WO2020199485A1 - 阵列基板及显示面板 - Google Patents

阵列基板及显示面板 Download PDF

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Publication number
WO2020199485A1
WO2020199485A1 PCT/CN2019/103575 CN2019103575W WO2020199485A1 WO 2020199485 A1 WO2020199485 A1 WO 2020199485A1 CN 2019103575 W CN2019103575 W CN 2019103575W WO 2020199485 A1 WO2020199485 A1 WO 2020199485A1
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WO
WIPO (PCT)
Prior art keywords
metal
segments
array substrate
trace
metal segments
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PCT/CN2019/103575
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English (en)
French (fr)
Inventor
邓竹明
柳铭岗
Original Assignee
深圳市华星光电半导体显示技术有限公司
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Application filed by 深圳市华星光电半导体显示技术有限公司 filed Critical 深圳市华星光电半导体显示技术有限公司
Publication of WO2020199485A1 publication Critical patent/WO2020199485A1/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
    • G02F1/133Constructional arrangements; Operation of liquid crystal cells; Circuit arrangements
    • G02F1/1333Constructional arrangements; Manufacturing methods
    • G02F1/1339Gaskets; Spacers; Sealing of cells

Definitions

  • This application relates to the field of display technology, and in particular to an array substrate and a display panel.
  • the array substrate and the color filter substrate are processed into a box process.
  • the curing of sealant includes two steps of UV curing and thermal curing.
  • the ultraviolet curing process has certain requirements for the area of the sealant to receive light. Since there are metal grid traces under the sealant coating area on the side of the array substrate, when the sealant is irradiated with ultraviolet light, the metal grid traces in different areas will cause different curing degrees of the sealant in different areas. If the sealant is not cured completely, the sealant will puncture and contaminate the liquid crystal, which will cause problems such as poor sealing of the display panel.
  • the purpose of this application is to provide an array substrate and a display panel.
  • the metal grid of the array substrate can balance the difference in the light transmission area under the sealant, avoid the poor curing of the sealant due to the too small light transmission area of the local area, and improve The yield of the display panel.
  • An array substrate the array substrate has a sealant coating area, the sealant coating area of the array substrate is provided with a metal grid, and the metal grid includes:
  • At least one second metal trace intersects the first metal trace, and each of the second metal traces is covered by the first metal intersecting the second metal trace
  • the wiring is divided into a group of metal segments, and the metal segments of each group of the metal segments are arranged in a staggered manner.
  • each group of the metal segments a plurality of the metal segments are distributed stepwise.
  • each group of the metal segments includes a plurality of side-by-side repeating units, and each repeating unit includes a first metal segment and a second metal segment that is adjacent to the first metal segment and arranged in a staggered manner.
  • each group of the metal segments includes a plurality of side-by-side repeating units, and each of the repeating units includes two adjacent and side-by-side first metal segments and two adjacent and side-by-side second metal segments , The first metal segment and the second metal segment are arranged staggered.
  • the metal segment is perpendicular to the first metal trace, or/and the angle between the metal segment and the first metal trace is an acute angle.
  • a plurality of the metal segments are perpendicular to the first metal wiring.
  • multiple groups of the metal segments are distributed at equal intervals in the first direction.
  • the sum of the areas of the metal segments provided in any two regions of equal area is the same, and the area is the region where the metal grid is provided in the sealant coating area.
  • a display panel comprising an array substrate, a color film substrate arranged opposite to the array substrate, and a sealant
  • the array substrate has a sealant coating area
  • the sealant of the array substrate is coated Area is provided with a metal grid
  • the sealant is applied to the sealant coating area and located above the metal grid
  • the sealant connects the array substrate and the color film substrate, and the metal
  • the grid includes:
  • At least one second metal trace intersects the first metal trace, and each of the second metal traces is covered by the first metal intersecting the second metal trace
  • the wiring is divided into a group of metal segments, and the metal segments of each group of the metal segments are arranged in a staggered manner.
  • each group of the metal segments a plurality of the metal segments are distributed stepwise.
  • each group of the metal segments includes a plurality of side-by-side repeating units, and each repeating unit includes a first metal segment and a second metal segment that is adjacent to the first metal segment and arranged in a staggered manner.
  • each group of the metal segments includes a plurality of side-by-side repeating units, and each of the repeating units includes two adjacent and side-by-side first metal segments and two adjacent and side-by-side second metal segments , The first metal segment and the second metal segment are arranged staggered.
  • the metal segment is perpendicular to the first metal trace, or/and the angle between the metal segment and the first metal trace is an acute angle.
  • a plurality of the metal segments are perpendicular to the first metal trace.
  • a plurality of groups of the metal segments are distributed at equal intervals in the first direction.
  • the sum of the areas of the metal segments provided in any two equal-area areas is equal, and the area is the area where the metal grid is provided in the sealant coating area.
  • the present application provides an array substrate and a display panel.
  • the metal grid of the array substrate includes at least three first metal traces and at least one second metal trace. Each second metal trace is divided into one by the first metal trace.
  • Group metal segments, the multiple metal segments of each group of metal segments are arranged in a staggered arrangement to balance the difference in the light transmission area under the sealant, avoid the concentration of metal segments and cause the sealant above the metal grid to appear partially cured incompletely, improve the display The yield rate of the panel.
  • FIG. 1 is a schematic diagram of a first structure of a metal grid of an array substrate according to an embodiment of the application
  • FIG. 2 is a schematic diagram of a second structure of the metal grid of the array substrate according to the embodiment of the application;
  • FIG. 3 is a schematic diagram of a third structure of the metal grid of the array substrate according to the embodiment of the application.
  • FIG. 4 is a schematic diagram of the first structure of a display panel according to an embodiment of the application.
  • the first metal trace 11 a set of metal segments; 110 metal segments; 111 repeating units; 1111 first metal segments; 1112 second metal segments; 100 first substrate; 103 metal grids; SA sealant coating area; AA display area; 102 sealant; 101 second substrate; 104 black matrix.
  • FIG. 1 is a schematic diagram of the first structure of the metal grid of the array substrate according to the embodiment of the application.
  • the metal grid includes at least three first metal traces 10 and at least one second metal trace.
  • At least three first metal traces 10 extend along the first direction. Any two first metal traces 10 do not intersect. To facilitate the description of the technical solution of the present application, the first metal trace 10 is a straight metal trace and any two first metal traces 10 are parallel. It can be understood that the first metal trace 10 may also be a non-linear metal trace, such as a parallel wave-shaped metal trace.
  • the second metal trace intersects the first metal trace 10.
  • Each second metal trace is divided into a group of metal segments 11 by the first metal trace 10 intersecting with the second metal trace, and a plurality of metal segments 110 of each group of metal segments 11 are arranged in a staggered manner.
  • the second metal trace may include multiple straight metal segments and/or multiple non-linear segments.
  • the second metal trace 11 includes a plurality of straight metal segments.
  • the first metal wiring 10 and the second metal wiring are formed in the same layer and through the same manufacturing process.
  • the material of the first metal trace 10 and the second metal trace is a metal with good conductivity such as copper or silver.
  • a plurality of metal segments 110 are distributed stepwise. As shown in FIG. 1, a plurality of metal segments 110 rise in steps from left to right. It can be understood that the plurality of metal segments 110 may also descend stepwise from left to right.
  • the plurality of metal segments 110 are perpendicular to the first metal trace 10, or/and the angle between the plurality of metal segments 110 and the first metal trace 10 is an acute angle. Specifically, the plurality of metal segments 110 are all perpendicular to the first metal trace 10.
  • the multiple sets of metal segments 11 are distributed at equal intervals in the first direction.
  • Each group of metal segments 11 includes a plurality of staggered metal segments 110 to prevent the metal segments 110 from being concentrated in a certain direction, and to avoid the problem of poor local curing when the sealant located above the metal grid is cured.
  • the groups of metal segments 11 are arranged at equal intervals in the first direction so that the groups of metal segments 11 are evenly distributed in the first direction.
  • Each metal segment 110 is connected to two adjacent first metal traces 10 so that after multiple first metal traces 10 are applied with electrical signals, the electrical signals transmitted on the first metal traces 10 are stable.
  • the sum of the areas of the metal segments 110 provided in any two equal-area regions is equal, and this region is the region where the metal grid is provided in the sealant coating area.
  • a plurality of metal segments 110 are arranged at equal intervals in the first direction and the second direction, and any two metal segments 110 have the same area, and the second direction is perpendicular to the first direction.
  • the vertical distance of any two adjacent metal segments 110 with the same area in the first direction is d, so that a plurality of metal segments 110 in each group of metal segments 11 are in the first direction.
  • the distance in the second direction between any two adjacent metal segments 110 with the same area is equal to the width of the first metal trace 10 (the width of each first metal trace 10 is the same), so that the metal mesh When the grid is located under the sealant, the light-shielding area of the metal grid in the second direction and the first direction is uniform, which further improves the uniformity of the frame curing, and avoids the sealant from partially curing incompletely and causing the sealant to puncture.
  • FIG. 2 is a schematic diagram of the second structure of the metal grid of the array substrate according to the embodiment of the application.
  • the metal grid includes at least three first metal traces 10 and at least one second metal trace.
  • the second metal trace intersects the first metal trace 10 and each second metal trace is divided into a group of metal segments 11 by the first metal trace 10.
  • the first metal trace 10 shown in FIG. 2 is the same as the first metal trace 10 shown in FIG. 1 and will not be detailed here.
  • Each group of metal segments 11 includes a plurality of side-by-side repeating units 111, and each repeating unit 111 includes a first metal segment 1111 and a second metal segment 1112, and the first metal segment 1111 and the second metal segment 1112 are adjacent and staggered.
  • a plurality of side-by-side repeating units 111 are arranged at equal intervals in the second direction.
  • FIG. 3 is a schematic diagram of a third structure of the metal grid of the array substrate according to the embodiment of the present application.
  • the metal grid includes at least three first metal traces 10 and at least one second metal trace.
  • the second metal trace intersects the first metal trace 10 and each second metal trace is divided into a group of metal segments 11 by the first metal trace 10.
  • Each group of metal segments includes a plurality of side-by-side repeating units 111.
  • Each repeating unit 111 includes two adjacent and side-by-side first metal segments 1111 and two adjacent and side-by-side second metal segments 1112. The first metal segment 1111 And the second metal segments 1112 are arranged staggered.
  • a plurality of side-by-side repeating units 111 are arranged at equal intervals in the second direction.
  • the metal grid of the array substrate of the embodiment of the present application includes at least three first metal traces and at least one second metal trace. Each second metal trace is divided into a group of metal segments by the first metal trace. The multiple metal segments in the segment are arranged in a staggered manner to avoid the problem of incomplete curing of the sealant above the metal grid due to the concentration of the metal segments.
  • FIG. 4 is a schematic diagram of the first structure of the display panel according to the embodiment of the application.
  • the display panel includes an array substrate, a color filter substrate and a sealant 102.
  • the array substrate includes a first substrate 100 having a display area AA and a sealant coating area SA surrounding the display area AA.
  • a metal grid 103 is provided in the sealant coating area SA of the array substrate.
  • the sealant 102 is coated on the sealant coating area SA of the array substrate and is located above the metal grid 103, and the sealant 102 connects the array substrate and the color filter substrate.
  • the metal grid 103 includes at least three first metal traces extending along the first direction and at least one second metal trace, the second metal trace intersects the first metal trace, and each second metal trace is intersected with the first metal trace.
  • the first metal trace where the two metal traces intersect is divided into a group of metal segments, and multiple metal segments of each group of metal segments are arranged in a staggered manner.
  • the color film substrate includes a second substrate 101.
  • the second substrate 101 has a display area and a sealant coating area.
  • the sealant coating area of the second substrate 101 corresponds to the sealant coating area SA of the first substrate 100.
  • the second substrate 101 The display area of corresponds to the display area AA of the first substrate 100.
  • the sealant coating area SA of the second substrate 101 is provided with a black matrix 104, and the black matrix 104 is located between the sealant 102 and the second substrate 101.
  • each group of metal segments multiple metal segments are distributed stepwise.
  • Each group of metal segments includes a plurality of side-by-side repeating units, and each repeating unit includes a first metal segment and a second metal segment that is adjacent to the first metal segment and arranged alternately.
  • Each group of metal segments includes a plurality of side-by-side repeating units, each repeating unit includes two adjacent and side-by-side first metal segments and two adjacent and side-by-side second metal segments, the first metal segment and the second metal segment Staggered.
  • the metal segment is perpendicular to the first metal trace, or/and the angle between the metal segment and the first metal trace is an acute angle.
  • multiple groups of metal segments are distributed at equal intervals in the first direction.
  • the sum of the areas of the metal segments provided in any two equal-area areas is equal, and this area is the area where the metal grid is provided in the sealant coating area.
  • the metal grid of the display panel in the embodiment of the present application includes at least three first metal traces and at least one second metal trace. Each second metal trace is divided into a group of metal segments by the first metal trace. The multiple metal segments of the segments are arranged in a staggered arrangement to balance the difference in the light transmission area under the sealant, avoid the problem of partial curing of the sealant above the metal grid due to the concentration of metal segments, and improve the yield of the display panel.

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  • Physics & Mathematics (AREA)
  • Nonlinear Science (AREA)
  • Mathematical Physics (AREA)
  • Chemical & Material Sciences (AREA)
  • Crystallography & Structural Chemistry (AREA)
  • General Physics & Mathematics (AREA)
  • Optics & Photonics (AREA)
  • Devices For Indicating Variable Information By Combining Individual Elements (AREA)
  • Liquid Crystal (AREA)

Abstract

一种阵列基板及显示面板,阵列基板的金属网格(103)包括至少三条第一金属走线(10)以及至少一条第二金属走线,每条第二金属走线被第一金属走线(10)分割为一组金属段,每组金属段的多个金属段交错排列以平衡框胶(102)下方透光面积大小差异,避免金属段集中而导致金属网格上方的框胶(102)出现局部固化不完全的问题,提高显示面板的成品良率。

Description

阵列基板及显示面板 技术领域
本申请涉及显示技术领域,尤其涉及阵列基板及显示面板。
背景技术
在进行显示面板的制作过程中,制作完阵列基板和彩膜基板后,会将阵列基板和彩膜基板进行成盒工艺流程。
在成盒工艺中,需要采用框胶将阵列基板和彩膜基板进行粘合,以起到密封和隔绝水汽的作用。在框胶涂布完成后,需要对框胶进行固化。一般而言,框胶固化包括紫外光固化和热固化两个步骤。其中,紫外光固化过程对框胶接收光的面积有一定的要求。由于阵列基板侧的框胶涂布区下方有金属网格走线,在对框胶进行紫外光照射时,不同区域的金属网格走线会导致不同区域的框胶固化程度不同。若框胶固化不完全,会出现框胶穿刺以及污染液晶等问题,从而导致显示面板出现密封不良等问题。
因此,有必要提出一种技术方案以解决框胶固化不完全而导致显示面板密封不良的问题。
技术问题
本申请的目的在于提供一种阵列基板及显示面板,该阵列基板的金属网格能平衡框胶下方的透光面积大小差异,避免因局部区域透光面积过小造成框胶的固化不良,提高显示面板的良率。
技术解决方案
一种阵列基板,所述阵列基板具有框胶涂布区,所述阵列基板的所述框胶涂布区设置有金属网格,所述金属网格包括:
至少三条沿第一方向延伸的第一金属走线;
至少一条第二金属走线,所述第二金属走线与所述第一金属走线相交,每条所述第二金属走线被与所述第二金属走线相交的所述第一金属走线分割为一组金属段,每组所述金属段的多个金属段交错排列。
在上述阵列基板中,每组所述金属段中,多个所述金属段呈阶梯式分布。
在上述阵列基板中,每组所述金属段包括多个并排的重复单元,每个重复单元包括第一金属段和与所述第一金属段相邻且交错排列的第二金属段。
在上述阵列基板中,每组所述金属段包括多个并排的重复单元,每个所述重复单元包括两个相邻且并排的第一金属段和两个相邻且并排的第二金属段,所述第一金属段和所述第二金属段交错排列。
在上述阵列基板中,所述金属段与所述第一金属走线垂直,或/和,所述金属段与所述第一金属走线的夹角为锐角。
在上述阵列基板中,多个所述金属段与所述第一金属走线垂直。
在上述阵列基板中,多组所述金属段在所述第一方向上等间隔地分布。
在上述阵列基板中,任意两个等面积的区域中设置的所述金属段的面积之和相等,所述区域为所述框胶涂布区中设置有所述金属网格的区域。
一种显示面板,所述显示面板包括阵列基板、与所述阵列基板相对设置的彩膜基板以及框胶,所述阵列基板具有框胶涂布区,所述阵列基板的所述框胶涂布区设置有金属网格,所述框胶涂布于所述框胶涂布区且位于所述金属网格的上方,所述框胶连接所述阵列基板和所述彩膜基板,所述金属网格包括:
至少三条沿第一方向延伸的第一金属走线;
至少一条第二金属走线,所述第二金属走线与所述第一金属走线相交,每条所述第二金属走线被与所述第二金属走线相交的所述第一金属走线分割为一组金属段,每组所述金属段的多个金属段交错排列。
在上述显示面板中,每组所述金属段中,多个所述金属段呈阶梯式分布。
在上述显示面板中,每组所述金属段包括多个并排的重复单元,每个所述重复单元包括第一金属段和与所述第一金属段相邻且交错排列的第二金属段。
在上述显示面板中,每组所述金属段包括多个并排的重复单元,每个所述重复单元包括两个相邻且并排的第一金属段和两个相邻且并排的第二金属段,所述第一金属段和所述第二金属段交错排列。
在上述显示面板中,所述金属段与所述第一金属走线垂直,或/和,所述金属段与所述第一金属走线的夹角为锐角。
在上述显示面板中,多个所述金属段与所述第一金属走线垂直。
在上述显示面板中,多组所述金属段在所述第一方向上等间隔地分布。
在上述显示面板中,任意两个等面积的区域中设置的所述金属段的面积之和相等,所述区域为所述框胶涂布区中设置有所述金属网格的区域。
有益效果
本申请提供一种阵列基板和显示面板,阵列基板的金属网格包括至少三条第一金属走线以及至少一条第二金属走线,每条第二金属走线被第一金属走线分割为一组金属段,每组金属段的多个金属段交错排列以平衡框胶下方的透光面积大小差异,避免金属段集中而导致金属网格上方的框胶出现局部固化不完全的问题,提高显示面板的成品良率。
附图说明
图1为本申请实施例阵列基板的金属网格的第一种结构示意图;
图2为本申请实施例阵列基板的金属网格的第二种结构示意图;
图3为本申请实施例阵列基板的金属网格的第三种结构示意图;
图4为本申请实施例显示面板的第一种结构示意图。
附图标示:
10第一金属走线;11一组金属段;110金属段;111重复单元;1111第一金属段; 1112第二金属段;100 第一基板;103金属网格; SA 框胶涂布区; AA显示区;102框胶;101第二基板;104黑色矩阵。
本发明的实施方式
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。
请参阅图1,其为本申请实施例阵列基板的金属网格的第一种结构示意图。金属网格包括至少三条第一金属走线10以及至少一条第二金属走线。
至少三条第一金属走线10沿第一方向延伸。任意的两条第一金属走线10不相交。为了便于描述本申请的技术方案,第一金属走线10为直线金属走线且任意两个第一金属走线10平行。可以理解的是,第一金属走线10也可以为非直线型的金属走线,例如平行的波浪形金属走线。
第二金属走线与第一金属走线10相交。每个第二金属走线被与第二金属走线相交的第一金属走线10分割为一组金属段11,每组金属段11的多个金属段110交错排列。第二金属走线可以包括多个直线金属段和/或多个非直线段。为了描述本申请的技术方案,第二金属走线11包括多个直线金属段。
第一金属走线10和第二金属走线同层且通过同一制程形成。第一金属走线10和第二金属走线的制备材料为铜或银等导电性良好的金属。
每组金属段11中,多个金属段110呈阶梯式分布。如图1所示,多个金属段110从左至右为阶梯式上升。可以理解的是,多个金属段110也可以从左至右阶梯式下降。多个金属段110与第一金属走线10垂直,或/和,多个金属段110与第一金属走线10的夹角为锐角。具体地,多个金属段110均与第一金属走线10垂直。
多组金属段11在第一方向上等间隔地分布。每组金属段11包括多个交错排列的金属段110以避免金属段110集中于某个方向,避免位于金属网格上方的框胶在固化时出现局部固化不良的问题。多组金属段11在第一方向上等间隔地设置以使得多组金属段11在第一方向上均匀地分布。每个金属段110连接相邻的两个第一金属走线10以使得多条第一金属走线10被施加电信号后,在第一金属走线10上传输的电信号稳定。
进一步地,任意两个等面积的区域中设置的金属段110的面积之和相等,该区域为框胶涂布区中设置有金属网格的区域。具体地,每组金属段11中,多个金属段110在第一方向上和第二方向上等间隔地设置且任意两个金属段110的面积相等,第二方向与第一方向垂直。例如,每组金属段11中,任意两个面积相等且相邻的金属段110在第一方向上的垂直距离均为d以使得每组金属段11中的多个金属段110在第一方向上均匀地分布,任意两个面积相等且相邻的金属段110在第二方向上的间距等于第一金属走线10的宽度(每个第一金属走线10的宽度相同),使得金属网格位于框胶下方时,在第二方向和第一方向上金属网格的遮光面积均匀,进一步地改善框架固化的均匀性,避免框胶局部固化不完全而导致框胶穿刺。
请参阅图2,其为本申请实施例阵列基板的金属网格的第二种结构示意图。金属网格包括至少三条第一金属走线10以及至少一条第二金属走线。第二金属走线与第一金属走线10相交且每条第二金属走线被第一金属走线10分割为一组金属段11。图2所示第一金属走线10与图1所示第一金属走线10相同,此处不做详述。每组金属段11包括多个并排的重复单元111,每个重复单元111包括第一金属段1111和第二金属段1112,第一金属段1111和第二金属段1112相邻且交错排列。多个并排的重复单元111在第二方向上等间隔地排列。
请参阅图3,其为本申请实施例阵列基板的金属网格的第三种结构示意图。金属网格包括至少三条第一金属走线10以及至少一条第二金属走线。第二金属走线与第一金属走线10相交且每条第二金属走线被第一金属走线10分割为一组金属段11。
每组金属段包括多个并排的重复单元111,每个重复单元111包括两个相邻且并排的第一金属段1111和两个相邻且并排的第二金属段1112,第一金属段1111和第二金属段1112交错排列。多个并排的重复单元111在第二方向上等间隔地排列。
本申请实施例阵列基板的金属网格包括至少三条第一金属走线以及至少一条第二金属走线,每条第二金属走线被第一金属走线分割为一组金属段,每组金属段中的多个金属段交错排列以避免金属段集中而导致金属网格上方的框胶出现局部固化不完全的问题。
请参阅图4,其为本申请实施例显示面板的第一种结构示意图。显示面板包括阵列基板、彩膜基板以及框胶102。
阵列基板包括第一基板100,第一基板100具有显示区AA以及环绕显示区AA的框胶涂布区SA。阵列基板的框胶涂布区SA设置有金属网格103。框胶102涂布于阵列基板的框胶涂布区SA且位于金属网格103的上方,框胶102连接阵列基板和彩膜基板。金属网格103包括至少三条沿第一方向延伸的第一金属走线以及至少一条第二金属走线,第二金属走线与第一金属走线相交,每条第二金属走线被与第二金属走线相交的第一金属走线分割为一组金属段,每组金属段的多个金属段交错排列。
彩膜基板包括第二基板101,第二基板101具有显示区和框胶涂布区,第二基板101的框胶涂布区对应第一基板100的框胶涂布区SA,第二基板101的显示区对应第一基板100的显示区AA。第二基板101的框胶涂布区SA设置有黑色矩阵104,黑色矩阵104位于框胶102和第二基板101之间。通过在阵列基板侧入射紫外光以使框胶102固化,由于金属网格103的金属段交错排列从而避免出现金属段集中,从而避免金属网格上方的框胶出现局部固化不完全的问题。
每组金属段中,多个金属段呈阶梯式分布。
每组金属段包括多个并排的重复单元,每个重复单元包括第一金属段和与第一金属段相邻且交错排列的第二金属段。
每组金属段包括多个并排的重复单元,每个重复单元包括两个相邻且并排的第一金属段和两个相邻且并排的第二金属段,第一金属段和第二金属段交错排列。
金属段与第一金属走线垂直,或/和,金属段与第一金属走线的夹角为锐角。
进一步地,多组金属段在第一方向上等间隔地分布。
进一步地,任意两个等面积的区域中设置的金属段的面积之和相等,该区域为框胶涂布区中设置有金属网格的区域。
本申请实施例显示面板的金属网格包括至少三条第一金属走线以及至少一条第二金属走线,每条第二金属走线被第一金属走线分割为一组金属段,每组金属段的多个金属段交错排列以平衡框胶下方的透光面积大小差异,避免金属段集中而导致金属网格上方的框胶出现局部固化不完全的问题,提高显示面板的成品良率。
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。

Claims (16)

  1. 一种阵列基板,其中,所述阵列基板具有框胶涂布区,所述阵列基板的所述框胶涂布区设置有金属网格,所述金属网格包括:
    至少三条沿第一方向延伸的第一金属走线;
    至少一条第二金属走线,所述第二金属走线与所述第一金属走线相交,每条所述第二金属走线被与所述第二金属走线相交的所述第一金属走线分割为一组金属段,每组所述金属段的多个金属段交错排列。
  2. 根据权利要求1所述的阵列基板,其中,每组所述金属段中,多个所述金属段呈阶梯式分布。
  3. 根据权利要求1所述的阵列基板,其中,每组所述金属段包括多个并排的重复单元,每个重复单元包括第一金属段和与所述第一金属段相邻且交错排列的第二金属段。
  4. 根据权利要求1所述的阵列基板,其中,每组所述金属段包括多个并排的重复单元,每个所述重复单元包括两个相邻且并排的第一金属段和两个相邻且并排的第二金属段,所述第一金属段和所述第二金属段交错排列。
  5. 根据权利要求1所述的阵列基板,其中,所述金属段与所述第一金属走线垂直,或/和,所述金属段与所述第一金属走线的夹角为锐角。
  6. 根据权利要求5所述的阵列基板,其中,多个所述金属段与所述第一金属走线垂直。
  7. 根据权利要求1所述的阵列基板,其中,多组所述金属段在所述第一方向上等间隔地分布。
  8. 根据权利要求7所述的阵列基板,其中,任意两个等面积的区域中设置的所述金属段的面积之和相等,所述区域为所述框胶涂布区中设置有所述金属网格的区域。
  9. 一种显示面板,其中,所述显示面板包括阵列基板、与所述阵列基板相对设置的彩膜基板以及框胶,所述阵列基板具有框胶涂布区,所述阵列基板的所述框胶涂布区设置有金属网格,所述框胶涂布于所述框胶涂布区且位于所述金属网格的上方,所述框胶连接所述阵列基板和所述彩膜基板,所述金属网格包括:
    至少三条沿第一方向延伸的第一金属走线;
    至少一条第二金属走线,所述第二金属走线与所述第一金属走线相交,每条所述第二金属走线被与所述第二金属走线相交的所述第一金属走线分割为一组金属段,每组所述金属段的多个金属段交错排列。
  10. 根据权利要求9所述的显示面板,其中,每组所述金属段中,多个所述金属段呈阶梯式分布。
  11. 根据权利要求9所述的显示面板,其中,每组所述金属段包括多个并排的重复单元,每个所述重复单元包括第一金属段和与所述第一金属段相邻且交错排列的第二金属段。
  12. 根据权利要求9所述的显示面板,其中,每组所述金属段包括多个并排的重复单元,每个所述重复单元包括两个相邻且并排的第一金属段和两个相邻且并排的第二金属段,所述第一金属段和所述第二金属段交错排列。
  13. 根据权利要求9所述的显示面板,其中,所述金属段与所述第一金属走线垂直,或/和,所述金属段与所述第一金属走线的夹角为锐角。
  14. 根据权利要求13所述的显示面板,其中,多个所述金属段与所述第一金属走线垂直。
  15. 根据权利要求9所述的显示面板,其中,多组所述金属段在所述第一方向上等间隔地分布。
  16. 根据权利要求15所述的显示面板,其中,任意两个等面积的区域中设置的所述金属段的面积之和相等,所述区域为所述框胶涂布区中设置有所述金属网格的区域。
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