WO2014040303A1 - 一种背光模组及液晶显示装置 - Google Patents

一种背光模组及液晶显示装置 Download PDF

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Publication number
WO2014040303A1
WO2014040303A1 PCT/CN2012/081633 CN2012081633W WO2014040303A1 WO 2014040303 A1 WO2014040303 A1 WO 2014040303A1 CN 2012081633 W CN2012081633 W CN 2012081633W WO 2014040303 A1 WO2014040303 A1 WO 2014040303A1
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WIPO (PCT)
Prior art keywords
light source
heat dissipation
backlight module
front frame
dissipation device
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Application number
PCT/CN2012/081633
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English (en)
French (fr)
Inventor
周革革
Original Assignee
深圳市华星光电技术有限公司
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Application filed by 深圳市华星光电技术有限公司 filed Critical 深圳市华星光电技术有限公司
Priority to US13/643,094 priority Critical patent/US8842236B2/en
Publication of WO2014040303A1 publication Critical patent/WO2014040303A1/zh

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    • 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
    • G02B6/0085Means for removing heat created by the light source from the package
    • 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
    • G02B6/0091Positioning aspects of the light source relative to the light guide

Definitions

  • the present invention relates to the field of liquid crystal display, and in particular to a backlight module and a liquid crystal display device. Background technique
  • the liquid crystal display device includes a display module, and the display module needs to use a backlight to provide a light source for displaying images.
  • the existing backlights are mainly CCFL (Cold Cathode Fluorescent Lamp) and LED (Light Emitting). Diode, LED).
  • CCFL Cold Cathode Fluorescent Lamp
  • LED Light Emitting
  • Diode, LED Diode
  • LED is a new type of light source, which has the advantages of high brightness and low power consumption. Therefore, the design of LED backlight is gradually increasing, which is also a trend for future design.
  • LED since LED also generates high heat at the same time, in order to ensure LED light-emitting efficiency and life. , need to design the heat dissipation for the LED.
  • FIG. 5 is a partial cross-sectional structural view of a backlight module in the prior art
  • the light source 7 is mainly fixed on the heat sink 8 by tape or screw, and the front frame 9 fixes other components.
  • the inventors have found that the structure has the following drawbacks: Since there is no special mechanism to ensure close contact between the light source 7 and the heat sink 8, the heat generated by the light source 7 cannot be conducted very efficiently to the heat sink 8, especially when the light source 7 When it is released from the heat sink 8, the heat dissipation efficiency is greatly reduced. Summary of the invention
  • the technical problem to be solved by the present invention is to provide a backlight module and a liquid crystal display device, which can improve the heat dissipation efficiency and facilitate the heat dissipation of the backlight module more efficiently.
  • the present invention provides a backlight module, including: a light source, a heat sink, and a front frame, wherein the light source is disposed on the heat sink, and the front frame includes at least one limiting portion, A limiting portion fastens the light source to the heat sink.
  • the front frame includes a horizontal plate and a vertical plate at an angle, the heat dissipation device is disposed on an inner side of the vertical plate, and the light source is disposed on a side of the heat dissipation device away from the front frame vertical plate The limiting portion is disposed on an inner wall of the horizontal plate.
  • the limiting portion comprises at least one rib, or at least one stud, the rib or stud pressing against the light source to fasten the light source to the heat sink.
  • the at least one rib is received in a cavity formed between the light source and the optical component of the backlight module, the rib has two inclined faces, wherein one inclined surface is pressed against the light source And another inclined surface thereof is pressed against the optical member to fasten the light source to the heat sink.
  • the rib is formed by punching a horizontal plate of the front frame.
  • the at least one stud is received in a cavity formed between the light source and the optical component of the backlight module, and one side of the stud is pressed against the light source, and the other side thereof Pressing against the optical member, the light source is fastened to the heat sink.
  • the studs are disposed on the same straight line of the inner wall of the front frame transverse plate.
  • the optical member includes at least a light guide plate.
  • the heat sink is aluminum extruded.
  • the invention also discloses a liquid crystal display device having the above backlight module.
  • the backlight module and the liquid crystal display device using the same provide a light source capable of being in close contact with the heat sink by providing a limiting portion on the front frame, and the heat generated by the light source can be quickly transmitted to the outside by the heat sink. It improves the heat dissipation efficiency of the heat sink and helps the backlight module to dissipate heat more efficiently.
  • FIG. 1 is a partial cross-sectional structural view of a backlight module according to a first embodiment of the present invention.
  • FIG. 2 is a partial cross-sectional structural view of a backlight module according to a second embodiment of the present invention.
  • FIG 3 is a partial cross-sectional structural view of a backlight module according to a third embodiment of the present invention.
  • FIG. 4 is a partial cross-sectional structural view of a backlight module according to a fourth embodiment of the present invention.
  • FIG. 5 is a partial cross-sectional structural view of a backlight module in the prior art. detailed description
  • an embodiment of the present invention provides a backlight module, including a light source 1, a heat sink 2, and a front frame 3.
  • the light source 1 is mounted on the heat sink 2, and the front frame 3 includes at least one limiting portion that fastens the light source 1 to the heat sink 2.
  • the front frame 3 includes a horizontal plate 31 and a vertical plate 32 which are at an angle to each other.
  • the heat dissipation device 2 is disposed on the inner side of the vertical plate 32, and the light source 1 is disposed on a side of the heat dissipation device 2 away from the vertical plate 32, and the limiting portion It is provided on the inner wall of the horizontal plate 31.
  • the backlight module of the present invention can provide the light source 1 in close contact with the heat sink 2 by providing a limiting portion on the front frame 3, and the heat generated by the light source 1 can be quickly transmitted to the outside by the heat sink 2, thereby improving the heat dissipation of the heat sink 2. Efficiency, which helps the backlight module to dissipate heat more efficiently.
  • the structure of the backlight module will be specifically described below.
  • the heat sink is made of aluminum extrusion or other material profiles.
  • the light source 1 can be packaged in the form of LED strips by LED and MCPCB (Metal Core PCB), and fixed in the heat sink by tape or screw. 2 on the inner side wall.
  • MCPCB Metal Core PCB
  • the backlight module of this embodiment has a light source 1, an aluminum extrusion 2, and a front frame 3.
  • the front frame 3 is disposed on the adjacent side of the aluminum extrusion 2, and has a stopper portion which is a rib 33 projecting from the inner wall of the horizontal plate 31 of the front frame 3 in this embodiment.
  • the rib 33 is pressed against the light source 1 to fasten the light source 1 to the aluminum extrusion 2.
  • the light source 1 and the aluminum extrusion 2 can be kept in close contact with each other, and the thermal conductivity of the aluminum extrusion 2 can be exerted.
  • the rib 33 is not in contact with the optical member 4 of the backlight module, so that the influence on the optical member 4 can be reduced.
  • the position at which the rib 33 is disposed can be adjusted according to the thickness of the light source 1 and the aluminum extrusion 2, and the rib 33 can be pressed against the light source 1 as long as the frame 3 is assembled.
  • the limiting portion still adopts the structure of the rib in the first embodiment (reference numeral 34 in the embodiment), and the rib 34 is disposed on the inner wall of the horizontal plate 31.
  • a cavity 5 for accommodating the above-mentioned rib 34 is formed between the light source 1 and the optical member 4.
  • the optical member 4 includes a diffusion plate, a prism, a diffusion plate, a light guide plate, and the like from top to bottom. The optical member 4 is mounted on the light emitting side of the light source 1.
  • the rib 34 When the front frame 3 is assembled on the backlight module, the rib 34 is located in the cavity 5 formed between the light source 1 and the optical member 4.
  • the rib 34 has two slopes, one of which is pressed against the light source 1, and the other of which is pressed against the optical member 4 to fasten the light source 1 to the aluminum extrusion 2.
  • the light source 1 and the aluminum extrusion 2 can maintain a close contact state, and the thermal conductivity of the aluminum extrusion 2 can be exerted.
  • This two-sided pressing method can make the pressing effect more stable. Therefore, the difference between this embodiment and the first embodiment is that the ribs 34 are in contact with the light source 1 and the optical member 4 respectively in the embodiment; and the rib 33 is only connected to the light source in the first embodiment.
  • the 1 phase contacts and does not come into contact with the optical member 4.
  • the position at which the ribs 34 are disposed may be adjusted according to the thickness of the light source 1 and the aluminum extrusion 2, as long as the ribs 34 can be accommodated in the cavity 5 during the assembly of the front frame 3, and can be separately
  • the pressure of 4 is sufficient for the light source 1 and the optical member 4.
  • the ribs can be formed on the front frame 3 by stamping to form a process cartridge, which is also advantageous for cost control.
  • the present embodiment is different from the first embodiment in that the limiting portion is embodied as a stud 35.
  • the stud 35 is pressed against the light source 1 to fasten the light source 1 to the aluminum extrusion 2.
  • the light source 1 and the aluminum extrusion 2 can be kept in close contact with each other, and the heat conduction performance of the aluminum extrusion 2 can be exerted.
  • the stud 35 is not in contact with the optical member 4 of the backlight module, so that the influence on the optical member 4 can be reduced.
  • the position at which the studs 35 are disposed can be adjusted according to the thickness of the light source 1 and the aluminum squeezing 2, and the studs 35 can be pressed against the light source 1 as long as the frame 3 is assembled.
  • the limiting portion is embodied as a stud 36.
  • the stud 36 is located in the cavity 5 formed between the light source 1 and the optical member 4.
  • the boss 36 is pressed against the light source 1 and the other side is pressed against the optical member 4, thereby fastening the light source 1 to the aluminum extrusion 2.
  • the light source 1 and the aluminum extrusion 2 can maintain a close contact state, and the thermal conductivity of the aluminum extrusion 2 can be exerted.
  • This method of 4° pressure on both sides can make the 4° pressure effect more stable.
  • the position where the studs 36 are disposed may be adjusted according to the thickness of the light source 1 and the aluminum extrusion 2, as long as the protrusions 36 are accommodated in the cavity 5 during the assembly of the front frame 3, and may be separately The pressure of 4 is sufficient for the light source 1 and the optical member 4.
  • the ribs or the studs are not limited to being in the form of a whole strip, and may be disposed as a plurality of spaced ribs or studs on the inner wall of the transverse plate 31 of the front frame 3. , these ribs or studs are on the same line.
  • the shape of the rib or the stud may also take a variety of forms as long as it is satisfied: in the first and third embodiments the rib or stud can be pressed against the light source 1; in the second and fourth embodiments The ribs or studs can be pressed against the light source 1 and the optical member 4, respectively.
  • the present invention also discloses a liquid crystal display device, which includes the backlight module in any of the above embodiments, and details are not described herein again.
  • the backlight module embodying the present invention and the liquid crystal display device using the same have the following beneficial effects: by providing a limiting portion on the front frame, the light source can be in close contact with the heat dissipating device, and the heat generated by the light source can be quickly generated by the heat dissipating device. Passing to the outside improves the heat dissipation efficiency of the heat sink, which helps the backlight module to dissipate heat more efficiently.

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  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Optics & Photonics (AREA)
  • Liquid Crystal (AREA)
  • Arrangement Of Elements, Cooling, Sealing, Or The Like Of Lighting Devices (AREA)
  • Planar Illumination Modules (AREA)

Abstract

一种背光模组及具有背光模组的液晶显示装置,背光模组包括:光源(1)、散热装置(2)以及前框(3),光源(1)设在散热装置(2)上,前框(3)包括至少一个限位部(33,34,35,36),限位部(33,34,35,36)将光源(1)紧固在散热装置(2)。背光模组及采用背光模组的液晶显示装置,通过在前框(3)上设置限位部(33,34,35,36),使光源(1)能够与散热装置(2)紧密接触,光源(1)产生的热量可以由散热装置(2)迅速传递到外部,提升了散热装置(2)的散热效率,有利于背光模组更高效地散热。

Description

一种背 组及液晶显示装置 本申请要求于 2012 年 9 月 12 日提交中国专利局、 申请号为 201210336034.9、 发明名称为 "一种背光模组及液晶显示装置" 的中国专利 申请的优先权, 上述专利的全部内容通过引用结合在本申请中。 技术领域
本发明涉及液晶显示领域, 尤其涉及一种背光模组及液晶显示装置。 背景技术
液晶显示装置包括显示模组, 显示模组为了显示图像, 都需要用到背光 来提供光源, 现有的背光源主要为 CCFL ( Cold Cathode Fluorescent Lamp, 冷阴极萤光灯管 )和 LED ( Light Emitting Diode, 发光二极管)。 目前 LED 作为较新型的光源, 具有高亮度低功耗的优点, 故采用 LED背光的设计逐 渐增多, 亦为未来设计发展趋势; 但由于 LED 同时会产生高热量, 因此为 保证 LED出光效率和寿命, 需针对 LED进行散热设计。
如图 5所示, 为现有技术中背光模组的局部剖视结构示意图, 光源 7主 要通过胶带或螺丝固定在散热装置 8上,前框 9固定其他部材。发明人发现, 该结构存在如下的缺陷: 由于没有专门的机制保障光源 7与散热装置 8之间 的紧密接触, 导致灯源 7产生的热不能非常有效地传导给散热装置 8, 尤其 当光源 7从散热装置 8上松脱时, 散热效率更是大大降低。 发明内容
本发明所要解决的技术问题在于, 提供一种背光模组及液晶显示装置, 提升了散热效率, 有利于背光模组更高效地散热。
为了解决上述技术问题, 本发明提供一种背光模组, 包括: 光源、 散热 装置以及前框, 所述光源装设在所述散热装置上, 所述前框包括至少一个限 位部, 所述限位部将所述光源紧固在所述散热装置上。 进一步地, 所述前框包括互成一定角度的横板和竖板, 所述散热装置设 置在所述竖板的内侧, 所述光源装设在所述散热装置远离前框竖板的一侧, 所述限位部设置在所述横板的内壁上。
进一步地, 所述限位部包括至少一条凸棱, 或者至少一个凸柱, 所述凸 棱或凸柱抵压在所述光源上, 使所述光源与所述散热装置相紧固。
进一步地, 所述至少一条凸棱容纳于所述光源与所述背光模组的光学部 材之间形成的凹腔中, 所述凸棱具有两个斜面, 其中一个斜面抵压在所述光 源上, 其另一斜面抵压在所述光学部材上, 使所述光源与所述散热装置相紧 固。
进一步地, 所述凸棱为所述前框的横板经沖压而成。
进一步地, 所述至少一个凸柱容纳于所述光源与所述背光模组的光学部 材之间形成的凹腔中, 所述凸柱的一侧抵压在所述光源上, 其另一侧抵压在 所述光学部材上, 使所述光源与所述散热装置相紧固。
进一步地, 所述凸柱设置于所述前框横板内壁的同一直线上。
进一步地, 所述光学部材至少包括导光板.
进一步地, 所述散热装置为铝挤。
本发明还公开了一种具有上述背光模组的液晶显示装置。
本发明所提供的背光模组及采用该背光模组的液晶显示装置,通过在前 框上设置限位部, 使光源能够与散热装置紧密接触, 光源产生的热量可以由 散热装置迅速传递到外部, 提升了散热装置的散热效率, 有利于背光模组更 高效地散热。 附图说明
图 1是本发明第一实施例背光模组的局部剖视结构示意图。
图 2是本发明第二实施例背光模组的局部剖视结构示意图。
图 3是本发明第三实施例背光模组的局部剖视结构示意图。
图 4是本发明第四实施例背光模组的局部剖视结构示意图。
图 5是现有技术中的背光模组的局部剖视结构示意图。 具体实施方式
下面参考附图对本发明的优选实施例进行描述。
如图 1—4所示, 本发明实施例提供了一种背光模组, 包括光源 1、 散热 装置 2以及前框 3, 所述光源 1装设在所述散热装置 2上, 所述前框 3包括 至少一个限位部, 所述限位部将所述光源 1紧固在所述散热装置 2上。 具体 的, 前框 3包括互成一定角度的横板 31和竖板 32, 散热装置 2设置在竖板 32的内侧, 光源 1装设在散热装置 2远离竖板 32的一侧, 限位部设置在横 板 31的内壁上。
本发明的背光模组通过在前框 3上设置限位部,使光源 1能够与散热装 置 2紧密接触, 光源 1产生的热量能够由散热装置 2迅速传递到外部, 提升 了散热装置 2的散热效率, 有利于背光模组更高效地散热。 以下具体说明背 光模组的结构。
其中, 散热装置 采用铝挤或其他材料的型材, 光源 1可以采用 LED 与 MCPCB ( Metal Core PCB, 金属基印刷电路板)进行封装形成 LED灯条 的形式, 通过胶带或螺丝等方式固定在散热装置 2的内侧壁上。
第一实施例:
请具体参照图 1所示, 本实施例的背光模组具有光源 1、 铝挤 2以及前 框 3。
前框 3设置在铝挤 2的邻侧, 其具有的限位部在本实施例中为一条凸设 在前框 3的横板 31的内壁上的凸棱 33。 当组装前框 3在背光模组上时, 该 凸棱 33抵压在光源 1上, 使光源 1与铝挤 2相紧固。 这样, 就能够使光源 1 和铝挤 2保持紧密接触的状态, 发挥铝挤 2的导热效能。 本实施例中, 该凸 棱 33并不与该背光模组的光学部材 4相接触, 这样可以减少对光学部材 4 的影响。
本实施例中, 凸棱 33设置的位置可以根据光源 1和铝挤 2的厚度进行 调整, 只要满足在装配前框 3时, 凸棱 33可以抵压在光源 1上。
第二实施例:
请具体参照图 2所示, 本实施例中, 限位部仍采用上述第一实施例中凸 棱的结构(本实施例中标号为 34 ), 凸棱 34设置在横板 31的内壁上。 此外, 在光源 1与光学部材 4之间形成用于容纳上述凸棱 34的凹腔 5。 光学部材 4 从上至下包括扩散板, 棱镜, 扩散板, 导光板等。 光学部材 4安装在光源 1 的发光侧。
当组装前框 3在背光模组上时, 凸棱 34位于光源 1与光学部材 4之间 形成的凹腔 5中。 凸棱 34具有两个斜面, 其中一个斜面抵压在光源 1上, 其另一斜面抵压在光学部材 4上, 从而使光源 1与铝挤 2相紧固。 这样, 光 源 1和铝挤 2之间能够保持紧密接触的状态, 发挥铝挤 2的导热效能。 这种 两面抵压的方式可以使抵压效果更稳固。 由此可见, 本实施例与第一实施例 的不同之处在于, 本实施例中凸棱 34是分别与光源 1和光学部材 4相接触 的; 而第一实施例中凸棱 33只与光源 1相接触, 并不与光学部材 4相接触。
本实施例中, 凸棱 34设置的位置可以根据光源 1和铝挤 2的厚度进行 调整, 只要满足在装配前框 3的过程中, 凸棱 34可以容纳到上述凹腔 5中, 并且可以分别 4氏压在光源 1和光学部材 4上即可。
上述第一和第二实施例在具体实施时, 凸棱经沖压就可以在前框 3上形 成, 制成工序筒单, 也利于成本控制。
第三实施例:
请具体参照图 3所示, 本实施例与第一实施例不同之处在于, 限位部体 现为凸柱 35。 该凸柱 35抵压在光源 1上, 使光源 1与铝挤 2相紧固。 这样, 就能够使光源 1和铝挤 2保持紧密接触的状态, 发挥铝挤 2的导热效能。 本 实施例中, 该凸柱 35并不与该背光模组的光学部材 4相接触, 这样可以减 少对光学部材 4的影响。
本实施例中, 凸柱 35设置的位置可以根据光源 1和铝挤 2的厚度进行 调整, 只要满足在装配前框 3时, 凸柱 35可以抵压在光源 1上。
第四实施例:
请具体参照图 4所示, 本实施例与第三实施例一样, 限位部体现为凸柱 36。 凸柱 36位于光源 1与光学部材 4之间形成的凹腔 5中。 凸柱 36—侧抵 压在光源 1上, 其另一侧抵压在光学部材 4上, 从而使光源 1与铝挤 2相紧 固。 这样, 光源 1和铝挤 2之间能够保持紧密接触的状态, 发挥铝挤 2的导 热效能。 这种两侧 4氏压的方式可以使 4氏压效果更稳固。 本实施例与第三实施 例的不同之处在于, 本实施例中凸柱 36是分别与光源 1和光学部材 4相接 触的; 而第三实施例中凸柱 35只与光源 1相接触, 并不与光学部材 4相接 触。
本实施例中, 凸柱 36设置的位置可以根据光源 1和铝挤 2的厚度进行 调整, 只要满足在装配前框 3的过程中, 凸柱 36可以容纳到上述凹腔 5中, 并且可以分别 4氏压在光源 1和光学部材 4上即可。
在前述第一至四的各实施例中, 凸棱或凸柱并不限于呈整条状的形式, 也可以设置为在前框 3的横板 31 内壁上多个间隔的凸棱或凸柱, 这些凸棱 或凸柱位于同一直线上。凸棱或凸柱的形状亦可以采用多种形式,只要满足: 在第一和第三实施例中该凸棱或凸柱能够抵压在光源 1上; 在第二和第四实 施例中该凸棱或凸柱能够分别抵压在光源 1和光学部材 4上。
本发明还公开了一种液晶显示装置, 该液晶显示装置包括上述任一实施 例中的背光模组, 具体实施方式不再赘述。
实施本发明的背光模组及采用该背光模组的液晶显示装置, 具有如下有 益效果: 通过在前框上设置限位部, 使光源能够与散热装置紧密接触, 光源 产生的热量可由散热装置迅速传递到外部, 提升了散热装置的散热效率, 有 利于背光模组更高效地散热。

Claims

权 利 要 求
1、 一种背光模组, 包括: 光源、 散热装置以及前框, 所述光源装设在 所述散热装置上, 其中, 所述前框包括至少一个限位部, 所述限位部将所述 光源紧固在所述散热装置上。
2、 如权利要求 1所述的背光模组, 其中, 所述前框包括互成一定角度 的横板和竖板, 所述散热装置设置在所述竖板的内侧, 所述光源装设在所述 散热装置远离前框竖板的一侧, 所述限位部设置在所述横板的内壁上。
3、 如权利要求 2所述的背光模组, 其中, 所述限位部包括至少一条凸 棱, 或者至少一个凸柱, 所述凸棱或凸柱抵压在所述光源上, 使所述光源与 所述散热装置相紧固。
4、 如权利要求 3所述的背光模组, 其中, 所述至少一条凸棱容纳于所 述光源与所述背光模组的光学部材之间形成的凹腔中, 所述凸棱具有两个斜 面, 其中一个斜面抵压在所述光源上, 其另一斜面抵压在所述光学部材上, 使所述光源与所述散热装置相紧固。
5、 如权利要求 4所述的背光模组, 其中, 所述凸棱为所述前框的横板 经沖压而成。
6、 如权利要求 3所述的背光模组, 其中, 所述至少一个凸柱容纳于所 述光源与所述背光模组的光学部材之间形成的凹腔中, 所述凸柱的一侧抵压 在所述光源上, 其另一侧抵压在所述光学部材上, 使所述光源与所述散热装 置相紧固。
7、 如权利要求 6所述的背光模组, 其中, 所述凸柱设置于所述前框横 板内壁的同一直线上。
8、 如权利要求 7所述的背光模组, 其中, 所述光学部材至少包括导光 板。
9、 如权利要求 1所述的背光模组, 其中, 所述散热装置为铝挤。
10、 一种液晶显示装置, 其中, 所述液晶显示装置包括背光模组, 所述 背光模组包括: 光源、散热装置以及前框,所述光源装设在所述散热装置上, 所述前框包括至少一个限位部, 所述限位部将所述光源紧固在所述散热装置 上。
11、 如权利要求 10所述的液晶显示装置, 其中, 所述前框包括互成一 定角度的横板和竖板, 所述散热装置设置在所述竖板的内侧, 所述光源装设 在所述散热装置远离前框竖板的一侧, 所述限位部设置在所述横板的内壁 上。
12、 如权利要求 11所述的液晶显示装置, 其中, 所述限位部包括至少 一条凸棱, 或者至少一个凸柱, 所述凸棱或凸柱抵压在所述光源上, 使所述 光源与所述散热装置相紧固。
13、 如权利要求 12所述的液晶显示装置, 其中, 所述至少一条凸棱容 纳于所述光源与所述背光模组的光学部材之间形成的凹腔中, 所述凸棱具有 两个斜面, 其中一个斜面抵压在所述光源上, 其另一斜面抵压在所述光学部 材上, 使所述光源与所述散热装置相紧固。
14、 如权利要求 13所述的液晶显示装置, 其中, 所述凸棱为所述前框 的横板经沖压而成。
15、 如权利要求 12所述的液晶显示装置, 其中, 所述至少一个凸柱容 纳于所述光源与所述背光模组的光学部材之间形成的凹腔中, 所述凸柱的一 侧抵压在所述光源上, 其另一侧抵压在所述光学部材上, 使所述光源与所述 散热装置相紧固。
16、 如权利要求 15所述的液晶显示装置, 其中, 所述凸柱设置于所述 前框横板内壁的同一直线上。
17、 如权利要求 16所述的液晶显示装置, 其中, 所述光学部材至少包 括导光板。
18、 如权利要求 10所述的液晶显示装置, 其中, 所述散热装置为铝挤。
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