WO2020151692A1 - 弱电网络配电柜 - Google Patents

弱电网络配电柜 Download PDF

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Publication number
WO2020151692A1
WO2020151692A1 PCT/CN2020/073419 CN2020073419W WO2020151692A1 WO 2020151692 A1 WO2020151692 A1 WO 2020151692A1 CN 2020073419 W CN2020073419 W CN 2020073419W WO 2020151692 A1 WO2020151692 A1 WO 2020151692A1
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cabinet
cabinet body
heat
welded
inner cavity
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PCT/CN2020/073419
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English (en)
French (fr)
Inventor
陈英莲
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苏州英克迈信息科技有限公司
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Publication of WO2020151692A1 publication Critical patent/WO2020151692A1/zh

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    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02BBOARDS, SUBSTATIONS OR SWITCHING ARRANGEMENTS FOR THE SUPPLY OR DISTRIBUTION OF ELECTRIC POWER
    • H02B1/00Frameworks, boards, panels, desks, casings; Details of substations or switching arrangements
    • H02B1/26Casings; Parts thereof or accessories therefor
    • H02B1/30Cabinet-type casings; Parts thereof or accessories therefor
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02BBOARDS, SUBSTATIONS OR SWITCHING ARRANGEMENTS FOR THE SUPPLY OR DISTRIBUTION OF ELECTRIC POWER
    • H02B1/00Frameworks, boards, panels, desks, casings; Details of substations or switching arrangements
    • H02B1/56Cooling; Ventilation

Definitions

  • This application relates to the technical field of power distribution cabinet equipment, for example, to a weak current network power distribution cabinet.
  • the weak current cabinet is a centralized box for weaker voltage lines. It is generally used in modern home decoration, such as network cables, telephone lines, computer monitors, USB cables, TV VGA, color difference, antennas, etc. can be placed in it; and if these things Putting it out of order is a large group of lines, which is very messy and appears inharmonious, and will also affect the cleaning.
  • the weak current cabinet is used to install these equipment and wire management.
  • the weak current network power distribution cabinet is very common in our lives. Therefore, it is very meaningful to develop an easy-to-use weak current network distribution cabinet.
  • This application proposes a power distribution cabinet for a weak current network, which has good heat dissipation performance, simple structure and easy use.
  • An embodiment provides a light current network power distribution cabinet, which includes a cabinet body, a cabinet door, and a loading plate.
  • the inner cavity of the cabinet body is provided with a loading plate symmetrically.
  • the bottom of the loading plate is welded with an elastic telescopic rod.
  • a partition is provided at the bottom of the cavity of the cabinet, a plurality of limit holes are opened on the top of the partition, a second sliding groove is opened on the front surface wall of the partition, and the inside of the second sliding groove is slidably connected with a pusher
  • a connecting plate is welded on both sides of the horizontal end of the rear end of the pushing block, the top of the connecting plate is welded with a plurality of bumps for use with limiting holes, and the inner cavity of the cabinet is embedded with a heat sink
  • a water tank is provided in the area formed by the heat dissipation plate and the cabinet body, and a plurality of heat conduction pipes are provided in the cavity of the cabinet body, and the heat conduction pipe penetrates the heat dissipation plate, the water tank and the rear surface wall of the cabinet body, and the heat conduction pipe penetrates the water tank.
  • a part of the outside is connected with a branch pipe, and one end of the heat conduction pipe extending to the outside of the cabinet is welded with a suction cup, and a heat dissipation hole is opened between the suction cup and the rear surface wall of the cabinet and the outside of the heat conduction pipe.
  • a cabinet door is rotatably connected to one side of the cabinet body through a hinge.
  • a first chute is provided on the top of the inner cavity of the cabinet, and the top end of the loading plate is slidingly connected to the first chute through a roller.
  • each set of rollers is provided with two rollers, and the two rollers are distributed on both sides of the top of the loading plate.
  • the connecting plate is elastically connected to the bottom of the inner cavity of the cabinet through a spring.
  • the partition is L-shaped, and one end of the partition is welded to the bottom surface wall of the cabinet, and two ends of the partition are welded to the rear surface of the cabinet.
  • a heat sink is embedded in the inner cavity of the cabinet, a water tank is arranged in the area formed by the heat sink and the rear surface wall of the cabinet, and a part of the heat conduction pipe penetrates through the rear surface of the cabinet, the water tank and the heat sink, The other part is outside the cabinet.
  • the heat pipe runs through a part of the outside of the water tank.
  • One end of the heat pipe is welded with a suction cup.
  • the multiple branch pipes connected to the heat pipe can increase the contact area of heat and water, which can make the heat transfer to the water tank better, and the radiating holes can better transmit
  • the suction cup can play a role in fixing the weak current cabinet when it is installed. Compared with the weak current network power distribution cabinet in the related technology, the heat dissipation performance is better, and the structure is simple and easy to use.
  • the inner cavity of the cabinet body is provided with a loading plate, the bottom of the transfer plate is welded with an elastic telescopic rod, the top of the inner cavity of the cabinet is provided with a first chute, and the loading plate is slidingly connected with the first chute through rollers, and the bottom of the cabinet is provided Partition, the partition is L-shaped, one end of the partition is welded to the bottom of the inner cavity of the cabinet, and the other end of the partition is welded to the rear surface wall of the cabinet.
  • the top of the partition is provided with a plurality of limit holes.
  • a second sliding groove is provided on the front wall of the second sliding groove. The inside of the second sliding groove is slidably connected with a push block. The rear end of the push block is welded with connecting plates on both sides.
  • the top of the connecting plate is welded with a plurality of bumps, and the connecting plate It is connected with the inner cavity of the cabinet by a spring.
  • the loading plate can move horizontally in the inner cavity of the cabinet through the roller and the first chute.
  • the elastic telescopic rod at the bottom of the loading plate can push the limit hole to limit the position.
  • the loading plate is fixed, and the user can adjust the distance between the loading plates according to needs, which can better partition. Pushing the push block upwards can make the connecting plate drive the convex block upwards, and one end of the elastic telescopic rod can be pushed out of the limit hole ,
  • the load plate is released from the limit, and the distance between the load plates can be readjusted.
  • the connecting plate can be reset by a spring, which is more convenient than the weak current network power distribution cabinet in the related technology.
  • Figure 1 is a schematic structural diagram of a weak current network power distribution cabinet provided by an embodiment
  • Figure 2 is a top sectional view of a cabinet in an embodiment
  • Figure 3 is a bottom cross-sectional view of the cabinet in an embodiment.
  • a light current network power distribution cabinet includes a cabinet body 9, a cabinet door 4 and a loading plate 1.
  • the inner cavity of the cabinet body 9 is provided with a loading plate 1 symmetrically, and the bottom of the loading plate 1 is welded with elastic expansion Bar 5, the bottom of the inner cavity of the cabinet 9 is provided with a partition 8, the top of the partition 8 is provided with a plurality of limiting holes 16, the front wall of the partition 8 is provided with a second slide groove 7, and the second slide groove 7
  • a push block 6 is slidably connected to the inside of the push block 6.
  • the rear horizontal end of the push block 6 is welded with a connecting plate 18 on both sides.
  • the top of the connecting plate 18 is welded with a plurality of bumps 17 for use with the limit holes 16, and the inside of the cabinet 9
  • the cavity is embedded with a radiating plate 14, the area formed by the radiating plate 14 and the cabinet body 9 is provided with a water tank 15, and the inner cavity of the cabinet body 9 is provided with a plurality of heat pipes 10, and the arrangement of the plurality of heat pipes 10 can better dissipate heat.
  • the heat pipe 10 penetrates the heat sink 14, the water tank 15 and the rear surface wall of the cabinet 9, the heat pipe 10 penetrates a part of the outside of the water tank 15 to communicate with a branch pipe 13, and the heat pipe 10 extends to the outside of the cabinet 9 with a suction cup 11 welded thereon.
  • the suction cup 11 can be used for temporary fixation when the cabinet 9 is installed.
  • a heat dissipation hole 12 is provided between the suction cup 11 and the rear surface wall of the cabinet 9 and outside of the heat pipe 10. The heat dissipation hole 12 can better dissipate heat Radiate.
  • a cabinet door 4 is connected to one side of the cabinet body 9 through hinge rotation, and the cabinet door 4 can seal the cabinet body 9 to avoid water ingress.
  • the top of the inner cavity of the cabinet body 9 is provided with a first chute 3, and the top of the loading plate 1 is slidably connected to the first chute 3 through a roller 2, and the roller 2 makes the loading plate 1 slide in the first chute 3. More smoothly.
  • each set of rollers 2 is provided with two rollers 2 in total, and the two rollers 2 are distributed on both sides of the top of the loading plate 1. There are multiple rollers 2 to improve the stability of the loading plate 1 when it moves.
  • the connecting plate 18 is elastically connected to the bottom of the inner cavity of the cabinet 9 through a spring 19, and the connecting plate 18 is used to push the protrusion 17 to move up and down.
  • the partition 8 is L-shaped, and one end of the partition 8 is welded to the bottom surface wall of the cabinet 9, the other end of the partition 8 is welded to the rear surface wall of the cabinet 9, and the top of the partition 8 has a limit.
  • the position hole 16 cooperates with the elastic telescopic rod 5 at the bottom of the loading plate 1 to limit the position of the loading plate 1.
  • the distance between the loading plate 1 can be adjusted by the roller 2 and the first chute 3 for reasonable partitioning, and the loading plate 1 can be moved after one end of the elastic telescopic rod 5 is pushed into the limit hole 16 Limit, if you want to change the distance between the loading plate 1, you can push the push block 6 to the top, and the push block 6 drives the bump 17 on the connecting plate 18 to move upward, and the elastic telescopic rod 5 can be pushed out of the limit hole 16.
  • the limit on the loading plate 1 is released, and the distance between the loading plates 1 can be readjusted.
  • the heat inside the power distribution cabinet will be transferred to the outside through the heat pipe 10 on the heat sink 14, and the branch pipe 13 outside the heat pipe 10 will increase.
  • the contact area with water makes the heat transfer effect better, and the heat dissipation hole 12 on the heat pipe 10 can better dissipate the heat. Compared with the weak current network power distribution cabinet in the related technology, the heat dissipation effect is better and safer. Higher sex.

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  • Engineering & Computer Science (AREA)
  • Power Engineering (AREA)
  • Casings For Electric Apparatus (AREA)
  • Distribution Board (AREA)

Abstract

一种弱电网络配电柜,包括柜体、柜门和装载板,其中,所述柜体的内腔设置对称设置有装载板,所述装载板的底部焊接有弹性伸缩杆,所述柜体内腔底部设置有隔板,所述隔板顶部开设有多个限位孔,所述隔板的前表壁上开设有第二滑槽,所述第二滑槽的内部滑动连接有推动块,所述推动块的后端水平端两侧均焊接有连接板,所述连接板的顶部焊接有多个凸块,所述柜体的内腔嵌设有散热板,所述散热板与柜体组成的区域设置有水箱,所述柜体内腔设置有多个导热管,且导热管贯穿散热板、水箱和柜体的后表壁,所述导热管贯穿水箱的一部分外部连通有支管,所述导热管延伸至柜体外部的一端焊接有吸盘,所述吸盘与柜体后表壁之间且导热管的外部开设有散热孔。

Description

弱电网络配电柜
本申请要求申请日为2019年1月26日、申请号为201920133908.8的中国专利申请的优先权,该申请的全部内容通过引用结合在本申请中。
技术领域
本申请涉及配电柜设备技术领域,例如涉及一种弱电网络配电柜。
背景技术
弱电柜,是较弱电压线路的集中箱,一般用于现代家居装修中,如网线,电话线,电脑的显示器,USB线,电视的VGA,色差,天线等都可以放置其中;而如果这些东西没有顺序的放,就是一大团线,非常乱,显得不和谐,还会影响清理,弱电柜就是用来装这些设备和理线的,弱电网络配电柜在我们的生活中使用非常的普遍,所以,研究出一种便于使用的弱电网络配电柜是很有意义的。
相关技术中的弱电网络配电柜在使用时存在很多不足之处,例如缺少散热装置,使得柜体发热严重,甚至引发火灾,不便于使用,其次,装载板不可移动,不能根据需求而改变装载板的位置,不能进行合理的分区,不便于使用。
发明内容
本申请提出了一种弱电网络配电柜,散热性能好,且结构简单,便于使用。
一实施例提供一种弱电网络配电柜,包括柜体、柜门和装载板,所述柜体的内腔设置对称设置有装载板,所述装载板的底部焊接有弹性伸缩杆,所述柜体内腔底部设置有隔板,所述隔板顶部开设有多个限位孔,所述隔板的前表壁上开设有第二滑槽,所述第二滑槽的内部滑动连接有推动块,所述推动块的后端水平端两侧均焊接有连接板,所述连接板的顶部焊接有多个配合限位孔使用的凸块,所述柜体的内腔嵌设有散热板,所述散热板与柜体组成的区域设置有水箱,所述柜体内腔设置有多个导热管,且导热管贯穿散热板、水箱和柜体的后表壁,所述导热管贯穿水箱的一部分外部连通有支管,所述导热管延伸至柜体外部的一端焊接有吸盘,所述吸盘与柜体后表壁之间且导热管的外部开设有散热孔。
可选的,所述柜体的一侧通过铰链转动连接有柜门。
可选的,所述柜体的内腔顶部开设有第一滑槽,所述装载板的顶端通过滚轮与第一滑槽滑动连接。
可选的,所述滚轮共设置有两组,且两组滚轮关于柜体对称,所述每组滚轮共设置有两个滚轮,且两个滚轮均分布于装载板的顶端两侧。
可选的,所述连接板与柜体的内腔底部通过弹簧弹性连接。
可选的,所述隔板成L型,且隔板一端与柜体的底表壁焊接,隔板的两一端与柜体的后表壁焊接。
本申请提供的弱电网络配电柜,柜体的内腔嵌设有散热板,散热板与柜体后表壁组成区域设置有水箱,导热管一部分贯穿柜体后表壁、水箱和散热板,另一部分在柜体的外部,导热管贯穿水箱一部分的外部连通有支管,导热管的一端焊接有吸盘,吸盘与柜体之间且导热管的外部开设有多个散热孔,柜体里的热量会通过散热板上的导热管向外输送,导热管上连通的多个支管可以增大热量与水的接触面积,可以使得热量更好向水箱内传递,而开设的散热孔可以更好的将热量散发出去,吸盘可以在弱电柜安装时,起到林是固定的作用,相比相关技术中的弱电网络配电柜散热性能更好,且结构简单,便于使用。柜体的内腔设置有装载板,转载板的底部焊接有弹性伸缩杆,柜体内腔的顶端开设有第一滑槽,装载板通过滚轮与第一滑槽滑动连接,柜体的底部设置了隔板,隔板成L型,隔板的一端与柜体的内腔底部焊接,隔板的另一端与柜体的后表壁焊接,隔板的顶部开设有多个限位孔,隔板的前表壁上开设有第二滑槽,第二滑槽的内部滑动连接有推动块,推动块的后端两侧均焊接有连接板,连接板的顶部焊接有多个凸块,连接板与柜体的内腔之间通过弹簧连接,装载板通过滚轮和第一滑槽可在柜体的内腔水平移动,装载板底端的弹性伸缩杆的一端推进限位孔可进行限位,对装载板进行固定,使用者可根据需要而调节装载板之间距离,可以更好的分区,将推动块向上推动可使得连接板带动凸块向上运动,可以将弹性伸缩杆的一端推出限位孔,对装载板解除限位,可重新调节装载板之间的距离,松开推动块之后,连接板通过弹簧可进行复位,相比相关技术中的弱电网络配电柜更加方便。
附图说明
图1为一实施例提供的弱电网络配电柜的结构示意图;
图2为一实施例中柜体俯视剖图;
图3为一实施例中柜体的底部剖图。
图例说明:
1、装载板;2、滚轮;3、第一滑槽;4、柜门;5、弹性伸缩杆;6、推动块;7、第二滑槽;8、隔板;9、柜体;10、导热管;11、吸盘;12、散热孔;13、支管;14、散热板;15、水箱;16、限位孔;17、凸块;18、连接板;19、弹簧。
具体实施方式
参照图1-3,一种弱电网络配电柜,包括柜体9、柜门4和装载板1,柜体9的内腔设置对称设置有装载板1,装载板1的底部焊接有弹性伸缩杆5,柜体9内腔底部设置有隔板8,隔板8顶部开设有多个限位孔16,隔板8的前表壁上开设有第二滑槽7,第二滑槽7的内部滑动连接有推动块6,推动块6的后端水平端两侧均焊接有连接板18,连接板18的顶部焊接有多个配合限位孔16使用的凸块17,柜体9的内腔嵌设有散热板14,散热板14与柜体9组成的区域设置有水箱15,柜体9内腔设置有多个导热管10,多个导热管10的设置可以更好的进行散热,且导热管10贯穿散热板14、水箱15和柜体9的后表壁,导热管10贯穿水箱15的一部分外部连通有支管13,导热管10延伸至柜体9外部的一端焊接有吸盘11,吸盘11可以在柜体9安装的时候,起到临时固定的作用,吸盘11与柜体9后表壁之间且导热管10的外部开设有散热孔12,散热孔12可更好的将热量散发出去。
可选的,柜体9的一侧通过铰链转动连接有柜门4,柜门4可以对柜体9进行封闭,避免进水等情况。
可选的,柜体9的内腔顶部开设有第一滑槽3,装载板1的顶端通过滚轮2与第一滑槽3滑动连接,滚轮2使得装载板1在第一滑槽3内滑动更加顺畅。
可选的,滚轮2共设置有两组,且两组滚轮2关于柜体9对称,每组滚轮2共设置有两个滚轮2,且两个滚轮2均分布于装载板1的顶端两侧,滚轮2设置有多个是为了提高装载板1移动时候的稳定性。
可选的,连接板18与柜体9的内腔底部通过弹簧19弹性连接,连接板18用于推动凸块17的上下移动。
可选的,隔板8成L型,且隔板8一端与柜体9的底表壁焊接,隔板8的另一端与柜体9的后表壁焊接,隔板8的顶部开设的限位孔16与装载板1底部的弹性伸缩 杆5相配合,可以实现对装载板1的限位。
工作原理:使用时,通过滚轮2和第一滑槽3可调节装载板1之间的距离,进行合理的分区,而弹性伸缩杆5的一端推进限位孔16之后便可对装载板1进行限位,若想改变装载板1之间的距离,可将推动块6向顶部推动,推动块6带动连接板18上的凸块17向上运动,可将弹性伸缩杆5推出限位孔16,实现了对装载板1解除限位,可重新调节装载板1之间的距离,配电柜内部的热量会通过散热板14上的导热管10向外传递,导热管10外部的支管13增大了与水的接触面积,使得热传递效果更好,而导热管10上的散热孔12可更好的将热量散发出去,相比相关技术中的弱电网络配电柜,散热效果更好,安全性更高。

Claims (6)

  1. 一种弱电网络配电柜,包括柜体(9)、柜门(4)和装载板(1),其中,所述柜体(9)的内腔设置对称设置有装载板(1),所述装载板(1)的底部焊接有弹性伸缩杆(5),所述柜体(9)内腔底部设置有隔板(8),所述隔板(8)顶部开设有多个限位孔(16),所述隔板(8)的前表壁上开设有第二滑槽(7),所述第二滑槽(7)的内部滑动连接有推动块(6),所述推动块(6)的后端水平端两侧均焊接有连接板(18),所述连接板(18)的顶部焊接有多个配合限位孔(16)使用的凸块(17),所述柜体(9)的内腔嵌设有散热板(14),所述散热板(14)与柜体(9)组成的区域设置有水箱(15),所述柜体(9)内腔设置有多个导热管(10),且导热管(10)贯穿散热板(14)、水箱(15)和柜体(9)的后表壁,所述导热管(10)贯穿水箱(15)的一部分外部连通有支管(13),所述导热管(10)延伸至柜体(9)外部的一端焊接有吸盘(11),所述吸盘(11)与柜体(9)后表壁之间且导热管(10)的外部开设有散热孔(12)。
  2. 根据权利要求1所述的弱电网络配电柜,其中,所述柜体(9)的一侧通过铰链转动连接有柜门(4)。
  3. 根据权利要求1所述的弱电网络配电柜,其中,所述柜体(9)的内腔顶部开设有第一滑槽(3),所述装载板(1)的顶端通过滚轮(2)与第一滑槽(3)滑动连接。
  4. 根据权利要求3所述的弱电网络配电柜,其中,所述滚轮(2)共设置有两组,且两组滚轮(2)关于柜体(9)对称,两组所述滚轮(2)共设置有两个滚轮(2),且两个滚轮(2)均分布于装载板(1)的顶端两侧。
  5. 根据权利要求1所述的弱电网络配电柜,其中,所述连接板(18)与柜体(9)的内腔底部通过弹簧(19)弹性连接。
  6. 根据权利要求1所述的弱电网络配电柜,其中,所述隔板(8)成L型,且隔板(8)一端与柜体(9)的底表壁焊接,隔板(8)的两一端与柜体(9)的后表壁焊接。
PCT/CN2020/073419 2019-01-26 2020-01-21 弱电网络配电柜 WO2020151692A1 (zh)

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