WO2018068293A1 - 一种供气速度可调的电路板装置组件 - Google Patents

一种供气速度可调的电路板装置组件 Download PDF

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WO2018068293A1
WO2018068293A1 PCT/CN2016/102091 CN2016102091W WO2018068293A1 WO 2018068293 A1 WO2018068293 A1 WO 2018068293A1 CN 2016102091 W CN2016102091 W CN 2016102091W WO 2018068293 A1 WO2018068293 A1 WO 2018068293A1
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horizontal
circuit board
vertical
positioning
cooling plate
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PCT/CN2016/102091
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English (en)
French (fr)
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何丹
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何丹
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Priority to PCT/CN2016/102091 priority Critical patent/WO2018068293A1/zh
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    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05KPRINTED CIRCUITS; CASINGS OR CONSTRUCTIONAL DETAILS OF ELECTRIC APPARATUS; MANUFACTURE OF ASSEMBLAGES OF ELECTRICAL COMPONENTS
    • H05K1/00Printed circuits
    • H05K1/18Printed circuits structurally associated with non-printed electric components
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05KPRINTED CIRCUITS; CASINGS OR CONSTRUCTIONAL DETAILS OF ELECTRIC APPARATUS; MANUFACTURE OF ASSEMBLAGES OF ELECTRICAL COMPONENTS
    • H05K7/00Constructional details common to different types of electric apparatus
    • H05K7/20Modifications to facilitate cooling, ventilating, or heating

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  • the invention relates to the field of circuit boards, in particular to a circuit board device assembly with adjustable air supply speed.
  • a circuit board device assembly with adjustable air supply speed includes a circuit board device, a hinge bracket fixedly disposed at one end of the circuit board device, and a cooling plate device coupled to the hinge frame, wherein a main rail block of the hinge frame is provided with a vertical rail slot and a horizontal rail slot for slidingly engaging one end of the vertically slidable clamping positioning block and one end of the horizontal slidable clamping positioning block, respectively,
  • the body block of the hinged frame is also fixedly coupled to one end of a vertical guide rod wound with a vertical tension spring and one end of a horizontal guide rod wound with a horizontal tension spring, the other end of the vertical guide rod
  • the other end of the horizontal guide rod is fixedly connected to an auxiliary fixing block of the hinge frame fixed to the circuit board device, the vertical slidable clamping positioning block and the horizontal slidable clamping positioning block and the
  • the vertical rail groove and the horizontal rail groove surround a space of a square cross section, and a positioning hinge shaft fixedly disposed at one end of the cooling
  • the cooling plate device is slidable in the vertical slidable clamping positioning block and horizontally
  • the clamping positioning block realizes positioning and locking under the clamping of the positioning hinge shaft, thereby ensuring corresponding alignment of the plurality of airflow cooling outlets of the cooling plate device and the plurality of heat dissipating chips;
  • the cooling plate device is rotated relative to the circuit board device, and the vertical slidable clamping positioning block and the horizontal slidable clamping positioning block are opened by the angular portion of the positioning hinge shaft Allowing rotation of the cooling plate device, and when the cooling plate device is in a vertical position, the vertical slidable clamping positioning block and the horizontal slidable clamping positioning block are positioned to the positioning hinge clamp Positioning and locking are also achieved under tight action to facilitate maintenance of the board assembly.
  • an articulated shaft mechanism having a biaxially symmetric shape which is capable of providing positional positioning and locking in both horizontal and vertical states, thereby satisfying the two state requirements of the heat sink in the working state and the maintenance state.
  • the circumferential positioning can be realized by the pressing action of the clamping block and the oppositely disposed circular arc surface, and the clamping block is guided by the double action of the guide rail groove and the guide rod, thereby The phenomenon of torsional deflection due to the resetting action of the elastic return element to the clamping is avoided.
  • two clamping blocks By setting two clamping blocks to act in different directions with different arc faces of the hinge shaft, the accuracy and reliability of the circumferential positioning are ensured.
  • the cooling plate device Due to this positioning and locking function, it can be ensured that the cooling plate device is closely attached to the circuit board device under working conditions, thereby ensuring that the cooling airflow effectively acts on the heat dissipating chip and can escape through the set path; Displacement occurs by disturbance factors. And in the maintenance state, the cooling plate device can be positioned in an open state, thereby facilitating the circuit board device Maintenance and easy maintenance of the cooling plate unit.
  • a shared fan can be used to provide airflow to a desired location, thereby reducing the number of components and reducing costs.
  • such a hinge mechanism that is easy to open and close can be used to conveniently maintain and quickly reset the cooling mechanism into a working state.
  • the structure of the entire device is reliable and easy to operate, which effectively reduces the cost and ensures the cooling effect, thereby improving the operational reliability and maintainability of the circuit board device system.
  • FIG. 1 is a schematic view showing the overall structure of a circuit board device assembly with adjustable air supply speed according to the present invention.
  • FIG. 2 is a schematic structural view of the positioning hinge shaft of FIG. 1.
  • a circuit board device assembly with adjustable air supply speed comprising a circuit board device 12, a hinge frame 9 fixedly disposed at one end of the circuit board device 12, and a cooling plate device connected to the hinge frame 9 2, wherein the main body block 91 of the hinge frame 9 is provided with a vertical rail groove 10 and a horizontal rail groove 7 for respectively engaging one end of the vertically slidable clamping positioning block 11 and a horizontal slidable clamping position.
  • One end of the block 5 is slidably fitted, and the body block 91 of the hinge frame 9 is also connected to one end of a vertical guide rod 3 wound with a vertical tension spring 4 and a horizontal guide rod 14 wound with a horizontal tension spring 13.
  • the hinge shaft 8 is accommodated in the space
  • the cross section of the positioning hinge shaft 8 has a horizontal axis of symmetry and a vertical axis of symmetry, and two circular arc lines 81, 82 symmetrical with respect to the horizontal axis of symmetry and the two segments
  • the circular arc lines 81, 82 are composed of two circular arc lines 83, 84 having the same curvature and symmetric about the axis of symmetry of the vertical direction;
  • the cooling plate device 2 is provided with an air distribution chamber 1 for distributing airflow to The plurality of heat dissipating chips
  • the left end of the horizontal rail groove 7 may be provided with a first elastic pressing element 71 for pressing against the positioning hinge shaft 8 on one end of the horizontal slidable clamping positioning block 5
  • the lower end of the vertical rail groove 10 may be provided with a second elastic pressing member 101 for pressing against the positioning hinge shaft 8 on one end of the vertically slidable clamping positioning block 11.
  • An airflow escape passage 15 is disposed between the cooling plate device 2 and the circuit board device 12.
  • An articulated shaft mechanism having a biaxially symmetric shape is provided which is capable of providing positional positioning and locking in both horizontal and vertical states to meet the two state requirements of the heat sink in the operating state and the maintenance state.
  • the circumferential positioning can be realized by the pressing action of the clamping block and the oppositely disposed circular arc surface, and the clamping block is guided by the double action of the guide rail groove and the guide rod, thereby The phenomenon of torsional deflection due to the resetting action of the elastic return element to the clamping is avoided.
  • By setting two clamping blocks to act in different directions with different arc faces of the hinge shaft the accuracy and reliability of the circumferential positioning are ensured.
  • the cooling plate device Due to this positioning and locking function, it is ensured that the cooling plate device is closely attached to the circuit board device under working conditions, thereby ensuring that the cooling airflow effectively acts on the heat dissipating chip and can escape through the set path. Yi; and will not be displaced due to disturbances such as external vibration. And in the maintenance state, the cooling plate device can be positioned in an open state, thereby facilitating maintenance of the circuit board device and facilitating maintenance of the cooling plate device. By providing a cooling air distribution chamber having a plurality of outlets, a shared fan can be used to provide airflow to a desired location, thereby reducing the number of components and reducing costs.

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  • Engineering & Computer Science (AREA)
  • Microelectronics & Electronic Packaging (AREA)
  • Physics & Mathematics (AREA)
  • Thermal Sciences (AREA)
  • Cooling Or The Like Of Electrical Apparatus (AREA)

Abstract

一种供气速度可调的电路板装置组件,包括电路板装置(12)、固定设置在所述电路板装置(12)一端处的铰接架(9)以及与所述铰接架(9)连接的冷却板装置(2),其中,所述铰接架(9)的主体块(91)上设置有竖直导轨槽(10)以及水平导轨槽(7)用以分别与竖直可滑动的夹紧定位块(11)的一端以及水平可滑动的夹紧定位块(5)的一端滑动配合,所述铰接架(9)的所述主体块(91)还与缠绕有竖直拉伸弹簧(4)的竖直导杆(3)的一端以及缠绕有水平拉伸弹簧(13)的水平导杆(14)的一端固定连接。

Description

一种供气速度可调的电路板装置组件 技术领域
本发明涉及电路板领域,尤其是一种供气速度可调的电路板装置组件。
背景技术
在电路板领域中,往往需要对电路板中的热量散发部件,例如大功率芯片等,进行针对性散热。现在往往采用在这些芯片上安装单独的散热风扇从而实现有效散热。但是这种散热模式容易引起安装以及成本增加的问题,而且对于后期维护带来困难。
而目前有些能够集中散热的一些散热装置往往难以方便地进行定位安装和打开维护,给使用者造成难以维护以及安装困难的麻烦。如果安装过程中定位不准确将会影响到散热芯片的针对性散热,从而影响电路板整体系统的运行稳定性和可靠性。
发明内容
本发明的目的在于提供一种供气速度可调的电路板装置组件,其能够克服现有技术中的缺陷。
根据本发明的方面的一种供气速度可调的电路板装置组件,包括电路板装置、固定设置在所述电路板装置一端处的铰接架以及与所述铰接架连接的冷却板装置,其中,所述铰接架的主体块上设置有竖直导轨槽以及水平导轨槽用以分别与竖直可滑动的夹紧定位块的一端以及水平可滑动的夹紧定位块的一端滑动配合,所述铰接架的所述主体块还与缠绕有竖直拉伸弹簧的竖直导杆的一端以及缠绕有水平拉伸弹簧的水平导杆的一端固定连接,所述竖直导杆的另一端以及所述水平导杆的另一端分别与所述铰接架的固定于电路板装置上的附属固定块固定连接,所述竖直可滑动的夹紧定位块以及水平可滑动的夹紧定位块与所述竖直导轨槽以及水平导轨槽围绕成正方形截面的空间,固定设置于冷却板装置一端处的定位铰接轴容纳于该空间内,所述定位铰接轴的横截面具有水平方向的对称轴线和竖 直方向的对称轴线,并且由关于所述水平方向的对称轴线对称的两段圆弧线以及与所述两段圆弧线曲率相同且关于所述竖直方向的对称轴线对称的两段圆弧线组成;所述冷却板装置中设置有气流分配腔用以将气流分配至与电路板装置上的多个散热芯片分别对准的多个气流冷却出口,所述冷却板装置的另一端处设置有驱动电机,所述驱动电机的输出轴上固定设置有向所述气流分配腔中提供空气流的进气风扇,所述进气风扇与所述驱动电机动力联接从而通过所述驱动电机为所述进气风扇提供动力,所述驱动电机的外壳上设置有电子控制装置与所述驱动电机电连接用以控制所述驱动电机的转速,从而可以根据使用需要来调节进气风扇向所述气流分配腔中提供空气流的速度;由此,在工作状态,所述冷却板装置在所述竖直可滑动的夹紧定位块以及水平可滑动的夹紧定位块对所述定位铰接轴夹紧作用下实现定位和锁定,从而确保所述冷却板装置的所述多个气流冷却出口与所述多个散热芯片的相应对准;当需要进入维护状态时,所述冷却板装置相对于所述电路板装置转动,所述竖直可滑动的夹紧定位块以及水平可滑动的夹紧定位块被所述定位铰接轴的棱角部顶开以允许所述冷却板装置的转动,并且所述冷却板装置当处于竖直位置时,在所述竖直可滑动的夹紧定位块以及水平可滑动的夹紧定位块对所述定位铰接轴夹紧作用下也实现定位和锁定,以便于对所述电路板装置组件进行维护。
通过上述方案,设置具有双轴对称形状的铰接轴机构,其能够提供水平和竖直两种状态的位置定位和锁定,从而满足散热装置在工作状态和维护状态的两种状态需要。而通过设置该铰接轴的具体形状,利用夹紧块与相对设置的圆弧面的顶压作用能够实现周向定位,而且由于利用导轨槽与导杆的双重作用对夹紧块进行导向,从而避免由于弹性回复元件对于夹紧的复位作用而产生的扭转偏转现象。通过设置两个夹紧块在不同的方向上与该铰接轴的不同圆弧面分别作用,从而确保了周向定位的准确性和可靠性。由于这种定位和锁定作用,能够确保在工作状态下冷却板装置紧密贴合在电路板装置上,从而保证冷却气流有效作用在散热芯片处并且能够通过设置的路径逃逸;而且不会因为外界振动等扰动因素而发生移位。并且在维护状态能够将冷却板装置定位在打开状态,从而便于对电路板装置进 行维护并且便于对冷却板装置进行维护。通过设置具有多个出口的冷却气流分配腔室能够利用共用的风扇将气流提供至需要的位置处,从而减少了部件数量降低了成本。针对这种出气口数量众多而冷却板容易发生阻塞等故障的具体情形,利用这种易于打开和闭合的铰接机构,从而能够方便地对这种冷却机构进行维护并快速复位进入工作状态。整个装置组件结构可靠操作方便,有效降低了成本并保证了冷却的效果,从而提高了电路板装置系统的运行可靠性和可维护性。
附图说明
图1是本发明的供气速度可调的电路板装置组件的整体结构示意图。
图2是图1中的定位铰接轴的结构示意图。
具体实施方式
下面结合图1-2对本发明进行详细说明。
根据实施例的一种供气速度可调的电路板装置组件,包括电路板装置12、固定设置在所述电路板装置12一端处的铰接架9以及与所述铰接架9连接的冷却板装置2,其中,所述铰接架9的主体块91上设置有竖直导轨槽10以及水平导轨槽7用以分别与竖直可滑动的夹紧定位块11的一端以及水平可滑动的夹紧定位块5的一端滑动配合,所述铰接架9的所述主体块91还与缠绕有竖直拉伸弹簧4的竖直导杆3的一端以及缠绕有水平拉伸弹簧13的水平导杆14的一端固定连接,所述竖直导杆3的另一端以及所述水平导杆14的另一端分别与所述铰接架9的同样固定于电路板装置上的附属固定块91固定连接,所述竖直可滑动的夹紧定位块11以及水平可滑动的夹紧定位块5与所述竖直导轨槽10以及水平导轨槽7围绕成正方形截面的空间,固定设置于冷却板装置2一端处的定位铰接轴8容纳于该空间内,所述定位铰接轴8的横截面具有水平方向的对称轴线和竖直方向的对称轴线,并且由关于所述水平方向的对称轴线对称的两段圆弧线81,82以及与所述两段圆弧线81,82曲率相同且关于所述竖直方向的对称轴线对称的两段圆弧线83,84组成;所述冷却板装置2中设置有气流分配腔1用以将气流分配至与电路板装置12上的多个散热芯片18、19分别对准的多个气流冷却出口16、20,所述冷却板装置2的另一端处设置有驱动电机27),所述驱动电机27的输出轴上固定设置有向所述气流分配腔1中提 供空气流的进气风扇17,所述进气风扇17与所述驱动电机27动力联接从而通过所述驱动电机27为所述进气风扇17提供动力,所述驱动电机27的外壳上设置有电子控制装置31与所述驱动电机27电连接用以控制所述驱动电机27的转速,从而可以根据使用需要来调节进气风扇17向所述气流分配腔1中提供空气流的速度;由此,在工作状态,所述冷却板装置2在所述竖直可滑动的夹紧定位块11以及水平可滑动的夹紧定位块5对所述定位铰接轴8夹紧作用下实现定位和锁定,从而确保所述冷却板装置2的所述多个气流冷却出口16、20与所述多个散热芯片18、19的相应对准;当需要进入维护状态时,所述冷却板装置2相对于所述电路板装置12转动,所述竖直可滑动的夹紧定位块11以及水平可滑动的夹紧定位块5被所述定位铰接轴8的棱角部顶开以允许所述冷却板装置12的转动,并且所述冷却板装置2当处于竖直位置时,在所述竖直可滑动的夹紧定位块11以及水平可滑动的夹紧定位块5对所述定位铰接轴8夹紧作用下也实现定位和锁定,以便于对所述电路板装置组件进行维护。
其中,所述水平导轨槽7的左端可设置有第一弹性顶压元件71用以朝向所述定位铰接轴8地顶压在所述水平可滑动的夹紧定位块5的一端上,所述竖直导轨槽10的下端可设置有第二弹性顶压元件101用以朝向所述定位铰接轴8地顶压在所述竖直可滑动的夹紧定位块11的一端上。
其中,所述冷却板装置2与所述电路板装置12之间设置有气流逃逸通道15。
设置具有双轴对称形状的铰接轴机构,其能够提供水平和竖直两种状态的位置定位和锁定,从而满足散热装置在工作状态和维护状态的两种状态需要。而通过设置该铰接轴的具体形状,利用夹紧块与相对设置的圆弧面的顶压作用能够实现周向定位,而且由于利用导轨槽与导杆的双重作用对夹紧块进行导向,从而避免由于弹性回复元件对于夹紧的复位作用而产生的扭转偏转现象。通过设置两个夹紧块在不同的方向上与该铰接轴的不同圆弧面分别作用,从而确保了周向定位的准确性和可靠性。由于这种定位和锁定作用,能够确保在工作状态下冷却板装置紧密贴合在电路板装置上,从而保证冷却气流有效作用在散热芯片处并且能够通过设置的路径逃 逸;而且不会因为外界振动等扰动因素而发生移位。并且在维护状态能够将冷却板装置定位在打开状态,从而便于对电路板装置进行维护并且便于对冷却板装置进行维护。通过设置具有多个出口的冷却气流分配腔室能够利用共用的风扇将气流提供至需要的位置处,从而减少了部件数量降低了成本。针对这种出气口数量众多而冷却板容易发生阻塞等故障的具体情形,利用这种易于打开和闭合的铰接机构,从而能够方便地对这种冷却机构进行维护并快速复位进入工作状态。整个装置组件结构可靠操作方便,有效降低了成本并保证了冷却的效果。
通过以上方式,本领域的技术人员可以在本发明的范围内根据工作模式做出各种改变。

Claims (2)

  1. 一种供气速度可调的电路板装置组件,包括电路板装置(12)、固定设置在所述电路板装置(12)一端处的铰接架(9)以及与所述铰接架(9)连接的冷却板装置(2),其中,所述铰接架(9)的主体块(91)上设置有竖直导轨槽(10)以及水平导轨槽(7)用以分别与竖直可滑动的夹紧定位块(11)的一端以及水平可滑动的夹紧定位块(5)的一端滑动配合,所述铰接架(9)的所述主体块(91)还与缠绕有竖直拉伸弹簧(4)的竖直导杆(3)的一端以及缠绕有水平拉伸弹簧(13)的水平导杆(14)的一端固定连接,所述竖直导杆(3)的另一端以及所述水平导杆(14)的另一端分别与所述铰接架(9)的同样固定于所述电路板装置(12)上的附属固定块(92)固定连接,所述竖直可滑动的夹紧定位块(11)以及水平可滑动的夹紧定位块(5)与所述竖直导轨槽(10)以及水平导轨槽(7)围绕成正方形截面的空间,固定设置于冷却板装置(2)一端处的定位铰接轴(8)容纳于该空间内,所述定位铰接轴(8)的横截面具有水平方向的对称轴线和竖直方向的对称轴线,并且由关于所述水平方向的对称轴线对称的两段圆弧线(81,82)以及与所述两段圆弧线(81,82)曲率相同且关于所述竖直方向的对称轴线对称的两段圆弧线(83,84)组成;所述冷却板装置(2)中设置有气流分配腔(1)用以将气流分配至与电路板装置(12)上的多个散热芯片(18、19)分别对准的多个气流冷却出口(16、20),所述冷却板装置(2)的另一端处设置有驱动电机(27),所述驱动电机(27)的输出轴上固定设置有向所述气流分配腔(1)中提供空气流的进气风扇(17),所述进气风扇(17)与所述驱动电机(27)动力联接从而通过所述驱动电机(27)为所述进气风扇(17)提供动力,所述驱动电机(27)的外壳上设置有电子控制装置(31)与所述驱动电机(27)电连接用以控制所述驱动电机(27)的转速,从而可以根据使用需要来调节进气风扇(17)向所述气流分配腔(1)中提供空气流的速度;由此,在工作状态,所述冷却板装置(2)在所述竖直可滑动的夹紧定位块(11)以及水平可滑动的夹紧定位块(5)对所述定位铰接轴(8)夹紧作用下实现定位和锁定,从而确保所述冷却板装置(2)的所述多个气流冷却出口(16、20)与所 述多个散热芯片(18、19)的相应对准;当需要进入维护状态时,所述冷却板装置(2)相对于所述电路板装置(12)转动,所述竖直可滑动的夹紧定位块(11)以及水平可滑动的夹紧定位块(5)被所述定位铰接轴(8)的棱角部顶开以允许所述冷却板装置(2)的转动,并且所述冷却板装置(2)当处于竖直位置时,在所述竖直可滑动的夹紧定位块(11)以及水平可滑动的夹紧定位块(5)对所述定位铰接轴(8)夹紧作用下也实现定位和锁定,以便于对所述电路板装置组件进行维护。
  2. 如权利要求1所述的一种供气速度可调的电路板装置组件,其中,所述水平导轨槽(7)的左端设置有第一弹性顶压元件(71)用以朝向所述定位铰接轴(8)地顶压在所述水平可滑动的夹紧定位块(5)的一端上,所述竖直导轨槽(10)的下端设置有第二弹性顶压元件(101)用以朝向所述定位铰接轴(8)地顶压在所述竖直可滑动的夹紧定位块(11)的一端上。
PCT/CN2016/102091 2016-10-14 2016-10-14 一种供气速度可调的电路板装置组件 WO2018068293A1 (zh)

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