WO2013071602A1 - 平板显示装置的背框以及背光系统 - Google Patents
平板显示装置的背框以及背光系统 Download PDFInfo
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- WO2013071602A1 WO2013071602A1 PCT/CN2011/082787 CN2011082787W WO2013071602A1 WO 2013071602 A1 WO2013071602 A1 WO 2013071602A1 CN 2011082787 W CN2011082787 W CN 2011082787W WO 2013071602 A1 WO2013071602 A1 WO 2013071602A1
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- WIPO (PCT)
- Prior art keywords
- assembling piece
- back frame
- primary assembling
- primary
- splicing
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Classifications
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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
- G02F1/133382—Heating or cooling of liquid crystal cells other than for activation, e.g. circuits or arrangements for temperature control, stabilisation or uniform distribution over the cell
- G02F1/133385—Heating or cooling of liquid crystal cells other than for activation, e.g. circuits or arrangements for temperature control, stabilisation or uniform distribution over the cell with cooling means, e.g. fans
-
- 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
- G02F1/1336—Illuminating devices
- G02F1/133602—Direct backlight
- G02F1/133608—Direct backlight including particular frames or supporting means
-
- H—ELECTRICITY
- H05—ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
- H05K—PRINTED CIRCUITS; CASINGS OR CONSTRUCTIONAL DETAILS OF ELECTRIC APPARATUS; MANUFACTURE OF ASSEMBLAGES OF ELECTRICAL COMPONENTS
- H05K7/00—Constructional details common to different types of electric apparatus
- H05K7/20—Modifications to facilitate cooling, ventilating, or heating
- H05K7/20954—Modifications to facilitate cooling, ventilating, or heating for display panels
- H05K7/20963—Heat transfer by conduction from internal heat source to heat radiating structure
-
- 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
- G02F1/133308—Support structures for LCD panels, e.g. frames or bezels
- G02F1/133328—Segmented frames
Definitions
- the present invention relates to the field of display technologies, and in particular, to a back frame of a flat panel display device and a backlight system.
- the liquid crystal display device of the prior art includes a front frame, a panel, and a backlight module.
- the backlight module includes a back frame, a reflective sheet, a light guide plate, a light group, and the like.
- the size of the liquid crystal panel includes 31.5, 42, 46, 48 or 55 inches, and it is necessary to set different back frame molds according to liquid crystal panels of different sizes.
- FIG. 1 is a schematic structural diagram of a back frame of a liquid crystal display device in the prior art.
- the back frame 10 adopts an integral back frame, and the integral back frame 10 is usually produced by metal stamping or plastic injection.
- the integral back frame 10 needs to consume too much material. The material cost is high.
- the large-sized back frame 10 needs to use a large punching device, and the corresponding frame of the back frame 10 has a large size, a complicated structure, and a high cost of the back frame mold. Therefore, the back frame of the prior art is costly.
- the technical problem to be solved by the present invention is to provide a flat panel display device
- the back frame and the backlight system can save the material of the back frame, thereby reducing the production cost of the flat panel display device.
- a back frame of a flat panel display device comprising at least two primary assembling pieces and at least one auxiliary assembling piece, wherein the at least two primary assembling pieces are spliced into a main frame of the back frame, and the auxiliary assembling piece is disposed in the main frame and
- the back frame further includes a bracket fixed on the primary assembling piece or the auxiliary assembling piece, and a heat dissipating fin set disposed on the bracket, the bracket is used for fixing the circuit board and is disposed on the circuit board and the heat dissipation fin group Establish a thermal connection.
- the circuit board is fixed on the first side of the bracket, and the heat dissipation fin group is fixed on the second side of the bracket opposite to the first side of the bracket.
- the heat dissipation fin set is detachably fixed to the bracket.
- the heat dissipation fin group and the bracket are integrally stamped, and the heat dissipation fin group extends from the bracket toward the direction away from the circuit board.
- the primary assembling piece comprises a first primary assembling piece and a second primary assembling piece, and one end of the first primary assembling piece is provided with at least two joint parts, and the structure of each joint part is adapted to the end of the corresponding second primary piece
- the first primary assembling piece is spliced with one end of the corresponding second primary assembling piece through a joint portion thereof.
- At least two splices are arranged at intervals along the length direction of the first main splice.
- the splicing portion is a recess provided on a surface of the first main splicing piece and adapted to an end of the second main splicing piece to receive one end of the second main splicing piece.
- the joint portion is a concave portion disposed on the surface of the first primary assembling piece, and the surface of the second primary assembling piece is provided with a protrusion corresponding to the surface, and the protrusion is embedded in the concave portion to splicing the first primary assembling piece and the second primary assembling piece.
- At one end of the second primary assembling piece at least two protrusions arranged along the length direction of the second primary assembling piece are disposed.
- a backlight system includes a light source, a light homogenizing mechanism, and a back frame; the back frame carries a light source and a light homogenizing mechanism, and the back frame is the back frame described above.
- the back frame and the backlight system form the back frame by splicing, so that the structure of the back frame is simple, and the material of the back frame is saved, and the production cost of the backlight display device can be reduced. Further, by using a bracket provided with a heat dissipation fin group to fix the circuit board, the heat dissipation efficiency of the circuit board can be improved.
- FIG. 1 is a schematic structural view of a back frame of a liquid crystal display device in the prior art
- FIG. 2 is a schematic structural view of a flat panel display device according to a first embodiment of the present invention
- FIG. 3 is a schematic structural view of a back frame of a flat panel display device according to a second embodiment of the present invention.
- FIG. 4 is a schematic structural view of a back frame of a flat panel display device according to a third embodiment of the present invention.
- FIG. 5 is a schematic structural view of a back frame of a flat panel display device according to a fourth embodiment of the present invention.
- FIG. 6 is a schematic structural view of a splicing manner in a flat panel display device according to a fifth embodiment of the present invention.
- FIG. 7 is a schematic view showing a diagonal arrangement of a first auxiliary assembling piece on a main frame in a flat panel display device according to a sixth embodiment of the present invention.
- FIG. 8 is a schematic diagram of a first auxiliary assembling piece and a second auxiliary assembling piece on a main frame in a flat panel display device according to a seventh embodiment of the present invention.
- FIG. 9 is a schematic structural view of a joint portion of a back frame of a flat panel display device according to an eighth embodiment of the present invention.
- Figure 10 is a schematic cross-sectional view of the splice portion shown in Figure 9;
- FIG. 11 is a schematic view showing a splicing manner of a splicing portion in a back frame of a flat panel display device according to a ninth embodiment of the present invention.
- FIG. 12 is a schematic view showing a splicing manner of a splicing portion in a back frame of a flat panel display device according to a tenth embodiment of the present invention
- FIG. 13 is a schematic view showing a splicing manner of a splicing portion in a back frame of a flat panel display device according to an eleventh embodiment of the present invention.
- FIG. 14 is a schematic structural view of a splicing portion of a back frame of a flat panel display device according to a twelfth embodiment of the present invention.
- FIG. 15 is a schematic structural view of a joint portion of a back frame of a flat panel display device according to a thirteenth embodiment of the present invention.
- Figure 16 is a flowchart of a method of manufacturing a back frame of a flat panel display device in accordance with a fourteenth embodiment of the present invention.
- FIG. 17 is a schematic structural diagram of a flat panel display device with a touch screen according to a fifteenth embodiment of the present invention.
- FIG. 18 is a schematic structural diagram of a stereoscopic display device according to a sixteenth embodiment of the present invention.
- Figure 19 is a schematic structural view of a plasma display device according to a seventeenth embodiment of the present invention.
- FIG. 20 is a partial perspective view of a back frame of a flat panel display device according to an eighteenth embodiment of the present invention.
- 21 is a side view of the bracket, the heat sink fin set, and the circuit board in the back frame shown in FIG. 20;
- FIG. 22 is a perspective view of the bracket and the heat sink fin set in the back frame shown in FIG. 20;
- FIG. 23 is a side view of a bracket, a heat sink fin set, and a circuit board in a back frame of a flat panel display device according to a nineteenth embodiment of the present invention.
- FIG. 2 is a schematic structural diagram of a flat panel display device according to a first embodiment of the present invention
- FIG. 3 is based on A schematic structural view of a first embodiment of a back frame of a flat panel display device according to a second embodiment of the present invention.
- the flat panel display device 20 of the present embodiment includes: a backlight system 21 and a display panel 22
- the backlight system 21 is disposed on the back of the display panel 22 and provides a light source for the display panel 22.
- the backlight system 21 includes a light source 25, a light homogenizing mechanism 24, and a back frame 23.
- the back frame 23 The light source 25 and the light homogenizing mechanism 24 are carried.
- the light homogenizing mechanism 24 is a light guide plate; when the backlight system 21 is of a direct type, the light homogenizing mechanism 24 is a diffusion plate.
- Back frame 23 The at least first primary splicing member and the second primary splicing member are included, and at least the first and second primary splicing members form a main frame 27 of the back frame 23.
- the first embodiment of the back frame 23 includes a first primary splice 261 and a second primary splice 262.
- One end of the first primary assembling piece 261 is spliced with one end of the second primary assembling piece 262, and the other end of the first primary assembling piece 261 is spliced with the other end of the second primary assembling piece 262 to form the back frame 23
- the main frame 27 .
- the first primary splicing piece 261 and the second primary splicing piece 262 are both aluminum or galvanized steel.
- the first primary assembling piece 261 and the second primary assembling piece 262 are L Shape.
- the second embodiment of the back frame 23 includes a first primary splicing member 281 and a second primary splicing member 282. And a third primary splicing piece 283.
- the three primary splices 281, 282, and 283 are joined to form the main frame 27 of the back frame 23.
- Three primary splices 281, 282 and 283 are aluminum or galvanized steel.
- the first primary assembling piece 281 is L-shaped, and the second and third assembling pieces 282, 283 are all straight.
- the back frame 23 may further include a secondary splicing member disposed in the splicing frame 27 and spliced thereto.
- the back frame 23 of the flat panel display device 20 of the present invention will be described in detail below with four primary splicing members and two secondary splicing members.
- FIG. 5 is a schematic structural view of a back frame of a flat panel display device according to a fourth embodiment of the present invention.
- the back frame 23 includes: a first primary assembling piece 231, a second primary assembling piece 232, a third primary assembling piece 233, a fourth primary assembling piece 234, and a first auxiliary assembling piece 235.
- First primary assembling piece 231 The second primary assembling piece 232, the third primary assembling piece 233 and the fourth primary assembling piece 234 are formed by the end-to-end stitching to form the rectangular main frame 27 of the back frame 23.
- first primary assembling piece 231 is spliced with one end of the second primary assembling piece 232, and the second primary assembling piece 232
- the other end of the third primary assembling piece 233 is spliced with one end of the third primary assembling piece 233
- the other end of the fourth primary assembling piece 234 is connected with the first primary assembling piece.
- the other end of the 231 is spliced to form a rectangular main frame 27 .
- the first primary assembling piece 231, the second primary assembling piece 232, the third primary assembling piece 233, and the fourth primary assembling piece 234 All are aluminum or galvanized steel.
- the first primary assembling piece 231, the second primary assembling piece 232, the third primary assembling piece 233, and the fourth primary assembling piece 234 All of them are straight strips.
- those skilled in the art can completely set the first primary assembling piece 231, the second primary assembling piece 232, the third primary assembling piece 233, and the fourth primary assembling piece 234 to L-shaped, or partially set to straight, the remaining settings are L-shaped.
- the first primary assembling piece 261 and the second primary assembling piece 262 are all set to an L shape;
- the first primary assembling piece 281 is set to an L shape, and the second and third primary assembling pieces 282 and 283 are set to a straight strip shape.
- the back frame 23 of the flat panel display device 20 is spliced and fixed by using a splicing connection.
- Figure 6 For example, one end of the first primary assembling piece 231 and one end of the second primary assembling piece 232 are spliced and connected, and one end of the second primary assembling piece 232 is spliced to the first primary assembling piece 231.
- One end of the second primary assembling piece 232 is spliced on one end of the first primary assembling piece 231 by screwing, fastening or welding.
- the first secondary assembling piece 235 and the second secondary assembling piece 236 are disposed on the main frame of the back frame 23 Inside.
- One end of the first auxiliary assembling piece 235 is spliced with the first primary assembling piece 231, and the other end of the first auxiliary assembling piece 235 is spliced with the third primary assembling piece 233, and the second auxiliary assembling piece 236 is 236.
- One end is spliced with the first primary assembling piece 231
- the other end of the second secondary assembling piece 236 is spliced with the third primary assembling piece 233
- the second primary assembling piece 232 and the fourth primary assembling piece 234 are 234.
- the first auxiliary assembling piece 235 and the second auxiliary assembling piece 236 are arranged in parallel.
- those skilled in the art provide at least one secondary splicing within the main frame 27, such as in the main frame 27 Only the first auxiliary splicing piece 235 is set inside.
- the two ends of the first auxiliary assembling piece 235 can be respectively associated with the first primary assembling piece 231, the second primary assembling piece 232, and the third primary assembling piece 233.
- at least two primary assembling pieces of the fourth primary assembling piece 234 are spliced, for example, the first auxiliary assembling piece 235 is diagonally disposed in the main frame 27, as shown in FIG.
- the second auxiliary assembling piece 236 The two ends of the first primary assembling piece 231, the second primary assembling piece 232, the third primary assembling piece 233 and the fourth primary assembling piece 234 may be respectively spliced.
- the first auxiliary splicing piece The two ends of the second auxiliary assembling piece 236 are respectively spliced with the adjacent first primary assembling piece 231 and the second primary assembling piece 232, and the two ends of the second auxiliary assembling piece 236 are respectively adjacent to the adjacent third primary assembling piece 233.
- the fourth main assembly piece 234 is spliced, as shown in Figure 8.
- the back frame 23 includes seven brackets 2371, 2372, 2373, 2374, 2375. , 2376 and 2377.
- the bracket 2371 is fixed on the fourth primary assembling piece 234, and the brackets 2372 and 2373 are respectively fixed on the first auxiliary assembling piece 235, and the bracket is respectively fixed.
- 2374 is fixed on the second auxiliary assembling piece 236, and the bracket 2375 is fixed on the second primary assembling piece 232, and the two ends of the brackets 2376 and 2377 are respectively fixed to the first auxiliary assembling piece 235 And the second auxiliary splicing piece 236.
- the bracket can be fixed to the first primary assembling piece 231, the second primary assembling piece 232, the third primary assembling piece 233, the fourth primary assembling piece 234, and the first auxiliary assembling piece.
- One or more of 235 and the second secondary splicing piece 236 can completely in the back frame 23 Set a different number of brackets, such as a bracket or more.
- the bracket can be detachably fixed to the first primary assembling piece 231, the second primary assembling piece 232, the third primary assembling piece 233, and the fourth primary assembling piece 234.
- One or more of the first auxiliary assembling piece 235 and the second auxiliary assembling piece 236 can be fixed to the first primary assembling piece 231, the second primary assembling piece 232, the third primary assembling piece 233, and the fourth primary assembling piece 234.
- a convex hull (not shown) is disposed on the upper frame, and the back frame 23 can fix the circuit board and the like through the convex hull.
- the first primary assembling piece 231 and the third primary assembling piece 233 The dimensions are the same, the shapes are the same, and they are stamped using the same mold.
- the second primary assembling piece 232, the fourth primary assembling piece 234, the first auxiliary assembling piece 235 and the second auxiliary assembling piece 236 The dimensions are the same, the shapes are the same, and the same mold is used for stamping to achieve mold sharing. Therefore, the back frame 23 of the present invention can be produced by stamping using two small-sized molds, compared to the back frame 10 of the prior art.
- the mold structure of the back frame 23 of the present invention is simple and small, thereby reducing the cost of the back frame 23 mold.
- the back frame 23 of the present invention is compared to the back frame 10 of the prior art.
- the overall back frame can greatly save materials to reduce the production cost of the flat panel display device 20.
- FIG. 9 is a schematic structural view of a joint portion of a back frame of a flat panel display device according to an eighth embodiment of the present invention.
- Figure 9 As shown in the embodiment, one end of the first primary assembling piece is provided with two joint portions, and the structure of the joint portion is matched with one end of the corresponding second main joint portion, so that the first primary assembling piece and the corresponding One end of the second primary assembling piece is spliced.
- one end of the first primary assembling piece 231 is provided with a joint portion 2311, 2312, a joint portion 2311, 2312 are arranged along the length direction of the first primary assembling piece 231, and the joint portions 2311, 2312 are the shape of the first primary assembling piece 231 and the second primary assembling piece 232.
- One end of the recess is adapted to receive one end of the second primary splicing member 232.
- the joint portions 2311 and 2312 are not penetrated through the first primary assembling piece 231.
- One end is opposite to the concave portions on both sides, the concave portion has a rectangular shape, and the second primary assembling member 232 has a straight strip shape.
- the second primary assembling piece 232 is placed on the concave portion of the joint portion 2312.
- the second primary splicing piece is then screwed, snapped or welded
- One end of the 232 is spliced and fixed on the splicing portion 2312.
- a protrusion is provided at a corresponding position on the surface of the second primary assembling piece 232, wherein the protrusion of the second primary assembling piece 232 is embedded in the first primary assembling piece.
- 231 corresponding positions of the recesses to splicing the first primary assembling piece 231 and the second primary assembling piece 232, as shown in FIG.
- the second primary assembling piece 232 At least one of the protrusions spaced along the length of the second primary assembling piece 232 may be provided on one end, such as two, three or four.
- the recess of the first primary assembling piece 231 is a recess of a multi-step structure
- the second primary assembling piece 232 The corresponding position is provided with a convex portion of a multi-step structure adapted to the concave portion, as shown in FIG.
- the bottom portion of the concave portion of the first primary assembling piece 231 is provided with a first through hole. 2313.
- the second main assembling piece 232 is provided with a second through hole 2321 corresponding to the joint portion 2311.
- the back frame 23 further includes a fixing member 240 and a fixing member 240. The first through hole 2313 and the second through hole 2321 are passed through to splicing the first primary assembling piece 231 and the second primary assembling piece 232.
- the splicing portion 2311 of the first primary assembling piece 231 is circular in shape.
- those skilled in the art can completely set the shape of the recess to other polygonal shapes such as a triangle.
- the splicing portions 2311, 2312 are such that one end of the second primary assembling piece 232 moves on the joint portions 2311, 2312.
- the through-out portion can be cut off, thereby adjusting the length of the second primary splicing member 232 as the main splicing member of the back frame.
- the other end of the first primary assembling piece 231 and the third primary assembling piece 233 Both ends are provided with two splice portions, the structure of which is the same as that of the splice portions 2311, 2312; and at both ends of the second main splice member 232 and the fourth main splice member 234
- the two ends correspond to different situations and are designed or not designed accordingly, such as:
- both ends of the second primary assembling piece 232 and the fourth primary assembling piece 234 may be of no design, that is, the ends are identical in structure to the other parts, and at this time, the different splices 2311 (2312) at one end of the first main assembling piece 231 are selected.
- the splicing is performed (the other end is also treated), if the width of the back frame 23 is changed correspondingly, the corresponding second primary splicing piece 232 and the fourth primary splicing piece 234 are respectively The length is also chosen accordingly.
- the second primary splicing member 232 and the fourth primary splicing member 234 are not 234.
- the cutting is performed, or the cut portion is shorter; if the splicing portion 2312 which is farther away from the end of the first primary assembling piece 231 is selected for splicing, then the second primary assembling piece 232 and the fourth primary assembling piece 234 are 234.
- the cutting is performed, and the cut portion is longer or shorter according to the distance from the end of the first main assembling piece 231 of the joint portion;
- the second case is similar to the first case described above, as shown in Fig. 11, except that the second primary assembling piece 232 and the fourth primary assembling piece are 234 is matched with the first primary assembling piece 231 and the third primary assembling piece 233 by different protrusions to realize the width variation of the back frame 23; likewise, if the first primary assembling piece is selected, the second primary assembling piece 231 is selected.
- the other splicing portions 2312 other than the first splicing portion 2311 at one end are spliced, the second main splicing piece 232 and the fourth main splicing piece 234 are added after splicing or splicing. Part of the cropping.
- the back frame 23 of the present invention The first primary assembling piece is provided with at least two splicing portions, and the number of the splicing portions is set according to the user's requirements.
- two splicing portions 2311 and 2312 are selected for description. Therefore, in the back frame 23
- only two sets of molds that is, the mold of the first primary assembling piece and the mold of the second primary assembling piece are disposed, and a plurality of joints are arranged on the first primary assembling piece to obtain the back frame 23 of various sizes. .
- the back frame 23 When, according to the back frame 23 The size of the joint is selected, and the second primary assembling piece is spliced on the joint portion of the first primary assembling piece through the jointing portion, and the other of the first primary assembling piece is located outside the stitching position of the second primary assembling piece.
- the splicing section is cut to obtain the back frame of the desired size twenty three .
- the back frame 23 of the flat panel display device of the present invention only needs to be provided with the mold of the first primary assembling piece and the second primary assembling piece 28, as compared with the prior art, which is provided with different back frame molds according to different sizes of the back frame 10.
- the mold realizes the mold sharing that meets the requirements of various sizes of products, and the mold structure is simple, which can reduce the cost of the back frame mold.
- the present invention also provides a mold for manufacturing a back frame of a flat panel display device, the mold of the back frame is provided with a main pattern of a main assembling piece for forming a back frame, and the main pattern is provided with at least two for forming one end of the main assembling piece. Sub-pattern of stitching.
- the main splicing piece is the first main splicing piece and the second main splicing piece, and corresponds to the main pattern;
- the splicing part is the splicing part of the first main splicing piece, corresponding to the above-mentioned sub-pattern, and details are not described herein again. .
- the present invention also provides a method of manufacturing a back frame of a flat panel display device, the method comprising the following steps:
- Step 501 At least a first and a second primary assembling piece are formed, wherein one end of the first primary assembling piece is provided with at least two joints, and the structure of each joint is matched with one end of the corresponding second primary assembling piece.
- Step 502 Select a joint portion of the at least two joint portions according to the size of the back frame to splicing with one end of the corresponding second primary assembling piece.
- a joint of at least two joints is selected according to the size of the back frame.
- the other splicing portions of the first primary splicing member located outside the splicing position of the second primary splicing member are cut off.
- the first primary assembling piece is the first primary assembling piece
- the second primary assembling piece is the second primary assembling piece, and details are not described herein again. .
- the flat panel display device 20 of the present invention further includes a touch screen 29, a touch screen 29 It is disposed on the light-emitting surface of the display panel 22 of the flat panel display device 20.
- the flat panel display device 20 includes a backlight system 21 and the above display panel 22, and a backlight system 21 It is disposed on the back of the display panel 22 and provides a light source for the display panel 22.
- the backlight system 21 includes a light source 25, a light homogenizing mechanism 24, and a back frame 23.
- the back frame 23 carries the light source 25 And a uniform light mechanism 24 .
- the light homogenizing mechanism 24 is a light guide plate; when the backlight system 21 is of a direct type, the light homogenizing mechanism 24 is a diffusion plate.
- Back frame 23 The at least first primary splicing member and the second primary splicing member are included, and at least the first and second primary splicing members form a main frame 27 of the back frame 23.
- the flat panel display device 20 of the present invention may be a liquid crystal display device or a liquid crystal television set.
- the present invention also provides a stereoscopic display device 30, as shown in Fig. 18, the stereoscopic display device 30 includes a liquid crystal lens grating 31. , backlight system 32 and display panel 33.
- the liquid crystal lens grating 31 is disposed on the light emitting surface of the display panel 33.
- the backlight system 32 is a backlight system of the above embodiments, such as a backlight system.
- 32 includes the back frame 23 .
- the back frame 23 includes at least a first primary assembling piece and a second primary assembling piece, and at least the first and second primary assembling pieces form a main frame of the back frame, which will not be described herein.
- the present invention also provides a plasma display device 40, as shown in Fig. 19, the plasma display device 40 includes a plasma display panel 41 and the back frame 42 and the back frame 42 are disposed on the back of the plasma display panel 41.
- the back frame 42 is the back frame of each embodiment described above, and details are not described herein again.
- the present invention also provides a circuit board fixing method suitable for the above embodiments.
- splices 64, 65, and 66 For the various splicing members in the above embodiments, for example, a primary splicing piece for splicing the main frame of the back frame or a secondary splicing piece disposed in the main frame and spliced with the main frame.
- Bracket 61 is fixed to the splicing piece 65 and the splicing piece 66 On. In other embodiments, the bracket 61 can be secured to the appropriate splice member at one end and suspended at the other end.
- a heat sink fin set 62 is provided on the bracket 61, and the bracket 61 is used to fix the circuit board 63 And establish a thermal connection between the board 63 and the heat sink fin group 62.
- the circuit board 63 is fixed to one side of the bracket 61, and the heat sink fin group 62 and the bracket 61
- the stamping is integrally formed, and the fin group 62 extends from the bracket 61 in a direction away from the board 63.
- Heat sink fin set 62 Heat transfer through bracket 61 to circuit board 63 Establish a thermal connection between them.
- the circuit board 73 is fixed on the first side of the bracket 71, and the heat dissipation fin set 72 Separately manufactured and secured to a second side opposite the first side of the bracket 71, and preferably detachably secured to the bracket 71 such that the heat sink fin set 72 can be from the bracket 71 Remove it on the top.
- the heat sink fin set 72 also establishes a thermal connection with the circuit board 73 by heat transfer from the bracket 71.
- the heat sink fin set 72 can be with the circuit board 73 Direct contact, for example through a hollowed out portion provided on bracket 71.
- the heat sink fin sets are disposed on the respective brackets such that the circuit board can dissipate heat through the heat sink fin sets, and selecting a suitable high heat conductive material can further ensure improved operational stability of the circuit board.
- the back frame and the backlight system of the present invention form the back frame by splicing, so that the structure of the back frame is simple, and the material of the back frame is saved, and the production cost of the backlight display device can be reduced. Further, by using a bracket provided with a heat dissipation fin group to fix the circuit board, the heat dissipation efficiency of the circuit board can be improved.
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Abstract
一种平板显示装置(20)的背框(23),其包括至少两个主拼接件(231,232,233,234)以及至少一辅拼接件(235,236),其中该至少两个主拼接件(231,232,233,234)拼接成背框(23)的主框架(27),辅拼接件(235,236)设置于主框架(27)内并与主框架(27)拼接,背框(23)进一步包括固定于主拼接件(231,232,233,234)或辅拼接件(235,236)上的支架(61)以及设置于支架(61)上的散热鳍片组(72),支架(61)用于固定电路板(63)并在电路板(63)与散热鳍片组(72)之间建立热连接。还披露了一种背光系统(21)。该背框(23)以及背光系统(21)通过拼接方式形成背框(23),使背框(23)的结构简单,并且节省背框(23)的材料,可降低平板显示装置的生产成本。进一步利用设置有散热鳍片组(72)的支架(61)来固定电路板(63),可提高电路板(63)的散热效率。
Description
【技术领域】
本发明涉及显示技术领域,特别是涉及一种平板显示装置的背框以及背光系统。
【背景技术】
现有技术中液晶显示装置包括前框、面板以及背光模组,其中背光模组包括背框、反射片、导光板以及灯组等。
目前,市场上有多种显示面板尺寸以满足人们的不同需求。例如在电视领域中,液晶面板的尺寸包括31.5、42、46、48或55寸,需要根据不同尺寸的液晶面板进行设置不同的背框模具。
请参见图1,图1是现有技术中液晶显示装置的背框结构示意图。如图1所示,现有技术中背框10均采用整体式的背框,通常通过金属冲压或者塑料注射方式生产整体式的背框10,整体式的背框10需要消耗过多的材料,材料成本高。此外大尺寸的背框10需要使用较大的冲压设备,背框10对应的模具尺寸很大,结构复杂,背框模具的成本高。因此现有技术的背框成本高。
【发明内容】
本发明主要解决的技术问题是提供一种平板显示装置的
背框以及背光系统,能够节省背框的材料,进而降低平板显示装置的生产成本。
为解决上述技术问题,本发明采用的一个技术方案是:提供
一种平板显示装置的背框,其包括至少两个主拼接件以及至少一辅拼接件,其中,该至少两个主拼接件拼接成背框的主框架,辅拼接件设置于主框架内并与主框架拼接,背框进一步包括固定于主拼接件或辅拼接件上的支架以及设置于支架上的散热鳍片组,支架用于固定电路板并在电路板与所述散热鳍片组之间建立热连接。
其中,电路板固定于支架的第一侧上,散热鳍片组固定于支架的与支架的第一侧相反的第二侧上。
其中,散热鳍片组以可拆卸方式固定于支架上。
其中,散热鳍片组与支架一体冲压成型,散热鳍片组从支架向远离所述电路板的方向延伸。
其中,主拼接件包括第一主拼接件和第二主拼接件,第一主拼接件的一端设有至少两个拼接部,每个拼接部的结构与相应的第二主拼接件的一端适配,第一主拼接件通过其一拼接部与相应的第二主拼接件的一端拼接。
其中,至少两个拼接部沿第一主拼接件的长度方向上间隔排列。
其中,拼接部是第一主拼接件表面上设置的形状与第二主拼接件的一端适配的凹部,以收容第二主拼接件的一端。
其中,拼接部是第一主拼接件表面上设置的凹部,第二主拼接件的表面相应位置设有凸起,凸起嵌入凹部,以拼接第一主拼接件和第二主拼接件。
其中,第二主拼接件的一端上设有至少两个沿第二主拼接件长度方向上间隔排列的凸起。
为解决上述技术问题,本发明采用的一个技术方案是:提供
一种背光系统,其包括光源、匀光机构以及背框;背框承载光源和匀光机构,该背框为上文描述的背框。
本发明的有益效果是:区别于现有技术的情况,本发明的
背框以及背光系统通过拼接方式形成背框,使背框的结构简单,并且节省背框的材料,可降低背光显示装置的生产成本。进一步利用设置有散热鳍片组的支架来固定电路板,可提高电路板的散热效率。
【附图说明】
图1是现有技术中液晶显示装置的背框结构示意图;
图2是根据本发明第一实施例的平板显示装置的结构示意图;
图3是根据本发明第二实施例的平板显示装置的背框的结构示意图;
图4是根据本发明第三实施例的平板显示装置的背框的结构示意图;
图5是根据本发明第四实施例的平板显示装置的背框的结构示意图;
图6是根据本发明第五实施例的平板显示装置中的拼接方式的结构示意图;
图7是根据本发明第六实施例的平板显示装置中的第一辅拼接件对角设置在主框架上的示意图;
图8是根据本发明第七实施例的平板显示装置中的第一辅拼接件以及第二辅拼接件在主框架上的示意图;
图9是根据本发明第八实施例的平板显示装置的背框中拼接部的结构示意图;
图10是图9中所示的拼接部的截面示意图;
图11是根据本发明第九实施例的平板显示装置的背框中的拼接部的拼接方式的示意图;
图12是根据本发明第十实施例的平板显示装置的背框中的拼接部的拼接方式的示意图;
图13是根据本发明第十一实施例的平板显示装置的背框中的拼接部的拼接方式的示意图;
图14是根据本发明第十二实施例的平板显示装置的背框中的拼接部的结构示意图;
图15是根据本发明第十三实施例的平板显示装置的背框中的拼接部的结构示意图;
图16是根据本发明第十四实施例的制造平板显示装置的背框的方法的流程图;
图17是根据本发明第十五实施例的具有触摸屏的平板显示装置的结构示意图;
图18是根据本发明第十六实施例的立体显示装置的结构示意图;
图19是根据本发明第十七实施例的等离子显示装置的结构示意图;
图20是根据本发明第十八实施例的平板显示装置的背框的局部立体示意图;
图21是图20所示的背框中的支架、散热鳍片组以及电路板的侧视图;
图22是图20所示的背框中的支架和散热鳍片组的立体示意图;
图23是根据本发明第十九实施例的平板显示装置的背框中的支架、散热鳍片组以及电路板的侧视图。
【具体实施方式】
请参见图 2-3 ,图 2 是根据 本发明第一实施例的平板显示装置的结构 示意图,图 3 是 根据
本发明第二实施例的平板显示装置的背框的第一实施例的结构 示意图 。如图 2 所示,本实施例的平板显示装置 20 包括:背光系统 21 以及显示面板 22
,背光系统 21 设置于显示面板 22 的背面,并且为显示面板 22 提供光源。
在本实施例中,背光系统 21 包括 光源 25 、匀光机构 24 以及背框 23 。其中,背框 23
承载光源 25 和匀光机构 24 。在背光系统 21 为侧光式时,匀光机构 24 是导光板;在背光系统 21 为直下式时,匀光机构 24 是扩散板。背框 23
包括至少第一主拼接件和第二主拼接件,至少第一、第二两个主拼接件形成背框 23 的主框架 27 。
一起参阅图 3 ,背框 23 的第一实施例包括第一主拼接件 261 以及第二主拼接件 262
。第一主拼接件 261 的一端与第二主拼接件 262 的一端拼接,第一主拼接件 261 的另一端与第二主拼接件 262 的另一端拼接,以形成背框 23
的主框架 27 。第一主拼接件 261 和第二主拼接件 262 均为铝件或镀锌钢件。在本实施例中,第一主拼接件 261 和第二主拼接件 262 为 L
形。
一起参阅图 4 ,背框 23 的第二实施例包括第一主拼接件 281 、第二主拼接件 282
以及第三主拼接件 283 。三个主拼接件 281 、 282 以及 283 拼接形成背框 23 的主框架 27 。三个主拼接件 281 、 282 以及
283 均为铝件或镀锌钢件。在本实施例中,第一主拼接件 281 为 L 形,第二、三拼接件 282 、 283 均为直条形。
此外,背框 23 还可以包括设置于主框架 27 内并与之拼接的辅拼接件。
以下以四个主拼接件和两个辅拼接件详细说明本发明平板显示装置 20 的背框 23 。
请参见图 5 ,图 5 根据 本发明第四实施例的平板显示装置的背框的结构 示意图。 如图 5
所示,在本实施例中背框 23 包括:第一主拼接件 231 、第二主拼接件 232 、第三主拼接件 233 、第四主拼接件 234 、第一辅拼接件 235
、第二辅拼接件 236 以及支架 2371 、 2372 、 2373 、 2374 、 2375 、 2376 及 2377 。第一主拼接件 231
、第二主拼接件 232 、第三主拼接件 233 以及第四主拼接件 234 通过首尾拼接形成背框 23 的矩形主框架 27 。第一辅拼接件 235
和第二辅拼接件 236 作为辅拼接件,设置于主框架 27 内,并且与主框架 27 拼接。
具体而言,第一主拼接件 231 的一端与第二主拼接件 232 的一端拼接,第二主拼接件 232
的另一端与第三主拼接件 233 的一端拼接,第三主拼接件 233 的另一端与第四主拼接件 234 的一端拼接,第四主拼接件 234 的另一端与第一主拼接件
231 的另一端拼接,以形成长方形的主框架 27 。其中,第一主拼接件 231 、第二主拼接件 232 、第三主拼接件 233 以及第四主拼接件 234
均为铝件或镀锌钢件。在本实施例中,第一主拼接件 231 、第二主拼接件 232 、第三主拼接件 233 以及第四主拼接件 234
均为直条形,在其他实施例中,本领域技术人员完全可以将第一主拼接件 231 、第二主拼接件 232 、第三主拼接件 233 以及第四主拼接件 234 全部设置为
L 形,或部分设置为直条形,剩余的设置为 L 形。例如,在图 3 中,第一主拼接件 261 和第二主拼接件 262 全部设置为 L 形;在图 4
中,第一主拼接件 281 设置为 L 形,第二、三主拼接件 282 以及 283 设置为直条形。
在本实施例中,平板显示装置 20 的背框 23 均采用拼接连接方式进行拼接固定。 如图 6
所示,以第一主拼接件 231 的一端与第二主拼接件 232 的一端拼接连接方式为例,将第二主拼接件 232 的一端拼接在第一主拼接件 231
的一端上,比如,采用螺接、扣接或焊接等方式将第二主拼接件 232 的一端拼接在第一主拼接件 231 的一端上。
在本实施例中,第一辅拼接件 235 和第二辅拼接件 236 设置于背框 23 的主框架 27
内。第一辅拼接件 235 的一端与第一主拼接件 231 拼接,第一辅拼接件 235 的另一端与第三主拼接件 233 拼接,第二辅拼接件 236
的一端与第一主拼接件 231 拼接,第二辅拼接件 236 的另一端与第三主拼接件 233 拼接,并且第二主拼接件 232 、第四主拼接件 234
、第一辅拼接件 235 以及第二辅拼接件 236 之间平行设置。在其它实施例中,本领域技术人员在主框架 27 内设置至少一个辅拼接件,例如在主框架 27
内仅仅设置第一辅拼接件 235 。此外,第一辅拼接件 235 的两端可以分别与第一主拼接件 231 、第二主拼接件 232 、第三主拼接件 233
以及第四主拼接件 234 中的至少两个主拼接件拼接,例如第一辅拼接件 235 对角设置在主框架 27 内,如图 7 所示。同理可知,第二辅拼接件 236
的两端亦可以分别与第一主拼接件 231 、第二主拼接件 232 、第三主拼接件 233 以及第四主拼接件 234 中的至少两个主拼接件拼接。例如,第一辅拼接件
235 的两端分别与相邻设置的第一主拼接件 231 、第二主拼接件 232 拼接,第二辅拼接件 236 的两端分别与相邻设置的第三主拼接件 233
、第四主拼接件 234 拼接,如图 8 所示。
在本实施例中,背框 23 包括七个支架 2371 、 2372 、 2373 、 2374 、 2375
、 2376 及 2377 。其中,支架 2371 固定于第四主拼接件 234 上,支架 2372 、 2373 分别固定于第一辅拼接件 235 上,支架
2374 固定在第二辅拼接件 236 上,支架 2375 固定在第二主拼接件 232 上,支架 2376 、 2377 的两端分别固定于第一辅拼接件 235
和第二辅拼接件 236 上。实际上,支架可以固定于第一主拼接件 231 、第二主拼接件 232 、第三主拼接件 233 、第四主拼接件 234 、第一辅拼接件
235 以及第二辅拼接件 236 之一或以上。在其他实施例中,本领域技术人员完全可以在背框 23
上设置其他数量的支架,比如一个支架或以上。此外,支架可以拆卸固定于第一主拼接件 231 、第二主拼接件 232 、第三主拼接件 233 、第四主拼接件 234
、第一辅拼接件 235 以及第二辅拼接件 236 之一或以上。
在支架 2371 、 2372 、 2373 、 2374 、 2375 、 2376 及 2377
上均设有凸包(未标示),背框 23 可以通过该凸包固定电路板等器件。
以下进一步说明上述背框 23 相应的模具。在本实施例中,第一主拼接件 231 和第三主拼接件 233
的尺寸相同,形状相同,使用相同的模具冲压制得。第二主拼接件 232 、第四主拼接件 234 、第一辅拼接件 235 以及第二辅拼接件 236
的尺寸相同,形状相同,使用相同的模具冲压制得,实现模具共用。因此,本发明的背框 23 可以通过使用两种小尺寸模具冲压制得,相比于现有技术中背框 10
需要大尺寸模具,本发明的背框 23 的模具结构简单且小,进而降低背框 23 模具的成本。此外,本发明的背框 23 相对于现有技术中背框 10
的整体背框,能够大幅节省材料,以降低平板显示装置 20 的生产成本。
请参见图 9 ,图 9 是根据 本发明第八实施例的平板显示装置的背框中的拼接部的结构示意图。如图 9
所示,在本实施例中,第一主拼接件的一端设有两个拼接部,拼接部的结构与相应的第二主拼接部的一端适配,以使第一主拼接件与相应的第二主拼接件的一端拼接。
具体而言,第一主拼接件 231 的一端设有拼接部 2311 、 2312 ,拼接部 2311 、
2312 沿第一主拼接件 231 的长度方向上间隔排列,拼接部 2311 、 2312 是在第一主拼接件 231 设置的形状与第二主拼接件 232
的一端适配的凹部,以收容第二主拼接件 232 的一端。如图 10 所示,拼接部 2311 、 2312 为未贯穿第一主拼接件 231
的一端相对两侧面的凹部,凹部的形状为矩形,第二主拼接件 232 为一直条形。
在拼装较大尺寸背框 23 时,首先选择较邻近第一主拼接件 231 的端部的拼接部 2311
,并选择相应宽度的第二主拼接件 232 。随后将第二主拼接件 232 的一端设置在拼接部 2311 的凹部上。随后通过 螺接、扣接或焊接等方式将第二主拼接件
232 的一端拼接固定在拼接部 2311 上。在拼装较小尺寸背框 23 时,首先选择较远离第一主拼接件 231 的端部的拼接部 2312
,并选择相应宽度的第二主拼接件 232 。随后将第二主拼接件 232 的一端设置在拼接部 2312 的凹部上。随后通过 螺接、扣接或焊接等方式将第二主拼接件
232 的一端拼接固定在拼接部 2312 上。具体上,例如在第二主拼接件 232 的表面相应位置设有凸起,其中第二主拼接件 232 的凸起嵌入第一主拼接件
231 相对应位置的凹部,以拼接第一主拼接件 231 和第二主拼接件 232 ,如图 11 所示。此外, 所述第二主拼接件 232
的一端上可以设有至少两个沿第二主拼接件 232 长度方向上间隔排列的凸起,比如两个、三个或四个等。
更进一步,第一主拼接件 231 的凹部为多阶梯结构的凹部,第二主拼接件 232
相对应位置设有与凹部适配的多阶梯结构的凸部,如图 12 所示。此外,如图 13 所示,以拼接部 2311 为例,第一主拼接件 231 的凹部底部设有第一贯穿孔
2313 ,第二主拼接件 232 相应于拼接部 2311 的位置上设有第二贯穿孔 2321 ,背框 23 进一步包括固定件 240 ,固定件 240
穿过第一贯穿孔 2313 和第二贯穿孔 2321 ,以将第一主拼接件 231 和第二主拼接件 232 拼接。
如图 14 ,在本发明平板显示装置的背框的另一实施例中,第一主拼接件 231 的拼接部 2311 、
2312 的凹部形状为圆形。但是,在其他实施例中,本领域技术人员完全可以将凹部的形状设置成三角形等其他多边形形状。
如图 15 ,在本发明平板显示装置的背框的另一实施例中,拼接部 2311 、 2312
为贯穿第一主拼接件 231 的相对两侧的凹部,以使第二主拼接件 232 的一端在拼接部 2311 、 2312 上移动。比如在第二主拼接件 232
的一端穿出拼接部 2312 并拼接固定后,可裁切掉穿出部分,进而调节第二主拼接件 232 在作为背框主拼接件时的长度。
在实际应用中,第一主拼接件 231 的另一端以及第三主拼接件 233
的两端均设有两个拼接部,其结构与拼接部 2311 、 2312 的结构相同;而在第二主拼接件 232 的两端和第四主拼接件 234
的两端,对应于不同的情况,也相应进行设计或不设计,比如:
1 )第一种情况,如图 10 所示,第二主拼接件 232 的两端和第四主拼接件 234
的两端可以不进行任何设计,即端部与其他部位的结构相同,这时候在选择第一主拼接件 231 一端的不同拼接部 2311 ( 2312
)进行拼接时(另一端同样处理),若想背框 23 的宽度相应变化,则相应的第二主拼接件 232 和第四主拼接件 234
的长度也作相应的选择。即,若选邻近第一主拼接件 231 一端的拼接部 2311 进行拼接,则不对第二主拼接件 232 和第四主拼接件 234
进行裁剪,或裁剪掉的部分较短;若选择较远离第一主拼接件 231 一端的拼接部 2312 进行拼接时,则对第二主拼接件 232 和第四主拼接件 234
均进行裁剪,按照拼接部距离第一主拼接件 231 一端的远近,裁剪掉的部分也较长或较短;
2 )第二种情况,类似前述第一种情况,如图 11 所示,只不过第二主拼接件 232 和第四主拼接件
234 以不同的凸起来分别与第一主拼接件 231 和第三主拼接件 233 配合,实现背框 23 的宽度变化;同样,若选择除离第一主拼接件 231
一端最近的第一拼接部 2311 之外的其他拼接部 2312 进行拼接时,在拼接后或拼接前,将多出的第二主拼接件 232 和第四主拼接件 234
部分进行裁剪。
以上情况也适用于仅用两个 L 形主拼接件进行拼接而得到背框 23 的主框架 27 。
综上所述,本发明的背框 23
的第一主拼接件上设有至少两个拼接部,根据用户需求进行设置拼接部的数量,在本实施例中选取两个拼接部 2311 、 2312 进行描述。因此,在设置背框 23
的模具时,仅需设置两组模具,即第一主拼接件的模具以及第二主拼接件的模具,在第一主拼接件上设置多个拼接部以拼接得到各种尺寸的背框 23 。在拼装背框 23
时,可以根据背框 23
的尺寸,选择相应的拼接部,通过拼接部将第二主拼接件拼接在第一主拼接件的拼接部上,并将第一主拼接件中位于第二主拼接件的拼接位置外侧的其他拼接部裁切掉,以获取所需尺寸的背框
23 。相对于现有技术中根据不同尺寸的背框 10 设置不同背框模具,本发明的平板显示装置的背框 23 仅需设置第一主拼接件的模具和第二主拼接件 28
的模具,实现满足各种尺寸产品要求的模具共用,并且模具结构简单,能够降低背框模具的成本。
本发明还提供一种制造平板显示装置的背框的模具,该背框的模具设有用于形成背框的主拼接件的主图案,主图案上设有用于在主拼接件的一端形成至少两个拼接部的子图案。其中,主拼接件为上述第一主拼接件和第二主拼接件,对应上述的主图案;拼接部为上述第一主拼接件的拼接部,对应上述的子图案,在此不再赘述
。
如图 16 所示,本发明还提供一种制造平板显示装置的背框的方法,该方法包括以下步骤:
步骤 501 :
制作至少第一、第二两个主拼接件,其中第一主拼接件的一端设有至少两个拼接部,每个拼接部的结构与相应的第二主拼接件一端适配。
步骤 502 :根据背框的尺寸选择至少两个拼接部的一拼接部与相应的第二主拼接件的一端拼接。
在本实施例中,当第二主拼接件的拼接位置与第一主拼接件的相邻端部之间存在其他拼接部时,在根据背框的尺寸选择至少两个拼接部的一拼接部与相应的第二主拼接件的一端拼接的步骤之前或之后,将第一主拼接件中位于第二主拼接件的拼接位置外侧的其他拼接部裁切掉。其中第一主拼接件为上述第一主拼接件,第二主拼接件为上述第二主拼接件,在此不再赘述
。
如图 17 所示,本发明的平板显示装置 20 进一步包括一触摸屏 29 , 触摸屏 29
设置在平板显示装置 20 的显示面板 22 的出光面上。其中,平板显示装置 20 包括:背光系统 21 以及上述的显示面板 22 ,背光系统 21
设置于显示面板 22 的背面,并且为显示面板 22 提供光源。
背光系统 21 包括 光源 25 、匀光机构 24 以及背框 23 。其中,背框 23 承载光源 25
和匀光机构 24 。在背光系统 21 为侧光式时,匀光机构 24 是导光板;在背光系统 21 为直下式时,匀光机构 24 是扩散板。背框 23
包括至少第一主拼接件和第二主拼接件,至少第一、第二两个主拼接件形成背框 23 的主框架 27 。
值得注意的是,本发明的平板显示装置 20 可以为液晶显示装置或液晶电视机。
本发明还提供一种立体显示装置 30 ,如图 18 所示,立体显示装置 30 包括液晶透镜光栅 31
、背光系统 32 以及显示面板 33 。其中,液晶透镜光栅 31 设置于显示面板 33 的出光面上。背光系统 32 为上述各实施例的背光系统,比如背光系统
32 包括 背框 23 。其中,背框 23 包括至少第一主拼接件和第二主拼接件,至少第一、第二两个主拼接件形成背框的主框架,在此不再赘述 。
本发明还提供一种 等离子显示装置 40 ,如图 19 所示,等离子显示装置 40 包括等离子显示面板
41 以及背框 42 ,背框 42 设置在等离子显示面板 41 的背面。其中,背框 42 为上述各实施例的背框,在此也不再赘述 。
本发明还提供了一种适用于上述各实施例的电路板固定方式。如图 20 所示,拼接件 64 、 65 和 66
为上述各实施例中的各种拼接件,例如用于拼接背框主框架的主拼接件或者设置于主框架内且与主框架拼接的辅拼接件。支架 61 固定于拼接件 65 和拼接件 66
上。在其他实施例中,支架 61 可以仅一端固定于适当的拼接件上,另一端悬空。支架 61 上设置有 散热鳍片组 62 , 支架 61 用于固定电路板 63
,并在电路板 63 与 散热鳍片组 62 之间建立热连接。
如图 21-22 所示, 电路板 63 固定于支架 61 的一侧上, 散热鳍片组 62 与支架 61
一体冲压成型,且散热鳍片组 62 从支架 61 向远离电路板 63 的方向延伸。散热鳍片组 62 通过支架 61 的热传递与电路板 63
之间建立热连接。
如图 23 所示,在本实施例中, 电路板 73 固定于支架 71 的第一侧上, 散热鳍片组 72
单独制造,且固定于与支架 71 的第一侧相反的第二侧上,且 并优选以可拆卸方式固定于支架 71 上,使得散热鳍片组 72 可以从支架 71
上拆卸下来。散热鳍片组 72 同样通过支架 71 的热传递与电路板 73 之间建立热连接。在其他实施例中,散热鳍片组 72 可以与电路板 73
直接接触,例如通过支架 71 上设置的镂空部分。
在图 20-23
所示的实施例中,将散热鳍片组设置于相应的支架上,使得电路板可以通过散热鳍片组散热,且选择合适的高导热材料可进一步确保提高电路板的工作稳定性。通过上述方式,本发明的背框以及背光系统通过拼接方式形成背框,使背框的结构简单,并且节省背框的材料,可降低背光显示装置的生产成本。进一步利用设置有散热鳍片组的支架来固定电路板,可提高电路板的散热效率。
以上所述仅为本发明的实施例,并非因此限制本发明的专利范围,凡是利用本发明说明书及附图内容所作的等效结构或等效流程变换,或直接或间接运用在其他相关的技术领域,均同理包括在本发明的专利保护范围内。
Claims (10)
- 一种平板显示装置的背框,其特征在于:所述背框包括至少两个主拼接件以及至少一辅拼接件,所述至少两个主拼接件拼接成所述背框的主框架,所述辅拼接件设置于所述主框架内并与所述主框架拼接,所述背框进一步包括固定于所述主拼接件或所述辅拼接件上的支架以及设置于所述支架上的散热鳍片组,所述支架用于固定电路板并在所述电路板与所述散热鳍片组之间建立热连接。
- 根据权利要求1所述的背框,其特征在于,所述电路板固定于所述支架的第一侧上,所述散热鳍片组固定于所述支架的与所述第一侧相反的第二侧上。
- 根据权利要求1所述的背框,其特征在于,所述散热鳍片组以可拆卸方式固定于所述支架上。
- 根据权利要求1所述的背框,其特征在于,所述散热鳍片组与所述支架一体冲压成型,所述散热鳍片组从所述支架向远离所述电路板的方向延伸。
- 根据权利要求1所述的背框,其特征在于,所述主拼接件包括第一主拼接件和第二主拼接件,所述第一主拼接件的一端设有至少两个拼接部,每个拼接部的结构与相应的所述第二主拼接件的一端适配,所述第一主拼接件通过其一拼接部与相应的所述第二主拼接件的一端拼接。
- 根据权利要求1所述的背框,其特征在于:所述至少两个拼接部沿所述第一主拼接件的长度方向上间隔排列。
- 根据权利要求6所述的背框,其特征在于:所述拼接部是所述第一主拼接件表面上设置的形状与所述第二主拼接件的一端适配的凹部,以收容所述第二主拼接件的一端。
- 根据权利要求6所述的背框,其特征在于:所述拼接部是所述第一主拼接件表面上设置的凹部,所述第二主拼接件的表面相应位置设有凸起,所述凸起嵌入所述凹部,以拼接所述第一主拼接件和所述第二主拼接件。
- 根据权利要求8所述的背框,其特征在于:所述第二主拼接件的一端上设有至少两个沿所述第二主拼接件长度方向上间隔排列的凸起。
- 一种背光系统,其特征在于:所述背光系统包括光源、匀光机构以及背框;所述背框承载所述光源和匀光机构,所述背框为权利要求1所述的背框。
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| US13/381,096 US8616738B2 (en) | 2011-11-18 | 2011-11-23 | Back frame and backlight system of flat panel display device |
Applications Claiming Priority (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN201110366519.8 | 2011-11-18 | ||
| CN201110366519.8A CN102401341B (zh) | 2011-11-18 | 2011-11-18 | 平板显示装置的背框以及背光系统 |
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ID=45883817
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| CN111462628A (zh) * | 2020-03-31 | 2020-07-28 | 维沃移动通信有限公司 | 柔性屏组件及电子设备 |
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| CN201672468U (zh) * | 2010-05-04 | 2010-12-15 | 广州创维平面显示科技有限公司 | 一种背光模组的后背板结构 |
| CN202328041U (zh) * | 2011-11-18 | 2012-07-11 | 深圳市华星光电技术有限公司 | 平板显示装置的背框以及背光系统 |
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| CN2630887Y (zh) * | 2003-06-04 | 2004-08-04 | 彭庆龙 | 液晶显示器铝框架组合结构 |
| CN2706863Y (zh) * | 2003-06-14 | 2005-06-29 | 鸿富锦精密工业(深圳)有限公司 | 散热装置组合 |
| TWM285175U (en) * | 2005-08-22 | 2006-01-01 | Jiin Ming Industry Co Ltd | Frame mounting structure of display panels |
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2011
- 2011-11-18 CN CN201110366519.8A patent/CN102401341B/zh not_active Expired - Fee Related
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| CN2397568Y (zh) * | 1999-11-17 | 2000-09-20 | 达碁科技股份有限公司 | 简易组立式等离子体显示器 |
| JP2010256656A (ja) * | 2009-04-27 | 2010-11-11 | Seiko Epson Corp | 電気光学装置及び電子機器 |
| CN201518197U (zh) * | 2009-09-30 | 2010-06-30 | 深圳市雷凌显示技术有限公司 | 一种显示屏箱体和led显示屏 |
| CN201672468U (zh) * | 2010-05-04 | 2010-12-15 | 广州创维平面显示科技有限公司 | 一种背光模组的后背板结构 |
| CN202328041U (zh) * | 2011-11-18 | 2012-07-11 | 深圳市华星光电技术有限公司 | 平板显示装置的背框以及背光系统 |
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| CN111462628A (zh) * | 2020-03-31 | 2020-07-28 | 维沃移动通信有限公司 | 柔性屏组件及电子设备 |
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| CN102401341A (zh) | 2012-04-04 |
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