的所述T型导轨位于所述溜板的所述T型空腔中;
多个节流器,所述节流器设置于所述溜板的内壁上,所述溜板的内壁围合成所述T型空腔;
通气凹槽,所述通气凹槽设置于所述溜板的内部,所述通气凹槽与所述节流器连通;
至少一进气口,所述进气口位于所述溜板的内部且与所述通气凹槽连通。
在上述面板切割装置中,所述节流器为小孔节流器、毛细管节流器、环面节流器或多孔质节流器中的至少一种。
在上述所述的面板切割装置中,所述溜板的制备材料为不锈钢、铝或碳纤维增强材料中的任意一种。
在上述面板切割装置中,所述基座的制备材料为不锈钢、铝或碳纤维增强材料中的任意一种。
在上述面板切割装置中,所述T型导轨与所述基座一体成型。
在上述面板切割装置中,所述T型导轨位于所述基座的中间。
在上述面板切割装置中,所述导轨底轨水平放置在第一平面上的尺寸小于所述基座水平放置在所述第一平面的尺寸,所述第一平面为所述导轨底轨所在的水平面。
在上述面板切割装置中,所述溜板的内壁还设置有多个环型槽,所述节流器均匀地分布于所述环型槽中。
在上述面板切割装置中,所述通气凹槽为T型且围绕所述T型空腔设置。
一种面板切割装置,所述面板切割装置包括:
切割头,所述切割头用于切割面板;
气浮导轨,所述气浮导轨用于使所述切割头在预定方向移动。
在上述面板切割装置中,所述气浮导轨包括:
一固定底座,所述固定底座具有一基座及一T型导轨,
所述T型导轨包括一导轨轨底和垂直于所述导轨轨底的轨腰,所述轨腰的一端与所述基座连接,所述轨腰的另一端与所述导轨轨底连接;
一溜板,所述溜板包括:
与所述T型导轨相配合的T型空腔,所述固定底座的所述T型导轨位于所述溜板的所述T型空腔中;
多个节流器,所述节流器设置于所述溜板的内壁上,所述溜板的内壁围合成所述T型空腔;
通气凹槽,所述通气凹槽设置于所述溜板的内部,所述通气凹槽与所述节流器连通;
至少一进气口,所述进气口位于所述溜板的内部且与所述通气凹槽连通。
在上述面板切割装置中,所述节流器为小孔节流器、毛细管节流器、环面节流器或多孔质节流器中的至少一种。
在上述面板切割装置中,所述溜板的制备材料为不锈钢、铝或碳纤维增强材料中的任意一种。
在上述面板切割装置中,所述基座的制备材料为不锈钢、铝或碳纤维增强材料中的任意一种。
在上述面板切割装置中,所述T型导轨与所述基座一体成型。
在上述面板切割装置中,所述T型导轨位于所述基座的中间。
在上述面板切割装置中,所述导轨底轨水平放置在第一平面上的尺寸小于所述基座水平放置在所述第一平面的尺寸,所述第一平面为所述导轨底轨所在的平面。
在上述面板切割装置中,所述溜板的内壁还设置有多个环型槽,所述节流器均匀地分布于所述环型槽中。
在上述面板切割装置中,所述通气凹槽为T型且围绕所述T型空腔设置。
有益效果:本申请的面板切割装置包括切割头和气浮导轨,气浮导轨使切割头在预定方向上移动,由于气浮导轨为无接触地滑动,气浮导轨磨损极小,能够避免由于导轨磨损导致切割头切割面板切割时出现不良问题,此外,气浮导轨磨损极小,能提高导轨使用时间且使导轨长期保持制造精度,减少维修工作。
本申请的面板切割装置包括切割头和气浮导轨,气浮导轨使切割头在预定方向上移动,由于气浮导轨为无接触地滑动,气浮导轨磨损极小,能够避免由于导轨磨损导致切割头切割面板切割时出现不良问题,此外,气浮导轨磨损极小,能提高导轨使用时间且使导轨长期保持制造精度,减少维修工作。
图1为本申请一实施例的面板切割装置的结构示意图;
图2为图1面板切割装置中的气浮导轨的俯视图。
附图中的标注如下:
10面板切割装置
11切割头
12 气浮导轨
120固定底座
122基座
124 T型导轨
1240 导轨轨底
1242 轨腰
126 溜板
1262节流器
1264通气凹槽
1266进气口
以下各实施例的说明是参考附加的图示,用以例示本申请可用以实施的特定实施例。本申请所提到的方向用语,例如[上]、[下]、[前]、[后]、[左]、[右]、[内]、[外]、[侧面]等,仅是参考附加图式的方向。因此,使用的方向用语是用以说明及理解本申请,而非用以限制本申请。在图中,结构相似的单元是用以相同标号表示。
如图1所示,其为本申请提供的一实施例面板切割装置,该面板切割装置包括:
切割头11,切割头用于切割面板;
气浮导轨12,气浮导轨12用于使切割头11在预定方向移动。
在本实施例中,切割头11为刀轮,切割头11通过在水平方向和竖直方向移动以对水平放置的面板进行切割,在本实施例中,切割头在竖直方向的移动是通过气浮导轨实现的,在其他实施例中,切割头在水平方向的移动也可以通过气浮导轨的移动来实现。
气浮导轨12是基于气体静压效应以实现无摩擦和无震动地平滑移动。
本申请通过利用气浮导轨使切割头在预定方向上移动,由于气浮导轨移动时无摩擦、无震动且平滑移动,即气浮导轨在工作过程中磨损极小,能够避免由于导轨磨损导致切割头切割面板出现不良问题;此外,气浮导轨磨损极小,能提高导轨使用时间且使导轨长期保持制造精度,减少维修工作。
如图2所示,其为本实施例面板切割装置中的气浮导轨12的俯视图,该气浮导轨12包括:
一固定底座120,所述固定底座120具有一基座122及一T型导轨124,
T型导轨124包括一导轨轨底1240和垂直于导轨轨底1240的轨腰1242,轨腰1242的一端与所基座122连接,轨腰1242的另一端与导轨轨底1240连接;
一溜板126,溜板126包括:
与T型导轨124相配合的T型空腔,固定底座120的T型导轨124位于溜板126的T型空腔中;
多个节流器1262,节流器1262设置于溜板126的内壁上,溜板126的内壁围合成T型空腔;
通气凹槽1264,通气凹槽1264设置于溜板126的内部,通气凹槽1264与节流器1262连通;
至少一进气口1266,进气口1266位于溜板的内部且与通气凹槽1264连通。
面板切割装置工作时,本实施例的气浮导轨通过进气口注入压缩空气,随后,压缩空气进入与进气口连通的通气凹槽,接着,进入在内壁上设置的多个与通气凹槽连通的节流器,再从节流器进入T型导轨和溜板的内壁之间的间隙,在T型导轨和溜板的内壁之间的间隙形成气膜支撑,同时,由于本实施例的气浮导轨为开放式,空气会沿着轨腰与溜板的间隙进入基板与溜板之间的间隙以回到空气中,从而在基板和溜板之间的间隙形成气膜支撑。由于气浮导轨工作时,压缩空气是不断地注入进气口,故在T型导轨和溜板内壁之间的间隙以及基板和溜板之间的间隙始终有气膜支撑,使得溜板在垂直方向无摩擦、无震动且平滑移动,从而使得切割头能够顺畅地上下移动,避免传统导轨由于摩擦力增大或维护不当而出现卡顿现象导致切割头切割面板出现不良问题。
需要说明的是,一气管的一端通过管路接头嵌入溜板的进气口,该气管的另一端与压缩空气供给装置连接,在进气口和压缩空气装置之间还设置有电气比例阀以控制流入进气口的压缩空气流量,在气浮导轨工作时,持续地为气浮导轨供气。
请继续参阅图1,面板切割装置还包括驱动电机20以及驱动部30,驱动电机20通过与驱动电机20连接的螺杆使驱动部向下移动,驱动部使滑块13向下移动,滑块13的两侧与气浮导轨12的溜板126固定连接,滑块13向下移动时,溜板126沿着T型导轨124向下移动,至正压气缸14与连接块15接触,连接块15的一端设置有切割头11,切割头11在正压气缸的正压和驱动电机20扭力的作用下对面板进行切割。
在本实施例中,节流器1262均匀地分布在溜板的内壁上,从而使得气孔能够均匀地注入溜板126内壁和T型导轨124之间的间隙从而形成稳定的气膜支撑。节流器1262为小孔节流器、毛细管节流器、环面节流器或多孔质节流器中的至少一种,节流器1262的种类可以根据实际溜板126的大小以及重量等进行选择,从而使得固定底座120和溜板126能够形成重量平衡型的气浮导轨,本申请不做具体的限定。
在本实施例中,溜板126由一底部、位于底部两端的两垂直部以及两个与底部平行的支撑部组成,两个支撑部分别与两垂直部垂直连接,气浮导轨12工作时,两个支撑部分别位于T型导轨124的两侧,空气沿着T型导轨124和两个支撑部的间隙进入两个支撑部与基座122的间隙以形成气膜支撑。溜板126为一体成型,溜板126的制备材料为不锈钢、铝或碳纤维增强材料中的任意一种,也可以是其他的硬质的硬质材料,例如高硬度金属合金等,本申请不做具体的限定。
在本实施例中,基座122是固定在面板切割装置中,使得与基座122固定连接的T型导轨124被固定,溜板126可以沿着T型导轨124上下滑动。基座122与T型导轨124是一体成型,在其他实施例中,基座122与T型导轨124也可以是分体地,基座122的制备材料为不锈钢、铝或碳纤维增强材料中的任意一种,也可以是其他的硬质材料,例如高硬度金属合金等,本申请不做具体的限定。
在本实施例中,T型导轨124为溜板126提供上下滑动的轨道,T型导轨124位于基座122的中间,且组成T型导轨124的导轨底轨1240与基座122平行,导轨轨底1240水平放置在第一平面的尺寸小于基座122书评放置在第一平面的尺寸,第一平面为导轨底轨1240所在的水平面,T型导轨的制备材料为不锈钢、铝或碳纤维增强材料中的任意一种,也可以是其他的硬质材料,例如高硬度金属合金等,本申请不做具体的限定。
在本实施例中,通气凹槽1264设置在溜板126的内部,通气凹槽1264为T型且围绕T型空腔设置。
在本实施例中,溜板126的内壁上还设置有多个环型槽(未示出),节流器1262均匀地分布于环形槽中。
在本实施例中,面板为玻璃基板、彩膜基板、薄膜晶体管基板、液晶盒或有机发光显示器中的任意一种,具体地,面板为液晶盒。
以上实施例的说明只是用于帮助理解本申请的技术方案及其核心思想;本领域的普通技术人员应当理解:其依然可以对前述各实施例所记载的技术方案进行修改,或者对其中部分技术特征进行等同替换;而这些修改或者替换,并不使相应技术方案的本质脱离本申请各实施例的技术方案的范围。
综上所述,虽然本申请已以优选实施例揭露如上,但上述优选实施例并非用以限制本申请,本领域的普通技术人员,在不脱离本申请的精神和范围内,均可作各种更动与润饰,因此本申请的保护范围以权利要求界定的范围为准。
Claims (20)
- 一种面板切割装置,其中,所述面板切割装置包括:切割头,所述切割头用于切割面板;气浮导轨,所述气浮导轨用于使所述切割头在预定方向移动;所述面板为玻璃基板、彩膜基板、薄膜晶体管基板、液晶盒或有机发光显示器的任意一种。
- 根据权利要求1所述的面板切割装置,其中,所述气浮导轨包括:一固定底座,所述固定底座具有一基座及一T型导轨,所述T型导轨包括一导轨轨底和垂直于所述导轨轨底的轨腰,所述轨腰的一端与所述基座连接,所述轨腰的另一端与所述导轨轨底连接;一溜板,所述溜板包括:与所述T型导轨相配合的T型空腔,所述固定底座的所述T型导轨位于所述溜板的所述T型空腔中;多个节流器,所述节流器设置于所述溜板的内壁上,所述溜板的内壁围合成所述T型空腔;通气凹槽,所述通气凹槽设置于所述溜板的内部,所述通气凹槽与所述节流器连通;至少一进气口,所述进气口位于所述溜板的内部且与所述通气凹槽连通。
- 根据权利要求2所述的面板切割装置,其中,所述节流器为小孔节流器、毛细管节流器、环面节流器或多孔质节流器中的至少一种。
- 根据权利要求2所述的面板切割装置,其中,所述溜板的制备材料为不锈钢、铝或碳纤维增强材料中的任意一种。
- 根据权利要求2所述的面板切割装置,其中,所述基座的制备材料为不锈钢、铝或碳纤维增强材料中的任意一种。
- 根据权利要求2所述的面板切割装置,其中,所述T型导轨与所述基座一体成型。
- 根据权利要求2所述的面板切割装置,其中,所述T型导轨位于所述基座的中间。
- 根据权利要求2所述的面板切割装置,其中,所述导轨底轨水平放置在第一平面上的尺寸小于所述基座水平放置在所述第一平面的尺寸,所述第一平面为所述导轨底轨所在的水平面。
- 根据权利要求2所述的面板切割装置,其中,所述溜板的内壁还设置有多个环型槽,所述节流器均匀地分布于所述环型槽中。
- 根据权利要求2所述的面板切割装置,其中,所述通气凹槽为T型且围绕所述T型空腔设置。
- 一种面板切割装置,其中,所述面板切割装置包括:切割头,所述切割头用于切割面板;气浮导轨,所述气浮导轨用于使所述切割头在预定方向移动。
- 根据权利要求11所述的面板切割装置,其中,所述气浮导轨包括:一固定底座,所述固定底座具有一基座及一T型导轨,所述T型导轨包括一导轨轨底和垂直于所述导轨轨底的轨腰,所述轨腰的一端与所述基座连接,所述轨腰的另一端与所述导轨轨底连接;一溜板,所述溜板包括:与所述T型导轨相配合的T型空腔,所述固定底座的所述T型导轨位于所述溜板的所述T型空腔中;多个节流器,所述节流器设置于所述溜板的内壁上,所述溜板的内壁围合成所述T型空腔;通气凹槽,所述通气凹槽设置于所述溜板的内部,所述通气凹槽与所述节流器连通;至少一进气口,所述进气口位于所述溜板的内部且与所述通气凹槽连通。
- 根据权利要求12所述的面板切割装置,其中,所述节流器为小孔节流器、毛细管节流器、环面节流器或多孔质节流器中的至少一种。
- 根据权利要求12所述的面板切割装置,其中,所述溜板的制备材料为不锈钢、铝或碳纤维增强材料中的任意一种。
- 根据权利要求12所述的面板切割装置,其中,所述基座的制备材料为不锈钢、铝或碳纤维增强材料中的任意一种。
- 根据权利要求12所述的面板切割装置,其中,所述T型导轨与所述基座一体成型。
- 根据权利要求12所述的面板切割装置,其中,所述T型导轨位于所述基座的中间。
- 根据权利要求12所述的面板切割装置,其中,所述导轨底轨水平放置在第一平面上的尺寸小于所述基座水平放置在所述第一平面的尺寸,所述第一平面为所述导轨底轨所在的水平面。
- 根据权利要求12所述的面板切割装置,其中,所述溜板的内壁还设置有多个环型槽,所述节流器均匀地分布于所述环型槽中。
- 根据权利要求12所述的面板切割装置,其中,所述通气凹槽为T型且围绕所述T型空腔设置。
Applications Claiming Priority (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN201811249911.2A CN109354397A (zh) | 2018-10-25 | 2018-10-25 | 面板切割装置 |
| CN201811249911.2 | 2018-10-25 |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| WO2020082591A1 true WO2020082591A1 (zh) | 2020-04-30 |
Family
ID=65346495
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| PCT/CN2018/124501 Ceased WO2020082591A1 (zh) | 2018-10-25 | 2018-12-27 | 面板切割装置 |
Country Status (2)
| Country | Link |
|---|---|
| CN (1) | CN109354397A (zh) |
| WO (1) | WO2020082591A1 (zh) |
Citations (7)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN201087172Y (zh) * | 2006-12-28 | 2008-07-16 | 上海市激光技术研究所 | 超薄玻璃基板激光切割机 |
| JP2010269408A (ja) * | 2009-05-21 | 2010-12-02 | Toshiba Mach Co Ltd | 超精密ロール旋盤 |
| CN101935965A (zh) * | 2010-09-10 | 2011-01-05 | 厦门大学 | 气悬浮t型轨道滑块 |
| CN203021443U (zh) * | 2012-12-24 | 2013-06-26 | 深圳大宇精雕科技有限公司 | 玻璃板水射流切割机 |
| CN104482048A (zh) * | 2014-12-09 | 2015-04-01 | 常州华威新材料有限公司 | 气体静压导轨 |
| CN206785866U (zh) * | 2017-04-10 | 2017-12-22 | 西安威而信精密仪器有限公司 | 一种轮廓仪气浮直线导轨 |
| CN207080497U (zh) * | 2017-07-03 | 2018-03-09 | 张夫全 | 一种静压气浮滑块 |
Family Cites Families (3)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN102878203B (zh) * | 2012-10-22 | 2015-04-22 | 中国科学院光电技术研究所 | 一种气浮导轨 |
| CN107673594A (zh) * | 2017-11-03 | 2018-02-09 | 武汉华星光电半导体显示技术有限公司 | 面板切割装置 |
| CN207987031U (zh) * | 2018-03-08 | 2018-10-19 | 焦作飞鸿安全玻璃有限公司 | 一种玻璃切割机 |
-
2018
- 2018-10-25 CN CN201811249911.2A patent/CN109354397A/zh active Pending
- 2018-12-27 WO PCT/CN2018/124501 patent/WO2020082591A1/zh not_active Ceased
Patent Citations (7)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN201087172Y (zh) * | 2006-12-28 | 2008-07-16 | 上海市激光技术研究所 | 超薄玻璃基板激光切割机 |
| JP2010269408A (ja) * | 2009-05-21 | 2010-12-02 | Toshiba Mach Co Ltd | 超精密ロール旋盤 |
| CN101935965A (zh) * | 2010-09-10 | 2011-01-05 | 厦门大学 | 气悬浮t型轨道滑块 |
| CN203021443U (zh) * | 2012-12-24 | 2013-06-26 | 深圳大宇精雕科技有限公司 | 玻璃板水射流切割机 |
| CN104482048A (zh) * | 2014-12-09 | 2015-04-01 | 常州华威新材料有限公司 | 气体静压导轨 |
| CN206785866U (zh) * | 2017-04-10 | 2017-12-22 | 西安威而信精密仪器有限公司 | 一种轮廓仪气浮直线导轨 |
| CN207080497U (zh) * | 2017-07-03 | 2018-03-09 | 张夫全 | 一种静压气浮滑块 |
Also Published As
| Publication number | Publication date |
|---|---|
| CN109354397A (zh) | 2019-02-19 |
Similar Documents
| Publication | Publication Date | Title |
|---|---|---|
| WO2012100725A1 (zh) | 轻型龙门数控切割机 | |
| CN105562950A (zh) | 压力容器激光焊接夹具及使用该夹具进行激光焊接的方法 | |
| CN201971734U (zh) | 自动式玻璃切割机 | |
| CN114406454A (zh) | 一种气浮切割平台 | |
| WO2020082591A1 (zh) | 面板切割装置 | |
| WO2024255093A1 (zh) | 一种铝托的定位打孔装置 | |
| CN206335253U (zh) | 一种非金属材料激光雕刻机 | |
| CN205675657U (zh) | 用于玻璃定位的装置 | |
| CN206500321U (zh) | 间断涂布装置 | |
| CN206785866U (zh) | 一种轮廓仪气浮直线导轨 | |
| CN206047619U (zh) | 气浮导轨 | |
| CN206351951U (zh) | 一种气浮真空吸附搬送装置 | |
| CN201906993U (zh) | 高承载机床运行高精度液体支承悬浮导轨 | |
| CN203445140U (zh) | 刻划装置 | |
| CN218440247U (zh) | 一种气浮轨道装置 | |
| CN104482047A (zh) | 带状复合节流静压气浮导轨 | |
| TWM651109U (zh) | 氣浮移動載台裝置 | |
| CN113714992B (zh) | 一种便携划线工具 | |
| CN211726420U (zh) | 一种用于液晶屏生产线的导向机构 | |
| CN209078702U (zh) | 一种精密定位加工平台 | |
| CN118998209B (zh) | 一种薄膜反馈节流的双v型液体静压导轨 | |
| CN201841162U (zh) | 用于轧机张力辊的可纠偏张力释放装置 | |
| CN1559944A (zh) | 玻锥冷割头设备 | |
| CN115199620B (zh) | 一种芯片封装的压紧装置 | |
| CN224062165U (zh) | 一种上料机构 |
Legal Events
| Date | Code | Title | Description |
|---|---|---|---|
| 121 | Ep: the epo has been informed by wipo that ep was designated in this application |
Ref document number: 18937779 Country of ref document: EP Kind code of ref document: A1 |
|
| NENP | Non-entry into the national phase |
Ref country code: DE |
|
| 122 | Ep: pct application non-entry in european phase |
Ref document number: 18937779 Country of ref document: EP Kind code of ref document: A1 |