WO2020135076A1 - 偏光板限位机构以及偏光板限位机构的控制方法 - Google Patents

偏光板限位机构以及偏光板限位机构的控制方法 Download PDF

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Publication number
WO2020135076A1
WO2020135076A1 PCT/CN2019/124880 CN2019124880W WO2020135076A1 WO 2020135076 A1 WO2020135076 A1 WO 2020135076A1 CN 2019124880 W CN2019124880 W CN 2019124880W WO 2020135076 A1 WO2020135076 A1 WO 2020135076A1
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WIPO (PCT)
Prior art keywords
alignment
polarizing plate
platform
positioning
limiting
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Ceased
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PCT/CN2019/124880
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English (en)
French (fr)
Inventor
邱杰
徐望红
黄国定
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HKC Co Ltd
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HKC Co Ltd
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Publication date
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Publication of WO2020135076A1 publication Critical patent/WO2020135076A1/zh
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Classifications

    • GPHYSICS
    • G02OPTICS
    • G02FOPTICAL 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
    • G02F1/00Devices 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
    • G02F1/01Devices 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 
    • G02F1/13Devices 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
    • G02F1/1303Apparatus specially adapted to the manufacture of LCDs
    • GPHYSICS
    • G02OPTICS
    • G02FOPTICAL 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
    • G02F1/00Devices 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
    • G02F1/01Devices 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 
    • G02F1/13Devices 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
    • G02F1/133Constructional arrangements; Operation of liquid crystal cells; Circuit arrangements
    • G02F1/1333Constructional arrangements; Manufacturing methods
    • G02F1/1335Structural association of cells with optical devices, e.g. polarisers or reflectors
    • G02F1/133528Polarisers

Definitions

  • the present application relates to the technical field of liquid crystal display, in particular to a polarizing plate limiting mechanism and a control method of the polarizing plate limiting mechanism.
  • the polarizing plate cleaning section is affected by poor gaps between the cleaning rollers of the polarizing plate, surface material variation of the polarizing plate, and poor alignment speed of the alignment platform.
  • the three-sided (two short sides + one long side) alignment method is used for polarizing plate alignment. Since the three-side alignment method has only three-sided positioning, if the polarizer surface material changes, the friction coefficient changes, or the long side alignment The poor speed of the positioning cylinder causes the long side of the polarizer to skew when it is seated.
  • the polarizer enters the registration platform and skews.
  • the long-side registration post cannot be seated.
  • the camera lens cannot grab the polarizer, which is easy to cause the polarizer. Alignment failed.
  • the main purpose of the present application is to propose a polarizing plate limiting mechanism and a control method of the polarizing plate limiting mechanism to realize the correcting of the skewed polarizing plate and prevent the positioning failure of the polarizing plate.
  • a limiting member opposite to the third positioning member the limiting member is installed on the positioning platform, and can move in a direction perpendicular to the positioning platform, the first pair The positioning member, the second positioning member, the third positioning member, and the limiting member surround the alignment frame of the polarizing plate.
  • the polarizing plate limiting mechanism further includes a driving member connected to the limiting member, and the driving member drives the limiting member to move in a direction perpendicular to the positioning platform.
  • a slot is provided at a position of the positioning platform opposite to the limiting member, the limiting member is installed in the slot, and the limiting member is along the edge of the slot
  • the alignment platform moves in a vertical direction.
  • the driving member is a cylinder
  • a push rod of the cylinder is connected to the bottom of the limiting member to push the limiting member to move up and down.
  • the first alignment member, the second alignment member, and the third alignment member are all connected with a horizontal driving member, the horizontal driving member is connected with a vertical driving member, and the first alignment The member, the second aligning member and the third aligning member can be moved in a direction perpendicular to the aligning platform driven by the vertical driving member.
  • the first alignment member, the second alignment member and the third alignment member are all provided with a flattening member, and the flattening member is located on the first alignment member and the second alignment member And when the third alignment member moves in a direction perpendicular to the alignment platform, it presses down the edge of the polarizing plate.
  • the alignment part is an alignment column
  • the first alignment element, the second alignment element, and the third alignment element include multiple alignment columns, and multiple alignment columns
  • the interval is provided on the movable part.
  • the alignment platform is provided with a plurality of moving grooves for moving the first alignment member, the size of the moving grooves is adapted to the size of the alignment posts, and the moving grooves are spaced apart Set and correspond to the interval between the alignment posts.
  • the flattening members are respectively protruded on the free ends of the alignment posts, or the flattening members are connected to the free ends of the alignment posts.
  • the first alignment piece is a first short-side alignment piece, which is located away from the loading edge of the alignment platform; the second alignment piece is a second short-side alignment piece, Located near the upper loading edge of the alignment platform, the third alignment member is a long-side alignment member, and the limiting member is another long-side alignment member.
  • the camera is a charge-coupled camera.
  • the present application also provides a polarizing plate limiting mechanism
  • the polarizing plate limiting mechanism includes:
  • a positioning platform the positioning platform is used for polarizing plate positioning, and the positioning platform is provided with a slot at a position opposite to the limiting member;
  • a limiting member is disposed opposite to the third positioning member, the limiting member is installed on the positioning platform, and in the slot, the limiting member can be along the slot Move in a direction perpendicular to the alignment platform;
  • a driving member connected to the limiting member, and the driving member drives the limiting member to move in a direction perpendicular to the positioning platform;
  • the driving member drives the limiting member to move in a direction vertically upward of the positioning platform, the first positioning member, the second positioning member, the third positioning member, and the limiting position
  • the pieces surround the alignment frame of the polarizing plate, and the size of the alignment frame is adapted to the size of the polarizing plate.
  • the present application also provides a control method of a polarizing plate limiting mechanism, which includes the following steps:
  • the first alignment member moves to the preset first alignment position, and the limiting member is controlled to rise to a preset limit position;
  • the second alignment member is driven to move toward the preset second alignment position, and at the same time, the third alignment member is controlled to move toward the preset third alignment position.
  • the method further includes:
  • the method further includes:
  • the technical solution of the present application is based on the relative positioning of the first alignment member and the second alignment member that can move along the horizontal direction of the alignment platform by adding a limiter that is opposite to the third alignment member on the alignment platform.
  • the aligning member, the second aligning member, the third aligning member and the limiting member surround the aligning frame of the polarizing plate, wherein the first aligning member, the second aligning member and the third aligning member move in pairs
  • the skew polarizing plate is guided to prevent the polarizing plate from being pushed too far when the third alignment member is in position Alignment failed.
  • FIG. 1 is a schematic structural diagram of a polarizing plate limit mechanism of this application
  • This application proposes a polarizing plate limiting mechanism for polarizing plate alignment.
  • the alignment platform 100 has four sides, the polarizing plate 600 is transferred from one side of the alignment platform 100 to the alignment platform 100, the first alignment member 200, the second alignment member 300, The third alignment member 400 and the limiting member 500 are located on the four sides of the alignment platform 100 respectively.
  • the polarizing plate 600 is transferred to the alignment platform 100, the first alignment member 200 and the second pair
  • the positioning member 300 and the third positioning member 400 move and align
  • the limiting member 500 limits the alignment, and the first positioning member 200, the second positioning member 300, the third positioning member 400 and the limiting position
  • the alignment frame synthesized by the member 500 is adapted to the size of the polarizing plate 600.
  • the first alignment member 200 is a first short-side alignment member
  • the first short-side alignment member calibrates the polarizing plate 600 away from the alignment platform 100
  • the second alignment member 300 is a second short-side alignment member opposite to the first alignment member 200
  • the second short-side alignment member corrects the polarized light
  • the plate 600 is close to the short side of the material edge on the alignment platform 100
  • the third alignment member 400 is one of the long side alignment members
  • the limiting member 500 is the other long side alignment member.
  • the first short-side alignment member moves along the length direction of the polarizing plate 600
  • the long-side alignment member can move along the width direction of the polarizing plate 600.
  • the technical solution of the present application is based on the first positioning member 200 and the second positioning member that can be moved along the horizontal direction of the positioning platform 100 by adding a limiting member 500 opposite to the third positioning member 400 on the positioning platform 100 300 is relatively arranged, the first alignment member 200, the second alignment member 300, the third alignment member 400 and the limiting member 500 surround the alignment frame of the polarizing plate 600, wherein the first alignment member 200, the first When the second alignment member 300 and the third alignment member 400 move into alignment, based on the position limitation of the limiting member 500 at the relative position of the third alignment member 400, the skewed polarizing plate 600 is guided to prevent When the third alignment member 400 is seated, the polarizing plate 600 is pushed too far and the alignment fails.
  • the polarizing plate limiting mechanism is further provided with a driving member 700, and the driving member 700 and the limiting member 500 Connected, the driving member 700 drives the limiting member 500 to move in a direction perpendicular to the positioning platform 100.
  • the driving member 700 may be a cylinder such as a lifting cylinder
  • the limiting member 500 is a limiting plate
  • the lifting cylinder is disposed below the alignment platform 100
  • the free end of the lifting cylinder push rod is connected to the The bottom of the limit plate is connected, and when the lifting cylinder works, the push rod is driven to push the limit plate to move in the vertical direction of the alignment platform 100, and the limit plate moves to the alignment platform 100 At the time, it protrudes from the surface of the alignment platform 100 on which the polarizing plate 600 is placed, and serves to restrict the movement of the polarizing plate 600. Based on the fixed position of the positioning plate, the polarizing plate 600 is guided flat effect.
  • This embodiment is based on the lifting cylinder driving the limiter 500 to move up and down in a direction perpendicular to the positioning platform 100.
  • the structure is simple and easy to implement, and based on the cylinder drive, the stability of the limiter 500 movement is ensured and the polarizing plate is improved Alignment accuracy of 600.
  • the first alignment member 200, the second alignment member 300, and the third alignment member 400 can all move along the horizontal direction of the alignment platform 100, which is specifically based on the The first alignment member 200, the second alignment member 300, and the third alignment member 400 are all connected with a horizontal driving member (not shown in the figure). It can be understood that the horizontal driving member drives the first driving member.
  • the alignment member 200, the second alignment member 300, and the third alignment member 400 move along the horizontal direction of the alignment platform 100, and the horizontal driving member may be a motor or an air cylinder.
  • the first alignment member 200, the second alignment member 300, and the third alignment member 400 all include a movable portion and an alignment portion, the movable portion is connected to the horizontal driving element, the pair The positioning portion extends perpendicular to the movable portion toward the positioning platform 100, and the flattening member is disposed at a free end of the positioning portion.
  • the movable part may be a movable plate, and the alignment part may be an alignment post.
  • the first alignment member 200, the second alignment member 300, and the third alignment member 400 include a plurality of For the alignment post, a plurality of the alignment posts are arranged on the movable part at intervals.
  • the alignment platform 100 is provided with a moving groove for the first alignment member 200 to move, and the first alignment member 200 is the first short-side alignment member, and its moving direction moves from the feeding position of the polarizing plate 600 to the positioning position, and then returns to the feeding position from the positioning position, so the moving groove is along the alignment platform 100
  • the length of the first alignment member 200 in this embodiment includes an active part (not marked in the figure) and an alignment part (not marked in the figure), and the movable part is set on the alignment platform 100 Below, the alignment part is set as an alignment post.
  • a plurality of moving grooves suitable for the size of the alignment post can be provided to prevent the alignment platform 100
  • the moving groove on the top is too large, so that the polarizing plate 600 cannot be flattened and aligned.
  • the flattening member is a component for flattening the edge of the polarizing plate 600, and its shape and structure have various manners, one of which is that the flattening member is a boss, which is respectively protruded on the alignment post The free end, and the convex direction is parallel to the alignment platform 100; another way is that the flattening member presses the flat plate, and the flat plate is connected to the free ends of the alignment posts.
  • the flattening member presses down on the alignment platform 100 Polarizing plate 600 to flatten the edge of the polarizing plate 600 to improve the alignment accuracy.
  • the polarizing plate limiting mechanism further includes a camera 800, which is respectively disposed at both ends of the third alignment member 400, and the camera 800 uses a CCD lens (Charge-coupled Device: Charge Coupler Lens) collects the position information of the polarizing plate 600.
  • the camera 800 is provided at both ends of the long-side alignment member, and the position information of the polarizing plate 600 is taken through the length direction of the polarizing plate 600 to ensure the collection Location information is more accurate.
  • the present application also provides a polarizing plate limiting mechanism.
  • the polarizing plate limiting mechanism includes:
  • the alignment level 100, the alignment platform 100 is used for alignment of the polarizing plate 600, and the alignment platform 100 is provided with a slot 101;
  • a limiting member 500 is disposed opposite to the third positioning member 400, the limiting member 500 is installed in the slot 101 on the positioning platform 100, and the limiting member 500 is located in the The slot 101 can move in a direction perpendicular to the alignment platform 100;
  • the driving member 700 is connected to the limiting member 500, and the driving member 700 drives the limiting member 500 to move in a direction perpendicular to the positioning platform 100.
  • the driving member 700 drives the limiting member 500 to move in the vertical upward direction of the alignment platform 100
  • the first alignment member 200, the second alignment member 300, and the third alignment member 400 and the limiting member 500 surround the alignment frame of the polarizing plate 600, and the size of the alignment frame is adapted to the size of the polarizing plate 600.
  • the polarizing plate 600 is aligned by setting an alignment frame formed when the first alignment element 200, the second alignment element 300, the third alignment element 400, and the limiting element 500 move relatively, and the alignment frame
  • the size of the polarizer 600 is adapted to the size of the polarizer 600, and the alignment frame can guide the skewed polarizer 600 to prevent the alignment of the polarizer 600 when the three sides are aligned.
  • control method of the polarizing plate limiting mechanism includes the following steps:
  • Step 1 when it is detected that a polarizing plate enters the alignment platform, control the first alignment member to move to a preset first alignment position;
  • Step 2 After the first positioning member moves to the preset first positioning position, control the limiting member to rise to the preset limiting position;
  • Step 3 drive the second alignment member to move to the preset second alignment position, and simultaneously control the third alignment member to move to the preset third alignment position;
  • Step 4 Control the camera to collect the position information of the polarizing plate on the alignment platform.
  • This embodiment is based on the first alignment member, the second alignment member, the third alignment member, and the limiting member surrounding the four-sided alignment of the alignment frame of the polarizing plate, the limiting member is opposite to the third alignment member
  • the position is limited to realize the correcting of the skewed polarizing plate, to prevent the polarizing plate from being pushed too far when the third aligning member is in position, which causes the alignment failure.
  • control method of the polarizing plate limiting mechanism further includes:
  • the vertical drive member is controlled to drive the first alignment member, the second alignment member, and the third alignment member to move toward the alignment platform.
  • the controller controls the vertical driving member to drive the first alignment member, the second alignment member, and the third alignment member to move in the vertical direction, and specifically controls the first alignment member, the second alignment member And the third alignment member moves toward the alignment platform, so that the flattening members on the first alignment member, the second alignment member, and the third alignment member press down on the alignment platform
  • the edge of the polarizing plate is used to flatten the polarizing plate to ensure that the surface of the polarizing plate is level and improve the accuracy of position acquisition.
  • the control method of the polarizing plate limiting mechanism further includes: controlling the limiting member to drop to The preset avoidance position.
  • the position avoiding position is a position where the limiting member descends below the alignment platform to prevent the positioning member from affecting the extraction of the polarizing plate when the positioned polarizing plate is extracted.

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  • Physics & Mathematics (AREA)
  • Nonlinear Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Crystallography & Structural Chemistry (AREA)
  • General Physics & Mathematics (AREA)
  • Optics & Photonics (AREA)
  • Mathematical Physics (AREA)
  • Engineering & Computer Science (AREA)
  • Manufacturing & Machinery (AREA)
  • Polarising Elements (AREA)
  • Liquid Crystal (AREA)

Abstract

一种偏光板限位机构,包括:对位平台(100);沿对位平台(100)的水平方向移动的第一对位件(200)、第二对位件(300)和第三对位件(400),第一对位件(200)与第二对位件(300)相对设置,第三对位件(400)与第一对位件(200)相邻设置;以及与第三对位件(400)相对设置的限位件(500),限位件(500)沿与对位平台(100)垂直的方向移动,第一对位件(200)、第二对位件(300)、第三对位件(400)以及限位件(500)围合成对位框。

Description

偏光板限位机构以及偏光板限位机构的控制方法
关于优先权引用的声明:本申请要求于2018年12月26日提交中国专利局,申请号为201811619160.9、发明名称为“偏光板限位机构”的中国专利申请的优先权,其全部内容通过引用结合在本申请。
技术领域
本申请涉及液晶显示技术领域,特别涉及一种偏光板限位机构以及偏光板限位机构的控制方法。
背景技术
这里的陈述仅提供与本申请有关的背景信息,而不必然地构成现有技术。
液晶面板偏光板贴附制程中,受偏光板清扫部清扫滚筒之间的间隙不佳、偏光板表面材质变异、对位平台对位速度不佳等影响,易导致偏光板对位失败。采用三边(两个短边+一个长边)对位方式进行偏光板对位,由于三边对位方式只有三边限位,若偏光板表面材质变异,导致摩擦系数变化,或者长边对位气缸速度不佳,导致偏光板长边在靠位时发生歪斜,偏光板进入对位平台发生歪斜,长边对位柱无法进行靠位,相机的镜头无法抓取偏光板,容易导致偏光板对位失败。
发明内容
本申请的主要目的是提出一种偏光板限位机构以及偏光板限位机构的控制方法,实现对斜歪的偏光板进行导正,防止偏光板对位失败。
为实现上述目的,本申请提出的一种偏光板限位机构,所述偏光板限位机构包括:对位平台,所述对位平台用于偏光板对位;
可沿所述对位平台的水平方向移动的第一对位件、第二对位件和第三对位件,所述第一对位件与所述第二对位件相对设置,所述第三对位件与所述第一对位件和第二对位件相邻设置;
以及与所述第三对位件相对设置的限位件,所述限位件装设于所述对位平台上,且可沿与所述对位平台垂直的方向移动,所述第一对位件、第二对位件、第三对位件以及所述限位件围合成偏光板的对位框。
可选地,所述偏光板限位机构还包括与所述限位件连接的驱动件,所述驱动件驱动所述限位件沿与所述对位平台垂直的方向移动。
可选地,所述对位平台与所述限位件相对的位置设有开槽,所述限位件装设于所述开槽中,所述限位件在所述开槽中沿与所述对位平台垂直的方向移动。
可选地,所述驱动件为气缸,所述气缸的推杆与所述限位件的底部连接,推动所述限位件上下移动。
可选地,所述第一对位件、所述第二对位件以及第三对位件均连接有水平驱动件,所述水平驱动件连接有竖直驱动件,所述第一对位件、所述第二对位件以及第三对位件在所述竖直驱动件带动下可沿与所述对位平台垂直方向移动。
可选地,所述第一对位件、第二对位件以及第三对位件上均设有压平件,所述压平件在所述第一对位件、第二对位件以及第三对位件沿与所述对位平台垂直的方向移动时下压偏光板的边缘。
可选地,所述第一对位件、第二对位件以及第三对位件均包括活动部和对位部,所述活动部与所述水平驱动件连接,所述对位部垂直所述活动部朝向所述对位平台延伸,所述压平件设置在所述对位部的自由端。
可选地,所述对位平台上设有供所述第一对位件移动的移动槽,所述移动槽沿所述偏光板的进料方向设置。
可选地,所述对位部为对位柱,所述第一对位件、第二对位件以及第三对位件包括有多个所述对位柱,多个所述对位柱间隔设置在所述活动部上。
可选地,所述对位平台上设有多个供所述第一对位件移动的移动槽,所述移动槽的大小与所述对位柱的大小相适配,所述移动槽间隔设置,且与所述对位柱之间的间隔相对应。
可选地,所述压平件分别凸设在所述对位柱的自由端,或者,所述压平件连接各个所述对位柱的自由端。
可选地,所述第一对位件为第一短边对位件,位于远离所述对位平台的上料边的位置;所述第二对位件为第二短边对位件,位于靠近所述对位平台的上料边的位置,所述第三对位件为一长边对位件,所述限位件为另一长边对位件。
可选地,所述偏光板限位机构还包括相机,所述相机分别设置在所述第三对位件的两端,用于采集偏光板的对位图像。
可选地,所述相机为电荷耦合相机。
为了实现上述目的,本申请还提供一种偏光板限位机构,所述所述偏光板限位机构包括:
对位平台,所述对位平台用于偏光板对位,所述对位平台与所述限位件相对的位置设有开槽;
可沿所述对位平台的水平方向移动的第一对位件、第二对位件和第三对位件,所述第一对位件与所述第二对位件相对设置,所述第三对位件与所述第一对位件和第二对位件相邻设置;
限位件,与所述第三对位件相对设置,所述限位件装设于所述对位平台上,于所述开槽中,所述限位件在所述开槽中可沿与所述对位平台垂直的方向移动;
以及驱动件,与所述限位件连接,所述驱动件驱动所述限位件沿与所述对位平台垂直的方向移动;
其中,在所述驱动件驱动所述限位件向所述对位平台垂直向上的方向移动时,所述第一对位件、第二对位件、第三对位件以及所述限位件围合成偏光板的对位框,所述对位框的大小与偏光板的尺寸相适配。
另外,本申请还提供一种偏光板限位机构的控制方法,所述偏光板限位机构的控制方法包括以下步骤:
检测到有偏光板进入所述对位平台,控制所述第一对位件往预设第一对位位置移动;
所述第一对位件移动到所述预设第一对位位置,控制所述限位件上升至预设限位位置;
驱动所述第二对位件往预设第二对位位置移动,同时控制所述第三对位件往预设第三对位位置移动。
可选地,所述驱动所述第二对位件往预设第二对位位置移动,同时控制所述第三对位件往预设第三对位位置移动的步骤之后,还包括:
控制竖直驱动件驱动所述第一对位件、第二对位件以及第三对位件朝所述对位平台方向移动,以使第一对位件、第二对位件以及第三对位件上的压平件压平所述对位平台上的偏光板。
可选地,所述控制竖直驱动件驱动所述第一对位件、第二对位件以及第三对位件朝所述对位平台方向移动的步骤之后,还包括:
控制相机采集所述对位平台上的偏光板的位置信息。
可选地,所述控制相机采集所述对位平台上的偏光板的位置信息的步骤之后,还包括:
控制所述限位件下降至预设避位位置,其中,所述避位位置为限位件下降至所述对位平台以下的位置。
本申请技术方案通过在对位平台上增设与第三对位件相对设置的限位件,基于可沿对位平台水平方向移动的第一对位件和第二对位件相对设置,第一对位件、第二对位件、第三对位件以及限位件围合成偏光板的对位框,其中所述第一对位件、第二对位件和第三对位件移动对位时,基于所述限位件在第三对位件相对的位置限位,实现对斜歪的偏光板进行导正,防止第三对位件靠位时,偏光板被推得太远导致对位失败。
附图说明
为了更清楚地说明本申请实施例或示例性技术中的技术方案,下面将对实施例或示例性技术描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅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示出的结构获得其他的附图。
图1为本申请偏光板限位机构的结构示意图;
图2为图1中A-A方向剖的结构示意图。
本申请目的的实现、功能特点及优点将结合实施例,参照附图做进一步说明。
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,所描述的实施例仅仅是本申请的一部分实施例,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作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。
需要说明,若本申请实施例中有涉及方向性指示(诸如上、下、左、右、前、后……),则该方向性指示仅用于解释在某一特定姿态(如附图所示)下各部件之间的相对位置关系、运动情况等,如果该特定姿态发生改变时,则该方向性指示也相应地随之改变。
另外,若本申请实施例中有涉及“第一”、“第二”等的描述,则该“第一”、“第二”等的描述仅用于描述目的,而不能理解为指示或暗示其相对重要性或者隐含指明所指示的技术特征的数量。由此,限定有“第一”、“第二”的特征可以明示或者隐含地包括至少一个该特征。另外,各个实施例之间的技术方案可以相互结合,但是必须是以本领域普通技术人员能够实现为基础,当技术方案的结合出现相互矛盾或无法实现时应当认为这种技术方案的结合不存在,也不在本申请要求的保护范围之内。
本申请提出一种偏光板限位机构,用于偏光板对位。
具体参考图1至图2,本申请提出的偏光板限位机构包括:对位平台100、第一对位件200、第二对位件300、第三对位件400以及限位件500,其中,所述对位平台100用于放置偏光板600,以将偏光板600对位,所述第一对位件200、第二对位件300和第三对位件400可沿所述对位平台100的水平方向移动,其可朝向所述对位平台100移动,也可以背向所述对位平移移动,所述第一对位件200与所述第二对位件300相对设置,所述第三对位件400与所述第一对位件200和第二对位件300相邻设置;所述限位件500与所述第三对位件400相对设置,所述限位件500装设于所述对位平台100上,且可沿与所述对位平台100垂直的方向移动,也即沿所述对位平台100做升降移动,所述第一对位件200、第二对位件300、第三对位件400以及所述限位件500围合成偏光板600的对位框。
所述对位平台100具有四边,所述偏光板600从所述对位平台100的其中一边传送到所述对位平台100上,所述第一对位件200、第二对位件300、第三对位件400以及限位件500分别位于所述对位平台100的四边,所述偏光板600传送到所述对位平台100上时,所述第一对位件200、第二对位件300和第三对位件400移动对位,所述限位件500限位导正,所述第一对位件200、第二对位件300、第三对位件400和限位件500围合成的对位框与偏光板600的尺寸相适配。
本实施例一实施例中所述第一对位件200为第一短边对位件,且所述第一短边对位件校对的是所述偏光板600远离所述对位平台100上料边的短边,所述第二对位件300为与所述第一对位件200相对设置的第二短边对位件,所述第二短边对位件校对的是所述偏光板600靠近所述对位平台100上料边的短边,所述第三对位件400为其中一长边对位件,所述限位件500为另一长边对位件。所述第一短边对位件沿所述偏光板600的长度方向移动,所述长边对位件可沿所述偏光板600的宽度方向移动。
本申请技术方案通过在对位平台100上增设与第三对位件400相对设置的限位件500,基于可沿对位平台100水平方向移动的第一对位件200和第二对位件300相对设置,第一对位件200、第二对位件300、第三对位件400以及限位件500围合成偏光板600的对位框,其中所述第一对位件200、第二对位件300和第三对位件400移动对位时,基于所述限位件500在第三对位件400相对的位置限位,实现对斜歪的偏光板600进行导正,防止第三对位件400靠位时,偏光板600被推得太远导致对位失败。
可选地,为了实现所述限位件500在所述对位平台100的垂直方向移动,所述偏光板限位机构还设有驱动件700,所述驱动件700与所述限位件500连接的,所述驱动件700驱动所述限位件500沿与所述对位平台100垂直的方向移动。具体所述驱动件700可以为气缸如升降气缸,所述限位件500为限位板,所述升降气缸设置于所述对位平台100下方,所述升降气缸推杆的自由端与所述限位板的底部连接,所述升降气缸工作时,驱动所述推杆推动所述限位板在所述对位平台100垂直方向移动,所述限位板移动到所述对位平台100上时,凸起于所述对位平台100放置偏光板600的面,起到限制偏光板600移动的目的,基于设置所述限位板的位置固定,起到将所述偏光板600导平的作用。本实施例基于升降气缸驱动所述限位件500沿与所述对位平台100垂直方向升降移动,结构简单,易于实现,且基于气缸驱动,保证限位件500移动的稳定性,提高偏光板600的对位精度。
为了便于限位件500在所述对位平台100上做升降运动,所述对位平台100与所述限位件500相对的位置设有开槽101,所述限位件500装设于所述开槽101中,所述限位件500在所述开槽101中沿与所述对位平台100垂直的方向移动。其中,所述开槽101的大小与所述限位件500的大小相适配,保证限位件500移动过程中不受摩擦阻力,又能保证对位平台100上的开槽101过大影响偏光板600的对位。
本申请实施例中,所述第一对位件200、所述第二对位件300以及所述第三对位件400均可沿所述对位平台100的水平方向移动,具体基于所述第一对位件200、所述第二对位件300以及第三对位件400均连接有水平驱动件(图中未标注),可以理解的是,通过所述水平驱动件驱动所述第一对位件200、第二对位件300以及第三对位件400沿所述对位平台100的水平方向移动,所述水平驱动件可以为电机,也可以为气缸。
在其它实施例中,为了提高第一对位件200、第二对位件300、第三对位件400的灵活度,设置所述第一对位件200、第二对位件300以及第三对位件400可多方向移动,如还可以沿与所述对位平台100垂直方向移动,也即所述水平驱动件连接有竖直驱动件(图中未标注),所述第一对位件200、所述第二对位件300以及第三对位件400在所述竖直驱动件带动下可沿与所述对位平台100垂直方向移动。所述水平驱动件通过连接件连接所述竖直驱动件,所述竖直驱动件可以为升降气缸。
可以理解的是,所述第一对位件200、第二对位件300以及第三对位件400可以先连接所述竖直驱动件,所述竖直驱动件直接驱动所述第一水位件、第二对位件300以及第三对位件400升降移动,而所述竖直驱动件连接所述水平驱动件,所述水平驱动件驱动所述竖直驱动件水平移动时,带动所述第一对位件200、第二对位件300、第三对位件400水平移动。
基于所述第一对位件200、所述第二对位件300和所述第三对位件400均可以沿与所述对位平台100垂直的方向移动,为了提高偏光板600对位的精准度,在所述第一对位件200、第二对位件300以及第三对位件400上均设有压平件,所述压平件在所述第一对位件200、第二对位件300以及第三对位件400沿与所述对位平台100垂直的方向移动时下压偏光板600的边缘,以将所述偏光板600的边缘压平,保证偏光板600平齐对位,也便于边角位置的相机800拍摄定位。
可选地,所述第一对位件200、第二对位件300以及第三对位件400均包括活动部和对位部,所述活动部与所述水平驱动件连接,所述对位部垂直所述活动部朝向所述对位平台100延伸,所述压平件设置在所述对位部的自由端。所述活动部具体可以为活动板,所述对位部具体可以为对位柱,所述第一对位件200、第二对位件300以及第三对位件400包括有多个所述对位柱,多个所述对位柱间隔设置在所述活动部上。
由于所述第一对位件200可沿所述对位平台100移动,故所述对位平台100上设有供所述第一对位件200移动的移动槽,所述第一对位件200为第一短边对位件,其移动方向从所述偏光板600进料位置移动到定位位置,从定位位置又返回所述进料位置,因此所述移动槽沿所述对位平台100的长度方向设置,本实施例所述第一对位件200设置包括活动部(图中未标注)以及对位部(图中未标注),将所述活动部设置在所述对位平台100下方,而对位部设置成对位柱,对位柱沿所述对位平台100移动时,可设置多个与所述对位柱大小相适配的移动槽即可,防止对位平台100上的移动槽过大而导致偏光板600无法放平对位。
所述压平件为用于压平偏光板600边缘的部件,其形状构造具有多种方式,其中一种方式为所述压平件为一个凸台,分别凸设在所述对位柱的自由端,且凸设的方向与所述对位平台100平行;另外一种方式为所述压平件压平板,所述压平板连接各个所述对位柱的自由端。在所述第一对位件200、第二对位件300以及第三对位件400沿与所述对位平台100垂直方向移动时,所述压平件下压所述对位平台100上的偏光板600,以将所述偏光板600的边缘压平,提高对位精准度。
本申请实施例中,所述偏光板限位机构对所述偏光板600进行限位之后,采用相机800采取偏光板600的图像,以便于后台终端分析所述偏光板600的定位信息。故所述偏光板限位机构还包括相机800,所述相机800分别设置在所述第三对位件400的两端,所述相机800采用CCD镜头(Charge-coupled Device:电荷耦合器镜头)采集偏光板600的位置信息,具体所述相机800设置在长边对位件的两端,通过所述偏光板600长度方向采取偏光板600的位置信息,确保所采集的位置信息更准确。
继续参照图1和图2,本申请还提供一种偏光板限位机构,所述偏光板限位机构包括:
对位平100,所述对位平台100用于偏光板600对位,所述对位平台100设有开槽101;
可沿所述对位平台100的水平方向移动的第一对位件200、第二对位件300和第三对位件400,所述第一对位件200与所述第二对位件300相对设置,所述第三对位件400与所述第一对位件200和第二对位300件相邻设置;
限位件500,与所述第三对位件400相对设置,所述限位件500装设于所述对位平台100上的所述开槽101中,所述限位件500在所述开槽101中可沿与所述对位平台100垂直的方向移动;
以及驱动件700,与所述限位件500连接,所述驱动件700驱动所述限位件500沿与所述对位平台100垂直的方向移动。
其中,在所述驱动件700驱动所述限位件500向所述对位平台100垂直向上的方向移动时,所述第一对位件200、第二对位件300、第三对位件400以及所述限位件500围合成偏光板600的对位框,所述对位框的大小与偏光板600的尺寸相适配。
本实施例通过设置由第一对位件200、第二对位件300、第三对位件400以及限位件500相对移动时形成的对位框给偏光板600对位,且对位框的大小与偏光片600的尺寸相适配,对位框实现对斜歪的偏光板600进行导正,防止三边对边靠位时,偏光片600对位不准确。
另外,在本申请提出的偏光板限位机构中,具体还公开一种偏光板限位机构的控制方法,所述偏光板限位机构的控制方法包括以下步骤:
步骤一:在检测到有偏光板进入所述对位平台时,控制所述第一对位件往预设第一对位位置移动;
步骤二:当所述第一对位件移动到所述预设第一对位位置后,控制所述限位件上升至预设限位位置;
步骤三:驱动所述第二对位件往预设第二对位位置移动,同时控制所述第三对位件往预设第三对位位置移动;
步骤四:控制相机采集所述对位平台上的偏光板的位置信息。
其中,预设对位位置为根据当前对位的偏光板尺寸预先设定的各个对位件对位的位置,如第一对位位置为第一对位件的对位位置,所述限位位置为所述限位件的限位位置,所述第二对位位置为所述第二对位件的对位位置,所述第三对位位置为所述第三对位件的对位位置,当所述第一对位件、第二对位件、第三对位件以及限位件按照预设的移动路径移动到预设的对位位置后,偏光板则被推动到预设的对位位置,此时相机采集所述偏光板的准确位置信息。
本实施例基于第一对位件、第二对位件、第三对位件和限位件围合成偏光板的对位框四边对位,所述限位件在第三对位件相对的位置限位,实现对斜歪的偏光板进行导正,防止第三对位件靠位时,偏光板被推得太远导致对位失败。
在一实施例中,在所述驱动所述第二对位件往预设第二对位位置移动,同时驱动所述第三对位件往预设第三对位位置移动的步骤之后,所述控制相机采集所述对位平台上偏光板的位置信息的步骤之前,所述所述偏光板限位机构的控制方法还包括:
控制所述竖直驱动件驱动所述第一对位件、第二对位件以及第三对位件朝所述对位平台方向移动。
控制器控制所述竖直驱动件驱动所述第一对位件、第二对位件以及第三对位件在竖直方向移动,具体控制所述第一对位件、第二对位件以及第三对位件朝所述对位平台方向移动,以使所述第一对位件、第二对位件以及第三对位件上的压平件下压所述对位平台上的偏光板的边缘,以压平所述偏光板,确保偏光板表面平齐,提高位置获取的准确度。
在其它实施例中,所述控制相机采集所述对位平台上的偏光板的位置信息的步骤之后,所述所述偏光板限位机构的控制方法还包括:控制所述限位件下降至预设避位位置。其中,所述避位位置为限位件下降至所述对位平台以下的位置,防止提取定位好的偏光板时,所述限位件影响所述偏光板的提取。
以上所述仅为本申请的可选实施例,并非因此限制本申请的专利范围,凡是在本申请的构思下,利用本申请说明书及附图内容所作的等效结构变换,或直接/间接运用在其他相关的技术领域均包括在本申请的专利保护范围内。

Claims (19)

  1. 一种偏光板限位机构,其中,所述偏光板限位机构包括:
    对位平台,所述对位平台用于偏光板对位;
    可沿所述对位平台的水平方向移动的第一对位件、第二对位件和第三对位件,所述第一对位件与所述第二对位件相对设置,所述第三对位件与所述第一对位件和第二对位件相邻设置;
    以及限位件,与所述第三对位件相对设置,所述限位件装设于所述对位平台上,且可沿与所述对位平台垂直的方向移动,所述第一对位件、第二对位件、第三对位件以及所述限位件围合成偏光板的对位框。
  2. 如权利要求1所述的偏光板限位机构,其中,所述偏光板限位机构还包括与所述限位件连接的驱动件,所述驱动件驱动所述限位件沿与所述对位平台垂直的方向移动。
  3. 如权利要求2所述的偏光板限位机构,其中,所述对位平台与所述限位件相对的位置设有开槽,所述限位件装设于所述开槽中,所述限位件在所述开槽中沿与所述对位平台垂直的方向移动。
  4. 如权利要求3所述的偏光板限位机构,其中,所述驱动件为气缸,所述气缸的推杆与所述限位件的底部连接,推动所述限位件上下移动。
  5. 如权利要求1所述的偏光板限位机构,其中,所述第一对位件、所述第二对位件以及第三对位件均连接有水平驱动件,所述水平驱动件连接有竖直驱动件,所述第一对位件、所述第二对位件以及第三对位件在所述竖直驱动件带动下可沿与所述对位平台垂直方向移动。
  6. 如权利要求5所述的偏光板限位机构,其中,所述第一对位件、第二对位件以及第三对位件上均设有压平件,所述压平件在所述第一对位件、第二对位件以及第三对位件沿与所述对位平台垂直的方向移动时下压偏光板的边缘。
  7. 如权利要求6所述的偏光板限位机构,其中,所述第一对位件、第二对位件以及第三对位件均包括活动部和对位部,所述活动部与所述水平驱动件连接,所述对位部垂直所述活动部朝向所述对位平台延伸,所述压平件设置在所述对位部的自由端。
  8. 如权利要求7所述的偏光板限位机构,其中,所述对位平台上设有供所述第一对位件移动的移动槽,所述移动槽沿所述偏光板的进料方向设置。
  9. 如权利要求7所述的偏光板限位机构,其中,所述对位部为对位柱,所述第一对位件、第二对位件以及第三对位件包括有多个所述对位柱,多个所述对位柱间隔设置在所述活动部上。
  10. 如权利要求9所述的偏光板限位机构,其中,所述对位平台上设有多个供所述第一对位件移动的移动槽,所述移动槽的大小与所述对位柱的大小相适配,所述移动槽间隔设置,且与所述对位柱之间的间隔相对应。
  11. 如权利要求9所述的偏光板限位机构,其中,所述压平件分别凸设在所述对位柱的自由端,或者,所述压平件连接各个所述对位柱的自由端。
  12. 如权利要求1所述的偏光板限位机构,其中,所述第一对位件为第一短边对位件,位于远离所述对位平台的上料边的位置;所述第二对位件为第二短边对位件,位于靠近所述对位平台的上料边的位置,所述第三对位件为一长边对位件,所述限位件为另一长边对位件。
  13. 如权利要求1所述的偏光板限位机构,其中,所述偏光板限位机构还包括相机,所述相机分别设置在所述第三对位件的两端,用于采集偏光板的对位图像。
  14. 如权利要求1所述的偏光板限位机构,其中,所述相机为电荷耦合相机。
  15. 一种偏光板限位机构,其中,所述所述偏光板限位机构包括:
    对位平台,所述对位平台用于偏光板对位,所述对位平台设有开槽;
    可沿所述对位平台的水平方向移动的第一对位件、第二对位件和第三对位件,所述第一对位件与所述第二对位件相对设置,所述第三对位件与所述第一对位件和第二对位件相邻设置;
    限位件,与所述第三对位件相对设置,所述限位件装设于所述对位平台上的所述开槽中,所述限位件在所述开槽中可沿与所述对位平台垂直的方向移动;
    以及驱动件,与所述限位件连接,所述驱动件驱动所述限位件沿与所述对位平台垂直的方向移动;
    其中,在所述驱动件驱动所述限位件向所述对位平台垂直向上的方向移动时,所述第一对位件、第二对位件、第三对位件以及所述限位件围合成偏光板的对位框,所述对位框的大小与偏光板的尺寸相适配。
  16. 一种偏光板限位机构的控制方法,其中,所述偏光板限位机构的控制方法包括以下步骤:
    检测到有偏光板进入所述对位平台,控制所述第一对位件往预设第一对位位置移动;
    所述第一对位件移动到所述预设第一对位位置,控制所述限位件上升至预设限位位置;
    驱动所述第二对位件往预设第二对位位置移动,同时控制所述第三对位件往预设第三对位位置移动。
  17. 如权利要求16所述的偏光板限位机构的控制方法,其中,所述驱动所述第二对位件往预设第二对位位置移动,同时控制所述第三对位件往预设第三对位位置移动的步骤之后,还包括:
    控制竖直驱动件驱动所述第一对位件、第二对位件以及第三对位件朝所述对位平台方向移动,以使第一对位件、第二对位件以及第三对位件上的压平件压平所述对位平台上的偏光板。
  18. 如权利要求17所述的偏光板限位机构的控制方法,其中,所述控制竖直驱动件驱动所述第一对位件、第二对位件以及第三对位件朝所述对位平台方向移动的步骤之后,还包括:
    控制相机采集所述对位平台上的偏光板的位置信息。
  19. 如权利要求18所述的偏光板限位机构的控制方法,其中,所述控制相机采集所述对位平台上的偏光板的位置信息的步骤之后,还包括:
    控制所述限位件下降至预设避位位置,其中,所述避位位置为限位件下降至所述对位平台以下的位置。
PCT/CN2019/124880 2018-12-26 2019-12-12 偏光板限位机构以及偏光板限位机构的控制方法 Ceased WO2020135076A1 (zh)

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