WO2018166016A1 - 一种显示装置及其制程 - Google Patents

一种显示装置及其制程 Download PDF

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Publication number
WO2018166016A1
WO2018166016A1 PCT/CN2017/079882 CN2017079882W WO2018166016A1 WO 2018166016 A1 WO2018166016 A1 WO 2018166016A1 CN 2017079882 W CN2017079882 W CN 2017079882W WO 2018166016 A1 WO2018166016 A1 WO 2018166016A1
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WIPO (PCT)
Prior art keywords
substrate
width
polarizing plate
layer
disposed
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PCT/CN2017/079882
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English (en)
French (fr)
Inventor
陈猷仁
Original Assignee
惠科股份有限公司
重庆惠科金渝光电科技有限公司
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Priority to US16/325,742 priority Critical patent/US20190179198A1/en
Publication of WO2018166016A1 publication Critical patent/WO2018166016A1/zh

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    • 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
    • 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
    • G02F1/133509Filters, e.g. light shielding masks
    • G02F1/133512Light shielding layers, e.g. black matrix
    • 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
    • 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
    • G02F1/133388Constructional arrangements; Manufacturing methods with constructional differences between the display region and the peripheral region
    • 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
    • G02F1/13356Structural association of cells with optical devices, e.g. polarisers or reflectors characterised by the placement of the optical elements
    • G02F1/133562Structural association of cells with optical devices, e.g. polarisers or reflectors characterised by the placement of the optical elements on the viewer side
    • 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
    • G02F1/13356Structural association of cells with optical devices, e.g. polarisers or reflectors characterised by the placement of the optical elements
    • G02F1/133565Structural association of cells with optical devices, e.g. polarisers or reflectors characterised by the placement of the optical elements inside the LC elements, i.e. between the cell substrates
    • 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
    • G02F1/136Liquid crystal cells structurally associated with a semi-conducting layer or substrate, e.g. cells forming part of an integrated circuit
    • G02F1/1362Active matrix addressed cells
    • G02F1/1368Active matrix addressed cells in which the switching element is a three-electrode device

Definitions

  • the present application relates to the field of display technologies, and more particularly to a display device and a process thereof.
  • the liquid crystal display has many advantages such as thin body, power saving, no radiation, and has been widely used.
  • Most of the liquid crystal displays on the market are backlight type liquid crystal displays, which include a liquid crystal panel and a backlight module.
  • the working principle of the liquid crystal panel is to place liquid crystal molecules in two parallel glass substrates, and apply a driving voltage on the two glass substrates to control the rotation direction of the liquid crystal molecules to refract the light of the backlight module to generate a picture.
  • a thin film transistor liquid crystal display includes a liquid crystal panel including a color filter substrate (CF Substrate, also referred to as a color filter substrate), a thin film transistor array substrate (Thin Film Transistor Substrate, TFT Substrate), and a backlight module.
  • CF Substrate also referred to as a color filter substrate
  • Thin Film Transistor Substrate TFT Substrate
  • a backlight module In the mask, a transparent electrode is present on the opposite side of the substrate. A layer of liquid crystal molecules (Liquid Crystal, LC) is sandwiched between the two substrates.
  • the general four-sided frameless display panel needs to be coated with a black border on the back of the glass, such as BM, to prevent metal leakage at the edge of the panel, and the outer BM process needs to turn the glass over, which will make the front array process have a high risk of scratching. Regardless of equipment investment cost and production efficiency, it is not good.
  • the technical problem to be solved by the present application is to provide a display panel that is light-tight and has high production efficiency.
  • the present application also provides a process for a display device.
  • a display device comprising:
  • the display panel includes a first substrate, a second substrate, and a sealing portion, the first substrate and the second substrate are opposite, and the sealing portion is disposed between the first substrate and the second substrate.
  • the sealing portion is disposed around the display area of the display panel;
  • a polarizing plate comprising a first polarizing plate disposed outside the first substrate, the first polarizing plate comprising a screen printing portion covering the sealing portion at a corresponding position, the screen printing portion being The surface is made of a polarized material that is screen printed, and the surface of the screen printing portion is screen printed with a light shielding layer.
  • the light shielding layer is disposed on a surface of the screen printing portion on a side away from the first substrate. It is clear that the arrangement position of the light shielding layer is set on the outer side of the polarized film after the coating, which can better reduce the process difficulty and save cost.
  • the thickness of the light shielding layer is smaller than the thickness of the first polarizing plate.
  • the screen printed shading layer can be used to prevent light leakage, here the thickness setting of the shading layer.
  • the polarizing plate comprises a second polarizing plate disposed outside the second substrate, the width of the first polarizing plate being greater than the first The width of the substrate, the width of the second polarizing plate being equal to the width of the second substrate.
  • a functional layer of the display area is disposed between the two sealing portions, and the width of the two sealing portions and the functional layer is smaller than the width of the second substrate.
  • the sealing portion is used as a connection or the like, and is located at the same layer position as the functional layer, here is the width and position setting thereof compared with the substrate or the like.
  • the functional layer includes an array layer, a first alignment layer, a liquid crystal molecular layer, a second alignment layer, and a color resist layer in this order from top to bottom. Identify the specific settings of the functional layer.
  • the first substrate is provided with an array layer
  • the array layer comprises an active switch
  • the active switch can adopt a thin film transistor.
  • the composition of the array layer is the composition of the array layer.
  • the first substrate may be made of glass
  • the second substrate may be made of glass.
  • the glass is widely used and is easy to process and use.
  • the present application further discloses a process for a display device, the display device comprising a polarizing plate and a display panel, the display panel comprising a first substrate, a second substrate, and a display a sealing portion disposed between the first substrate and the second substrate, the polarizing plate comprising a first polarizing plate disposed outside the first substrate, the process comprising the steps of:
  • the first substrate and the second substrate are opposite to each other, the sealing portion is disposed around a display area of the display panel, and the first polarizing plate includes a screen printing portion covering the sealing portion at a corresponding position.
  • the screen printing portion is made of a polarizing material which is screen-printed on the surface, and the surface of the screen printing portion is screen-printed with a light shielding layer.
  • the light shielding layer is disposed on a surface of the screen printing portion away from the first substrate, and the thickness of the light shielding layer is smaller than the thickness of the first polarizing plate.
  • the screen printed shading layer can be used to prevent light leakage, here the thickness setting of the shading layer.
  • the upper light shielding layer is disposed by screen printing on both ends of the polarizing plate outside the substrate, and the two ends extend inwardly toward the display area (Active Area, AA area) to prevent metal leakage at the edge of the display panel, and shorten the process.
  • the display area Active Area, AA area
  • FIG. 1 is a schematic structural view of a display panel according to an embodiment of the present application.
  • FIG. 2 is a schematic structural diagram of a display panel according to an embodiment of the present application.
  • FIG. 3 is a schematic structural diagram of a display panel according to an embodiment of the present application.
  • FIG. 4 is a schematic structural diagram of a display panel according to an embodiment of the present application.
  • FIG. 5 is a schematic structural diagram of a display panel according to an embodiment of the present application.
  • FIG. 6 is a schematic structural diagram of a display device according to an embodiment of the present application.
  • FIG. 7 is a schematic flow chart of a process of a display panel according to an embodiment of the present application.
  • FIG. 8 is a schematic structural diagram of a display device according to an embodiment of the present application.
  • FIG. 9 is a schematic flow chart of a process of a display device according to an embodiment of the present application.
  • FIG. 10 is a schematic structural diagram of a display device according to an embodiment of the present application.
  • FIG. 11 is a schematic structural diagram of a display device according to an embodiment of the present application.
  • FIG. 12 is a schematic structural diagram of a display device according to an embodiment of the present application.
  • first and second are used for descriptive purposes only and are not to be construed as indicating or implying a relative importance or implicitly indicating the number of technical features indicated. Thus, features defining “first” and “second” may include one or more of the features either explicitly or implicitly.
  • a plurality means two or more unless otherwise stated.
  • the term “comprises” and its variations are intended to cover a non-exclusive inclusion.
  • connection In the description of the present application, it should be noted that the terms “installation”, “connected”, and “connected” are to be understood broadly, and may be fixed or detachable, for example, unless otherwise specifically defined and defined. Connected, or integrally connected; can be mechanical or electrical; can be directly connected, or indirectly connected through an intermediate medium, can be the internal communication of the two components.
  • Connected, or integrally connected can be mechanical or electrical; can be directly connected, or indirectly connected through an intermediate medium, can be the internal communication of the two components.
  • the specific meanings of the above terms in the present application can be understood in the specific circumstances for those skilled in the art.
  • the display panel includes a substrate, the substrate includes a first substrate and a second substrate, the first substrate and the second substrate are opposite; the sealing portion: The sealing portion is disposed between the first substrate and the second substrate, the sealing portion is disposed around the display area of the display panel; the functional layer: here is the first display area functional layer 2, and the functional layer is disposed in two Between the sealing portions; a side surface of the substrate is flush with an end of the sealing portion away from the functional layer.
  • the substrate is subjected to edging treatment so that it is flush with the end of the sealing portion away from the functional layer, and the frame is narrowed by the edging method to achieve a narrow frame effect, which makes the visual sense better.
  • the substrate may be made of glass.
  • the glass is widely used and is easy to process and use.
  • the substrate is subjected to edging treatment by grinding vermiculite.
  • the specific method of edging the substrate is to utilize the characteristics of the rubbed stone.
  • the side surface of the substrate is a curved surface
  • the chamfer of the substrate after the edging process is a right angle.
  • the chamfering process at the right angle is better, no additional work is required, and process and cost are saved.
  • the side surface of the substrate is a curved surface.
  • the arc surface is set to be more gradual, and the panel can be better protected against collisions.
  • the display panel includes a substrate, and the The substrate includes a first substrate and a second substrate, the first substrate and the second substrate are opposed to each other; a sealing portion: the sealing portion is disposed between the first substrate and the second substrate, the sealing portion surrounding the Display area setting of the display panel; functional layer: here is a first display area functional layer 2, the functional layer is disposed between the two sealing portions; the side surface of the substrate and the sealing portion are away from the functional layer One end is flush.
  • the sealing portion includes a first sealing portion disposed on a first side of the functional layer and a second sealing portion disposed on a second side of the functional layer, a side of the substrate being away from the first sealing portion
  • One end of the functional layer is flush, and alternatively, a side surface of the substrate is flush with an end of the second sealing portion away from the functional layer.
  • the left side and the right side of the substrate may be subjected to edging treatment as needed to be flush with the end of the sealing portion away from the functional layer, and the utilization rate is higher, convenient and effective.
  • the substrate is subjected to edging treatment so that it is flush with the end of the sealing portion away from the functional layer, and the frame is narrowed by the edging method to achieve a narrow frame effect, which makes the visual sense better.
  • the substrate may be made of glass.
  • the glass is widely used and is easy to process and use.
  • the substrate is subjected to edging treatment by grinding vermiculite.
  • the specific method of edging the substrate is to utilize the characteristics of the rubbed stone.
  • the side surface of the substrate is a curved surface
  • the chamfer of the substrate after the edging process is a right angle.
  • the chamfering process at the right angle is better, no additional work is required, and process and cost are saved.
  • the side surface of the substrate is a curved surface.
  • the arc surface is set to be more gradual, and the panel can be better protected against collisions.
  • the display panel includes a substrate, the substrate includes a first substrate and a second substrate, the first substrate and the second substrate are opposite; the sealing portion The sealing portion is disposed between the first substrate and the second substrate, the sealing portion is disposed around the display area of the display panel; the functional layer: here is the first display area functional layer 2, and the functional layer is disposed at Between the two sealing portions; a side surface of the substrate is flush with an end of the sealing portion away from the functional layer. A side surface of the first substrate is flush with an end of the sealing portion away from the functional layer, and alternatively, a side surface of the second substrate is flush with an end of the sealing portion away from the functional layer.
  • the first substrate and the second substrate may be subjected to edging treatment as needed to be away from the end of the sealing portion of the functional layer Flat, optional processing of upper and lower substrates is more efficient, convenient and effective.
  • the substrate is subjected to edging treatment so that it is flush with the end of the sealing portion away from the functional layer, and the frame is narrowed by the edging method to achieve a narrow frame effect, which makes the visual sense better.
  • the substrate may be made of glass.
  • the glass is widely used and is easy to process and use.
  • the substrate is subjected to edging treatment by grinding vermiculite.
  • the specific method of edging the substrate is to utilize the characteristics of the rubbed stone.
  • the side surface of the substrate is a curved surface
  • the chamfer of the substrate after the edging process is a right angle.
  • the chamfering process at the right angle is better, no additional work is required, and process and cost are saved.
  • the side surface of the substrate is a curved surface.
  • the arc surface is set to be more gradual, and the panel can be better protected against collisions.
  • the first display region functional layer 2 disposed on the two substrates includes a color resist layer, a first alignment layer, a liquid crystal molecular layer, a second alignment layer, and an array layer in this order.
  • the array layer comprises an active switch, and the active switch can adopt a thin film transistor.
  • the display panel includes a substrate, the substrate includes a first substrate and a second substrate, the first substrate and the second substrate are opposite; the sealing portion The sealing portion is disposed between the first substrate and the second substrate, the sealing portion is disposed around the display area of the display panel; the functional layer: here is the first display area functional layer 2, and the functional layer is disposed at Between the two sealing portions; a side surface of the substrate is flush with an end of the sealing portion away from the functional layer.
  • the sealing portion includes a first sealing portion disposed on a first side of the functional layer and a second sealing portion disposed on a second side of the functional layer, a side of the first substrate and the first seal And a second sealing portion is flush with an end of the functional layer, and a side surface of the second substrate is flush with an end of the first sealing portion and the second sealing portion away from the functional layer.
  • an embodiment in which the left and right sides of the upper and lower substrates are edging is performed to better satisfy the user's visual sense and improve the user experience.
  • the substrate is subjected to edging treatment so that it is flush with the end of the sealing portion away from the functional layer, and the frame is narrowed by the edging method to achieve a narrow frame effect, which makes the visual sense better.
  • the substrate may be made of glass.
  • the glass is widely used and is easy to process and use.
  • the substrate is subjected to edging treatment by grinding vermiculite.
  • the specific method of edging the substrate is to utilize the characteristics of the rubbed stone.
  • the side surface of the substrate is a curved surface
  • the chamfer of the substrate after the edging process is a right angle.
  • the chamfering process at the right angle is better, no additional work is required, and process and cost are saved.
  • the side surface of the substrate is a curved surface.
  • the arc surface is set to be more gradual, and the panel can be better protected against collisions.
  • the first display region functional layer 2 disposed on the two substrates includes a color resist layer, a first alignment layer, a liquid crystal molecular layer, a second alignment layer, and an array layer in this order.
  • the array layer comprises an active switch, and the active switch can adopt a thin film transistor.
  • the present application also discloses a display device including a backlight module and a display panel as described above.
  • the display panel includes a substrate, the substrate includes a first substrate and a second substrate, the first substrate and the second substrate are opposite; the sealing portion The sealing portion is disposed between the first substrate and the second substrate, the sealing portion is disposed around the display area of the display panel; the color resist layer, the color resist layer and the sealing portion are disposed on the first substrate Between the second substrate and the second substrate, the color layer includes a light processing portion covering the sealing portion, and the light processing portion is made of a color resist material of a carbonized structure.
  • a light processing portion made of a color resist material of a carbonized structure is disposed at both ends of the color resist layer, and the two ends extend inwardly toward the display area (Active Area, AA area) to prevent metal leakage at the edge of the display panel. , shortening process production time and material cost, reducing equipment investment cost and high production yield.
  • the light processing portion includes a light-shielding carbonization layer and a light-transmitting layer covering the surface of the carbonization layer.
  • the specific arrangement of the light processing unit may be a carbonization layer that can block light.
  • the carbonized layer is subjected to high-intensity light energy carbonization to obtain a black layer, and the black layer has a thickness smaller than a thickness of the color resist layer.
  • the black layer obtained after carbonization can be used to prevent light leakage.
  • the display panel includes a substrate, the substrate includes a first substrate and a second substrate, the first substrate and the second substrate are opposite; a sealing portion, the sealing portion is provided Positioned between the first substrate and the second substrate, the sealing portion is disposed around the display area of the display panel; the color resist layer, the color resist layer and the sealing portion are disposed on the first substrate and the second substrate
  • the color group layer includes a light processing portion covering the sealing portion, and the light processing portion is made of a color resist material of a carbonized structure.
  • a light processing portion made of a color resist material of a carbonized structure is disposed at both ends of the color resist layer, and the two ends extend inwardly toward the display area (Active Area, AA area) to prevent metal leakage at the edge of the display panel. , shortening process production time and material cost, reducing equipment investment cost and high production yield.
  • the high intensity light energy can be a laser. Laser (laser) is widely used, directional light, and extremely high brightness, and can be used as a tool for carbonizing the light processing unit.
  • the light processing portion includes a light-shielding carbonization layer and a light-transmitting layer covering the surface of the carbonization layer.
  • the specific arrangement of the light processing unit may be a carbonization layer that can block light.
  • the carbonized layer is subjected to high-intensity light energy carbonization to obtain a black layer, and the black layer has a thickness smaller than a thickness of the color resist layer.
  • the black layer obtained after carbonization can be used to prevent light leakage.
  • the display panel includes a substrate, the substrate includes a first substrate and a second substrate, the first substrate and the second substrate are opposite; the sealing portion The sealing portion is disposed between the first substrate and the second substrate, the sealing portion is disposed around the display area of the display panel; the color resist layer, the color resist layer and the sealing portion are disposed on the first substrate Between the second substrate and the second substrate, the color layer includes a light processing portion covering the sealing portion, and the light processing portion is made of a color resist material of a carbonized structure.
  • the display panel further includes an array layer, and the color resist layer and the array layer collectively cover a functional layer on the first substrate, and the display region is disposed between the two sealing portions, the function
  • the layer is disposed between the color resist layer and the second substrate, and the functional layer includes a first alignment layer, a liquid crystal molecular layer and a second alignment layer in order from top to bottom.
  • COA color filter on array
  • the high intensity light energy can be a laser.
  • Laser Laser
  • Laser is widely used, directional light, and extremely high brightness, and can be used as a tool for carbonizing the light processing unit.
  • a light processing portion made of a color resist material of a carbonized structure is disposed at both ends of the color resist layer, and the two ends extend inwardly toward the display area (Active Area, AA area) to prevent metal leakage at the edge of the display panel. , shortening process production time and material cost, reducing equipment investment cost and high production yield.
  • the light processing portion includes a light-shielding carbonization layer and a light-transmitting layer covering the surface of the carbonization layer.
  • the specific arrangement of the light processing unit may be a carbonization layer that can block light.
  • the carbonized layer is subjected to high-intensity light energy carbonization to obtain a black layer, and the black layer has a thickness smaller than a thickness of the color resist layer.
  • the black layer obtained after carbonization can be used to prevent light leakage.
  • the array layer comprises an active switch
  • the array layer comprises an active switch
  • the active switch can adopt a thin film transistor.
  • the composition of the array layer is the composition of the array layer.
  • the color resist layer further comprises an intermediate portion disposed between the two light processing portions, the intermediate portion including a red photoresist layer, a green photoresist layer and a blue photoresist layer.
  • the color resist layer includes, but is not limited to, a red photoresist layer, a green photoresist layer, and a blue photoresist layer, and may further include a photoresist layer corresponding to a color such as W (White white) or Y (Yellow yellow), and the color is more abundant, and the display effect is also better.
  • the width of the intermediate portion is less than or equal to the width of the functional layer 6 of the second display region.
  • the present application further discloses a process for displaying a display panel, the display panel includes a substrate and a color resist layer, and the process includes the following steps:
  • the substrate includes a first substrate and a second substrate, the first substrate and the second substrate are opposite, the display panel further includes a sealing portion disposed between the first substrate and the second substrate The sealing portion is disposed around a display area of the display panel, the color resist layer and the sealing portion are disposed between the first substrate and the second substrate, and the color group layer includes light covering the sealing portion
  • the processing unit is made of a color resist material of a carbonized structure.
  • a transparent conductive layer is obtained by coating, exposing, developing, and etching on the protective layer.
  • the high intensity light energy can be a laser.
  • Laser Laser
  • directional light and extremely high brightness, and can be used as a tool for carbonizing the light processing unit.
  • the present application also discloses a display device, which includes a backlight module and a display panel as described above.
  • a display panel includes a first substrate, a second substrate, and a sealing portion, the first substrate and the second substrate are opposite to each other,
  • the sealing portion is disposed between the first substrate and the second substrate, the sealing portion is disposed around the display area of the display panel, and the polarizing plate includes a first polarizing plate disposed outside the first substrate,
  • the first polarizing plate includes a screen printing portion covering the sealing portion at a corresponding position, the screen printing portion being made of a polarizing material whose surface is carried by screen printing, and the surface printing of the screen printing portion Upper shade layer.
  • An upper light shielding layer is disposed on both ends of the polarizing plate outside the substrate by screen printing, and the two ends extend inwardly toward the display area (Active Area, AA area) to prevent metal leakage at the edge of the display panel, thereby shortening the production time of the process and Material costs, reduced equipment investment costs, and high production yield.
  • Screen printing also known as silk screen printing, is one of the circuit board manufacturing processes.
  • a proper amount of ink ie, a resist
  • This type of transfer is commonly referred to as "screen printing” and can also be used in other fields.
  • the light shielding layer may be disposed on both sides of both ends of the polarizing plate.
  • the light shielding layer is disposed on a surface of the screen printing portion on a side away from the first substrate.
  • the outer side of the polarizing plate after the coating can be more difficult to reduce the process and save costs.
  • the thickness of the light shielding layer is smaller than the thickness of the first polarizing plate.
  • the width of the first substrate is greater than the width of the second substrate
  • the polarizing plate includes a second polarizing plate disposed outside the second substrate, the width of the first polarizing plate being greater than the first The width of the substrate, the width of the second polarizer being equal to the width of the second substrate.
  • a functional layer of the display area is disposed between the two sealing portions, which is also called a first display area functional layer 2, two places The width of the sealing portion and the functional layer is smaller than the width of the second substrate.
  • the sealing portion is used as a connection or the like, and the functional layer is in the same layer position.
  • the functional layer includes an array layer, a first alignment layer, a liquid crystal molecular layer, a second alignment layer, and a color resist layer in this order from top to bottom.
  • the first substrate is provided with an array layer
  • the array layer comprises an active switch, and the active switch can adopt a thin film transistor.
  • the first substrate may be made of glass
  • the second substrate may be made of glass.
  • the glass is widely used and is easy to process and use.
  • a display panel includes a first substrate, a second substrate, and a sealing portion, the first substrate and the second substrate are opposite, and the sealing portion is disposed at the first Between the substrate and the second substrate, the sealing portion is disposed around the display area of the display panel; the polarizing plate includes a first polarizing plate disposed outside the first substrate, the first polarizing plate A screen printing portion covering the sealing portion at a corresponding position is formed, the screen printing portion being made of a polarizing material that is surface-printed with a screen printing, and a surface of the screen printing portion is screen-printed with a light shielding layer.
  • a functional layer of the display area also called a second display area functional layer 6, is disposed between the two sealing portions, and the second display area functional layer includes a first alignment layer and a liquid crystal molecular layer from top to bottom. , the second alignment layer.
  • the COA (color filter on array) process is used to set the upper light shielding layer on both ends of the polarizing plate outside the substrate by screen printing, and the two ends extend slightly inward to the display area (Active Area, AA area) to prevent the display panel.
  • Metal leakage at the edge shortens process time and material costs, reduces equipment investment costs, and produces high yields.
  • the light shielding layer is disposed on a surface of the screen printing portion on a side away from the first substrate.
  • the outer side of the polarizing plate after the coating can be more difficult to reduce the process and save costs.
  • the thickness of the light shielding layer is smaller than the thickness of the first polarizing plate.
  • the width of the first substrate is greater than the width of the second substrate
  • the polarizing plate includes a second polarizing plate disposed outside the second substrate, the width of the first polarizing plate being greater than the first The width of the substrate, the width of the second polarizer being equal to the width of the second substrate.
  • the width of the two sealing portions and the functional layer is smaller than the width of the second substrate.
  • Secret The seal is used as a connection, etc., and the functional layer is in the same layer position.
  • the functional layer includes an array layer, a first alignment layer, a liquid crystal molecular layer, a second alignment layer, and a color resist layer in this order from top to bottom.
  • the first substrate is provided with an array layer
  • the array layer comprises an active switch, and the active switch can adopt a thin film transistor.
  • the first substrate may be made of glass
  • the second substrate may be made of glass.
  • the glass is widely used and is easy to process and use.
  • the present application further discloses a process of a display device, the display device comprising a polarizing plate and a display panel, the display panel comprising a first substrate and a second substrate And a sealing portion disposed between the first substrate and the second substrate, the polarizing plate including a first polarizing plate disposed outside the first substrate, the process comprising the steps of:
  • the first substrate and the second substrate are opposite to each other, the sealing portion is disposed around a display area of the display panel, and the first polarizing plate includes a screen printing portion covering the sealing portion at a corresponding position.
  • the screen printing portion is made of a polarizing material which is screen-printed on the surface, and the surface of the screen printing portion is screen-printed with a light shielding layer.
  • the light shielding layer is disposed on a surface of the screen printing portion away from the first substrate, and the thickness of the light shielding layer is smaller than the thickness of the first polarizing plate.
  • the width of the first substrate is larger than the width of the second substrate, and the polarizing plate includes a second polarizing plate disposed outside the second substrate, the first polarizing plate having a width larger than that of the first substrate Width, the width of the second polarizer is equal to the width of the second substrate.
  • the display device includes: a display panel: the display panel includes a first substrate, a second substrate, and a sealing portion, the first substrate and the second The substrate is opposed to each other, the sealing portion is disposed between the first substrate and the second substrate, the sealing portion is disposed around the display area of the display panel; the polarizing plate: the polarizing plate comprises a first polarizing plate and a second polarization a sheet, the outer side of the first substrate includes a polarization at a joint portion and an intermediate position covering the sealing portion at a corresponding position a first polarizing plate is disposed on the polarizing portion, the first polarizing plate and the second polarizing plate are sequentially disposed on the bonding portion, or the second polarizing plate is sequentially disposed on the bonding portion The first polarizing plate.
  • the polarization function of the first polarizing plate outside the substrate is set in the form of a joint portion at both ends and an intermediate polarizing portion, and different polarizing plates are respectively disposed at the position, and the metal reflective phenomenon of the periphery of the display device is eliminated by using the combined property of the polarizing plate. Poor scratching caused by flipping the substrate, reducing the process and reducing the cost.
  • the inventors also thought of solving the problem of coating a layer of BM on the outside of the array substrate or applying a layer of low-reflection material in front of the first layer of metal, but adding a process compared to the embodiment of the present application, and coating BM increases the risk of scratching the side of the array.
  • the patent uses a polarizer to block the reflected light of the peripheral metal lines without increasing the process.
  • the display device includes: a display panel: the display panel includes a first substrate, a second substrate, and a sealing portion, the first substrate and the second The substrate is opposed to each other, the sealing portion is disposed between the first substrate and the second substrate, the sealing portion is disposed around the display area of the display panel; the polarizing plate: the polarizing plate comprises a first polarizing plate and a second polarization a sheet, the outer side of the first substrate includes a polarizing portion covering a joint portion and an intermediate position of the sealing portion at a corresponding position, and the bonding portion is sequentially provided with a layer of the first polarizing plate and a layer of the second polarizing layer a sheet, the first polarizing plate is disposed on a side close to the first substrate; and the polarizing portion is provided with a layer of the first polarizing plate.
  • the polarization function of the first polarizing plate outside the substrate is set in the form of a joint portion at both ends and an intermediate polarizing portion, and different polarizing plates are respectively disposed at the position, and the metal reflective phenomenon of the periphery of the display device is eliminated by using the combined property of the polarizing plate. Poor scratching caused by flipping the substrate, reducing the process and reducing the cost.
  • the thickness of the first polarizing plate is equal to the thickness of the second polarizing plate.
  • the display panel includes an array substrate and a color filter substrate, the first polarizing plate is a polarizing plate for the array substrate side, and the second polarizing plate is a polarizing plate for the color film substrate side.
  • a width of the first substrate is greater than a width of the second substrate, and the second base
  • the second polarizing plate is disposed on the outer side of the board, the width of the polarizing plate disposed outside the first substrate is equal to the width of the first substrate, and the width of the polarizing plate disposed outside the second substrate is equal to the second substrate The width.
  • a functional layer of the display area is disposed between the two sealing portions, here is a first display area functional layer 2, and the width of the two sealing portions and the functional layer is smaller than the second substrate The width.
  • the sealing portion is used as a connection or the like, and the functional layer is in the same layer position.
  • the functional layer includes an array layer, a first alignment layer, a liquid crystal molecular layer, a second alignment layer, and a color resist layer in order from top to bottom.
  • the array layer includes an active switch, and the array layer includes an active switch.
  • the active switch can be a thin film transistor.
  • the display device includes: a display panel: the display panel includes a first substrate, a second substrate, and a sealing portion, the first substrate and the second The substrate is opposed to each other, the sealing portion is disposed between the first substrate and the second substrate, the sealing portion is disposed around the display area of the display panel; the polarizing plate: the polarizing plate comprises a first polarizing plate and a second polarization a sheet, the outer side of the first substrate includes a polarizing portion covering a joint portion and an intermediate position of the sealing portion at a corresponding position, and the bonding portion is sequentially provided with a layer of the second polarizing plate and a layer of the first polarization a sheet, the second polarizing plate is disposed on a side close to the first substrate; and the polarizing portion is provided with a layer of the first polarizing plate.
  • the polarization function of the first polarizing plate outside the substrate is set in the form of a joint portion at both ends and an intermediate polarizing portion, and different polarizing plates are respectively disposed at the position, and the metal reflective phenomenon of the periphery of the display device is eliminated by using the combined property of the polarizing plate. Poor scratching caused by flipping the substrate, reducing the process and reducing the cost.
  • the first polarizing plate is disposed on the second polarizing portion, and one layer of the first polarizing plate is disposed at two ends of the first polarizing plate.
  • the thickness of the first polarizing plate is equal to the thickness of the second polarizing plate.
  • the display panel includes an array substrate and a color filter substrate, the first polarizing plate is a polarizing plate for the array substrate side, and the second polarizing plate is a polarizing plate for the color film substrate side.
  • a width of the first substrate is larger than a width of the second substrate, and a second polarizing plate is disposed outside the second substrate, and a width of the polarizing plate disposed outside the first substrate is equal to the first
  • the width of a substrate, the width of the polarizing plate disposed outside the second substrate is equal to the width of the second substrate.
  • a functional layer of the display area is disposed between the two sealing portions, here is a first display area functional layer 2, and the width of the two sealing portions and the functional layer is smaller than the second substrate The width.
  • the sealing portion is used as a connection or the like, and the functional layer is in the same layer position.
  • the functional layer includes an array layer, a first alignment layer, a liquid crystal molecular layer, a second alignment layer, and a color resist layer in order from top to bottom.
  • the array layer includes an active switch, and the array layer includes an active switch.
  • the active switch can be a thin film transistor.
  • the material of the substrate may be glass, plastic or the like.
  • the display panel of the present application may be a curved type panel.
  • the embossing process of the substrate or the high-intensity light energy carbonization treatment to obtain a black layer, a screen printing light-shielding layer, and a specific embodiment concept for reducing reflected light may be used in combination of two or more. In the examples.

Abstract

一种显示装置及其制程,显示装置包括包括:显示面板,显示面板包括第一基板(11)、第二基板(12)和密封部(3),第一基板(11)和第二基板(12)对置,密封部(3)设置在第一基板(11)和第二基板(12)之间,密封部(3)环绕显示面板的显示区域设置;偏振片(7),偏振片(7)包括设置在第一基板(11)外侧的第一偏振片(71),第一偏振片(71)包括在对应位置覆盖密封部(3)的网版印刷部(711),网版印刷部(711)由表面承载网版印刷的偏振材料制成,网版印刷部(711)的表面网版印刷上遮光层。

Description

一种显示装置及其制程 【技术领域】
本申请涉及显示技术领域,更具体的说,涉及一种显示装置及其制程。
【背景技术】
液晶显示器具有机身薄、省电、无辐射等众多优点,得到了广泛的应用。现有市场上的液晶显示器大部分为背光型液晶显示器,其包括液晶面板及背光模组(backlightmodule)。液晶面板的工作原理是在两片平行的玻璃基板当中放置液晶分子,并在两片玻璃基板上施加驱动电压来控制液晶分子的旋转方向,以将背光模组的光线折射出来产生画面。
其中,薄膜晶体管液晶显示器(Thin Film Transistor-Liquid Crystal Display,TFT-LCD)由于具有低的功耗、优异的画面品质以及较高的生产良率等性能,目前已经逐渐占据了显示领域的主导地位。同样,薄膜晶体管液晶显示器包含液晶面板和背光模组,液晶面板包括彩膜基板(Color Filter Substrate,CF Substrate,也称彩色滤光片基板)、薄膜晶体管阵列基板(Thin Film Transistor Substrate,TFTSubstrate)和光罩(Mask),上述基板的相对内侧存在透明电极。两片基板之间夹一层液晶分子(LiquidCrystal,LC)。
然而一般四边无边框的显示面板需要在玻璃背面涂上黑色边框例如BM用以防止面板边缘金属漏光,而此外侧BM工艺需将玻璃翻面以进行,将使得前array工艺刮伤风险都大,不论设备投资成本及生产效能皆较不佳。
【发明内容】
本申请所要解决的技术问题是提供一种的不漏光、生产效率高的显示面板。
此外,本申请还提供一种显示装置的制程。
本申请的目的是通过以下技术方案来实现的:
一种显示装置,所述显示装置包括:
显示面板,所述显示面板包括第一基板、第二基板和密封部,所述第一基板和所述第二基板对置,所述密封部设置在第一基板和第二基板之间,所述密封部环绕所述显示面板的显示区域设置;
偏振片,所述偏振片包括设置在所述第一基板外侧的第一偏振片,所述第一偏振片包括在对应位置覆盖所述密封部的网版印刷部,所述网版印刷部由表面承载网版印刷的偏振材料制成,所述网版印刷部的表面网版印刷上遮光层。
其中,所述遮光层设置在所述网版印刷部远离所述第一基板的一侧的表面。明确所述遮光层的设置位置,设置在贴覆后的偏振片的外侧能更好的减小工艺难度,节省成本。
其中,所述遮光层的厚度小于所述第一偏振片的厚度。网版印刷的遮光层可以用来防止漏光,这里是遮光层的厚度设置。
其中,所述第一基板的宽度大于所述第二基板的宽度,所述偏振片包括设置在所述第二基板外侧的第二偏振片,所述第一偏振片的宽度大于所述第一基板的宽度,所述第二偏振片的宽度等于所述第二基板的宽度。明确显示装置中各基板和各偏振片的相对宽度设置。
其中,两个所述密封部之间设置有所述显示区域的功能层,两个所述密封部和所述功能层的宽度小于所述第二基板的宽度。密封部用作连接等使用,和功能层处于同一层位置,这里是它们与基板等相比的宽度及位置设置。
其中,所述功能层由上之下依次包括阵列层、第一配向层、液晶分子层、第二配向层和色阻层。明确功能层的具体设置。
其中,所述第一基板上设置有阵列层,所述阵列层包括主动开关,所述主动开关可采用薄膜晶体管。这里是阵列层的构成。
其中,所述第一基板可采用玻璃材质,所述第二基板可采用玻璃材质。玻璃取材广泛,加工使用方便。
根据本申请的又一个方面,本申请还公开了一种显示装置的制程,所述显示装置包括偏振片和显示面板,所述显示面板包括第一基板、第二基板以及设 置在所述第一基板和所述第二基板之间的密封部,所述偏振片包括设置在所述第一基板外侧的第一偏振片所述制程包括步骤:
在显示面板外侧贴设偏振片;
在第一偏振片两端的表面网版印刷上遮光层;
所述第一基板和所述第二基板对置,所述密封部环绕所述显示面板的显示区域设置,所述第一偏振片包括在对应位置覆盖所述密封部的网版印刷部,所述网版印刷部由表面承载网版印刷的偏振材料制成,所述网版印刷部的表面网版印刷上遮光层。
其中,所述遮光层设置在所述网版印刷部远离所述第一基板的一侧的表面,所述遮光层的厚度小于所述第一偏振片的厚度。网版印刷的遮光层可以用来防止漏光,这里是遮光层的厚度设置。
本申请由于在基板外侧的偏振片上两端利用网版印刷设置上遮光层,所述两端略向内伸向顯示区(Active Area区,AA区),防止显示面板边缘的金属漏光,缩短工艺生产时间及材料成本、减少设备投资成本并且生产良率高。
【附图说明】
所包括的附图用来提供对本申请实施例的进一步的理解,其构成了说明书的一部分,用于例示本申请的实施方式,并与文字描述一起来阐释本申请的原理。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性的前提下,还可以根据这些附图获得其他的附图。在附图中:
图1是本申请实施例一种显示面板的结构示意图;
图2是本申请实施例一种显示面板的结构示意图;
图3是本申请实施例一种显示面板的结构示意图;
图4是本申请实施例一种显示面板的结构示意图;
图5是本申请实施例一种显示面板的结构示意图;
图6是本申请实施例一种显示装置的结构示意图;
图7是本申请实施例一种显示面板的制程的流程示意图;
图8是本申请实施例一种显示装置的结构示意图;
图9是本申请实施例一种显示装置的制程的流程示意图;
图10是本申请实施例一种显示装置的结构示意图;
图11是本申请实施例一种显示装置的结构示意图;
图12是本申请实施例一种显示装置的结构示意图。
其中,1、基板;11、第一基板;111、结合部;112、偏振部;12、第二基板;2、第一显示区功能层;21、第一配向层;22、第二配向层;23、液晶分子层;3、密封部;31、第一密封部;32、第二密封部;4、阵列层;5、色阻层;51、光处理部;52、中间部;6、第二显示区功能层;7、偏振片;71、第一偏振片;711、网版印刷部;72、第二偏振片。
【具体实施方式】
这里所公开的具体结构和功能细节仅仅是代表性的,并且是用于描述本申请的示例性实施例的目的。但是本申请可以通过许多替换形式来具体实现,并且不应当被解释成仅仅受限于这里所阐述的实施例。
在本申请的描述中,需要理解的是,术语“中心”、“横向”、“上”、“下”、“左”、“右”、“竖直”、“水平”、“顶”、“底”、“内”、“外”等指示的方位或位置关系为基于附图所示的方位或位置关系,仅是为了便于描述本申请和简化描述,而不是指示或暗示所指的装置或元件必须具有特定的方位、以特定的方位构造和操作,因此不能理解为对本申请的限制。此外,术语“第一”、“第二”仅用于描述目的,而不能理解为指示或暗示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一个或者更多个该特征。在本申请的描述中,除非另有说明,“多个”的含义是两个或两个以上。另外,术语“包括”及其任何变形,意图在于覆盖不排他的包含。
在本申请的描述中,需要说明的是,除非另有明确的规定和限定,术语“安装”、“相连”、“连接”应做广义理解,例如,可以是固定连接,也可以是可拆卸连接,或一体地连接;可以是机械连接,也可以是电连接;可以是直接相连,也可以通过中间媒介间接相连,可以是两个元件内部的连通。对于本领域的普通技术人员而言,可以具体情况理解上述术语在本申请中的具体含义。
这里所使用的术语仅仅是为了描述具体实施例而不意图限制示例性实施例。除非上下文明确地另有所指,否则这里所使用的单数形式“一个”、“一项”还意图包括复数。还应当理解的是,这里所使用的术语“包括”和/或“包含”规定所陈述的特征、整数、步骤、操作、单元和/或组件的存在,而不排除存在或添加一个或更多其他特征、整数、步骤、操作、单元、组件和/或其组合。
下面结合附图和较佳的实施例对本申请作进一步详细说明。
作为本申请的一个实施例,如图1所示,所述显示面板包括基板,所述基板包括第一基板和第二基板,所述第一基板和所述第二基板对置;密封部:所述密封部设置在第一基板和第二基板之间,所述密封部环绕所述显示面板的显示区域设置;功能层:这里为第一显示区功能层2,所述功能层设置在两个所述密封部之间;所述基板的侧面与所述密封部远离所述功能层的一端平齐。对基板进行磨边处理使得其与所述密封部远离所述功能层的一端平齐,利用磨边方式把边框磨窄,达到窄边框效果,让视觉感官更佳。
具体的,所述基板可采用玻璃材质。玻璃取材广泛,加工使用方便。
具体的,所述基板通过研磨砥石进行磨边处理。对基板进行磨边处理的具体方式,利用研磨砥石的特性。
具体的,所述基板的侧面为弧面,所述基板经磨边处理后的倒角为直角。直角的倒角工艺上更好操作,不需要额外的操作工序,节省流程和成本。或者,所述基板的侧面为弧面。弧面的设置过度更平缓,在抵御碰撞等时能更好的保护面板。
作为本申请的又一个实施例,如图2所示,所述显示面板包括基板,所述 基板包括第一基板和第二基板,所述第一基板和所述第二基板对置;密封部:所述密封部设置在第一基板和第二基板之间,所述密封部环绕所述显示面板的显示区域设置;功能层:这里为第一显示区功能层2,所述功能层设置在两个所述密封部之间;所述基板的侧面与所述密封部远离所述功能层的一端平齐。所述密封部包括设置在所述功能层的第一侧的第一密封部和设置在所述功能层的第二侧的第二密封部,所述基板的侧面与所述第一密封部远离所述功能层的一端平齐,并且或者,所述基板的侧面与所述第二密封部远离所述功能层的一端平齐。根据需要可以对基板左侧和或右侧进行磨边处理使得其与所述密封部远离所述功能层的一端平齐,利用率更高,方便有效。对基板进行磨边处理使得其与所述密封部远离所述功能层的一端平齐,利用磨边方式把边框磨窄,达到窄边框效果,让视觉感官更佳。
具体的,所述基板可采用玻璃材质。玻璃取材广泛,加工使用方便。
具体的,所述基板通过研磨砥石进行磨边处理。对基板进行磨边处理的具体方式,利用研磨砥石的特性。
具体的,所述基板的侧面为弧面,所述基板经磨边处理后的倒角为直角。直角的倒角工艺上更好操作,不需要额外的操作工序,节省流程和成本。或者,所述基板的侧面为弧面。弧面的设置过度更平缓,在抵御碰撞等时能更好的保护面板。
作为本申请的又一个实施例,如图3所示,所述显示面板包括基板,所述基板包括第一基板和第二基板,所述第一基板和所述第二基板对置;密封部:所述密封部设置在第一基板和第二基板之间,所述密封部环绕所述显示面板的显示区域设置;功能层:这里为第一显示区功能层2,所述功能层设置在两个所述密封部之间;所述基板的侧面与所述密封部远离所述功能层的一端平齐。所述第一基板的侧面与所述密封部远离所述功能层的一端平齐,并且或者,所述第二基板的侧面与所述密封部远离所述功能层的一端平齐。根据需要可以对第一基板和或第二基板进行磨边处理使得其与所述密封部远离所述功能层的一端 平齐,可选择的处理上下基板利用率更高,方便有效。对基板进行磨边处理使得其与所述密封部远离所述功能层的一端平齐,利用磨边方式把边框磨窄,达到窄边框效果,让视觉感官更佳。
具体的,所述基板可采用玻璃材质。玻璃取材广泛,加工使用方便。
具体的,所述基板通过研磨砥石进行磨边处理。对基板进行磨边处理的具体方式,利用研磨砥石的特性。
具体的,所述基板的侧面为弧面,所述基板经磨边处理后的倒角为直角。直角的倒角工艺上更好操作,不需要额外的操作工序,节省流程和成本。或者,所述基板的侧面为弧面。弧面的设置过度更平缓,在抵御碰撞等时能更好的保护面板。
具体的,设置在两个所述基板的所述第一显示区功能层2由上之下依次包括色阻层、第一配向层、液晶分子层、第二配向层和阵列层。其中,所述阵列层包括主动开关,所述主动开关可采用薄膜晶体管。
作为本申请的又一个实施例,如图4所示,所述显示面板包括基板,所述基板包括第一基板和第二基板,所述第一基板和所述第二基板对置;密封部:所述密封部设置在第一基板和第二基板之间,所述密封部环绕所述显示面板的显示区域设置;功能层:这里为第一显示区功能层2,所述功能层设置在两个所述密封部之间;所述基板的侧面与所述密封部远离所述功能层的一端平齐。所述密封部包括设置在所述功能层的第一侧的第一密封部和设置在所述功能层的第二侧的第二密封部,所述第一基板的侧面与所述第一密封部、所述第二密封部远离所述功能层的一端平齐,所述第二基板的侧面与所述第一密封部、所述第二密封部远离所述功能层的一端平齐。这里是对上下基板左右两侧都进行了磨边处理的实施例,更好的满足使用者的视觉感官,提高用户体验。对基板进行磨边处理使得其与所述密封部远离所述功能层的一端平齐,利用磨边方式把边框磨窄,达到窄边框效果,让视觉感官更佳。
具体的,所述基板可采用玻璃材质。玻璃取材广泛,加工使用方便。
具体的,所述基板通过研磨砥石进行磨边处理。对基板进行磨边处理的具体方式,利用研磨砥石的特性。
具体的,所述基板的侧面为弧面,所述基板经磨边处理后的倒角为直角。直角的倒角工艺上更好操作,不需要额外的操作工序,节省流程和成本。或者,所述基板的侧面为弧面。弧面的设置过度更平缓,在抵御碰撞等时能更好的保护面板。
具体的,设置在两个所述基板的所述第一显示区功能层2由上之下依次包括色阻层、第一配向层、液晶分子层、第二配向层和阵列层。其中,所述阵列层包括主动开关,所述主动开关可采用薄膜晶体管。
作为本申请的又一个实施例,本申请还公开了一种显示装置,所述显示装置包括背光模组和如上所述的显示面板。
作为本申请的又一个实施例,如图5所示,所述显示面板包括基板,所述基板包括第一基板和第二基板,所述第一基板和所述第二基板对置;密封部,所述密封部设置在第一基板和第二基板之间,所述密封部环绕所述显示面板的显示区域设置;色阻层,所述色阻层和所述密封部设置在第一基板和第二基板之间,所述色组层包括覆盖所述密封部的光处理部,所述光处理部由碳化结构的色阻材料制成。在色阻层的两端设置有由碳化结构的色阻材料制成的光处理部,所述两端略向内伸向显示区(Active Area区,AA区),防止显示面板边缘的金属漏光,缩短工艺生产时间及材料成本、减少设备投资成本并且生产良率高。
具体的,所述光处理部包括遮光的碳化层,以及覆盖在碳化层表面的透光层。光处理部的具体设置,当然也可以全部为能遮光的碳化层。其中,所述碳化层经高强度光能碳化处理后得黑色层,所述黑色层的厚度小于所述色阻层的厚度。碳化处理后得到的黑色层可以用来防止漏光。
作为本申请的又一个实施例,所述显示面板包括基板,所述基板包括第一基板和第二基板,所述第一基板和所述第二基板对置;密封部,所述密封部设 置在第一基板和第二基板之间,所述密封部环绕所述显示面板的显示区域设置;色阻层,所述色阻层和所述密封部设置在第一基板和第二基板之间,所述色组层包括覆盖所述密封部的光处理部,所述光处理部由碳化结构的色阻材料制成。在色阻层的两端设置有由碳化结构的色阻材料制成的光处理部,所述两端略向内伸向显示区(Active Area区,AA区),防止显示面板边缘的金属漏光,缩短工艺生产时间及材料成本、减少设备投资成本并且生产良率高。所述高强度光能可采用激光。激光(laser)取材广泛、定向发光、亮度极高,可以很好的用作对光处理部进行碳化处理的工具。
具体的,所述光处理部包括遮光的碳化层,以及覆盖在碳化层表面的透光层。光处理部的具体设置,当然也可以全部为能遮光的碳化层。其中,所述碳化层经高强度光能碳化处理后得黑色层,所述黑色层的厚度小于所述色阻层的厚度。碳化处理后得到的黑色层可以用来防止漏光。
作为本申请的又一个实施例,如图6所示,所述显示面板包括基板,所述基板包括第一基板和第二基板,所述第一基板和所述第二基板对置;密封部,所述密封部设置在第一基板和第二基板之间,所述密封部环绕所述显示面板的显示区域设置;色阻层,所述色阻层和所述密封部设置在第一基板和第二基板之间,所述色组层包括覆盖所述密封部的光处理部,所述光处理部由碳化结构的色阻材料制成。所述显示面板还包括阵列层,所述色阻层和所述阵列层共同覆盖设置所述第一基板上,两个所述密封部之间设置有所述显示区域的功能层,所述功能层设置所述色阻层和所述第二基板之间,所述功能层由上之下依次包括第一配向层、液晶分子层、第二配向层。这里是同时利用COA(color filter on array)工艺下的具体实施方式。所述高强度光能可采用激光。激光(laser)取材广泛、定向发光、亮度极高,可以很好的用作对光处理部进行碳化处理的工具。在色阻层的两端设置有由碳化结构的色阻材料制成的光处理部,所述两端略向内伸向显示区(Active Area区,AA区),防止显示面板边缘的金属漏光,缩短工艺生产时间及材料成本、减少设备投资成本并且生产良率高。
具体的,所述光处理部包括遮光的碳化层,以及覆盖在碳化层表面的透光层。光处理部的具体设置,当然也可以全部为能遮光的碳化层。其中,所述碳化层经高强度光能碳化处理后得黑色层,所述黑色层的厚度小于所述色阻层的厚度。碳化处理后得到的黑色层可以用来防止漏光。
其中,所述阵列层包括主动开关,所述阵列层包括主动开关,所述主动开关可采用薄膜晶体管。这里是阵列层的构成。
其中,所述色阻层还包括设置在两个所述光处理部之间的中间部,所述中间部包括红色光阻层、绿色光阻层和蓝色光阻层。色阻层包括但不限于红色光阻层、绿色光阻层和蓝色光阻层还可以包括W(White白)、Y(Yellow黄)等颜色对应的光阻层,色彩更丰富,显示效果也更好。中间部的宽度小于等于第二显示区功能层6的宽度。
作为本申请的又一个实施例,如图7所示,本申请还公开了一种显示面板的制程,所述显示面板包括基板和色阻层,所述制程包括步骤:
在所述基板上覆设色阻层;
采用高强度光能对所述色阻层的两端的光处理部进行处理;
所述基板包括第一基板和第二基板,所述第一基板和所述第二基板对置,所述显示面板还包括密封部,所述密封部设置在第一基板和第二基板之间,所述密封部环绕所述显示面板的显示区域设置,所述色阻层和所述密封部设置在第一基板和第二基板之间,所述色组层包括覆盖所述密封部的光处理部,所述光处理部由碳化结构的色阻材料制成。
具体的,在将所述色阻层的两端用高强度光能碳化处理成黑色之后包括步骤:
在覆设色阻层的基板上通过涂布、曝光、显影、蚀刻得栅极层;
在所述栅极层上通过涂布、曝光、显影、蚀刻得非晶硅层;
在所述非晶硅层上通过涂布、曝光、显影、蚀刻得源极层和漏极层;
在所述源极层和漏极层上通过涂布、曝光、显影、蚀刻得保护层;
在所述保护层上通过涂布、曝光、显影、蚀刻得透明导电层。
其中,所述高强度光能可采用激光。激光(laser)取材广泛、定向发光、亮度极高,可以很好的用作对光处理部进行碳化处理的工具。
作为本申请的又一个实施例,如图6所示,本申请还公开了一种显示装置,所述显示装置包括背光模组和如上所述的显示面板。
作为本申请的又一个实施例,如图8所示,显示面板,所述显示面板包括第一基板、第二基板和密封部,所述第一基板和所述第二基板对置,所述密封部设置在第一基板和第二基板之间,所述密封部环绕所述显示面板的显示区域设置;偏振片,所述偏振片包括设置在所述第一基板外侧的第一偏振片,所述第一偏振片包括在对应位置覆盖所述密封部的网版印刷部,所述网版印刷部由表面承载网版印刷的偏振材料制成,所述网版印刷部的表面网版印刷上遮光层。在基板外侧的偏振片上两端利用网版印刷设置上遮光层,所述两端略向内伸向顯示区(Active Area区,AA区),防止显示面板边缘的金属漏光,缩短工艺生产时间及材料成本、减少设备投资成本并且生产良率高。
网版印刷,也叫丝印印刷,是电路板制作工艺之一,在已有负性图案的网布上,用刮刀刮挤出适量的油墨(即阻剂),透过局部网布形成正性图案,印着在基板的平坦铜面上,构成一种遮盖性的阻剂,为后续选择性的蚀刻或电镀处理预做准备。这种转移的方式通称为"网版印刷",也可在其它领域中使用。这里遮光层在偏振片的两端的两侧都可以设置。
其中,所述遮光层设置在所述网版印刷部远离所述第一基板的一侧的表面。设置在贴覆后的偏振片的外侧能更好的减小工艺难度,节省成本。
具体的,所述遮光层的厚度小于所述第一偏振片的厚度。
具体的,所述第一基板的宽度大于所述第二基板的宽度,所述偏振片包括设置在所述第二基板外侧的第二偏振片,所述第一偏振片的宽度大于所述第一基板的宽度,所述第二偏振片的宽度等于所述第二基板的宽度。其中,两个所述密封部之间设置有所述显示区域的功能层,也叫第一显示区功能层2,两个所 述密封部和所述功能层的宽度小于所述第二基板的宽度。密封部用作连接等使用,和功能层处于同一层位置。
具体的,所述功能层由上之下依次包括阵列层、第一配向层、液晶分子层、第二配向层和色阻层。其中,所述第一基板上设置有阵列层,所述阵列层包括主动开关,所述主动开关可采用薄膜晶体管。
具体的,所述第一基板可采用玻璃材质,所述第二基板可采用玻璃材质。玻璃取材广泛,加工使用方便。
作为本申请的又一个实施例,显示面板,所述显示面板包括第一基板、第二基板和密封部,所述第一基板和所述第二基板对置,所述密封部设置在第一基板和第二基板之间,所述密封部环绕所述显示面板的显示区域设置;偏振片,所述偏振片包括设置在所述第一基板外侧的第一偏振片,所述第一偏振片包括在对应位置覆盖所述密封部的网版印刷部,所述网版印刷部由表面承载网版印刷的偏振材料制成,所述网版印刷部的表面网版印刷上遮光层。两个所述密封部之间设置有所述显示区域的功能层,也叫第二显示区功能层6,所述第二显示区功能层由上之下依次包括第一配向层、液晶分子层、第二配向层。同时利用COA(color filter on array)工艺在基板外侧的偏振片上两端利用网版印刷设置上遮光层,所述两端略向内伸向显示区(Active Area区,AA区),防止显示面板边缘的金属漏光,缩短工艺生产时间及材料成本、减少设备投资成本并且生产良率高。
其中,所述遮光层设置在所述网版印刷部远离所述第一基板的一侧的表面。设置在贴覆后的偏振片的外侧能更好的减小工艺难度,节省成本。
具体的,所述遮光层的厚度小于所述第一偏振片的厚度。
具体的,所述第一基板的宽度大于所述第二基板的宽度,所述偏振片包括设置在所述第二基板外侧的第二偏振片,所述第一偏振片的宽度大于所述第一基板的宽度,所述第二偏振片的宽度等于所述第二基板的宽度。
其中,两个所述密封部和所述功能层的宽度小于所述第二基板的宽度。密 封部用作连接等使用,和功能层处于同一层位置。
具体的,所述功能层由上之下依次包括阵列层、第一配向层、液晶分子层、第二配向层和色阻层。其中,所述第一基板上设置有阵列层,所述阵列层包括主动开关,所述主动开关可采用薄膜晶体管。
具体的,所述第一基板可采用玻璃材质,所述第二基板可采用玻璃材质。玻璃取材广泛,加工使用方便。
作为本申请的又一个实施例,如图9所示,本申请还公开了一种显示装置的制程,所述显示装置包括偏振片和显示面板,所述显示面板包括第一基板、第二基板以及设置在所述第一基板和所述第二基板之间的密封部,所述偏振片包括设置在所述第一基板外侧的第一偏振片所述制程包括步骤:
在显示面板外侧贴设偏振片;
在第一偏振片两端的表面网版印刷上遮光层;
所述第一基板和所述第二基板对置,所述密封部环绕所述显示面板的显示区域设置,所述第一偏振片包括在对应位置覆盖所述密封部的网版印刷部,所述网版印刷部由表面承载网版印刷的偏振材料制成,所述网版印刷部的表面网版印刷上遮光层。
其中,所述遮光层设置在所述网版印刷部远离所述第一基板的一侧的表面,所述遮光层的厚度小于所述第一偏振片的厚度。所述第一基板的宽度大于所述第二基板的宽度,所述偏振片包括设置在所述第二基板外侧的第二偏振片,所述第一偏振片的宽度大于所述第一基板的宽度,所述第二偏振片的宽度等于所述第二基板的宽度。
作为本申请的又一个实施例,如图10所示,所述显示装置包括:显示面板:所述显示面板包括第一基板、第二基板和密封部,所述第一基板和所述第二基板对置,所述密封部设置在第一基板和第二基板之间,所述密封部环绕所述显示面板的显示区域设置;偏振片:所述偏振片包括第一偏振片和第二偏振片,所述第一基板外侧包括在对应位置覆盖所述密封部的结合部和中间位置的偏振 部,所述偏振部上设置第一偏振片,所述结合部上依次设置所述第一偏振片和所述第二偏振片,或者,所述结合部上依次设置所述第二偏振片和所述第一偏振片。基板外侧的第一偏振片的偏振功能设置采用两端结合部、中间偏振部的形式,分别在该位置设置不同的偏振片,利用偏振片的组合性质,消除显示装置外围的金属反光现象、减少翻转基板所带来的刮伤不良、减少制程,降低成本。
这里发明人也想到在以在array基板外侧涂一层BM或者在第一层金属前额外涂一层低反光材料解决反光的问题,但和本申请的实施例相比增加了一道制程,并且涂BM会增大array侧工艺刮伤风险。而本专利通过偏光片来阻挡外围金属线的反射光,不增加制程。
作为本申请的又一个实施例,如图11所示,所述显示装置包括:显示面板:所述显示面板包括第一基板、第二基板和密封部,所述第一基板和所述第二基板对置,所述密封部设置在第一基板和第二基板之间,所述密封部环绕所述显示面板的显示区域设置;偏振片:所述偏振片包括第一偏振片和第二偏振片,所述第一基板外侧包括在对应位置覆盖所述密封部的结合部和中间位置的偏振部,所述结合部上依次设置一层所述第一偏振片和一层所述第二偏振片,所述第一偏振片设置在靠近所述第一基板的一侧;所述偏振部上设置有一层所述第一偏振片。基板外侧的第一偏振片的偏振功能设置采用两端结合部、中间偏振部的形式,分别在该位置设置不同的偏振片,利用偏振片的组合性质,消除显示装置外围的金属反光现象、减少翻转基板所带来的刮伤不良、减少制程,降低成本。
具体的,所述第一偏振片的厚度与所述第二偏振片的厚度相等。
具体的,所述显示面板包括阵列基板和彩膜基板,所述第一偏振片为阵列基板侧用的偏振片,所述第二偏振片为彩膜基板侧用的偏振片。第一偏振片和第二偏振片的具体形式和功用。
具体的,所述第一基板的宽度大于所述第二基板的宽度,所述第二基 板外侧设置有所述第二偏振片,所述第一基板外侧设置的偏振片的宽度等于所述第一基板的宽度,所述第二基板外侧设置的偏振片的宽度等于所述第二基板的宽度。
具体的,两个所述密封部之间设置有所述显示区域的功能层,这里为第一显示区功能层2,两个所述密封部和所述功能层的宽度小于所述第二基板的宽度。密封部用作连接等使用,和功能层处于同一层位置。
具体的,所述功能层由上之下依次包括阵列层、第一配向层、液晶分子层、第二配向层和色阻层其中,所述阵列层包括主动开关,所述阵列层包括主动开关,所述主动开关可采用薄膜晶体管。
作为本申请的又一个实施例,如图12所示,所述显示装置包括:显示面板:所述显示面板包括第一基板、第二基板和密封部,所述第一基板和所述第二基板对置,所述密封部设置在第一基板和第二基板之间,所述密封部环绕所述显示面板的显示区域设置;偏振片:所述偏振片包括第一偏振片和第二偏振片,所述第一基板外侧包括在对应位置覆盖所述密封部的结合部和中间位置的偏振部,所述结合部上依次设置一层所述第二偏振片和一层所述第一偏振片,所述第二偏振片设置在靠近所述第一基板的一侧;所述偏振部上设置有一层所述第一偏振片。基板外侧的第一偏振片的偏振功能设置采用两端结合部、中间偏振部的形式,分别在该位置设置不同的偏振片,利用偏振片的组合性质,消除显示装置外围的金属反光现象、减少翻转基板所带来的刮伤不良、减少制程,降低成本。
其中,所述第二偏振部上设置有一层所述第一偏振述片,所述第一偏振片的两端设置有一层所述第一偏振述片。
具体的,所述第一偏振片的厚度与所述第二偏振片的厚度相等。
具体的,所述显示面板包括阵列基板和彩膜基板,所述第一偏振片为阵列基板侧用的偏振片,所述第二偏振片为彩膜基板侧用的偏振片。第一偏振片和第二偏振片的具体形式和功用。
具体的,所述第一基板的宽度大于所述第二基板的宽度,所述第二基板外侧设置有所述第二偏振片,所述第一基板外侧设置的偏振片的宽度等于所述第一基板的宽度,所述第二基板外侧设置的偏振片的宽度等于所述第二基板的宽度。
具体的,两个所述密封部之间设置有所述显示区域的功能层,这里为第一显示区功能层2,两个所述密封部和所述功能层的宽度小于所述第二基板的宽度。密封部用作连接等使用,和功能层处于同一层位置。
具体的,所述功能层由上之下依次包括阵列层、第一配向层、液晶分子层、第二配向层和色阻层其中,所述阵列层包括主动开关,所述阵列层包括主动开关,所述主动开关可采用薄膜晶体管。
需要说明的是,在上述实施例中,所述基板的材料可以选用玻璃、塑料等。
在上述实施例中,本申请的显示面板可为曲面型面板。
在上述实施例中,不论对基板进行磨边处理还是高强度光能碳化处理得黑色层、网版印刷遮光层以及降低反射光的具体实施方式理念等可以两个或多个的结合使用在一个实施例中。
以上内容是结合具体的优选实施方式对本申请所作的进一步详细说明,不能认定本申请的具体实施只局限于这些说明。对于本申请所属技术领域的普通技术人员来说,在不脱离本申请构思的前提下,还可以做出若干简单推演或替换,都应当视为属于本申请的保护范围。

Claims (20)

  1. 一种显示装置,包括:
    显示面板,所述显示面板包括第一基板、第二基板和密封部,所述第一基板和所述第二基板对置,所述密封部设置在第一基板和第二基板之间,所述密封部环绕所述显示面板的显示区域设置;
    偏振片,所述偏振片包括设置在所述第一基板外侧的第一偏振片,所述第一偏振片包括在对应位置覆盖所述密封部的网版印刷部,所述网版印刷部由表面承载网版印刷的偏振材料制成,所述网版印刷部的表面网版印刷上遮光层,所述遮光层设置在所述网版印刷部远离所述第一基板的一侧的表面,所述遮光层的厚度小于所述第一偏振片的厚度,所述第一基板的宽度大于所述第二基板的宽度,所述偏振片包括设置在所述第二基板外侧的第二偏振片,所述第一偏振片的宽度大于所述第一基板的宽度,所述第二偏振片的宽度等于所述第二基板的宽度,两个所述密封部之间设置有所述显示区域的功能层,两个所述密封部和所述功能层的宽度小于所述第二基板的宽度,所述功能层由上之下依次包括阵列层、第一配向层、液晶分子层、第二配向层和色阻层,所述第一基板上设置有阵列层,所述阵列层包括主动开关,所述主动开关采用薄膜晶体管。
  2. 一种显示装置,包括:
    显示面板,所述显示面板包括第一基板、第二基板和密封部,所述第一基板和所述第二基板对置,所述密封部设置在第一基板和第二基板之间,所述密封部环绕所述显示面板的显示区域设置;
    偏振片,所述偏振片包括设置在所述第一基板外侧的第一偏振片,所述第一偏振片包括在对应位置覆盖所述密封部的网版印刷部,所述网版印刷部由表面承载网版印刷的偏振材料制成,所述网版印刷部的表面网版印刷上遮光层。
  3. 如权利要求2所述的显示装置,其中,所述遮光层设置在所述网版印刷部远离所述第一基板的一侧的表面。
  4. 如权利要求2所述的显示装置,其中,所述遮光层的厚度小于所述第一偏振片的厚度。
  5. 如权利要求2所述的显示装置,其中,所述遮光层设置在所述网版印刷部远离所述第一基板的一侧的表面,所述遮光层的厚度小于所述第一偏振片的厚度。
  6. 如权利要求2所述的显示装置,其中,所述第一基板的宽度大于所述第二基板的宽度,所述偏振片包括设置在所述第二基板外侧的第二偏振片,所述第一偏振片的宽度大于所述第一基板的宽度,所述第二偏振片的宽度等于所述第二基板的宽度。
  7. 如权利要求2所述的显示装置,其中,所述遮光层设置在所述网版印刷部远离所述第一基板的一侧的表面,所述第一基板的宽度大于所述第二基板的宽度,所述偏振片包括设置在所述第二基板外侧的第二偏振片,所述第一偏振片的宽度大于所述第一基板的宽度,所述第二偏振片的宽度等于所述第二基板的宽度。
  8. 如权利要求2所述的显示装置,其中,所述遮光层的厚度小于所述第一偏振片的厚度,所述第一基板的宽度大于所述第二基板的宽度,所述偏振片包括设置在所述第二基板外侧的第二偏振片,所述第一偏振片的宽度大于所述第一基板的宽度,所述第二偏振片的宽度等于所述第二基板的宽度。
  9. 如权利要求2所述的显示装置,其中,所述遮光层设置在所述网版印刷部远离所述第一基板的一侧的表面,所述遮光层的厚度小于所述第一偏振片的厚度,所述遮光层的厚度小于所述第一偏振片的厚度,所述第一基板的宽度大于所述第二基板的宽度,所述偏振片包括设置在所述第二基板外侧的第二偏振片,所述第一偏振片的宽度大于所述第一基板的宽度,所述第二偏振片的宽度等于所述第二基板的宽度。
  10. 如权利要求6所述的显示装置,其中,两个所述密封部之间设置有所述显示区域的功能层,两个所述密封部和所述功能层的宽度小于所述第二基板 的宽度。
  11. 如权利要求2所述的显示装置,其中,所述遮光层设置在所述网版印刷部远离所述第一基板的一侧的表面,所述第一基板的宽度大于所述第二基板的宽度,所述偏振片包括设置在所述第二基板外侧的第二偏振片,所述第一偏振片的宽度大于所述第一基板的宽度,所述第二偏振片的宽度等于所述第二基板的宽度,两个所述密封部之间设置有所述显示区域的功能层,两个所述密封部和所述功能层的宽度小于所述第二基板的宽度。
  12. 如权利要求2所述的显示装置,其中,所述遮光层的厚度小于所述第一偏振片的厚度,所述第一基板的宽度大于所述第二基板的宽度,所述偏振片包括设置在所述第二基板外侧的第二偏振片,所述第一偏振片的宽度大于所述第一基板的宽度,所述第二偏振片的宽度等于所述第二基板的宽度,两个所述密封部之间设置有所述显示区域的功能层,两个所述密封部和所述功能层的宽度小于所述第二基板的宽度。
  13. 如权利要求2所述的显示装置,其中,所述遮光层设置在所述网版印刷部远离所述第一基板的一侧的表面,所述遮光层的厚度小于所述第一偏振片的厚度,所述遮光层的厚度小于所述第一偏振片的厚度,所述第一基板的宽度大于所述第二基板的宽度,所述偏振片包括设置在所述第二基板外侧的第二偏振片,所述第一偏振片的宽度大于所述第一基板的宽度,所述第二偏振片的宽度等于所述第二基板的宽度,两个所述密封部之间设置有所述显示区域的功能层,两个所述密封部和所述功能层的宽度小于所述第二基板的宽度。
  14. 如权利要求10所述的显示装置,其中,所述功能层由上之下依次包括阵列层、第一配向层、液晶分子层、第二配向层和色阻层。
  15. 如权利要求2所述的显示装置,其中,所述遮光层设置在所述网版印刷部远离所述第一基板的一侧的表面,所述遮光层的厚度小于所述第一偏振片的厚度,所述遮光层的厚度小于所述第一偏振片的厚度,所述第一基板的宽度大于所述第二基板的宽度,所述偏振片包括设置在所述第二基板外侧的第二偏 振片,所述第一偏振片的宽度大于所述第一基板的宽度,所述第二偏振片的宽度等于所述第二基板的宽度,两个所述密封部之间设置有所述显示区域的功能层,两个所述密封部和所述功能层的宽度小于所述第二基板的宽度,所述功能层由上之下依次包括阵列层、第一配向层、液晶分子层、第二配向层和色阻层。
  16. 如权利要求2所述的显示装置,其中,所述第一基板上设置有阵列层,所述阵列层包括主动开关,所述主动开关采用薄膜晶体管。
  17. 如权利要求2所述的显示装置,其中,所述遮光层设置在所述网版印刷部远离所述第一基板的一侧的表面,所述遮光层的厚度小于所述第一偏振片的厚度,所述遮光层的厚度小于所述第一偏振片的厚度,所述第一基板的宽度大于所述第二基板的宽度,所述偏振片包括设置在所述第二基板外侧的第二偏振片,所述第一偏振片的宽度大于所述第一基板的宽度,所述第二偏振片的宽度等于所述第二基板的宽度,两个所述密封部之间设置有所述显示区域的功能层,两个所述密封部和所述功能层的宽度小于所述第二基板的宽度,所述功能层由上之下依次包括阵列层、第一配向层、液晶分子层、第二配向层和色阻层,所述第一基板上设置有阵列层,所述阵列层包括主动开关,所述主动开关采用薄膜晶体管。
  18. 如权利要求1所述的显示装置,其中,所述遮光层设置在所述网版印刷部远离所述第一基板的一侧的表面,所述遮光层的厚度小于所述第一偏振片的厚度,所述遮光层的厚度小于所述第一偏振片的厚度,所述第一基板的宽度大于所述第二基板的宽度,所述偏振片包括设置在所述第二基板外侧的第二偏振片,所述第一偏振片的宽度大于所述第一基板的宽度,所述第二偏振片的宽度等于所述第二基板的宽度,两个所述密封部之间设置有所述显示区域的功能层,两个所述密封部和所述功能层的宽度小于所述第二基板的宽度,所述功能层由上之下依次包括阵列层、第一配向层、液晶分子层、第二配向层和色阻层,所述第一基板上设置有阵列层,所述阵列层包括主动开关,所述主动开关采用薄膜晶体管,所述第一基板采用玻璃材质,所述第二基板采用玻璃材质。
  19. 一种显示装置的制程,其中,所述显示装置包括偏振片和显示面板,所述显示面板包括第一基板、第二基板以及设置在所述第一基板和所述第二基板之间的密封部,所述偏振片包括设置在所述第一基板外侧的第一偏振片所述制程包括步骤:
    在显示面板外侧贴设偏振片;
    在第一偏振片两端的表面网版印刷上遮光层;
    所述第一基板和所述第二基板对置,所述密封部环绕所述显示面板的显示区域设置,所述第一偏振片包括在对应位置覆盖所述密封部的网版印刷部,所述网版印刷部由表面承载网版印刷的偏振材料制成,所述网版印刷部的表面网版印刷上遮光层。
  20. 如权利要求19所述的显示装置的制程,其中,所述遮光层设置在所述网版印刷部远离所述第一基板的一侧的表面,所述遮光层的厚度小于所述第一偏振片的厚度。。
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