CN107065280A - Liquid crystal display panel - Google Patents
Liquid crystal display panel Download PDFInfo
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- CN107065280A CN107065280A CN201710199317.6A CN201710199317A CN107065280A CN 107065280 A CN107065280 A CN 107065280A CN 201710199317 A CN201710199317 A CN 201710199317A CN 107065280 A CN107065280 A CN 107065280A
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- blocking block
- block
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- light
- color
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- G—PHYSICS
- G02—OPTICS
- G02F—OPTICAL DEVICES OR ARRANGEMENTS FOR THE CONTROL OF LIGHT BY MODIFICATION OF THE OPTICAL PROPERTIES OF THE MEDIA OF THE ELEMENTS INVOLVED THEREIN; NON-LINEAR OPTICS; FREQUENCY-CHANGING OF LIGHT; OPTICAL LOGIC ELEMENTS; OPTICAL ANALOGUE/DIGITAL CONVERTERS
- G02F1/00—Devices or arrangements for the control of the intensity, colour, phase, polarisation or direction of light arriving from an independent light source, e.g. switching, gating or modulating; Non-linear optics
- G02F1/01—Devices or arrangements for the control of the intensity, colour, phase, polarisation or direction of light arriving from an independent light source, e.g. switching, gating or modulating; Non-linear optics for the control of the intensity, phase, polarisation or colour
- G02F1/13—Devices or arrangements for the control of the intensity, colour, phase, polarisation or direction of light arriving from an independent light source, e.g. switching, gating or modulating; Non-linear optics for the control of the intensity, phase, polarisation or colour based on liquid crystals, e.g. single liquid crystal display cells
- G02F1/133—Constructional arrangements; Operation of liquid crystal cells; Circuit arrangements
- G02F1/1333—Constructional arrangements; Manufacturing methods
- G02F1/1335—Structural association of cells with optical devices, e.g. polarisers or reflectors
- G02F1/133509—Filters, e.g. light shielding masks
- G02F1/133512—Light shielding layers, e.g. black matrix
-
- G—PHYSICS
- G02—OPTICS
- G02F—OPTICAL DEVICES OR ARRANGEMENTS FOR THE CONTROL OF LIGHT BY MODIFICATION OF THE OPTICAL PROPERTIES OF THE MEDIA OF THE ELEMENTS INVOLVED THEREIN; NON-LINEAR OPTICS; FREQUENCY-CHANGING OF LIGHT; OPTICAL LOGIC ELEMENTS; OPTICAL ANALOGUE/DIGITAL CONVERTERS
- G02F1/00—Devices or arrangements for the control of the intensity, colour, phase, polarisation or direction of light arriving from an independent light source, e.g. switching, gating or modulating; Non-linear optics
- G02F1/01—Devices or arrangements for the control of the intensity, colour, phase, polarisation or direction of light arriving from an independent light source, e.g. switching, gating or modulating; Non-linear optics for the control of the intensity, phase, polarisation or colour
- G02F1/13—Devices or arrangements for the control of the intensity, colour, phase, polarisation or direction of light arriving from an independent light source, e.g. switching, gating or modulating; Non-linear optics for the control of the intensity, phase, polarisation or colour based on liquid crystals, e.g. single liquid crystal display cells
- G02F1/133—Constructional arrangements; Operation of liquid crystal cells; Circuit arrangements
- G02F1/1333—Constructional arrangements; Manufacturing methods
- G02F1/1335—Structural association of cells with optical devices, e.g. polarisers or reflectors
- G02F1/133509—Filters, e.g. light shielding masks
- G02F1/133514—Colour filters
-
- G—PHYSICS
- G02—OPTICS
- G02F—OPTICAL DEVICES OR ARRANGEMENTS FOR THE CONTROL OF LIGHT BY MODIFICATION OF THE OPTICAL PROPERTIES OF THE MEDIA OF THE ELEMENTS INVOLVED THEREIN; NON-LINEAR OPTICS; FREQUENCY-CHANGING OF LIGHT; OPTICAL LOGIC ELEMENTS; OPTICAL ANALOGUE/DIGITAL CONVERTERS
- G02F1/00—Devices or arrangements for the control of the intensity, colour, phase, polarisation or direction of light arriving from an independent light source, e.g. switching, gating or modulating; Non-linear optics
- G02F1/01—Devices or arrangements for the control of the intensity, colour, phase, polarisation or direction of light arriving from an independent light source, e.g. switching, gating or modulating; Non-linear optics for the control of the intensity, phase, polarisation or colour
- G02F1/13—Devices or arrangements for the control of the intensity, colour, phase, polarisation or direction of light arriving from an independent light source, e.g. switching, gating or modulating; Non-linear optics for the control of the intensity, phase, polarisation or colour based on liquid crystals, e.g. single liquid crystal display cells
- G02F1/133—Constructional arrangements; Operation of liquid crystal cells; Circuit arrangements
- G02F1/1333—Constructional arrangements; Manufacturing methods
- G02F1/1335—Structural association of cells with optical devices, e.g. polarisers or reflectors
- G02F1/133528—Polarisers
-
- G—PHYSICS
- G02—OPTICS
- G02F—OPTICAL DEVICES OR ARRANGEMENTS FOR THE CONTROL OF LIGHT BY MODIFICATION OF THE OPTICAL PROPERTIES OF THE MEDIA OF THE ELEMENTS INVOLVED THEREIN; NON-LINEAR OPTICS; FREQUENCY-CHANGING OF LIGHT; OPTICAL LOGIC ELEMENTS; OPTICAL ANALOGUE/DIGITAL CONVERTERS
- G02F1/00—Devices or arrangements for the control of the intensity, colour, phase, polarisation or direction of light arriving from an independent light source, e.g. switching, gating or modulating; Non-linear optics
- G02F1/01—Devices or arrangements for the control of the intensity, colour, phase, polarisation or direction of light arriving from an independent light source, e.g. switching, gating or modulating; Non-linear optics for the control of the intensity, phase, polarisation or colour
- G02F1/13—Devices or arrangements for the control of the intensity, colour, phase, polarisation or direction of light arriving from an independent light source, e.g. switching, gating or modulating; Non-linear optics for the control of the intensity, phase, polarisation or colour based on liquid crystals, e.g. single liquid crystal display cells
- G02F1/133—Constructional arrangements; Operation of liquid crystal cells; Circuit arrangements
- G02F1/1333—Constructional arrangements; Manufacturing methods
- G02F1/1339—Gaskets; Spacers; Sealing of cells
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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)
- Liquid Crystal (AREA)
Abstract
The invention discloses a kind of liquid crystal display panel.Liquid crystal display panel includes the first Polarizer, the second Polarizer, color membrane substrates, liquid crystal layer, thin-film transistor array base-plate, backlight module and control circuit;The color film layer of color membrane substrates includes red color resistance block, green color blocking block, blue color blocking block, white color blocking block;Red color resistance block is overlapped in black-matrix layer with green color blocking block, and constitute the first light-blocking block, green color blocking block is overlapped in black-matrix layer with blue color blocking block, and constitute the second light-blocking block, blue color blocking block is overlapped in black-matrix layer with white color blocking block, and third gear light block is constituted, white color blocking block is overlapped in black-matrix layer with red color resistance block, and constitutes fourth gear light block;Black-matrix layer includes at least four shading strips, and shading strip is dorsad provided with card in the one side of first substrate and sets groove, and first, second, third, fourth light-blocking block is provided with card and sets raised line, and card, which sets raised line and sets groove with card and mutually block, to be set.The present invention is avoided that color blocking block is separated with shading strip.
Description
Technical field
The present invention relates to liquid crystal panel field, more particularly to a kind of liquid crystal display panel.
Background technology
Traditional liquid crystal display panel generally comprises color membrane substrates, liquid crystal layer, thin-film transistor array base-plate, backlight mould
Group.The color membrane substrates, the thin-film transistor array base-plate, the backlight module stack combinations are integrated, the liquid crystal layer
It is arranged between the color membrane substrates and the thin-film transistor array base-plate.
Wherein, color film layer is provided with the color membrane substrates, the color film layer is made up of multiple color blocking blocks, and color blocking block is extremely
A few part is attached in shading strip.
In practice, when liquid crystal display panel is by larger extruding force, color blocking block is easy to separate in shading strip, this
Color blocking block can be caused the phenomenon that part is peeled off occur.
Therefore, it is necessary to a kind of new technical scheme is proposed, to solve above-mentioned technical problem.
The content of the invention
It is an object of the invention to provide a kind of liquid crystal display panel, it is avoided that color blocking block is separated with shading strip, so that
Color blocking block is avoided the phenomenon that part is peeled off occur.
To solve the above problems, technical scheme is as follows:
A kind of liquid crystal display panel, the liquid crystal display panel include the first Polarizer, the second Polarizer, color membrane substrates,
Liquid crystal layer, thin-film transistor array base-plate, backlight module and control circuit, it is the control circuit and the backlight module, described
Color membrane substrates and the thin-film transistor array base-plate are electrically connected with;First Polarizer, the color membrane substrates, the film
Transistor (TFT) array substrate, second Polarizer and the backlight module stack combinations are integrated, and the liquid crystal layer is arranged at institute
State between color membrane substrates and the thin-film transistor array base-plate;The color membrane substrates include first substrate, color film layer, black square
Battle array layer, common electrode layer, introns combination layer, the first orientation film layer, the color film layer include red color resistance block, green color blocking
Block, blue color blocking block, white color blocking block;The backlight module includes light source, light guide plate, reflecting plate, scatter plate, and the light source is set
It is placed on a side of the light guide plate, the backlight module is used for by the first Polarizer, color membrane substrates, described
The overall exposure light that liquid crystal layer, the thin-film transistor array base-plate and second Polarizer are constituted;The red color
Stop block is overlapped in the black-matrix layer with the green color blocking block, and constitutes the first light-blocking block, and first light-blocking block is used
It is described green in stopping the red color resistance block and the mutual light of green color blocking block directive jointly with the black-matrix layer
Color color blocking block is overlapped in the black-matrix layer with the blue color blocking block, and constitutes the second light-blocking block, and described second is in the light
Block is used to stop the green color blocking block and the mutual light of blue color blocking block directive, institute jointly with the black-matrix layer
State blue color blocking block to overlap in the black-matrix layer with the white color blocking block, and constitute third gear light block, the described 3rd
Light-blocking block is used to stop the blue color blocking block and the white mutual light of color blocking block directive jointly with the black-matrix layer
Line, the white color blocking block is overlapped in the black-matrix layer with the red color resistance block, and constitutes fourth gear light block, described
Fourth gear light block is used to stop the white color blocking block with the red color resistance block directive each other jointly with the black-matrix layer
Light;The black-matrix layer includes at least four shading strips, and the shading strip is dorsad set in the one side of the first substrate
There is card to set groove, first light-blocking block, second light-blocking block, the third gear light block, the fourth gear light block are provided with
Card sets raised line, the card set raised line with it is described block to set groove and mutually block set.
In above-mentioned liquid crystal display panel, the shape and area for blocking the cross section for setting groove sets raised line with the card respectively
Cross section shape it is corresponding with area.
In above-mentioned liquid crystal display panel, the card set groove and the card to set raised line be curve-like.
In above-mentioned liquid crystal display panel, the card set groove and the card to set raised line be polyline shaped.
In above-mentioned liquid crystal display panel, the card, which is set, is provided with viscose glue in groove.
In above-mentioned liquid crystal display panel, first Polarizer is arranged on the first substrate dorsad color film layer
On simultaneously.
In above-mentioned liquid crystal display panel, the edge of first Polarizer is provided with the first clamping part, described
The edge of first substrate is provided with the second clamping part, and first clamping part mutually blocks with second clamping part to be set.
In above-mentioned liquid crystal display panel, the edge of first Polarizer is provided with kink, described first
Clamping part is arranged at the inner side of the kink, and second clamping part is arranged at the side of the first substrate.
In above-mentioned liquid crystal display panel, by the color membrane substrates, the liquid crystal layer and the thin film transistor (TFT) array base
The edge part of the liquid crystal cell of plate composition is additionally provided with fluid sealant, and the fluid sealant is arranged at the color membrane substrates and the film is brilliant
Between body pipe array base palte.
In above-mentioned liquid crystal display panel, the fluid sealant is used to seal the liquid crystal cell, by the liquid crystal
Molecule is limited in the liquid crystal cell.
Compared with the prior art, the present invention is avoided that color blocking block is separated with shading strip, is shelled so as to avoid color blocking block from part occur
The phenomenon fallen.
Brief description of the drawings
Fig. 1 is the schematic diagram of the liquid crystal display panel of the present invention.
Fig. 2 is red color resistance block, the schematic diagram of the position relationship of green color blocking block and black-matrix layer in color membrane substrates.
Fig. 3 be color membrane substrates in shading strip cross section schematic diagram.
Embodiment
With reference to Fig. 1 and Fig. 2, Fig. 1 is the schematic diagram of the liquid crystal display panel of the present invention, and Fig. 2 is the red in color membrane substrates
The schematic diagram of the position relationship of color blocking block, green color blocking block and black-matrix layer.
The present invention liquid crystal display panel include the first Polarizer, the second Polarizer, color membrane substrates 104, liquid crystal layer 103,
Thin-film transistor array base-plate 102, backlight module 101 and control circuit, the control circuit and the backlight module, the coloured silk
Ilm substrate and the thin-film transistor array base-plate are electrically connected with.
First Polarizer, the color membrane substrates, the thin-film transistor array base-plate, second Polarizer and institute
State backlight module stack combinations to be integrated, the liquid crystal layer is arranged at the color membrane substrates and the thin-film transistor array base-plate
Between.
The color membrane substrates include first substrate 201, color film layer, black-matrix layer, common electrode layer, interval sub-portfolio
Layer, the first orientation film layer, the color film layer include red color resistance block, green color blocking block, blue color blocking block, white color blocking block.
The backlight module includes light source, light guide plate, reflecting plate, scatter plate, and the light source is arranged at the light guide plate
On one side, the backlight module is used for by first Polarizer, the color membrane substrates, the liquid crystal layer, the film
The overall exposure light that transistor (TFT) array substrate and second Polarizer are constituted.
The red color resistance block 203 is overlapped in the black-matrix layer with the green color blocking block 204, and constitutes first
Light-blocking block 205, first light-blocking block is used to stop the red color resistance block and the green jointly with the black-matrix layer
The mutual light of color blocking block directive, the green color blocking block is overlapped in the black-matrix layer with the blue color blocking block, and
Constitute the second light-blocking block, second light-blocking block be used for the black-matrix layer stop jointly the green color blocking block with it is described
The mutual light of blue color blocking block directive, the blue color blocking block overlaps on the black-matrix layer with the white color blocking block
On, and third gear light block is constituted, the third gear light block is used to stop the blue color blocking block jointly with the black-matrix layer
With the white mutual light of color blocking block directive, the white color blocking block overlaps on the black square with the red color resistance block
On battle array layer, and fourth gear light block is constituted, the fourth gear light block is used to stop the white color jointly with the black-matrix layer
Stop block and the mutual light of red color resistance block directive.
The black-matrix layer includes at least four shading strips 202, and the shading strip is dorsad in the one side of the first substrate
It is provided with card and sets groove, first light-blocking block, second light-blocking block, the third gear light block, the fourth gear light block is all provided with
It is equipped with card and sets raised line, the card, which sets raised line and sets groove with the card and mutually block, is set.
In the liquid crystal display panel of the present invention, the shape and area for blocking the cross section for setting groove is set with the card respectively
The shape of the cross section of raised line is corresponding with area.
In the liquid crystal display panel of the present invention, the card set groove and the card to set raised line be curve-like.
In the liquid crystal display panel of the present invention, the card set groove and the card to set raised line be polyline shaped.
In the liquid crystal display panel of the present invention, the card, which is set, is provided with viscose glue in groove.
By above-mentioned technical proposal, the present invention is avoided that color blocking block is separated with shading strip, so as to avoid color blocking block from portion occur
Divide the phenomenon peeled off.
The color film layer and the black-matrix layer are arranged on the first substrate.
The color membrane substrates also include planarization layer, and the planarization layer is arranged on the color film layer and the black matrix"
On layer.The common electrode layer is arranged on the planarization layer.The introns combination layer is arranged on the common electrode layer
On, the interval sub-portfolio corresponding to the introns combination layer includes at least two introns (Spacer).First orientation
Film layer is covered on the introns and the common electrode layer.
The introns include base and support column, and the support column is arranged on the base, and the base is arranged on
In the common electrode layer.
The edge part for the liquid crystal cell being made up of the color membrane substrates, the liquid crystal layer and the thin-film transistor array base-plate
Fluid sealant is additionally provided with, the fluid sealant is arranged between the color membrane substrates and the thin-film transistor array base-plate.It is described
Fluid sealant is used to seal the liquid crystal cell, and the liquid crystal molecule is limited in the liquid crystal cell.
The liquid crystal cell includes viewing area and non-display area, and the non-display area is arranged at the outside of the viewing area, institute
Fluid sealant is stated to be arranged at the non-display area.
The fluid sealant includes at least four sealed sectionals, and at least sealed sectional joins end to end described in four.
First Polarizer is arranged at the one side of the color membrane substrates dorsad liquid crystal layer, and second Polarizer is set
It is placed between the backlight module and the thin-film transistor array base-plate, second Polarizer is used for the backlight module
The light provided is converted into the first linearly polarized light.
The liquid crystal cell being made up of the color membrane substrates, the liquid crystal layer and the thin-film transistor array base-plate is used for institute
The polarization direction deflection (rotation) of the first linearly polarized light is stated, to form the second linearly polarized light.
First Polarizer is used to pass through second linearly polarized light.
The backlight module also includes backboard, and the reflecting plate is arranged on the backboard, and the scatter plate is arranged on institute
State on light guide plate.The backboard includes side wall, and the light source is fixed on the side wall.The light source is LED (Light
Emitting Diode, light emitting diode) lamp bar, the LED light bar include at least two LED light-emitting particles.The light source and institute
State and the first heat-conducting glue is provided between side wall, first heat-conducting glue is used to conduct the heat of the light source to the side wall
In.
Or, the light source is arranged on the reflecting plate, and the light guide plate is arranged on the light source.The reflecting plate
The second heat-conducting glue is provided between the backboard, second heat-conducting glue is used for the light source for being received the reflecting plate
Heat conduct into the backboard.
The control circuit includes time schedule controller, scanner driver and data driver, the time schedule controller and institute
Scanner driver and the data driver is stated to be electrically connected with, the scanner driver and the data driver with it is described thin
Film transistor array base palte is electrically connected with.
The thin-film transistor array base-plate is combined including pixel column.
The pixel column combination includes at least two pixel columns, and the pixel column includes at least two pixels.The scan line with
The pixel in the pixel column is electrically connected with, and the scan line is also electrically connected with first driving chip.
The thin-film transistor array base-plate also includes pixel column and combined.
The pixel column combination includes at least two pixel columns, and the pixel column includes pixel at least described in two.The data
The pixel during line is arranged with the data is electrically connected with, and the data wire is also electrically connected with second driving chip.
The pixel includes thin film transistor switch and pixel electrode.
The thin-film transistor array base-plate include second substrate, scan line combination, the first insulating barrier, data wire combination,
Second insulating barrier, the thin film transistor switch, the pixel electrode, the second orientation film layer.
The scan line combination is arranged on the second substrate, and the scan line combination includes at least two scan lines.Institute
Stating thin film transistor switch includes grid, semiconductor layer, source electrode, drain electrode, and the grid is arranged on the second substrate, described
Grid is connected with the scan line.The semiconductor layer includes at least one of non-crystalline silicon, polysilicon, indium gallium zinc oxide.
The structure of the thin film transistor switch is top gate structure or bottom gate (grid) structure.The two neighboring pixel
The structure of the thin film transistor switch is respectively top gate structure, bottom grating structure.
In the case where the structure of the thin film transistor switch is top gate structure, perpendicular to the second substrate and
From the direction that the second substrate points to the pixel electrode, the layer where the grid Wei Yu not the source electrode and/or institute
State the other top of layer where drain electrode.In the case where the structure of the thin film transistor switch is bottom gate (grid) structure,
Perpendicular to the second substrate and from the direction that the second substrate points to the pixel electrode, the layer where the grid
Wei Yu not the source electrode and/or the other lower section of layer where the drain electrode.
First insulating barrier is arranged on the second substrate and the scan line and the grid.The semiconductor layer
It is arranged on first insulating barrier.Second insulating barrier is arranged on first insulating barrier and the semiconductor layer, institute
State source electrode and the drain electrode is arranged on second insulating barrier, second insulating barrier is provided with first through hole and second and led to
It is provided with hole, the first through hole in the first connecting line, second through hole and is provided with the second connecting line, the source electrode and institute
Drain electrode is stated respectively by first connecting line and second connecting line with the semiconductor layer to be connected.The data wire and institute
Source electrode is stated to be connected.The pixel electrode is arranged on second insulating barrier, and the pixel electrode is connected with the drain electrode.It is described
Second orientation film layer is arranged on the pixel electrode.
The pixel electrode includes main electrode and branch electrodes, and the main electrode is connected with the branch electrodes, institute
Straight line where stating branch electrodes has predetermined angle with the straight line where the main electrode, and the predetermined angle is in 5 degree
To in the range of 85 degree.For example, the predetermined angle is 5 degree, 8 degree, 11 degree, 14 degree, 17 degree, 20 degree, 23 degree, 26 degree, 29 degree,
32 degree, 35 degree, 38 degree, 41 degree, 44 degree, 47 degree, 50 degree, 53 degree, 56 degree, 59 degree, 62 degree, 65 degree, 68 degree, 71 degree, 74 degree, 77
Degree, 80 degree, 83 degree, 85 degree.
The main electrode includes the first stem portion and the second stem portion, first stem portion and second stem portion
Pixel region is divided at least four pixel partitions, the branch electrodes are arranged in the pixel partitions, branch's electricity
One end of pole is connected with first stem portion or second stem portion, and the other ends of the branch electrodes is towards away from described the
The direction extension of one stem portion or second stem portion.In the pixel partitions, branch electrodes described in adjacent two are parallel.
At least 1 first is provided with thin-film transistor array base-plate position corresponding with the non-display area to be fanned out to
Scanner driver and the first conductor combination, described second are provided with area and at least one second fanout area, first fanout area
Fanout area is provided with data driver and the second conductor combination.First conductor combination includes at least two first wires, described
Second conductor combination includes at least two second wires.
The scan line, the data wire, the pixel are arranged on the thin-film transistor array base-plate and the display
At the corresponding position in area.
First wire is connected with the scanner driver and the scan line, and second wire drives with the data
Dynamic device and data wire connection.
The thin-film transistor array base-plate also includes an at least bucking electrode, and the bucking electrode is arranged at the pixel
At least side of electrode.The bucking electrode can surround the pixel electrode.
Specifically, the bucking electrode is arranged on the region between two neighboring pixel, and the bucking electrode is used to protect
The influence of electric field action of the liquid crystal molecule from adjacent one other pixel in shield pixel corresponding with the bucking electrode.
That is, the bucking electrode is used for the electric jamming for preventing that one of two adjacent pixels from producing to another one.
Wherein, the bucking electrode is pointing to the pixel electricity perpendicular to the second substrate and from the second substrate
It is other positioned at different layers respectively from the pixel electrode on the direction of pole.For example, the bucking electrode is perpendicular to described second
Substrate and being pointed to from the second substrate is located above or below the pixel electrode on the direction of the pixel electrode.
As an improvement, the card sets groove positioned at the middle part of the top surface of the shading strip.
As shown in figure 3, the side of the shading strip is curved surface, the curved surface is convex outward 2021 or inner sunken face
2022.The surface of the side is set to smooth shape, i.e. the surface of the side is shiny surface, and the shiny surface is by right
The shading strip is cut by laser to be formed.Transparent dielectric layer, the transparent medium are provided with the surface of the side
Layer constitutes a reflective mirror with the shading strip, and the reflective mirror is used for from the light of shading strip described in the red color resistance block directive
Line reflection is returned in the red color resistance block, or for will be reflected back from the light of shading strip described in the green color blocking block directive
In the green color blocking block, or for the blueness will to be reflected back from the light of shading strip described in the blue color blocking block directive
In color blocking block, or for the white color blocking block will to be reflected back from the light of shading strip described in the white color blocking block directive
In.
The surface of the transparent dielectric layer dorsad side of the shading strip includes first area and second area, described the
One region is located at the transparent dielectric layer close to the position of the first substrate, and the second area is located at the transparent dielectric layer
Position away from the first substrate.Light scattering part is provided with the first area.The light scattering part is used for institute
State the divergence of beam that speculum is launched.
The light scattering part is by spraying the transparent dielectric layer acid fog, with using in the acid fog
Acidic liquid particle erosion described in transparent dielectric layer formed.The acid fog is to contain the acidic liquid particle
Gas, the acidic liquid corresponding to the acidic liquid particle is sulfuric acid or hydrochloric acid.
The first activated carbon is provided between the red color resistance block and the green color blocking block in first light-blocking block
Particle, first activated carbon granule is used to improve the adhesion between the red color resistance block and the green color blocking block.
The second activated carbon is provided between the green color blocking block and the blue color blocking block in second light-blocking block
Particle, second activated carbon granule is used to improve the adhesion between the green color blocking block and the blue color blocking block.
The 3rd activated carbon is provided between the blue color blocking block and the white color blocking block in the third gear light block
Particle, the 3rd activated carbon granule is used to improve the adhesion between the blue color blocking block and the white color blocking block.
The 4th activated carbon is provided between the white color blocking block and the red color resistance block in the fourth gear light block
Particle, the 4th activated carbon granule is used to improve the adhesion between the white color blocking block and the red color resistance block.
First activated carbon granule, second activated carbon granule, the 3rd activated carbon granule, the 4th activity
Charcoal particle is respectively provided with hole, the red color resistance block, the green color blocking block, the blue color blocking block, the white color blocking block
At least a portion in corresponding material is embedded into the space.
The red color resistance block, the green color blocking block, the blue color blocking block are nested with the white color blocking block
Have a web sandwich, the web sandwich be used to improving the red color resistance block, the green color blocking block, the blue color blocking block,
The structural strength of the white color blocking block, to prevent red color resistance block, the green color blocking block, the blue color blocking block, described
There is the phenomenon that part is peeled off in white color blocking block.
The web sandwich includes transparent plastic silk screen, and the transparent plastic silk screen is embedding with flat condition, bending, curved
It is enclosed in the red color resistance block, the green color blocking block, the blue color blocking block and the white color blocking block.
Transparent plastic silk in the transparent plastic silk screen surrounds multiple mesh, and the transparent plastic silk and the mesh are equal
For passing through red color resistance block described in directive, the green color blocking block, the blue color blocking block and the light of the white color blocking block
Line.
The black-matrix layer includes being provided with spacing hole, described first at least described in four on shading strip, the shading strip
Light-blocking block, second light-blocking block, the third gear light block, the fourth gear light block are provided with limited post, the limited post
It is nested in the spacing hole.
First Polarizer is arranged on the first substrate dorsad in the one side of the color film layer, first Polarizer
Edge be provided with the first clamping part, the edge of the first substrate is provided with the second clamping part, described
One clamping part mutually blocks with second clamping part to be set.
The edge of first Polarizer is provided with kink, and first clamping part is arranged at the kink
Inner side.Second clamping part is arranged at the side of the first substrate.
In the pixel electrode, first stem portion is linear, and second stem portion is curve-like or broken line
Shape.
The edge of the main electrode and the branch electrodes is provided with least two sawtooth portions, and sawtooth portion is equal at least described in two
The even edge for being distributed in the main electrode and the branch electrodes.The sawtooth portion is used to assemble electric charge, so that the trunk
Distribution of charges in electrode and the branch electrodes is uniform.
The surface in the sawtooth portion is provided with hydrophobic material layer, and the hydrophobic material layer is used to prevent the sawtooth portion from being formed
Light-blocking matter, wherein, the light-blocking matter is due to formed by the charge attraction foreign matter assembled of tip in the sawtooth portion.It is described
Foreign matter is, for example, the thin-film transistor array base-plate produced particle in the fabrication process.Prevent that the sawtooth portion aggregation is different
Thing is conducive to preventing light transmittance of the liquid crystal display panel at the sawtooth portion from reducing because shutting out the light the foreign matter.
As an improvement, the base of the introns is set to be provided with pothole in the middle part of ring-type, the base,
The bottom surface of the pothole is round surface.
The support column includes first end and second end, and the first end is arranged in the pothole, and described the
One end is also round surface, and the second end is in contact with the thin-film transistor array base-plate.
The support column is used for when the liquid crystal display panel is squeezed active force so that the second end is pre-
Determine in scope around first end skew, so that at least a portion of the squeezing action power be decomposed, be conducive to avoiding institute
Squeezing action power is stated to concentrate on the support column and cause the support column to be broken.
The thin-film transistor array base-plate is also combined including an at least bearing carrier, and the bearing carrier combination includes one
Main bearing structure and at least one standby bearing carrier.The standby bearing carrier is placed in the side of the main bearing structure.It is described
Standby bearing carrier is used to hold the support column at the position where the support column deviates the main bearing structure
Carry.
As an improvement, the liquid crystal display panel also includes pressing component, and the pressing component is arranged on the liquid
The edge of LCD panel, the pressing component is used for first Polarizer, second Polarizer, the color film
Substrate, the thin-film transistor array base-plate and the backlight module press are integrated.
The pressing component includes inner top surface, medial surface and inner bottom surface, the inner top surface, the medial surface and the interior bottom
Face surrounds half closed chamber, and the edge part of the liquid crystal display panel is nested in the semiclosed chamber, the inner top surface
It is in contact with first Polarizer, the inner bottom surface is in contact with the backboard of the backlight module.
The inner top surface is provided with the first contact site and the second contact site, and the inner bottom surface is provided with the 3rd contact site and
Four contact sites.First contact site and second contact site are in contact with first Polarizer, the 3rd contact
Portion and the 4th contact site are in contact with the backboard.
Second contact site at position of the inner top surface away from the medial surface, first contact site in
Between the medial surface and second contact site.4th contact site is in position of the inner bottom surface away from the medial surface
Place is put, the 3rd contact site is between the medial surface and the 4th contact site.
First contact site has the first pliability (the first rigidity), and second contact site has the second pliability
(the second rigidity), first pliability is more than second pliability, and (first rigidity is less than the described second rigidity
Degree).3rd contact site has the 3rd pliability (the 3rd rigidity), and the 4th contact site has the 4th pliability (the
Four rigidities).3rd pliability is more than the 4th pliability (the 3rd rigidity is less than the 4th rigidity).
First contact site and the 3rd contact site are provided commonly in second contact site and the 4th contact
Portion the liquid crystal display panel is pressed during cause the color membrane substrates the first substrate edge part and
The edge part of the second substrate of the thin-film transistor array base-plate is tilted within a predetermined range, so that described first
The middle part of substrate and the middle part of the second substrate are further fitted, i.e. avoid the middle part and described second of the first substrate
The middle part of substrate is tilted.
The medial surface, the inner bottom surface of the pressing component are additionally provided with the 3rd with the position that the backboard is contacted and led
Hot glue.
3rd heat-conducting glue is used for the heat produced by the light source for the side for being arranged at the liquid crystal display panel
Amount conduction to the surrounding for being arranged at the liquid crystal display panel the pressing component, with by the pressing component from the liquid
Four sides of LCD panel distribute the heat.
At least side of the light-emitting diode light bar is provided with reflection shield, and the reflection shield is used for the light-emitting diodes
The some light that spot bar is sent is reflexed in the light guide plate.The reflection shield is mutually fixed with the side wall.
The inner surface setting of the reflection shield has at least two reflective scales, and reflective scale is in an array manner at least described in two
Arrangement.The reflective scale is shaped as regular polygon.The thickness in the centre of the reflective scale is more than the reflective squama
The thickness of the edge of piece.The surface of the reflective scale is made up of at least two inclined-planes, and inclined-plane is around institute at least described in two
Centre is stated to arrange in the form of circumference array.The reflective scale with the inclined-plane is used for the light emitting diode
Light produced by lamp bar is from multiple angle reflections into the light guide plate.
The surface of the reflective scale includes annular recess at least described in three, and the annular recess is around the reflective scale
The centre, the depth of annular recess is from the centre of the reflective scale to described reflective at least described in three
The edge of scale is gradually reduced or gradually increased.
The inner surface setting of the reflection shield has at least two first coupling parts, and first coupling part is with array at least described in two
Form is arranged, and the bottom surface of the reflective scale is provided with the second coupling part, first coupling part and the second coupling part phase
Coupling.
As an improvement, the scanner driver includes the combination of the first driving chip, the first control chip.Described first
Driving chip combination includes at least two first driving chips, and first driving chip is used to generate scanning signal.Described first
Control chip is electrically connected with the first driving chip at least described in two, and first control chip is also electric with the time schedule controller
Property connection.
The data driver includes the combination of the second driving chip, the second control chip.The second driving chip combination
Including at least two second driving chips, second driving chip is used to generate data-signal.Second control chip with extremely
Second driving chip is electrically connected with described in few two, and second control chip is also electrically connected with the time schedule controller.
The time schedule controller is used to generate clock signal, and for the clock signal to be supplied into the turntable driving
Device and the data driver.
The control circuit also includes ghost remover, the ghost remover and the scanner driver and the data
Driver is electrically connected with, and the ghost remover is used for the generation ghost when the liquid crystal display panel is in predetermined state and removed
Signal, and provide the ghost clear signal to the scanner driver and the data driver.
The predetermined state is the closed mode or opening of the liquid crystal display panel.
The ghost remover is used in the scanner driver and the data driver respectively to the film crystal
Pipe array base palte is provided before the scanning signal and the data-signal, to the scanner driver and the data driver
The ghost clear signal is provided.
The ghost clear signal is used for the signal of video signal for removing the liquid crystal display panel residual.
The ghost clear signal is used to open the thin film transistor switch in the thin-film transistor array base-plate, and
For being input to when the thin film transistor switch is opened in the pixel electrode of the thin-film transistor array base-plate, with
The grey decision-making of the signal of video signal remained of the pixel electrode is rewritten, is remained so as to remove in the liquid crystal display panel
The signal of video signal.
The ghost clear signal is used for the electric charge so that corresponding to the signal of video signal that the pixel electrode is remained
Partial disappearance is neutralized, to remove the signal of video signal remained in the liquid crystal display panel.
As an improvement, the liquid crystal display panel also includes pressure sensor, and the pressure sensor is arranged at institute
State in fluid sealant.
The pressure sensor is used to generate the first sensing signal when sensing first pressure, and for sensing the
Generate the second sensing signal during two pressure, and for generating the 3rd sensing signal when sensing three pressure, and for
The 4th sensing signal is generated when sensing four pressure.Wherein, the first pressure is the color membrane substrates to the fluid sealant
Pressure applied, the second pressure is the thin-film transistor array base-plate to the fluid sealant pressure applied, institute
It is that the 4th pressure is described when the liquid crystal layer is squeezed to the fluid sealant pressure applied to state the 3rd pressure
The external environment condition of liquid crystal display panel is to the fluid sealant pressure applied.
The ghost remover of the pressure sensor also with the control circuit is electrically connected with.The pressure sensor
It is additionally operable to transmit first sensing signal, second sensing signal, the 3rd sensing signal to the ghost remover
With the 4th sensing signal.The ghost remover is used to receive first sensing signal, the second sensing letter
Number, the 3rd sensing signal and the signal of video signal that the liquid crystal display panel residual is removed during four sensing signal.
As an improvement, the sealed sectional is embedded to be cased with structural reinforcement member.The structural reinforcement member to be spherical,
The material of the structural reinforcement member is any one in metal, glass, ceramics.The structural reinforcement member is used to strengthen institute
Structural strength of the sealed sectional at the non-display area is stated, to keep the color membrane substrates and the thin film transistor (TFT) array base
Spacing value of the plate at the non-display area keeps constant, i.e. prevent the sealed sectional from can not cause institute because being squeezed
State the spacing value of color membrane substrates and the thin-film transistor array base-plate at the non-display area and keep constant.
As an improvement, the backlight module also includes heat conducting pipe, and the heat conducting pipe is used for the light emitting diode
Heat produced by lamp bar is conducted to the backboard, to distribute the heat by the backboard.The heat conducting pipe is at least
A part is arranged at the junction between the bottom plate of the side wall and the backboard.
Junction between the side wall and the bottom plate is provided with groove, and at least a portion of the heat conducting pipe is nested in
In the groove.
Heat-conducting liquid is accommodated with the heat conducting pipe.The heat-conducting liquid is water or oil.
In summary, although the present invention it is disclosed above with preferred embodiment, but above preferred embodiment and be not used to limit
The system present invention, one of ordinary skill in the art without departing from the spirit and scope of the present invention, can make various changes and profit
Adorn, therefore protection scope of the present invention is defined by the scope that claim is defined.
Claims (10)
1. a kind of liquid crystal display panel, the liquid crystal display panel includes the first Polarizer, the second Polarizer, color membrane substrates, liquid
Crystal layer, thin-film transistor array base-plate, backlight module and control circuit, the control circuit and the backlight module, the coloured silk
Ilm substrate and the thin-film transistor array base-plate are electrically connected with;
First Polarizer, the color membrane substrates, the thin-film transistor array base-plate, second Polarizer and the back of the body
Optical mode group stack combinations are integrated, the liquid crystal layer be arranged at the color membrane substrates and the thin-film transistor array base-plate it
Between;
The color membrane substrates are matched somebody with somebody including first substrate, color film layer, black-matrix layer, common electrode layer, introns combination layer, first
To film layer, the color film layer includes red color resistance block, green color blocking block, blue color blocking block, white color blocking block;
The backlight module includes light source, light guide plate, reflecting plate, scatter plate, and the light source is arranged at the side of the light guide plate
Bian Shang, the backlight module is used for by first Polarizer, the color membrane substrates, the liquid crystal layer, the film crystal
The overall exposure light that pipe array base palte and second Polarizer are constituted;
The red color resistance block is overlapped in the black-matrix layer with the green color blocking block, and constitutes the first light-blocking block, institute
State the first light-blocking block be used for the black-matrix layer stop jointly the red color resistance block and the green color blocking block directive that
This light, the green color blocking block is overlapped in the black-matrix layer with the blue color blocking block, and composition second is in the light
Block, second light-blocking block is used to stop that the green color blocking block is penetrated with the blue color blocking block jointly with the black-matrix layer
Light to each other, the blue color blocking block is overlapped in the black-matrix layer with the white color blocking block, and constitutes the 3rd
Light-blocking block, the third gear light block is used to stop the blue color blocking block and the white color blocking jointly with the black-matrix layer
The mutual light of block directive, the white color blocking block is overlapped in the black-matrix layer with the red color resistance block, and is constituted
Fourth gear light block, the fourth gear light block is used to stop the white color blocking block and the red jointly with the black-matrix layer
The mutual light of color blocking block directive;
Characterized in that, the black-matrix layer include at least four shading strips, the shading strip dorsad the first substrate one
Card is provided with face and sets groove, first light-blocking block, second light-blocking block, the third gear light block, the fourth gear light block
It is provided with card and sets raised line, the card, which sets raised line and sets groove with the card and mutually block, is set.
2. liquid crystal display panel according to claim 1, it is characterised in that the card sets shape and the face of the cross section of groove
Integration is not corresponding with the shape and area for blocking the cross section for setting raised line.
3. liquid crystal display panel according to claim 1, it is characterised in that the card sets groove and the card sets raised line and is
Curve-like.
4. liquid crystal display panel according to claim 1, it is characterised in that the card sets groove and the card sets raised line and is
Polyline shaped.
5. liquid crystal display panel according to claim 1, it is characterised in that the card, which is set, is provided with viscose glue in groove.
6. liquid crystal display panel according to claim 1, it is characterised in that first Polarizer is arranged on described first
Substrate is dorsad in the one side of the color film layer.
7. liquid crystal display panel according to claim 6, it is characterised in that the edge of first Polarizer is set
Be equipped with the first clamping part, the edge of the first substrate is provided with the second clamping part, first clamping part with it is described
Second clamping part, which mutually blocks, to be set.
8. liquid crystal display panel according to claim 7, it is characterised in that the edge of first Polarizer is set
Kink is equipped with, first clamping part is arranged at the inner side of the kink, and second clamping part is arranged at described first
The side of substrate.
9. liquid crystal display panel according to claim 1, it is characterised in that by the color membrane substrates, the liquid crystal layer and
The edge part of the liquid crystal cell of the thin-film transistor array base-plate composition is additionally provided with fluid sealant, and the fluid sealant is arranged at described
Between color membrane substrates and the thin-film transistor array base-plate.
10. liquid crystal display panel according to claim 9, it is characterised in that the fluid sealant is used for the liquid crystal cell
Sealed, the liquid crystal molecule is limited in the liquid crystal cell.
Priority Applications (1)
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CN201710199317.6A CN107065280A (en) | 2017-03-29 | 2017-03-29 | Liquid crystal display panel |
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CN201710199317.6A CN107065280A (en) | 2017-03-29 | 2017-03-29 | Liquid crystal display panel |
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CN201710199317.6A Withdrawn CN107065280A (en) | 2017-03-29 | 2017-03-29 | Liquid crystal display panel |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN110376808A (en) * | 2019-06-06 | 2019-10-25 | 重庆惠科金渝光电科技有限公司 | Array substrate, manufacturing method thereof and display panel |
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2017
- 2017-03-29 CN CN201710199317.6A patent/CN107065280A/en not_active Withdrawn
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN110376808A (en) * | 2019-06-06 | 2019-10-25 | 重庆惠科金渝光电科技有限公司 | Array substrate, manufacturing method thereof and display panel |
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