WO2021052051A1 - 液晶模组及显示装置 - Google Patents

液晶模组及显示装置 Download PDF

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Publication number
WO2021052051A1
WO2021052051A1 PCT/CN2020/107367 CN2020107367W WO2021052051A1 WO 2021052051 A1 WO2021052051 A1 WO 2021052051A1 CN 2020107367 W CN2020107367 W CN 2020107367W WO 2021052051 A1 WO2021052051 A1 WO 2021052051A1
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WO
WIPO (PCT)
Prior art keywords
liquid crystal
frame
crystal panel
edge
buffer layer
Prior art date
Application number
PCT/CN2020/107367
Other languages
English (en)
French (fr)
Inventor
廖燕平
郭俊杰
陈轶夫
邵喜斌
Original Assignee
京东方科技集团股份有限公司
北京京东方显示技术有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
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Application filed by 京东方科技集团股份有限公司, 北京京东方显示技术有限公司 filed Critical 京东方科技集团股份有限公司
Priority to US17/278,803 priority Critical patent/US11428971B2/en
Publication of WO2021052051A1 publication Critical patent/WO2021052051A1/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
    • G02F1/133308Support structures for LCD panels, e.g. frames or bezels
    • 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
    • G02F1/133308Support structures for LCD panels, e.g. frames or bezels
    • G02F1/133328Segmented frames
    • 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
    • G02F1/133308Support structures for LCD panels, e.g. frames or bezels
    • G02F1/13332Front frames
    • 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
    • G02F1/133308Support structures for LCD panels, e.g. frames or bezels
    • G02F1/133317Intermediate frames, e.g. between backlight housing and front frame
    • GPHYSICS
    • G02OPTICS
    • G02BOPTICAL ELEMENTS, SYSTEMS OR APPARATUS
    • G02B6/00Light guides; Structural details of arrangements comprising light guides and other optical elements, e.g. couplings
    • G02B6/0001Light guides; Structural details of arrangements comprising light guides and other optical elements, e.g. couplings specially adapted for lighting devices or systems
    • G02B6/0011Light guides; Structural details of arrangements comprising light guides and other optical elements, e.g. couplings specially adapted for lighting devices or systems the light guides being planar or of plate-like form
    • G02B6/0081Mechanical or electrical aspects of the light guide and light source in the lighting device peculiar to the adaptation to planar light guides, e.g. concerning packaging
    • G02B6/0086Positioning aspects
    • GPHYSICS
    • G02OPTICS
    • G02BOPTICAL ELEMENTS, SYSTEMS OR APPARATUS
    • G02B6/00Light guides; Structural details of arrangements comprising light guides and other optical elements, e.g. couplings
    • G02B6/0001Light guides; Structural details of arrangements comprising light guides and other optical elements, e.g. couplings specially adapted for lighting devices or systems
    • G02B6/0011Light guides; Structural details of arrangements comprising light guides and other optical elements, e.g. couplings specially adapted for lighting devices or systems the light guides being planar or of plate-like form
    • G02B6/0081Mechanical or electrical aspects of the light guide and light source in the lighting device peculiar to the adaptation to planar light guides, e.g. concerning packaging
    • G02B6/0086Positioning aspects
    • G02B6/0088Positioning aspects of the light guide or other optical sheets in the package

Definitions

  • At least one embodiment of the present disclosure relates to a liquid crystal module and a display device.
  • LCD TVs have been favored by more and more users due to their wide color gamut, long life span, and ultra-thin appearance.
  • LCD TVs are mainly divided into LCD TVs with a front frame and LCD TVs without a front frame.
  • the embodiment of the present disclosure provides a liquid crystal module and a display device.
  • the liquid crystal module has the liquid crystal panel and the first frame movably arranged, thereby reducing the effect of external force on the liquid crystal panel, avoiding deformation due to being squeezed, and reducing the probability of dark light leakage of the liquid crystal panel.
  • a liquid crystal module including: a liquid crystal panel, a bottom frame, and a first frame.
  • the liquid crystal panel includes a panel surface, a first edge, a second edge opposite to the first edge, a third edge and a fourth edge that connect the first edge and the second edge and are opposite to each other.
  • the bottom frame includes a bottom plate, a first side plate and a second side plate. The first side plate and the second side plate are relatively spaced apart and are respectively arranged on two opposite edges of the bottom plate. The first edge is located in an opening area surrounded by the bottom plate, the first side plate, and the second side plate.
  • the first frame is arranged on at least one of the second edge, the third edge and the fourth edge of the liquid crystal panel.
  • the first frame includes: a first frame, a second frame parallel to the first frame, and a third frame.
  • the third frame connects an end of the first frame away from the center of the liquid crystal panel and an end of the second frame away from the center of the liquid crystal panel.
  • the second edge and the third edge of the liquid crystal panel And at least one of the fourth edges is located in the opening area surrounded by the first frame, the second frame, and the third frame, and in a direction perpendicular to the surface of the liquid crystal panel,
  • the first frame and the liquid crystal panel can be movably arranged.
  • the first frame body and the liquid crystal panel are arranged opposite to each other and have a first interval.
  • the second frame body is arranged opposite to the liquid crystal panel and has a second interval, and the first interval includes at least one of air and a first buffer layer,
  • the second space includes at least one of air and a second buffer layer.
  • the first buffer layer is configured to be elastically compressible in a direction perpendicular to the surface of the liquid crystal panel, and the elastic mode of the first buffer layer The amount is greater than 30Mpa and less than 100Mpa.
  • the second buffer layer is configured to be elastically compressible in a direction perpendicular to the surface of the liquid crystal panel, and the elastic modulus of the second buffer layer is greater than 30 MPa and less than 100 MPa.
  • the first buffer layer includes a first compressible foam or a first single-sided tape
  • the second buffer layer includes a second compressible foam or a first Two single-sided adhesive tapes
  • the adhesive side of the first single-sided adhesive tape is located on the side of the first single-sided adhesive tape away from the liquid crystal panel
  • the adhesive surface of the second single-sided adhesive tape is located on the second single-sided adhesive tape The side away from the liquid crystal panel.
  • the ratio of the size of the first gap in the direction perpendicular to the surface of the liquid crystal panel to the thickness of the liquid crystal panel is in the range of 10%- 20%
  • the range of the ratio of the size of the second interval in the direction perpendicular to the surface of the liquid crystal panel to the thickness of the liquid crystal panel is 10%-20%.
  • the first frame is disposed on the second edge, the third edge, and the fourth edge of the liquid crystal panel, and the first frame and the third edge Corresponding parts and parts of the first frame and the fourth edge are respectively installed at both ends of the bottom frame to form a rectangular frame, and the liquid crystal panel is arranged in the rectangular frame.
  • the first side plate and the liquid crystal panel are arranged opposite to each other and have a third interval.
  • the second side plate is arranged opposite to the liquid crystal panel and has a fourth interval, and the third interval includes at least one of air and a third buffer layer, The fourth interval includes at least one of air and a fourth buffer layer.
  • the third buffer layer is configured to be elastically compressible in a direction perpendicular to the surface of the liquid crystal panel, and the elastic modulus of the third buffer layer is Greater than 30Mpa and less than 100Mpa.
  • the fourth buffer layer is configured to be elastically compressible in a direction perpendicular to the surface of the liquid crystal panel, and the elastic modulus of the fourth buffer layer is greater than 30Mpa and less than 100Mpa.
  • the third buffer layer includes a third compressible foam or a third single-sided tape
  • the fourth buffer layer includes a fourth compressible foam or a third Four single-sided adhesive tape
  • the adhesive side of the third single-sided adhesive tape is located on the side of the third single-sided adhesive tape away from the liquid crystal panel
  • the adhesive surface of the fourth single-sided adhesive tape is located on the fourth single-sided adhesive tape The side away from the liquid crystal panel.
  • the size of the first frame in a direction perpendicular to the third frame ranges from 2mm to 3mm, and the second frame is perpendicular to The dimension in the direction of the third frame body ranges from 2 mm to 3 mm.
  • the dimensions of the first frame and the second frame in a direction perpendicular to the third frame are equal.
  • the liquid crystal module provided by an embodiment of the present disclosure, there is a fifth gap between at least one of the second edge, the third edge, and the fourth edge of the liquid crystal panel and the third frame, so The fifth interval includes at least one of air and a fifth buffer layer.
  • the fifth buffer layer is configured to be elastically compressible in a direction perpendicular to the surface of the liquid crystal panel, and the elastic modulus of the fifth buffer layer is Greater than 30Mpa and less than 100Mpa.
  • the first edge of the liquid crystal panel is provided with a binding area, and the binding area is configured to be bound with a circuit board or a chip.
  • the liquid crystal module further includes: a second frame, which is away from the second frame from the liquid crystal panel in a direction perpendicular to the surface of the liquid crystal panel
  • the second frame includes: a fourth frame; a first adhesive layer disposed on the surface of the fourth frame facing the second frame; and away from the fourth frame
  • a fifth frame connected to one end of the center of the liquid crystal panel, the surface of the second frame away from the liquid crystal panel faces the second frame through the first adhesive layer and the fourth frame The surface is connected.
  • the outer side of the third frame away from the center of the liquid crystal panel is flush with the outer side of the fifth frame away from the center of the liquid crystal panel
  • the second frame further includes a first protrusion provided on the surface of the fourth frame facing the second frame, and the first protrusion is located on the surface of the liquid crystal panel.
  • the orthographic projection on the plane overlaps the orthographic projection of the second frame on the plane where the surface of the liquid crystal panel is located, and the first protrusion is close to the end surface of the second frame and the first
  • the surface of an adhesive layer close to the second frame is substantially flush, and the first protrusion is located outside the first adhesive layer away from the center of the liquid crystal panel.
  • the second frame further includes a sixth frame, and the sixth frame extends from the fifth frame in a direction close to the first frame
  • the sixth frame body and the third frame body are parallel in a direction perpendicular to the surface of the liquid crystal panel, and the surface of the sixth frame body facing the third frame body is connected to the third frame body through the second adhesive layer.
  • the third frame body is connected to the surface facing the sixth frame body.
  • the liquid crystal module further includes a backlight assembly disposed on the side of the second side plate away from the liquid crystal panel and the fourth side of the second frame.
  • the frame is far away from the liquid crystal panel and has an end surface opposite to the fifth frame.
  • the backlight assembly includes a light guide plate and a back plate, the light guide plate is parallel to the liquid crystal panel, and the back plate is arranged On the side of the light guide plate away from the liquid crystal panel, the back plate includes a plate-shaped main body and an end, the plate-shaped main body is parallel to the surface of the liquid crystal panel, and the end is perpendicular to the plate The main body is opposite to the end surface of the light guide plate.
  • At least one embodiment of the present disclosure further provides a display device, including any of the above-mentioned liquid crystal modules.
  • the display device is a television.
  • FIG. 1 is a schematic plan view of a liquid crystal module provided by an embodiment of the disclosure
  • FIG. 2A is a schematic cross-sectional view along A1-B1 of the liquid crystal module shown in FIG. 1 in a horizontal state according to an embodiment of the present disclosure
  • FIG. 2B is a schematic cross-sectional view taken along A1-B1 of the liquid crystal module shown in FIG. 1 in a vertical state according to an embodiment of the present disclosure
  • FIG. 3A is a schematic cross-sectional view taken along A2-B2 of the liquid crystal module shown in FIG. 1 according to an embodiment of the present disclosure
  • FIG. 3B is a schematic cross-sectional view taken along A2-B2 of another liquid crystal module shown in FIG. 1 according to an embodiment of the present disclosure
  • FIG. 4 is a schematic cross-sectional view of the liquid crystal module shown in FIG. 1 along A2-B2 according to another embodiment of the present disclosure
  • FIG. 5 is a schematic cross-sectional view of the liquid crystal module shown in FIG. 1 along A2-B2 according to another embodiment of the present disclosure
  • FIG. 6 is a schematic cross-sectional view taken along A2-B2 of the liquid crystal module shown in FIG. 1 according to another embodiment of the present disclosure
  • FIG. 7 is a schematic cross-sectional view taken along A2-B2 of the liquid crystal module shown in FIG. 1 according to another embodiment of the present disclosure
  • FIG. 8 is a schematic cross-sectional view of the liquid crystal module shown in FIG. 1 along A2-B2 according to another embodiment of the present disclosure
  • FIG. 9 is a schematic cross-sectional view of the liquid crystal module shown in FIG. 1 along A2-B2 according to another embodiment of the present disclosure.
  • FIG. 10 is a partial schematic diagram of a bottom frame of a liquid crystal module according to an embodiment of the present disclosure.
  • the liquid crystal panel of the liquid crystal TV is usually fixed by fixing the liquid crystal panel and the middle frame of the liquid crystal module through a double-sided tape.
  • the LCD TV can be installed on the wall and other suitable installation places through the middle frame.
  • the principle of liquid crystal panel display is to control the passage of light through the rotation of liquid crystal in an electric field.
  • the liquid crystal panel fixed by the above-mentioned fixing method is susceptible to external force, and the liquid crystal panel and the middle frame are fixed by double-sided tape, and there is no moving space.
  • the external force is likely to cause the liquid crystal panel to deform, and the rotation of the liquid crystal at the position where the liquid crystal panel deforms will also be deformed and cannot be rotated to a normal angle, which will eventually cause the dark state light leakage of the liquid crystal panel.
  • the embodiments of the present disclosure provide a liquid crystal module and a display device.
  • the liquid crystal module includes a liquid crystal panel, a bottom frame and a first frame.
  • the liquid crystal panel includes a panel surface, a first edge, a second edge opposite to the first edge, a third edge and a fourth edge that connect the first edge and the second edge and are opposite to each other.
  • the bottom frame includes a bottom plate, a first side plate, and a second side plate. The first side plate and the second side plate are spaced apart from each other and are respectively arranged on two opposite edges of the bottom plate. The first edge of the liquid crystal panel is located on the bottom plate and the first side plate. In the opening area surrounded by the side plate and the second side plate.
  • the first frame is arranged on at least one of the second edge, the third edge and the fourth edge of the liquid crystal panel.
  • the first frame includes: a first frame, a second frame parallel to the first frame, and a third frame.
  • the third frame connects the end of the first frame away from the center of the liquid crystal panel and the end of the second frame away from the center of the liquid crystal panel.
  • At least one of the second, third, and fourth edges of the liquid crystal panel is located in the first frame , In the opening area surrounded by the second frame and the third frame, and in the direction perpendicular to the panel surface of the liquid crystal panel, the first frame and the liquid crystal panel can be movably arranged between the first frame and the liquid crystal panel.
  • the liquid crystal panel of the liquid crystal module can be movably arranged in the opening area of the first frame, and a movable space is provided between the first frame and the liquid crystal panel, the effect of external force on the liquid crystal panel can be reduced, and the liquid crystal panel can be prevented from being damaged. Squeezing to produce deformation, thereby reducing the probability of dark light leakage of the liquid crystal panel.
  • liquid crystal module and the display device provided by one or more embodiments of the present disclosure will be described in detail with reference to the accompanying drawings.
  • FIG. 1 is a schematic plan view of a liquid crystal module provided by an embodiment of the disclosure.
  • 2A is a schematic cross-sectional view along A2-B2 of the liquid crystal module shown in FIG. 1 in a horizontal state according to an embodiment of the present disclosure.
  • 3A is a schematic cross-sectional view along A2-B2 of the liquid crystal module shown in FIG. 1 provided by an embodiment of the present disclosure;
  • FIG. 3B is another liquid crystal module shown in FIG. 1 provided by an embodiment of the present disclosure.
  • the liquid crystal module 1000 includes a liquid crystal panel 1100, a bottom frame 1200 and a first frame 1300.
  • the liquid crystal panel 1100 includes a panel surface S, a first edge 1110, a second edge 1120, a third edge 1130, and a fourth edge 1140.
  • the first edge 1110 is opposite to the second edge 1120
  • the third edge 1130 is opposite to the fourth edge 1140
  • the third edge 1130 and the fourth edge 1140 are connected to the first edge 1110 and the second edge 1120, respectively.
  • the bottom frame 1200 is disposed on the first edge 1110 of the liquid crystal panel 1100.
  • the bottom frame 1200 includes a first bottom plate 1210, a first side plate 1220 and a second side plate 1230.
  • the first side plate 1220 and the second side plate 1230 are arranged at two opposite edges of the first bottom plate 1210 at relatively intervals.
  • the first side plate 1220 is connected to the end surface of the first bottom plate 1210 facing the first side plate 1220.
  • the second side plate 1230 is connected to the surface of the first bottom plate 1210 facing the liquid crystal panel 1100.
  • the first bottom plate 1210 and the second side plate 1230 may be integrally formed.
  • the first bottom plate 1210, the first side plate 1220, and the second side plate 1230 surround an opening area, and the first edge 1110 of the liquid crystal panel 1100 is located in the opening area.
  • the bottom frame 1200 further includes a second bottom plate 1260 connected to the first side plate 1220 and extending along the X direction perpendicular to the panel surface S of the liquid crystal panel 1100, and a second bottom plate 1260 connected to the first bottom plate 1210 and extending along the direction perpendicular to the liquid crystal panel 1100.
  • the third bottom plate 1270 extends in the X direction of the surface S.
  • the second bottom plate 1260 and the first side plate 1220 may be integrally formed
  • the third bottom plate 1270, the first bottom plate 1210, and the second side plate 1230 may be integrally formed.
  • the first frame 1300 is disposed on at least one of the second edge 1120, the third edge 1130 and the fourth edge 1140 of the liquid crystal panel 1100.
  • the first frame 1300 includes a first frame 1310, a second frame 1320, and a third frame 1330.
  • the first frame body 1310 and the second frame body 1320 extend parallel to the panel surface S of the liquid crystal panel 1100, and the first frame body 1310 and the second frame body 1320 are arranged opposite to each other in parallel.
  • the third frame 1330 extends along the X direction perpendicular to the surface S of the liquid crystal panel 1100 and connects the end of the first frame 1310 away from the center of the liquid crystal panel 1100 and the end of the second frame 1320 away from the center of the liquid crystal panel 1100.
  • the first frame body 1310, the second frame body 1320, and the third frame body 1330 surround an opening area, and the second edge 1120, the third edge 1130, and the fourth edge 1140 of the liquid crystal panel 1100 are located in the opening area.
  • the above-mentioned “parallel” includes the case where the first frame body and the second frame body are completely parallel, and also the case where the first frame body and the second frame body are substantially parallel; the above-mentioned “substantially parallel” “Means that the angle between the first frame and the second frame is less than 5 degrees.
  • the first frame 1300 is disposed on the second edge 1120, the third edge 1130, and the fourth edge 1140 of the liquid crystal panel 1100, and the first frame 1300 and the third edge 1130 correspond to the portion Parts corresponding to the first frame 1300 and the fourth edge 1140 are respectively installed at both ends of the bottom frame 1200 to form a rectangular frame, and the liquid crystal panel 1100 is disposed in the rectangular frame.
  • the third edge 1130 of the liquid crystal panel may exist between the first frame 1310 and the second frame 1320 in the X direction perpendicular to the surface S of the liquid crystal panel 1100. interval.
  • the second edge 1120 and the fourth edge 1140 of the liquid crystal panel 1100 may also be spaced apart from the first frame 1310 and the second frame 1320 in the X direction perpendicular to the surface S of the liquid crystal panel 1100.
  • the liquid crystal panel 1100 and the first frame 1300 can be movably arranged, and there is a movable space between the first frame 1300 and the liquid crystal panel 1100, thereby reducing the effect of the external force on the liquid crystal panel 1100 and preventing the liquid crystal panel 1100 from being squeezed. Deformation is caused by pressing, thereby reducing the probability of light leakage of the liquid crystal panel 1100 in the dark state.
  • the first frame 1300 can also be arranged on one of the second edge 1120, the third edge 1130, and the fourth edge 1140 of the liquid crystal panel 1100, or on the second edge 1120, the third edge 1130, and the first edge of the liquid crystal panel 1100.
  • the embodiments of the present disclosure include but are not limited to the above situations.
  • the first frame 1310 is opposite to the front surface of the liquid crystal panel 1100
  • the second frame 1320 is opposite to the back surface of the liquid crystal panel 1100
  • the front surface refers to the surface of the display screen of the liquid crystal panel 1100
  • the reverse surface refers to the surface of the liquid crystal panel 1100 opposite to the front surface.
  • the third edge 1130 of the liquid crystal panel 1100 is located in the opening area surrounded by the first frame 1310, the second frame 1320 and the third frame 1330.
  • the first frame 1310 and the liquid crystal panel 1100 are relatively spaced apart in the X direction perpendicular to the panel surface S of the liquid crystal panel 1100 and have a first interval d1.
  • the second frame 1320 and the liquid crystal panel 1100 are perpendicular to the panel of the liquid crystal panel 1100.
  • the surface S is arranged at opposite intervals in the X direction and has a second interval d2.
  • the first interval d1 may include air and the first buffer layer 1340.
  • the second interval d2 includes air and the second buffer layer 1350. Since the first frame body 1310 and the second frame body 1320 and the liquid crystal panel 1100 are not in direct contact and remain independent of each other, there is a movable space between the first frame 1300 and the liquid crystal panel 1100, thereby reducing the size of the liquid crystal panel 1100. Under the action of external force, the liquid crystal panel 1100 is prevented from being squeezed and deformed, thereby reducing the probability of light leakage of the liquid crystal panel 1100 in the dark state.
  • the structures at the third edge 1130, the second edge 1120 and the fourth edge 1140 of the liquid crystal panel 1100 may be the same.
  • the liquid crystal panel 1100 can contact the first bottom plate 1210 of the bottom frame 1200, so that the bottom frame 1200 can support the liquid crystal panel 1100, thereby ensuring the first frame 1310 And the second frame 1320 and the liquid crystal panel 110 are not in direct contact and remain independent of each other.
  • the detailed structure of the liquid crystal module will be described by taking the schematic cross-sectional view along A2-B2 at the third edge 1130 as an example.
  • a screenshot of the first frame 1300 in the X direction perpendicular to the panel surface S of the liquid crystal panel 1100 has a "U" shape.
  • the opening area surrounded by the first frame body 1310, the second frame body 1320, and the third frame body 1330 is, for example, a "U"-shaped opening area.
  • the second interval d2 may further include one of air and the second buffer layer 1350
  • the first interval d1 may further include one of air and the first buffer layer 1340.
  • the embodiments of the present disclosure are not limited thereto.
  • the first buffer layer 1340 is disposed on the surface of the first frame 1310 facing the liquid crystal panel 1100
  • the second buffer layer 1350 is disposed on the surface of the second frame 1320 facing the liquid crystal panel 1100.
  • An air gap exists between the first buffer layer 1340 and the liquid crystal panel 1100
  • an air gap exists between the second buffer layer 1350 and the liquid crystal panel 1100.
  • the first buffer layer 1340 and the second buffer layer 1350 can prevent the liquid crystal panel 1100 from directly contacting the first frame 1310 and the second frame 1320 under the condition of being squeezed, thereby reducing the force on the liquid crystal panel 1100 and avoiding the liquid crystal The panel 1100 is squeezed and deformed, thereby reducing the probability of light leakage of the liquid crystal panel 1100 in the dark state.
  • the first buffer layer 1340 and the second buffer layer 1350 can also play a buffering role when the liquid crystal panel 1100 contacts or collides with the first bezel 1300, so as to protect the liquid crystal panel 1100.
  • the liquid crystal module may be provided with only one of the first buffer layer 1340 and the second buffer layer 1350, and the embodiments of the present disclosure are not limited thereto.
  • the first buffer layer 1340 is configured to be elastically compressible in the X direction perpendicular to the surface S of the liquid crystal panel 1100, and the elastic modulus of the first buffer layer 1340 is greater than 30Mpa And less than 100Mpa.
  • the second buffer layer 1350 is configured to be elastically compressible in the X direction perpendicular to the panel surface of the liquid crystal panel 1100, and the elastic modulus of the second buffer layer 1350 is greater than 30 MPa and less than 100 MPa.
  • the first buffer layer 1340 and the second buffer layer 1350 can also be made of other compressible materials with an elastic modulus greater than 30Mpa and less than 100Mpa, such as soft plastics, etc., which are arranged in the first interval d1 and the second interval, respectively. Between two intervals d2.
  • the embodiments of the present disclosure are not limited thereto.
  • the first buffer layer 1340 may include a first compressible foam or a first single-sided tape
  • the second buffer layer 1350 may include a second compressible foam or a second single-sided tape.
  • the face tape is stuck on the surface of the first frame 1310 facing the liquid crystal panel 1100
  • the second single-sided tape is stuck on the surface of the second frame 1320 facing the liquid crystal panel 1100.
  • the first compressible foam is disposed on the surface of the first frame 1310 facing the liquid crystal panel 1100
  • the second compressible foam is disposed on the surface of the second frame 1320 facing the liquid crystal panel 1100.
  • the adhesive surface of the first single-sided tape is located on the side of the first single-sided tape away from the liquid crystal panel 1100
  • the adhesive surface of the second single-sided tape is located on the side of the second single-sided tape away from the liquid crystal panel 1100.
  • the first frame body 1310 and the second frame body 1320 can be made independent of each other.
  • the first interval d1 between the first frame 1310 and the liquid crystal panel 1100 may also include air.
  • the second interval d2 between the second frame 1320 and the liquid crystal panel 1100 may further include air. Since there is an air gap between the first bezel 1300 and the liquid crystal panel 1100, the first bezel 1300 and the liquid crystal panel 1100 are independent of each other, so that there is a movable space between the first bezel 1300 and the liquid crystal panel 1100, thereby reducing the exposure to the liquid crystal panel 1100.
  • the external force prevents deformation from being squeezed, thereby reducing the probability of dark light leakage of the liquid crystal panel 1100.
  • Edges (for example, the second edge 1120, the third edge 1130, or the fourth edge 1140) have the above-mentioned fifth interval; when the first frame 1300 is provided on at least one of the second edge 1120, the third edge 1130, and the fourth edge 1140 At two o'clock, the third frame body 1330 of the first frame 1300 and the two edges or three edges of the liquid crystal panel 1100 where the first frame 1300 is provided have the above-mentioned fifth interval. As shown in FIGS. 3A and 3B, the third frame 1330 and the liquid crystal panel 1100 have a fifth interval d3 in the X direction perpendicular to the third frame 1330 and parallel to the surface S of the liquid crystal panel 1100.
  • the fifth interval d3 may be an air gap.
  • the liquid crystal panel 1100 is not aligned with the third frame 1330 in a direction perpendicular to the third frame 1330.
  • the body 1330 is in direct contact.
  • the liquid crystal panel 1100 and the third frame 1330 can remain independent of each other, and the edge of the liquid crystal panel 1100 has a movable space in the direction perpendicular to the third frame 1330, thereby reducing the effect of the external force on the liquid crystal panel 1100 , To avoid being squeezed and deformed, thereby reducing the probability of light leakage of the liquid crystal panel 1100 in the dark state.
  • the first frame 1300 for example, is manufactured in an integral molding manner.
  • the embodiments of the present disclosure include but are not limited to this, and the first frame 1300 can also be manufactured using other manufacturing processes to obtain the structure as shown in FIG. 3A and FIG. 3B.
  • the ratio of the size of the first interval d1 in the X direction perpendicular to the surface S of the liquid crystal panel 1100 to the thickness H of the liquid crystal panel 1100 ranges from 10% -20%, for example, the ratio of the size of the first interval d1 in the X direction perpendicular to the panel surface S of the liquid crystal panel 1100 to the thickness H of the liquid crystal panel 1100 may be 15%.
  • the ratio of the size of the second interval d2 in the X direction perpendicular to the panel surface S of the liquid crystal panel 1100 to the thickness H of the liquid crystal panel 1100 is also in the range of 10%-20%.
  • the second interval d2 is perpendicular to the liquid crystal panel.
  • the ratio of the dimension in the X direction of the panel surface S of the 1100 to the thickness H of the liquid crystal panel 1100 is 15%.
  • the thickness H of the liquid crystal panel 1100 is the dimension of the liquid crystal panel 1100 in the X direction perpendicular to the panel surface S of the liquid crystal panel 1100.
  • the size of the first interval d1 in the X direction perpendicular to the surface S of the liquid crystal panel 1100 ranges from 0.2 mm to 0.3 mm
  • the size of the second interval d2 in the X direction perpendicular to the surface S of the liquid crystal panel 1100 The range is 0.2mm to 0.3mm.
  • the size range of the first interval d1 and the second interval d2 within the range of 0.2 mm to 0.3 mm can reduce the effect of external force on the liquid crystal panel 1100, so that the liquid crystal panel 1100 does not jump out of the first frame 1300.
  • the distance from the display area of the liquid crystal panel 1100 to the edge may be 6mm, and the first frame 1310 is in a direction perpendicular to the third frame 1330
  • the size range of the width d4 of the first frame 1310 can be 2mm to 3mm.
  • the size range of the second frame 1320 in the direction perpendicular to the third frame 1330 is the width d5 of the second frame 1320
  • the size can range from 2mm to 3mm.
  • the selection of the above-mentioned size ranges of the first frame body 1310 and the second frame body 1320 can ensure that the edge of the liquid crystal panel 1100 does not jump out of the opening area surrounded by the first frame body 1310, the second frame body 1320 and the third frame body 1330.
  • the size range of the width d4 of the first frame body 1310 and the width d5 of the second frame body 1320 is related to the distance from the display area of the liquid crystal panel 1100 to the edge.
  • the width dimensions of the first frame body 1310 and the second frame body 1320 are It needs to be less than the distance from the display area of the liquid crystal panel 1100 (for example, the area where the liquid crystal panel 1100 normally displays a picture) to the edge, and it is sufficient to ensure that the liquid crystal panel 1100 does not jump out of the first frame 1300.
  • the widths of the first frame body 1310 and the second frame body 1320 in the direction perpendicular to the third frame body 1330 are equal, that is, the width d4 of the first frame body 1310 and the second frame body 1320
  • the dimensions of the width d5 are equal.
  • the equal size of the width includes the case where the size is substantially equal.
  • the first frame body 1310 and the second frame body 1320 can ensure that the liquid crystal panel 1100 does not jump out of the first frame 1300.
  • the widths of the first frame body 1310 and the second frame body 1320 in the direction perpendicular to the third frame body 1330 may not be equal, as long as the crystal panel does not jump out of the first frame body 1300.
  • the embodiments of the present disclosure are not limited thereto.
  • the liquid crystal module further includes a second frame 1400.
  • the second frame 1400 is connected to the surface of the second frame 1320 away from the liquid crystal panel 1100 in the X direction perpendicular to the panel surface S of the liquid crystal panel 1100.
  • the above-mentioned connection method may be bolt connection, hinge connection, clamping connection, bonding, and the like.
  • the second frame 1400 includes a fourth frame 1410, a first adhesive layer 1430, and a fifth frame 1420.
  • the fifth frame 1420 is connected to the end of the fourth frame 1410 away from the center of the liquid crystal panel 1100, and the surface of the second frame 1320 away from the liquid crystal panel 1100 faces the second frame 1320 through the first adhesive layer 1430 and the fourth frame 1410 The surface is connected.
  • the second frame 1400 may also be a rectangular frame corresponding to the rectangular frame formed by the first frame 1300 and the bottom frame 1200.
  • the outer side of the third frame 1330 away from the center of the liquid crystal panel 1100 is flush with the outer side of the fifth frame 1420 away from the center of the liquid crystal panel 1100, so that the first frame The structure composed of 1300 and the second frame 1400 is neat and beautiful.
  • the second frame 1400 and the first frame 1300 are connected by the first adhesive layer 1430.
  • the first adhesive layer 1430 can be a double-sided tape.
  • the first adhesive layer 1430 is disposed between the surface of the fourth frame 1410 facing the second frame 1320 and the surface of the second frame 1320 away from the liquid crystal panel 1100.
  • the liquid crystal module it can be installed through the second frame 1400. Since the edge of the liquid crystal panel 1100 is arranged in the first frame 1300, the liquid crystal panel is prevented from exerting force during the installation process.
  • the liquid crystal module 1000 further includes a backlight assembly 1500.
  • the backlight assembly 1500 is disposed on a side of the fourth frame 1410 of the second frame 1400 away from the liquid crystal panel 1100 and connected to the second frame 1400.
  • the backlight assembly 1500 includes a back plate 1510, a light guide plate 1520 disposed on the back plate 1510, and an optical film 1530 on the light guide plate 1520.
  • the back plate 1510 includes an end 1512 and a plate-shaped main body 1511, and the end 1512 is perpendicular to the plate-shaped main body 1511.
  • the end surface 1513 of the end 1512 of the back plate 1510 is opposite to the fifth frame 1420 and connects the end 1512 to the fourth frame 1410.
  • the above-mentioned connection method may be, for example, bolt connection, hinge connection, clamping connection, bonding, and the like.
  • the backlight assembly 1500 inputs the light signal to the liquid crystal panel 1100 to ensure the normal display of the screen of the liquid crystal panel 1100.
  • 2B is a schematic cross-sectional view along A2-B2 of the liquid crystal panel shown in FIG. 1 in a vertical state.
  • the horizontal state refers to the state where the surface S of the liquid crystal panel 1100 is parallel to the ground
  • the vertical state refers to the state where the surface S of the liquid crystal panel 1100 is perpendicular to the ground, and the first edge 1110 of the liquid crystal panel 1100 is located below.
  • the fourth frame body 1410 of the second frame 1400 and the second side plate 1230 of the bottom frame 1200 are integrally formed.
  • the first side plate 1220 is connected to the end of the first bottom plate 1210.
  • the connection between the first side plate 1220 and the first bottom plate 1210 may be bolted connection, hinged connection, clamping connection, bonding, etc., for example.
  • the first side plate 1220 is opposite to the front of the liquid crystal panel 1100 with a gap
  • the second side plate 1230 is opposite to the back of the liquid crystal panel 1100 with a gap
  • the first bottom plate 1210 is opposite to the first edge 1110 of the liquid crystal panel 1100 with a gap.
  • the first edge 1110 of the liquid crystal panel 1100 is located in the opening area surrounded by the first bottom plate 1210, the first side plate 1220 and the second side plate 1230.
  • the first edge 1110 of the liquid crystal panel 1100 can be movably arranged in the bottom frame 1200 to reduce the stress of the liquid crystal panel 1100 and the probability of light leakage in the dark state.
  • the first side plate 1220 and the liquid crystal panel 1100 have a third gap c1 in the X direction perpendicular to the surface S of the liquid crystal panel 1100, and the second side plate 1230 and the liquid crystal panel 1100 are perpendicular to the liquid crystal panel.
  • the third interval c1 and the fourth interval c2 prevent the liquid crystal panel 1100 from directly contacting the bottom frame 1200, reduce the liquid crystal panel 1100 from being subjected to external force, and prevent the liquid crystal panel 1100 from being squeezed and deformed, thereby reducing the probability of dark light leakage of the liquid crystal panel 1100.
  • the size range of the sixth interval c3 in the X direction perpendicular to the panel surface S of the liquid crystal panel 1100 is approximately between 0.05 mm and 0.15 mm, for example, 0.1 mm.
  • "about” means that the value varies within ⁇ 5%.
  • the third interval c1 may include air and a third buffer layer 1240
  • the fourth interval c2 may include air and a fourth buffer layer 1250.
  • the third buffer layer 1240 is arranged in the third interval c1
  • the fourth buffer layer 1250 is arranged in the fourth interval c2.
  • the third buffer layer 1240 in the third interval c1 and the fourth buffer layer 1250 in the fourth interval c2 may not be provided at the same time.
  • the embodiments of the present disclosure are not limited thereto.
  • the sixth gap c3 between the liquid crystal panel 1100 and the first bottom plate 1210 does not exist, and there is a small gap between the third buffer layer 1240 and the liquid crystal panel 1100.
  • the air gap for example, the value of the air gap is less than 0.1 mm.
  • the first bottom plate 1210 abuts against the liquid crystal panel 1100 to ensure that the liquid crystal panel 1100 is stably arranged in the first frame 1300 and the bottom frame 1200 and does not jump out.
  • the third buffer layer 1240 is configured to be elastically compressible in the X direction perpendicular to the panel surface of the liquid crystal panel 1100, and the elastic modulus of the third buffer layer 1240 is greater than 30 MPa and less than 100 MPa.
  • the fourth buffer layer 1250 is configured to be elastically compressible in the X direction perpendicular to the surface of the liquid crystal panel 1100, and the elastic modulus of the fourth buffer layer 1250 is greater than 30 MPa and less than 100 MPa.
  • the third buffer layer 1240 may include a third compressible foam or a third single-sided tape
  • the fourth buffer layer 1250 may include a fourth compressible foam or a fourth single-sided tape.
  • the adhesive surface of the third single-sided tape is located on the side of the third single-sided tape away from the liquid crystal panel 1100
  • the adhesive surface of the fourth single-sided tape is located on the side of the fourth single-sided tape away from the liquid crystal panel 1100.
  • the third single-sided tape is stuck on the surface of the first side plate 1220 opposite to the front surface of the liquid crystal panel 1100.
  • the fourth single-sided tape is pasted on the surface of the second side plate 1230 opposite to the reverse surface of the liquid crystal panel 1100.
  • the third compressible foam is arranged on the surface of the first side plate 1220 opposite to the front surface of the liquid crystal panel 1100
  • the fourth compressible foam is arranged on the opposite surface of the second side plate 1230 opposite to the liquid crystal panel 1100 on the surface.
  • the elastic modulus of the compressed foam or single-sided tape is greater than 30Mpa and less than 100Mpa.
  • the liquid crystal panel 1100 When the liquid crystal panel 1100 is in direct contact with the compressed foam or single-sided tape, it can act as a buffer and reduce the force on the liquid crystal panel 1100. Therefore, the above-mentioned design solution can reduce the stress on the liquid crystal panel 1100 and avoid the dark state light leakage phenomenon of the liquid crystal panel 1100.
  • the third buffer layer 1240 and the fourth buffer layer 1250 can also be made of other compressible materials with elastic modulus greater than 30Mpa and less than 100Mpa, such as soft plastics, etc., which are arranged in the third interval c1 and the fourth interval c1 and the fourth interval. Between the interval c2.
  • the embodiments of the present disclosure are not limited thereto.
  • the backlight assembly 1500 is disposed on the side of the second side plate 1230 away from the liquid crystal panel 1100, and the end 1512 of the backlight assembly 1500 is connected to the second side plate 1230.
  • the way of connection may be bolt connection, hinge connection, clamping connection, bonding, etc.
  • the end 1512 of the backlight assembly 1500 faces the light guide plate 1520 and the light bar 1600 is installed on the surface to generate light signals.
  • first frame body 1310 of the first frame 1300 is connected to the first side of the bottom frame 1200.
  • the connection method can be adopted, such as clamping connection, bonding and so on.
  • the second frame 1400 further includes a first protrusion 1440 provided on the surface of the fourth frame 1410 facing the second frame 1320.
  • the end surface of the first protrusion 1440 away from the fourth frame 1410 is opposite to the second frame 1320, and the orthographic projection of the first protrusion 1440 on the plane where the surface of the liquid crystal panel 1100 is located is in line with the second frame 1320.
  • the orthographic projections on the plane where the panel surface S of the liquid crystal panel 1100 is overlapped.
  • the outer surface of the first protrusion 1440 away from the center of the liquid crystal panel 1100 may be flush with the outer surface of the fifth frame 1420 away from the center of the liquid crystal panel 110, so that the structure of the second frame 1400 is neat and beautiful.
  • the end surface of the first protrusion 1440 close to the second frame 1320 is substantially flush with the surface of the first adhesive layer 1430 close to the second frame 1320, and the first protrusion 1440 is located on the first adhesive layer 1430 away from the liquid crystal panel 1100 Outside of the center.
  • the first protrusion 1440 and the second frame 1320 can accommodate the first adhesive layer 1430, such as accommodating tape, etc., to provide the second frame 1400 to support the first frame 1300.
  • substantially flush means that the height difference between the first protrusion 1440 and the first adhesive layer 1430 in the X direction perpendicular to the panel surface of the liquid crystal panel is not more than 0.1 mm.
  • the first protruding portion 1440 can accommodate the first adhesive layer 1430, such as accommodating tape, etc., to provide the second frame 1400 to support the first frame 1300.
  • the outer surface of the first protrusion 1440 may not be flush with the outer surface of the fifth frame 1420.
  • the embodiments of the present disclosure are not limited thereto.
  • the fifth interval d3 includes air and a fifth buffer layer 1360.
  • the fifth buffer layer 1360 is disposed on the surface of the third frame 1330 facing the liquid crystal panel 1100. There is a gap between the fifth buffer layer 1360 and the liquid crystal panel 1100.
  • the fifth buffer layer 1360 can prevent the liquid crystal panel 1100 from directly contacting the third frame 1330 when it is squeezed, thereby reducing the force on the liquid crystal panel 1100.
  • the fifth interval d3 may include one of air and the fifth buffer layer 1360.
  • the embodiments of the present disclosure are not limited thereto.
  • first buffer layer 1340 the second buffer layer 1350, and the fifth buffer layer 1360 may be provided, and the embodiments of the present disclosure are not limited thereto.
  • the fifth buffer layer 1360 is configured to be elastically compressible in the X direction perpendicular to the surface of the liquid crystal panel 1100, and the elastic modulus of the fifth buffer layer 1360 is greater than 30Mpa and Less than 100Mpa.
  • the above-mentioned design of the first buffer layer 1340, the second buffer layer 1350, and the fifth buffer layer 1360 can reduce the force on the liquid crystal panel 1100, thereby avoiding the occurrence of light leakage of the liquid crystal panel 1100 in the dark state.
  • the fifth buffer layer 1360 includes a fifth compressible foam or a fifth single-sided tape.
  • the fifth single-sided tape is attached to the surface of the third frame 1330 facing the liquid crystal panel 1100, or the fifth compressible foam is provided on the surface of the third frame 1330 facing the liquid crystal panel 1100.
  • the elastic modulus of the compressed foam or single-sided tape is greater than 30Mpa and less than 100Mpa.
  • the fifth buffer layer 1360 can also be made of other compressible materials with an elastic modulus greater than 30 MPa and less than 100 MPa, such as soft plastics, etc., which are arranged between the fifth interval d3.
  • the embodiments of the present disclosure are not limited thereto.
  • the first protrusion 1440 of the second frame 1400 of the liquid crystal module 1000 is similar to the first protrusion 1440 of the liquid crystal module 1000 shown in FIG.
  • the position of the protrusion 1440 is different.
  • the first protrusion 1440 of the liquid crystal module 1000 shown in FIG. 6 is located on the inner side of the first adhesive layer 1430 close to the center of the liquid crystal panel 1100.
  • the first protrusion 1440 and the first adhesive layer 1430 have substantially flush surfaces.
  • the surface of the first protrusion 1440 facing the second frame 1320 is opposite to the surface of the second frame 1320 close to the liquid crystal panel 1100. That is, the first protrusion 1440 abuts against the second frame 1320.
  • the surface of the first protrusion 1440 shown in FIG. 7 is higher than the surface of the first adhesive layer 1430.
  • the first protruding portion 1440 can accommodate the first adhesive layer 1430, such as accommodating tape, etc., to provide the second frame 1400 to support the first frame 1300.
  • the second frame 1400 further includes a sixth frame 1450.
  • the sixth frame 1450 extends from the fifth frame 1420 in a direction close to the first frame 1300, that is, extends along the X direction perpendicular to the panel surface S of the liquid crystal panel 1100.
  • the sixth frame 1450 and the fifth frame 1420 are integrally formed.
  • the sixth frame 1450 and the third frame 1330 are parallel in the X direction perpendicular to the panel surface S of the liquid crystal panel 1100.
  • the surface of the sixth frame body 1450 facing the third frame body 1330 is opposite to the surface of the third frame body 1330 away from the liquid crystal panel 1100.
  • the end surface of the sixth frame 1450 and the surface of the first frame 1310 away from the liquid crystal panel 1100 are not aligned.
  • the second frame 1400 may provide support for the first frame 1300.
  • the end surface of the sixth frame 1450 and the surface of the first frame 1310 away from the liquid crystal panel 1100 may also be flush, and the embodiments of the present disclosure are not limited thereto.
  • the fourth frame 1410, the fifth frame 1420, and the sixth frame 1450 of the second frame 1400 are manufactured by integral molding.
  • the fourth frame body 1410, the fifth frame body 1420, and the sixth frame body 1450 can also be manufactured by using other manufacturing processes to obtain the structure shown in FIG. 8, and the embodiments of the present disclosure are not limited thereto.
  • the surface of the sixth frame body 1450 facing the third frame body 1330 faces the sixth frame body through the second adhesive layer 1460 and the third frame body 1330.
  • the surface of the body 1450 is connected.
  • the first adhesive layer 1430 can be a double-sided tape.
  • the sixth frame body 1450 is fixed to the third frame body 1330 through the second adhesive layer 1460, which improves the stable support between the first frame body 1310 and the second frame body 1320.
  • the first edge 1110 of the liquid crystal panel 1100 is provided with a binding area 1150, and the binding area 1150 is configured to be bound with a circuit board or a chip.
  • FIG. 10 is a partial schematic diagram of a bottom frame of a liquid crystal module according to an embodiment of the present disclosure.
  • the first bottom plate 1210 of the bottom frame 1200 is provided with an opening 1215, and the flexible printed circuit (FPC) can pass through the opening 1215 and the binding area 1150 on the first edge 1110 of the liquid crystal panel 1100 Connected.
  • FPC flexible printed circuit
  • the material of the first frame 1300 may include polymer materials such as polystyrene plastic, polyethylene, polycarbonate, acrylonitrile-butadiene-styrene copolymer, etc.
  • the material of the first frame 1300 Some surface treatment processes are performed on the surface to make the appearance and color of the first frame 1300 look the same as the black of the liquid crystal panel, which makes the appearance of the liquid crystal module more beautiful.
  • At least one embodiment of the present disclosure provides a display device including the liquid crystal module described in the above embodiments.
  • the first edge of the liquid crystal panel is arranged in the bottom frame, and at least one of the second edge, the third edge and the fourth edge of the liquid crystal panel is arranged in the first edge.
  • the liquid crystal panel of the liquid crystal module can be movably arranged in the opening area of the first frame, a movable space is provided between the first frame and the liquid crystal panel, thereby reducing the effect of external force on the liquid crystal panel and avoiding being squeezed. Deformation caused by pressure, thereby reducing the probability of dark-state light leakage of the liquid crystal panel.
  • the display device is a television.
  • the television is, for example, a liquid crystal television or the like.
  • the embodiments of the present disclosure are not limited thereto.
  • the display device may also be a computer, a notebook computer, a tablet computer, and other electronic devices with display functions. The following points need to be explained:

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Abstract

一种液晶模组及显示装置。液晶模组包括液晶面板、底框以及第一边框。液晶面板的第一边缘位于底框的底板、第一侧板和第二侧板围绕的开口区域中。液晶面板的第二边缘、第三边缘以及所述第四边缘的至少之一位于第一框体、第二框体以及第三框体围绕的开口区域中,在垂直于液晶面板的板面的方向上,第一边框与液晶面板之间可活动设置。由于液晶模组的液晶面板可活动地设置在第一边框的开口区域中,减小液晶面板受到外力的作用,避免液晶面板被挤压而产生变形,进而可降低液晶面板发生暗态漏光现象的几率。

Description

液晶模组及显示装置
本申请要求于2019年9月20日提交的中国专利申请第201910892658.0的优先权,该中国专利申请的全文通过引用的方式结合于此以作为本申请的一部分。
技术领域
本公开至少一个实施例涉及一种液晶模组及显示装置。
背景技术
近年来,随着电视行业的发展,由于液晶电视的色域广、寿命长、超薄外观等特点,受到越来越多用户的喜爱。液晶电视主要分为带前框的液晶电视和无前框的液晶电视。
发明内容
本公开的实施例提供一种液晶模组及显示装置。该液晶模组将液晶面板与第一框体可活动地设置,从而减小液晶面板受到外力的作用,避免被挤压而产生变形,进而可降低液晶面板发生暗态漏光现象的几率。
本公开至少一个实施例提供一种液晶模组,包括:液晶面板、底框以及第一边框。液晶面板包括板面、第一边缘、与所述第一边缘相对的第二边缘、连接所述第一边缘和所述第二边缘且相对的第三边缘以及第四边缘。底框包括底板、第一侧板及第二侧板,所述第一侧板和所述第二侧板相对间隔设置且分别设置在所述底板的两个相对的边缘,所述液晶面板的第一边缘位于所述底板、所述第一侧板以及所述第二侧板围绕的开口区域中。第一边框,设置在所述液晶面板的第二边缘、第三边缘以及第四边缘的至少之一。所述第一边框包括:第一框体、与所述第一框体平行的第二框体以及第三框体。所述第三框体连接所述第一框体远离所述液晶面板中心的一端和所述第二框体远离所述液晶面板的中心的一端,所述液晶面板的第二边缘、第三边缘以及第四边缘的至少之一位于所述第一框体、所述第二框体和所述第三框体围绕的开口区域中,并且在垂直于所述液晶面板的板面的方向上,所述第一边框与所述液晶面板之间可活动设置。
例如,在本公开一实施例提供的液晶模组中,在垂直于所述液晶面板的板面的方向上,所述第一框体与所述液晶面板相对间隔设置并具有第一间隔,在垂直于所述液晶面板的板面的方向上,所述第二框体与所述液晶面板相对间隔设置并具有第二间隔,所述第一间隔包括空气和第一缓冲层的至少之一,所述第二间隔包括空气和第二缓冲层的至少之一。
例如,在本公开一实施例提供的液晶模组中,所述第一缓冲层被配置为在垂直于所述液晶面板的板面的方向上可弹性压缩,所述第一缓冲层的弹性模量大于30Mpa且小于100Mpa。所述第二缓冲层被配置为在垂直于所述液晶面板的板面的方向上可弹性压缩, 所述第二缓冲层的弹性模量大于30Mpa且小于100Mpa。
例如,在本公开一实施例提供的液晶模组中,所述第一缓冲层包括第一可压缩泡棉或第一单面胶带,所述第二缓冲层包括第二可压缩泡棉或第二单面胶带,所述第一单面胶带的粘性面位于所述第一单面胶带远离所述液晶面板的一侧,所述第二单面胶带的粘性面位于所述第二单面胶带远离所述液晶面板的一侧。
例如,在本公开一实施例提供的液晶模组中,所述第一间隔在垂直于所述液晶面板的板面的方向上的尺寸与所述液晶面板的厚度之比的范围为10%-20%,所述第二间隔在垂直于所述液晶面板的板面的方向上的尺寸与所述液晶面板的厚度之比的范围为10%-20%。
例如,在本公开一实施例提供的液晶模组中,所述第一边框设置在所述液晶面板的第二边缘、第三边缘以及第四边缘,所述第一边框与所述第三边缘对应的部分和所述第一边框与所述第四边缘对应的部分分别安装在所述底框的两端以形成矩形框架,所述液晶面板设置在所述矩形框架之中。
例如,在本公开一实施例提供的液晶模组中,在垂直于所述液晶面板的板面的方向上,所述第一侧板与所述液晶面板相对间隔设置并具有第三间隔,在垂直于所述液晶面板的板面的方向上,所述第二侧板与所述液晶面板相对间隔设置并具有第四间隔,所述第三间隔包括空气和第三缓冲层的至少之一,所述第四间隔包括空气和第四缓冲层的至少之一。
例如,在本公开一实施例提供的液晶模组中,所述第三缓冲层被配置为在垂直于所述液晶面板的板面的方向可弹性压缩,所述第三缓冲层的弹性模量大于30Mpa且小于100Mpa。所述第四缓冲层被配置为在垂直于所述液晶面板的板面的方向可弹性压缩,所述第四缓冲层的弹性模量大于30Mpa且小于100Mpa。
例如,在本公开一实施例提供的液晶模组中,所述第三缓冲层包括第三可压缩泡棉或第三单面胶带,所述第四缓冲层包括第四可压缩泡棉或第四单面胶带,所述第三单面胶带的粘性面位于所述第三单面胶带远离所述液晶面板的一侧,所述第四单面胶带的粘性面位于所述第四单面胶带远离所述液晶面板的一侧。
例如,在本公开一实施例提供的液晶模组中,所述第一框体在垂直于所述第三框体的方向上的尺寸范围为2mm至3mm,所述第二框体在垂直于所述第三框体的方向上的尺寸范围为2mm至3mm。
例如,在本公开一实施例提供的液晶模组中,所述第一框体与所述第二框体在垂直于所述第三框体方向上的尺寸相等。
例如,在本公开一实施例提供的液晶模组中,所述液晶面板的第二边缘、第三边缘以及第四边缘的至少之一与所述第三框体之间存在第五间隔,所述第五间隔包括空气和第五缓冲层的至少之一。
例如,在本公开一实施例提供的液晶模组中,所述第五缓冲层被配置为在垂直于所述液晶面板的板面的方向可弹性压缩,所述第五缓冲层的弹性模量大于30Mpa且小于 100Mpa。
例如,在本公开一实施例提供的液晶模组中,所述液晶面板的第一边缘设置有绑定区,所述绑定区被配置为与电路板或芯片绑定。
例如,在本公开一实施例提供的液晶模组中,液晶模组还包括:第二边框,在垂直于所述液晶面板的板面的方向上与所述第二框体远离所述液晶面板的表面连接;所述第二边框包括:第四框体;第一粘结层,设置在所述第四框体面向所述第二框体的表面上;以及与所述第四框体远离所述液晶面板的中心的一端相连的第五框体,所述第二框体远离所述液晶面板的表面通过所述第一粘结层与所述第四框体面向所述第二框体的表面连接。
例如,在本公开一实施例提供的液晶模组中,所述第三框体远离所述液晶面板的中心的外侧面与所述第五框体远离所述液晶面板的中心的外侧面平齐,所述第二边框还包括设于所述第四框体面向所述第二框体的表面上的第一凸起部,所述第一凸起部在所述液晶面板的板面所在的平面上的正投影与所述第二框体在所述液晶面板的板面所在的平面上的正投影交叠,所述第一凸起部靠近所述第二框体的端面与所述第一粘结层靠近所述第二框体的表面基本平齐,所述第一凸起部位于所述第一粘结层远离所述液晶面板的中心的外侧。
例如,在本公开一实施例提供的液晶模组中,所述第二边框还包括第六框体,所述第六框体自所述第五框体向靠近所述第一边框的方向延伸,所述第六框体与所述第三框体在垂直于液晶面板的板面的方向上平行,所述第六框体面向所述第三框体的表面通过第二粘结层与所述第三框体面向所述第六框体的表面连接。
例如,在本公开一实施例提供的液晶模组中,液晶模组还包括背光组件,设置在所述第二侧板远离所述液晶面板的一侧和所述第二边框的所述第四框体远离所述液晶面板一侧,且具有与所述第五框体相对的端面,所述背光组件包括导光板和背板,所述导光板平行于所述液晶面板,所述背板设置在所述导光板远离所述液晶面板一侧,所述背板包括板状主体以及端部,所述板状主体与所述液晶面板的板面平行,所述端部垂直于所述板状主体且与所述导光板的端面相对。
本公开至少一个实施例还提供一种显示装置,包括上述任一项所述的液晶模组。
例如,在本公开一实施例提供的显示装置中,所述显示装置为电视。
附图说明
为了更清楚地说明本公开实施例的技术方案,下面将对实施例的附图作简单地介绍,显而易见地,下面描述中的附图仅仅涉及本公开的一些实施例,而非对本公开的限制。
图1为本公开一实施例提供的一种液晶模组的平面示意图;
图2A为本公开一实施例提供的图1所示液晶模组在水平状态下沿A1-B1的截面示意图;
图2B为本公开一实施例提供的图1所示液晶模组在竖直状态下沿A1-B1的截面示 意图;
图3A为本公开一实施例提供的一种如图1所示液晶模组沿A2-B2的截面示意图;
图3B为本公开一实施例提供的另一种如图1所示液晶模组沿A2-B2的截面示意图;
图4为本公开又一实施例提供的图1所示液晶模组沿A2-B2的截面示意图;
图5为本公开又一实施例提供的图1所示液晶模组沿A2-B2的截面示意图;
图6为本公开又一实施例提供的图1所示液晶模组沿A2-B2的截面示意图;
图7为本公开又一实施例提供的图1所示液晶模组沿A2-B2的截面示意图;
图8为本公开又一实施例提供的图1所示液晶模组沿A2-B2的截面示意图;
图9为本公开又一实施例提供的图1所示液晶模组沿A2-B2的截面示意图;以及
图10为根据本公开一实施例提供的一种液晶模组的底框的局部示意图。
具体实施方式
为使本公开实施例的目的、技术方案和优点更加清楚,下面将结合本公开实施例的附图,对本公开实施例的技术方案进行清楚、完整地描述。显然,所描述的实施例是本公开的一部分实施例,而不是全部的实施例。基于所描述的本公开的实施例,本领域普通技术人员在无需创造性劳动的前提下所获得的所有其他实施例,都属于本公开保护的范围。
除非另外定义,本公开使用的技术术语或者科学术语应当为本公开所属领域内具有一般技能的人士所理解的通常意义。本公开中使用的“第一”、“第二”、“第三”、“第四”、“第五”以及类似的词语并不表示任何顺序、数量或者重要性,而只是用来区分不同的组成部分。同样,“一个”、“一”或者“该”等类似词语也不表示数量限制,而是表示存在至少一个。“包括”或者“包含”等类似的词语意指出现该词前面的元件或者物件涵盖出现在该词后面列举的元件或者物件及其等同。
目前,液晶电视的液晶面板通常采用的固定方式是通过双面胶带将液晶面板与液晶模组的中框固定。液晶电视通过中框可以安装到墙面上等合适安装的地方。液晶面板显示原理是通过液晶在电场中旋转来控制光线通过。然而,通过上述固定方式固定的液晶面板容易受到外力的作用,并且液晶面板与中框通过双面胶带固定,没有活动空间。因此,外力容易导致液晶面板发生变形,那么在液晶面板变形的位置液晶的旋转也会因此变形,不能旋转到正常的角度,最终引起液晶面板的暗态漏光现象的发生。
针对上述技术问题,本公开的实施例提供一种液晶模组及显示装置。
该液晶模组包括液晶面板、底框以及第一框体。液晶面板包括板面、第一边缘、与第一边缘相对的第二边缘、连接第一边缘以及第二边缘且相对的第三边缘和第四边缘。底框包括底板、第一侧板及第二侧板,第一侧板和第二侧板相对间隔设置且分别设置在底板的两个相对的边缘,液晶面板的第一边缘位于底板、第一侧板和第二侧板围绕的开口区域中。第一边框,设置在液晶面板的第二边缘、第三边缘以及第四边缘的至少之一。第一边框包括:第一框体、与第一框体平行的第二框体以及第三框体。第三框体连接第 一框体远离液晶面板中心的一端和第二框体远离液晶面板中心的一端,液晶面板的第二边缘、第三边缘和第四边缘的至少之一位于第一框体、第二框体以及第三框体围绕的开口区域中,并且在垂直于液晶面板的板面的方向上,第一边框与液晶面板之间可活动设置。由于该液晶模组的液晶面板可活动地设置在第一边框的开口区域中,第一边框与液晶面板之间设置可活动的空间,因此可减小液晶面板受到外力的作用,避免液晶面板被挤压而产生变形,进而可降低液晶面板发生暗态漏光现象的几率。
下面,结合附图对本公开的一个或多个实施例提供的液晶模组及显示装置进行详细的描述。
图1为本公开一实施例提供的液晶模组的平面示意图。图2A为本公开一实施例提供的图1所示液晶模组在水平状态下沿A2-B2的截面示意图。图3A为本公开一实施例提供的一种如图1所示液晶模组沿A2-B2的截面示意图;图3B为本公开一实施例提供的另一种如图1所示液晶模组沿A2-B2的截面示意图。
如图1所示,液晶模组1000包括液晶面板1100、底框1200及第一边框1300。液晶面板1100包括板面S、第一边缘1110、第二边缘1120、第三边缘1130及第四边缘1140。第一边缘1110与第二边缘1120相对,第三边缘1130与第四边缘1140相对,第三边缘1130和第四边缘1140分别连接第一边缘1110和第二边缘1120。底框1200设置在液晶面板1100的第一边缘1110。
如图2A所示,底框1200包括第一底板1210、第一侧板1220及第二侧板1230。第一侧板1220和第二侧板1230相对间隔设置在第一底板1210的两个相对的边缘。第一侧板1220与第一底板1210的面向第一侧板1220的端面连接。第二侧板1230与第一底板1210面向液晶面板1100的表面连接。例如,如图2A所示,第一底板1210和第二侧板1230可一体成型。第一底板1210、第一侧板1220及第二侧板1230围绕形成开口区域,液晶面板1100的第一边缘1110位于该开口区域中。底框1200还包括与第一侧板1220相连且沿垂直于液晶面板1100的板面S的X方向延伸的第二底板1260和与所述第一底板1210相连且沿垂直于液晶面板1100的板面S的X方向延伸的第三底板1270。例如,第二底板1260与第一侧板1220可一体成型,第三底板1270、第一底板1210和第二侧板1230可一体成型。
如图1所示,第一边框1300设置在液晶面板1100的第二边缘1120、第三边缘1130和第四边缘1140的至少之一。如图3A所示,第一边框1300包括第一框体1310、第二框体1320,第三框体1330。第一框体1310与第二框体1320平行于液晶面板1100的板面S延伸,并且第一框体1310与第二框体1320平行相对设置。第三框体1330沿垂直于液晶面板1100的板面S的X方向延伸并连接第一框体1310远离液晶面板1100中心的一端与第二框体1320远离液晶面板1100中心的一端。第一框体1310、第二框体1320及第三框体1330围绕形成开口区域,液晶面板1100的第二边缘1120、第三边缘1130及第四边缘1140位于该开口区域中。
需要说明的是,本公开中,上述的“平行”包括第一框体与第二框体完全平行的情 况,也包括第一框体与第二框体大致平行的情况;上述的“大致平行”是指第一框体与第二框体的夹角小于5度。
例如,在一些示例中,如图1所示,第一边框1300设置在液晶面板1100的第二边缘1120、第三边缘1130和第四边缘1140,第一边框1300与第三边缘1130对应的部分和第一边框1300与第四边缘1140对应的部分分别安装在底框1200的两端以形成矩形框架,液晶面板1100设置在矩形框架之中。例如,在一些示例中,如图3A所示,液晶面板的第三边缘1130在垂直于液晶面板1100的板面S的X方向上与第一框体1310和第二框体1320之间可以存在间隔。同样的,液晶面板1100的第二边缘1120及第四边缘1140在垂直于液晶面板1100的板面S的X方向上与第一框体1310和第二框体1320之间也可以存在间隔。如此,液晶面板1100与第一边框1300之间可活动设置,第一边框1300与液晶面板1100之间存在可活动的空间,从而可减小液晶面板1100受到外力的作用,避免液晶面板1100被挤压而产生变形,进而可降低液晶面板1100发生暗态漏光现象的几率。
例如,第一边框1300还可以设置在液晶面板1100的第二边缘1120、第三边缘1130及第四边缘1140的其中一个,或者设置在液晶面板1100的第二边缘1120、第三边缘1130及第四边缘1140的其中任意两个的组合,或者同时设置在液晶面板1100的第二边缘1120、第三边缘1130及第四边缘1140,本公开实施例包括但不限于上述情形。
例如,在一些示例中,如图3A所示,第一框体1310与液晶面板1100的正面相对,第二框体1320与液晶面板1100的反面相对。这里,正面是指液晶面板1100的显示画面的表面,反面是指液晶面板1100的与正面相反的表面。液晶面板1100的第三边缘1130位于第一框体1310、第二框体1320及第三框体1330围绕的开口区域中。第一框体1310与液晶面板1100在垂直于液晶面板1100的板面S的X方向上相对间隔设置并具有第一间隔d1,第二框体1320与液晶面板1100在垂直于液晶面板1100的板面S的X方向上相对间隔设置并具有第二间隔d2。第一间隔d1可以包括空气和第一缓冲层1340。第二间隔d2包括空气和第二缓冲层1350。由于第一框体1310及第二框体1320与液晶面板1100之间不直接接触并保持相互独立,使得第一边框1300与液晶面板1100之间存在可活动的空间,从而可减小液晶面板1100受到外力的作用,避免液晶面板1100被挤压而产生变形,进而可降低液晶面板1100发生暗态漏光现象的几率。
需要说明的是,液晶面板1100的第三边缘1130与第二边缘1120及第四边缘1140处的结构可以相同。另外,当该液晶模组在使用时,液晶面板1100可与底框1200的第一底板1210接触,以使得底框1200可起到支撑该液晶面板1100的作用,从而可保证第一框体1310及第二框体1320与液晶面板110之间不直接接触并保持相互独立。下面,以第三边缘1130处沿A2-B2的截面示意图为例对液晶模组的详细结构进行描述。
例如,第一边框1300在垂直于液晶面板1100的板面S的X方向上的截图,例如呈“U”字型。第一框体1310、第二框体1320及第三框体1330围绕的开口区域,例如为“U”字型开口区域。
例如,在一些示例中,第二间隔d2还可以包括空气和第二缓冲层1350的其中之一,第一间隔d1还可以包括空气和第一缓冲层1340的其中之一。本公开的实施例不以此为限。
例如,如图3A所示,第一缓冲层1340设置在第一框体1310面向液晶面板1100的表面上,第二缓冲层1350设置在第二框体1320面向液晶面板1100的表面上。第一缓冲层1340与液晶面板1100之间存在空气间隙,第二缓冲层1350与液晶面板1100之间存在空气间隙。第一缓冲层1340及第二缓冲层1350可以使液晶面板1100在被挤压的情况下不与第一框体1310和第二框体1320直接接触,从而减少液晶面板1100的受力,避免液晶面板1100被挤压而产生变形,进而可降低液晶面板1100发生暗态漏光现象的几率。另外,第一缓冲层1340和第二缓冲层1350还可在液晶面板1100与第一边框1300发生接触或碰撞时起到缓冲作用,从而可起到保护液晶面板1100的作用。
例如,在一些示例中,该液晶模组可以仅设置第一缓冲层1340及第二缓冲层1350的其中一个,本公开的实施例不以此为限。
例如,在一些示例中,如图3A所示,第一缓冲层1340被配置为在垂直于液晶面板1100的板面S的X方向上可弹性压缩,第一缓冲层1340的弹性模量大于30Mpa且小于100Mpa。第二缓冲层1350被配置为在垂直于液晶面板1100的板面的X方向上可弹性压缩,第二缓冲层1350的弹性模量大于30Mpa且小于100Mpa。由此,液晶面板1100在受到挤压的情况下,由于第一缓冲层1340及第二缓冲层1350的缓冲作用,可以受到较小的作用力,避免挤压变形,从而减少液晶面板1100产生暗态漏光的几率。
例如,在一些示例中,第一缓冲层1340及第二缓冲层1350还可以采用其他弹性模量大于30Mpa且小于100Mpa的可压缩材料,例如软质塑料等,分别设置于第一间隔d1及第二间隔d2之间。本公开的实施例不以此为限。
例如,在一些示例中,第一缓冲层1340可以包括第一可压缩泡棉或第一单面胶带,第二缓冲层1350可以包括第二可压缩泡棉或第二单面胶带,第一单面胶带粘贴于第一框体1310面对液晶面板1100的表面,第二单面胶带粘贴于第二框体1320面对液晶面板1100的表面。或者,将第一可压缩泡棉设置在第一框体1310面对液晶面板1100的表面,将第二可压缩泡棉设置在第二框体1320面对液晶面板1100的表面。此时,第一单面胶带的粘性面位于第一单面胶带远离液晶面板1100的一侧,第二单面胶带的粘性面位于第二单面胶带远离液晶面板1100的一侧。如此,可以使得第一框体1310与第二框体1320相互独立,液晶面板1100在受到挤压的情况下,可以减少液晶面板1100的受力,降低液晶面板1100产生暗态漏光的几率。
例如,在一些示例中,如图3B所示,第一框体1310与液晶面板1100之间的第一间隔d1还可以包括空气。第二框体1320与液晶面板1100之间的第二间隔d2还可以包括空气。由于第一边框1300与液晶面板1100之间存在空气间隙,使得第一边框1300与液晶面板1100相互独立,从而第一边框1300与液晶面板1100存在可活动的空间,因此可减小液晶面板1100受到外力的作用,避免被挤压而产生变形,进而可降低液晶面板1100 发生暗态漏光现象的几率。
例如,在一些示例中,液晶面板1100的第二边缘1120、第三边缘1130和第四边缘1140的至少之一与第三框体1330之间存在第五间隔。也就是说,当第一边框1300设置在第二边缘1120、第三边缘1130和第四边缘1140的至少之一时,第一边框1300的第三框体1330与液晶面板1100设置有第一边框的边缘(例如,第二边缘1120、第三边缘1130或第四边缘1140)存在上述的第五间隔;当第一边框1300设置在第二边缘1120、第三边缘1130和第四边缘1140的至少之二时,第一边框1300的第三框体1330与液晶面板1100设置有第一边框1300的两个边缘或三个边缘均存在上述的第五间隔。如图3A及图3B所示,第三框体1330与液晶面板1100在垂直于第三框体1330并平行于液晶面板1100的板面S的X方向上具有第五间隔d3。第五间隔d3可以为空气间隙。液晶面板1100的第二边缘1120、第三边缘1130及第四边缘1140与第三框体1330之间存在空气间隙,使得液晶面板1100在垂直于第三框体1330的方向上不与第三框体1330直接接触。此时,液晶面板1100可与第三框体1330保持相互独立,液晶面板1100的边缘在垂直于第三框体1330的方向上存在可活动的空间,从而可减小液晶面板1100受到外力的作用,避免被挤压而产生变形,进而可降低液晶面板1100发生暗态漏光现象的几率。
例如,在一些示例中,第一边框1300,例如,采用一体成型方式制造。当然,本公开实施例包括但不限于此,第一边框1300也可用采用其他制造工艺获得如图3A及图3B所示的结构。
例如,在一些示例中,如图3A及图3B所示,第一间隔d1在垂直于液晶面板1100的板面S的X方向上的尺寸与液晶面板1100的厚度H之比的范围为10%-20%,例如,第一间隔d1在垂直于液晶面板1100的板面S的X方向上的尺寸与液晶面板1100的厚度H之比可为15%。第二间隔d2在垂直于液晶面板1100的板面S的X方向上的尺寸与液晶面板1100的厚度H之比的范围也为10%-20%,例如,第二间隔d2在垂直于液晶面板1100的板面S的X方向上的尺寸与液晶面板1100的厚度H之比为15%。
需要说明的是,在本公开实施例中,液晶面板1100的厚度H为液晶面板1100沿垂直于液晶面板1100的板面S的X方向上的尺寸。
例如,第一间隔d1在垂直于液晶面板1100的板面S的X方向上的尺寸范围为0.2mm至0.3mm,第二间隔d2在垂直于液晶面板1100的板面S的X方向上的尺寸范围为0.2mm至0.3mm。第一间隔d1及第二间隔d2的尺寸范围在0.2mm至0.3mm之内可以减少外力对液晶面板1100的作用,使得液晶面板1100的在第一边框1300内不跳出。
例如,如图3A及图3B所示,以65寸液晶面板1100为例,液晶面板1100的显示区到边缘的距离可以为6mm,第一框体1310在垂直于第三框体1330的方向上的尺寸范围即第一框体1310的宽度d4的尺寸范围可以为2mm至3mm,第二框体1320在垂直于第三框体1330的方向上的尺寸范围即第二框体1320的宽度d5的尺寸范围可以为2mm至3mm。第一框体1310与第二框体1320上述尺寸范围的选择可以保证液晶面板1100的边缘在第一框体1310、第二框体1320及第三框体1330围绕的开口区域中不跳出。此 外,第一框体1310的宽度d4及第二框体1320的宽度d5的尺寸范围与液晶面板1100的显示区到边缘的距离有关,第一框体1310和第二框体1320的宽度的尺寸需小于液晶面板1100的显示区(例如液晶面板1100的正常显示画面的区域)到边缘的距离,并且保证液晶面板1100在第一边框1300内不跳出即可。
例如,在一些示例中,第一框体1310与第二框体1320在垂直于第三框体1330的方向上的宽度的尺寸相等,即第一框体1310的宽度d4及第二框体1320的宽度d5的尺寸相等。宽度的尺寸相等包括尺寸基本相等的情况。第一框体1310与第二框体1320可以保证液晶面板1100在第一边框1300中不跳出。
例如,在一些示例中,第一框体1310与第二框体1320在垂直于第三框体1330的方向上的宽度的尺寸可以不相等,只要保证晶面板在第一边框1300中不跳出即可,本公开的实施例不以此为限。
在一些示例中,如图3A及图3B所示,该液晶模组还包括第二边框1400。第二边框1400在垂直于液晶面板1100的板面S的X方向上与第二框体1320远离液晶面板1100的表面连接。例如,上述连接的方式可为螺栓连接、铰接、卡固连接、粘接等。
在一些示例中,如图3A及图3B所示,第二边框1400包括第四框体1410、第一粘结层1430以及第五框体1420。第五框体1420与第四框体1410远离液晶面板1100中心的一端相连,第二框体1320远离液晶面板1100的表面通过第一粘结层1430与第四框体1410面向第二框体1320的表面连接。例如,第二边框1400也可为第一边框1300和底框1200构成的矩形框架对应的矩形边框。
在一些示例中,如图3A及图3B所示,第三框体1330远离液晶面板1100的中心的外侧面与第五框体1420远离液晶面板1100的中心的外侧面平齐,使得第一边框1300与第二边框1400组成的结构整齐美观。第二边框1400与第一边框1300通过第一粘结层1430连接。例如,第一粘结层1430可以选择双面胶带。第一粘结层1430设置在第四框体1410面向第二框体1320的表面与第二框体1320远离液晶面板1100的表面之间。在液晶模组安装的过程中,可以通过第二边框1400安装,由于液晶面板1100的边缘设置在第一边框1300中,所以,安装过程中避免对液晶面板产生作用力。
例如,在一些示例中,如图3A及图3B所示,液晶模组1000还包括背光组件1500。背光组件1500设置在第二边框1400的第四框体1410远离液晶面板1100的一侧,并与第二边框1400连接。背光组件1500包括背板1510、设置在背板1510上的导光板1520、导光板1520上的光学膜片1530。背板1510包括端部1512及板状主体1511,端部1512与板状主体1511垂直。背板1510的端部1512的端面1513与第五框体1420相对,并将端部1512连接到第四框体1410上。上述的连接的方式,例如,可以为螺栓连接、铰接、卡固连接、粘接等。背光组件1500将光信号输入液晶面板1100,保证液晶面板1100的对画面的正常显示。图2B为图1所示液晶面板在竖直状态下沿A2-B2的截面示意图。需要说明的是,水平状态是指液晶面板1100的板面S与地面平行的状态,竖直状态指液晶面板1100的板面S与地面垂直的状态,并且液晶面板1100的第一边缘1110位于下方。
例如,在一些示例中,第二边框1400的第四框体1410与底框1200的第二侧板1230一体成型。
例如,在一些示例中,如图2A所示,第一侧板1220与第一底板1210的端部连接。第一侧板1220与第一底板1210的连接方式,例如可以采用螺栓连接、铰接、卡固连接、粘接等。第一侧板1220与液晶面板1100的正面相对并存在间隙,第二侧板1230与液晶面板1100的反面相对并存在间隙,第一底板1210与液晶面板1100的第一边缘1110相对并存在间隙。液晶面板1100的第一边缘1110位于第一底板1210、第一侧板1220及第二侧板1230围绕的开口区域中。液晶面板1100的第一边缘1110在底框1200中可活动设置,减少液晶面板1100的受力及暗态漏光发生的几率。
如图2A及图2B所示,第一侧板1220与液晶面板1100在垂直液晶面板1100的板面S的X方向上存在第三间隔c1,第二侧板1230与液晶面板1100在垂直液晶面板1100的板面S的X方向上存在第四间隔c2。第一底板1210与液晶面板1100之间存在第六间隔c3。第三间隔c1及第四间隔c2使得液晶面板1100不与底框1200直接接触,减少液晶面板1100受到外力作用,避免液晶面板1100受挤压变形,从而降低液晶面板1100发生暗态漏光的几率。
例如,在一些示例中,第六间隔c3在垂直于液晶面板1100的板面S的X方向上的尺寸范围大约为0.05mm至0.15mm之间,例如为0.1mm。这里“约”表示数值的变化范围在±5%之间。
如图2A及图2B所示,第三间隔c1可以包括空气和第三缓冲层1240,第四间隔c2包括空气和第四缓冲层1250。第三间隔c1中设置第三缓冲层1240,第四间隔c2中设置第四缓冲层1250。液晶模组处于水平状态时,如图2A所示,第三缓冲层1240与液晶面板1100之间不存在空气间隙,第四缓冲层1250与液晶面板1100之间存在空气间隙。液晶面板1100与第三缓冲层1240接触,避免液晶面板1100与第二侧板1230直接接触,从而减少液晶面板1100的受力。
例如,在一些示例中,第三间隔c1中的第三缓冲层1240与第四间隔c2中的第四缓冲层1250可不同时设置。本公开的实施例不以此为限。
如图2B所示,当液晶模组处于竖直状态时,液晶面板1100与第一底板1210之间的第六间隔c3不存在,而第三缓冲层1240与液晶面板1100之间存在较小的空气间隙,例如空气间隙的数值小于0.1mm。第一底板1210抵顶液晶面板1100从而保证液晶面板1100在第一边框1300及底框1200之中稳定设置并且不会跳出。
例如,在一些示例中,第三缓冲层1240被配置为在垂直于液晶面板1100的板面的X方向上可弹性压缩,第三缓冲层1240的弹性模量大于30Mpa且小于100Mpa。第四缓冲层1250被配置为在垂直于液晶面板1100的板面的X方向上可弹性压缩,第四缓冲层1250的弹性模量大于30Mpa且小于100Mpa。上述对第三缓冲层1240及第四缓冲层1250的设计,可以减少对液晶面板1100的作用力,从而避免液晶面板1100的暗态漏光的发生。
例如,在一些示例中,第三缓冲层1240可以包括第三可压缩泡棉或第三单面胶带,第四缓冲层1250可以包括第四可压缩泡棉或第四单面胶带。第三单面胶带的粘性面位于第三单面胶带远离液晶面板1100的一侧,第四单面胶带的粘性面位于第四单面胶带远离液晶面板1100的一侧。第三单面胶带粘贴在第一侧板1220的与液晶面板1100的正面相对的表面上。第四单面胶带的粘贴在第二侧板1230的与液晶面板1100的反面相对的表面上。或者,将第三可压缩泡棉设置在第一侧板1220的与液晶面板1100的正面相对的表面上,将第四可压缩泡棉设置在第二侧板1230的与液晶面板1100的反面相对的表面上。基于上述方案,液晶面板1100的正面与第三单面胶带之间存在间隙,液晶面板1100的反面与第四的单面胶带之间存在间隙,使得液晶面板1100不会与第一侧板1220及第二侧板1230直接发生碰撞。此外,压缩泡棉或单面胶带的弹性模量均大于30Mpa且小于100Mpa,液晶面板1100与压缩泡棉或单面胶带直接接触时,可以起到缓冲的作用,减少液晶面板1100的受力。所以,上述设计方案可以减少液晶面板1100的受力,避免液晶面板1100发生暗态漏光现象。
例如,在一些示例中,第三缓冲层1240及第四缓冲层1250还可以采用其他弹性模量大于30Mpa且小于100Mpa的可压缩材料,例如软质塑料等,设置于第三间隔c1及第四间隔c2之间。本公开的实施例不以此为限。
如图2A及图2B所示,背光组件1500设置在第二侧板1230远离液晶面板1100的一侧,背光组件1500的端部1512与第二侧板1230连接。连接的方式,例如,可以为螺栓连接、铰接、卡固连接、粘接等。背光组件1500的端部1512面向导光板1520的表面上安装灯条1600产生光信号。
具体的,第一边框1300的第一框体1310与底框1200的第一侧边连接。连接方式可以采用,例如卡固连接、粘接等。
图4为本公开又一实施例提供的图1所示液晶模组沿A2-B2的截面示意图。如图4所示,第二边框1400还包括设于第四框体1410面向第二框体1320的表面上的第一凸起部1440。第一凸起部1440远离第四框体1410的端面与第二框体1320相对,并且第一凸起部1440在液晶面板1100的板面所在的平面上的正投影与第二框体1320在液晶面板1100的板面S所在的平面上的正投影交叠。第一凸起部1440远离液晶面板1100的中心的外侧面可以与第五框体1420远离液晶面板110的中心的外侧面平齐,以使得第二边框1400的结构整齐美观。第一凸起部1440靠近第二框体1320的端面与第一粘结层1430靠近第二框体1320的表面基本平齐,第一凸起部1440位于第一粘结层1430远离液晶面板1100的中心的外侧。此时,第一凸起部1440和第二框体1320可以容纳第一粘结层1430,例如容纳胶带等,提供第二边框1400对第一边框1300的支撑作用。
需要说明的是,上述的“基本平齐”是指第一凸起部1440与第一粘结层1430在垂直于液晶面板的板面X方向上的高度差不大于0.1mm。第一凸起部1440可以容纳第一粘结层1430,例如容纳胶带等,提供第二边框1400对第一边框1300的支撑作用。
例如,在一些示例中,第一凸起部1440的外侧面还可以不与第五框体1420的外侧 面平齐。本公开的实施例不以此为限。
例如,在一些示例中,如图5所示,第五间隔d3包括空气和第五缓冲层1360。第五缓冲层1360设置在第三框体1330面向液晶面板1100的表面上。第五缓冲层1360与液晶面板1100之间存在间隙。第五缓冲层1360可以使液晶面板1100在被挤压的情况下不与第三框体1330直接接触,从而减少液晶面板1100的受力。
例如,在一些示例中,第五间隔d3可以包括空气和第五缓冲层1360的其中之一。本公开的实施例不以此为限。
例如,在一些示例中,可以设置第一缓冲层1340、第二缓冲层1350及第五缓冲层1360中的任意两个的组合,本公开的实施例不以此为限。
例如,在一些示例中,如图5所示,第五缓冲层1360被配置为在垂直于液晶面板1100的板面的X方向上可弹性压缩,第五缓冲层1360的弹性模量大于30Mpa且小于100Mpa。上述对第一缓冲层1340、第二缓冲层1350及第五缓冲层1360的设计,可以减少对液晶面板1100的作用力,从而避免液晶面板1100的暗态漏光的发生。
例如,在一些示例中,第五缓冲层1360包括第五可压缩泡棉或第五单面胶带。第五单面胶带粘贴于第三框体1330面向液晶面板1100的表面,或者第五可压缩泡棉设置在第三框体1330面向液晶面板1100的表面。此外,压缩泡棉或单面胶带的弹性模量均大于30Mpa且小于100Mpa,液晶面板1100与压缩泡棉或单面胶带直接接触时,可以起到缓冲的作用,减少液晶面板1100的受力。所以,上述设计方案可以减少液晶面板1100的受力,避免液晶面板1100发生暗态漏光现象。
例如,在一些示例中,第五缓冲层1360还可以采用其他弹性模量大于30Mpa且小于100Mpa的可压缩材料,例如软质塑料等,设置于第五间隔d3之间。本公开的实施例不以此为限。
在本公开的一实施例提供的液晶模组中,如图6所示,液晶模组1000的第二边框1400的第一凸起部1440与图5所示的液晶模组1000中的第一凸起部1440的位置不同。图6所示的液晶模组1000的第一凸起部1440位于第一粘结层1430靠近液晶面板1100的中心的内侧。第一凸起部1440与第一粘结层1430具有基本平齐的表面。
在本公开的一实施例提供的液晶模组中,如图7所示,第一凸起部1440的面向第二框体1320的表面与第二框体1320靠近液晶面板1100的表面相对设置。即,第一凸起部1440抵顶第二框体1320。图7所示的第一凸起部1440的表面高于第一粘结层1430的表面。第一凸起部1440可以容纳第一粘结层1430,例如容纳胶带等,提供第二边框1400对第一边框1300的支撑作用。
例如,在一些示例中,如图8所示,第二边框1400还包括第六框体1450。第六框体1450自第五框体1420向靠近第一边框1300的方向延伸,也即沿着垂直于液晶面板1100的板面S的X方向延伸。第六框体1450与第五框体1420一体成型。第六框体1450与第三框体1330在垂直于液晶面板1100的板面S的X方向上平行。第六框体1450面向第三框体1330的表面与第三框体1330远离液晶面板1100的表面相对。第六框体1450的 端面与第一框体1310的远离液晶面板1100的表面不对齐。第二边框1400可以为第一边框1300提供支撑。
例如,在一些示例中,第六框体1450的端面与第一框体1310的远离液晶面板1100的表面也可以采用平齐的方式,本公开的实施例不以此为限。
例如,在一些示例中,第二边框1400的第四框体1410、第五框体1420及第六框体1450通过一体成型方式制造。第四框体1410、第五框体1420及第六框体1450也可用采用其他制造工艺获得如图8所示的结构,本公开的实施例不以此为限。
在本公开的一实施例提供的液晶模组中,如图9所示,第六框体1450面向第三框体1330的表面通过第二粘结层1460与第三框体1330面向第六框体1450的表面连接。例如,第一粘结层1430可以选择双面胶带。通过第二粘结层1460将第六框体1450固定到第三框体1330上,提高第一框体1310与第二框体1320之间的稳定支撑。
例如,在一些示例中,如图1所示,液晶面板1100的第一边缘1110设置有绑定区1150,绑定区1150被配置为与电路板或芯片绑定。
图10为根据本公开一实施例提供的一种液晶模组的底框的局部示意图。如图10所示,底框1200的第一底板1210上设置有开口1215,柔性线路板(Flexible Printed Circuit,FPC)可通过该开口1215与液晶面板1100的第一边缘1110上的绑定区1150相连。
例如,在一些示例中,第一边框1300的材料可以包括聚苯乙烯系塑料、聚乙烯、聚碳酸酯、丙烯腈-丁二烯-苯乙烯共聚物等聚合材料,此外,第一边框1300的表面进行一些表面处理工艺,使得第一边框1300的外观和颜色看起来跟液晶面板黑色一样,使得液晶模组的外观更加美观。
本公开的至少一实施例提供一种显示装置,包括上述实施例中所述的液晶模组。
本公开的实施例提供的液晶模组及显示装置,将液晶面板的第一边缘设置在底框中,将液晶面板的第二边缘、第三边缘及第四边缘的至少之一设置在第一边框中,由于液晶模组的液晶面板可活动地设置在第一边框的开口区域中,第一边框与液晶面板之间设置可活动的空间,因此减小液晶面板受到外力的作用,避免被挤压而产生变形,进而可降低液晶面板发生暗态漏光现象的几率。
在一些示例中,显示装置为电视。电视例如为液晶电视等。本公开的实施例不以此为限。该显示装置也可为电脑、笔记本电脑、平板电脑等其他具有显示功能的电子装置。有以下几点需要说明:
(1)本公开实施例附图只涉及到与本公开实施例涉及到的结构,其他结构可参考通常设计。
(2)在不冲突的情况下,本公开的实施例及实施例中的特征可以相互组合以得到新的实施例。
以上,仅为本公开的具体实施方式,但本公开的保护范围并不局限于此,任何熟悉本技术领域的技术人员在本公开揭露的技术范围内,可轻易想到变化或替换,都应涵盖在本公开的保护范围之内。因此,本公开的保护范围应以权利要求的保护范围为准。

Claims (20)

  1. 一种液晶模组,包括:
    液晶面板,包括板面、第一边缘、与所述第一边缘相对的第二边缘、连接所述第一边缘和所述第二边缘且相对的第三边缘以及第四边缘;
    底框,包括底板、第一侧板及第二侧板,其中,所述第一侧板和所述第二侧板相对间隔设置且分别设置在所述底板的两个相对的边缘,所述液晶面板的第一边缘位于所述底板、所述第一侧板以及所述第二侧板围绕的开口区域中;以及
    第一边框,设置在所述液晶面板的第二边缘、第三边缘以及第四边缘的至少之一,其中,所述第一边框包括:
    第一框体,
    与所述第一框体平行的第二框体,以及
    第三框体,其中,所述第三框体连接所述第一框体远离所述液晶面板的中心的一端和所述第二框体远离所述液晶面板的中心的一端,所述液晶面板的第二边缘、第三边缘以及第四边缘的至少之一位于所述第一框体、所述第二框体和所述第三框体围绕的开口区域中,并且在垂直于所述液晶面板的板面的方向上,所述第一边框与所述液晶面板之间可活动设置。
  2. 根据权利要求1所述的液晶模组,其中,在垂直于所述液晶面板的板面的方向上,所述第一框体与所述液晶面板相对间隔设置并具有第一间隔,
    在垂直于所述液晶面板的板面的方向上,所述第二框体与所述液晶面板相对间隔设置并具有第二间隔,
    所述第一间隔包括空气和第一缓冲层的至少之一,所述第二间隔包括空气和第二缓冲层的至少之一。
  3. 根据权利要求2所述的液晶模组,其中,所述第一缓冲层被配置为在垂直于所述液晶面板的板面的方向上可弹性压缩,所述第一缓冲层的弹性模量大于30Mpa且小于100Mpa;
    所述第二缓冲层被配置为在垂直于所述液晶面板的板面的方向上可弹性压缩,所述第二缓冲层的弹性模量大于30Mpa且小于100Mpa。
  4. 根据权利要求2或3所述的液晶模组,其中,所述第一缓冲层包括第一可压缩泡棉或第一单面胶带,
    所述第二缓冲层包括第二可压缩泡棉或第二单面胶带,
    所述第一单面胶带的粘性面位于所述第一单面胶带远离所述液晶面板的一侧,所述第二单面胶带的粘性面位于所述第二单面胶带远离所述液晶面板的一侧。
  5. 根据权利要求2-4任一项所述的液晶模组,其中,所述第一间隔在垂直于所述液晶面板的板面的方向上的尺寸与所述液晶面板的厚度之比的范围为10%-20%,所述 第二间隔在垂直于所述液晶面板的板面的方向上的尺寸与所述液晶面板的厚度之比的范围为10%-20%。
  6. 根据权利要求1-5任一项所述的液晶模组,其中,所述第一边框设置在所述液晶面板的第二边缘、第三边缘以及第四边缘,所述第一边框与所述第三边缘对应的部分和所述第一边框与所述第四边缘对应的部分分别安装在所述底框的两端以形成矩形框架,所述液晶面板设置在所述矩形框架之中。
  7. 根据权利要求1-6任一项所述的液晶模组,其中,在垂直于所述液晶面板的板面的方向上,所述第一侧板与所述液晶面板相对间隔设置并具有第三间隔,
    在垂直于所述液晶面板的板面的方向上,所述第二侧板与所述液晶面板相对间隔设置并具有第四间隔,
    所述第三间隔包括空气和第三缓冲层的至少之一,所述第四间隔包括空气和第四缓冲层的至少之一。
  8. 根据权利要求7所述的液晶模组,其中,所述第三缓冲层被配置为在垂直于所述液晶面板的板面的方向可弹性压缩,所述第三缓冲层的弹性模量大于30Mpa且小于100Mpa;
    所述第四缓冲层被配置为在垂直于所述液晶面板的板面的方向可弹性压缩,所述第四缓冲层的弹性模量大于30Mpa且小于100Mpa。
  9. 根据权利要求7或8所述的液晶模组,其中,所述第三缓冲层包括第三可压缩泡棉或第三单面胶带,
    所述第四缓冲层包括第四可压缩泡棉或第四单面胶带,
    所述第三单面胶带的粘性面位于所述第三单面胶带远离所述液晶面板的一侧,所述第四单面胶带的粘性面位于所述第四单面胶带远离所述液晶面板的一侧。
  10. 根据权利要求1-9任一项所述的液晶模组,其中,所述第一框体在垂直于所述第三框体的方向上的尺寸范围为2mm至3mm,
    所述第二框体在垂直于所述第三框体的方向上的尺寸范围为2mm至3mm。
  11. 根据权利要求10所述的液晶模组,其中,所述第一框体与所述第二框体在垂直于所述第三框体方向上的尺寸相等。
  12. 根据权利要求1-11任一项所述的液晶模组,其中,所述液晶面板的第二边缘、第三边缘以及第四边缘的至少之一与所述第三框体之间存在第五间隔,所述第五间隔包括空气和第五缓冲层的至少之一。
  13. 根据权利要求12所述的液晶模组,其中,所述第五缓冲层被配置为在垂直于所述液晶面板的板面的方向可弹性压缩,所述第五缓冲层的弹性模量大于30Mpa且小于100Mpa。
  14. 根据权利要求1-13任一项所述的液晶模组,其中,所述液晶面板的第一边缘设置有绑定区,所述绑定区被配置为与电路板或芯片绑定。
  15. 根据权利要求1-14任一项所述的液晶模组,还包括:
    第二边框,在垂直于所述液晶面板的板面的方向上与所述第二框体远离所述液晶面板的表面连接;
    其中,所述第二边框包括:
    第四框体;
    第一粘结层,设置在所述第四框体面向所述第二框体的表面上;以及
    与所述第四框体远离所述液晶面板的中心的一端相连的第五框体,其中,连接所述第二框体远离所述液晶面板的表面通过所述第一粘结层与所述第四框体面向所述第二框体的表面连接。
  16. 根据权利要求15所述的液晶模组,其中,所述第三框体远离所述液晶面板的中心的外侧面与所述第五框体远离所述液晶面板的中心的外侧面平齐,所述第二边框还包括设于所述第四框体面向所述第二框体的表面上的第一凸起部,
    所述第一凸起部在所述液晶面板的板面所在的平面上的正投影与所述第二框体在所述液晶面板的板面所在的平面上的正投影交叠,
    所述第一凸起部靠近所述第二框体的端面与所述第一粘结层靠近所述第二框体的表面基本平齐,
    所述第一凸起部位于所述第一粘结层远离所述液晶面板的中心的外侧。
  17. 根据权利要求15或16所述的液晶模组,其中,所述第二边框还包括第六框体,
    所述第六框体自所述第五框体向靠近所述第一边框的方向延伸,
    所述第六框体与所述第三框体在垂直于液晶面板的板面的方向上平行,
    所述第六框体面向所述第三框体的表面通过第二粘结层与所述第三框体面向所述第六框体的表面连接。
  18. 根据权利要求15-17任一所述的液晶模组,还包括:
    背光组件,设置在所述第二侧板远离所述液晶面板的一侧和所述第二边框的所述第四框体远离所述液晶面板一侧,且具有与所述第五框体相对的端面,
    其中,所述背光组件包括导光板和背板,所述导光板平行于所述液晶面板,所述背板设置在所述导光板远离所述液晶面板一侧,所述背板包括板状主体以及端部,所述板状主体与所述液晶面板的板面平行,所述端部垂直于所述板状主体且与所述导光板的端面相对。
  19. 一种显示装置,包括权利要求1-18任一项所述的液晶模组。
  20. 根据权利要求19所述的显示装置,其中,所述显示装置为电视。
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