CN112004373A - Novel server cabinet heat dissipation device - Google Patents

Novel server cabinet heat dissipation device Download PDF

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Publication number
CN112004373A
CN112004373A CN202010731291.7A CN202010731291A CN112004373A CN 112004373 A CN112004373 A CN 112004373A CN 202010731291 A CN202010731291 A CN 202010731291A CN 112004373 A CN112004373 A CN 112004373A
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cooling
cooling liquid
cabinet
pipe
heat dissipation
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CN112004373B (en
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李成霖
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Suzhou Metabrain Intelligent Technology Co Ltd
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Suzhou Inspur Intelligent Technology Co Ltd
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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
    • H05K7/00Constructional details common to different types of electric apparatus
    • H05K7/20Modifications to facilitate cooling, ventilating, or heating
    • H05K7/20709Modifications to facilitate cooling, ventilating, or heating for server racks or cabinets; for data centers, e.g. 19-inch computer racks
    • H05K7/20763Liquid cooling without phase change
    • H05K7/20781Liquid cooling without phase change within cabinets for removing heat from server blades
    • 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
    • H05K7/20009Modifications to facilitate cooling, ventilating, or heating using a gaseous coolant in electronic enclosures
    • H05K7/20136Forced ventilation, e.g. by fans
    • H05K7/20172Fan mounting or fan specifications
    • 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
    • H05K7/20009Modifications to facilitate cooling, ventilating, or heating using a gaseous coolant in electronic enclosures
    • H05K7/20136Forced ventilation, e.g. by fans
    • H05K7/20181Filters; Louvers
    • 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
    • H05K7/20218Modifications to facilitate cooling, ventilating, or heating using a liquid coolant without phase change in electronic enclosures
    • H05K7/20263Heat dissipaters releasing heat from coolant
    • 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
    • H05K7/20218Modifications to facilitate cooling, ventilating, or heating using a liquid coolant without phase change in electronic enclosures
    • H05K7/20272Accessories for moving fluid, for expanding fluid, for connecting fluid conduits, for distributing fluid, for removing gas or for preventing leakage, e.g. pumps, tanks or manifolds
    • 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
    • H05K7/20709Modifications to facilitate cooling, ventilating, or heating for server racks or cabinets; for data centers, e.g. 19-inch computer racks
    • H05K7/20718Forced ventilation of a gaseous coolant
    • H05K7/20736Forced ventilation of a gaseous coolant within cabinets for removing heat from server blades
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02DCLIMATE CHANGE MITIGATION TECHNOLOGIES IN INFORMATION AND COMMUNICATION TECHNOLOGIES [ICT], I.E. INFORMATION AND COMMUNICATION TECHNOLOGIES AIMING AT THE REDUCTION OF THEIR OWN ENERGY USE
    • Y02D10/00Energy efficient computing, e.g. low power processors, power management or thermal management

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

Abstract

The invention discloses a novel server cabinet heat dissipation device which comprises supporting legs, wherein a cooling liquid circulation box is installed at the tops of the supporting legs, a cabinet is installed at the top of the cooling liquid circulation box, and heat dissipation fins are arranged inside the cooling liquid circulation box. The device blows heat in the cabinet through the heat dissipation mechanism, and then absorbs the heat through the cooling liquid in the cooling pipe, so that the heat dissipation efficiency of the cabinet is improved.

Description

一种新型服务器机柜散热装置A new type of server cabinet cooling device

技术领域technical field

本发明属于服务器散热技术领域,特别涉及一种新型服务器机柜散热装置。The invention belongs to the technical field of server heat dissipation, and in particular relates to a novel server cabinet heat dissipation device.

背景技术Background technique

服务器,也称伺服器,是提供计算服务的设备,由于服务器需要响应服务请求,并进行处理,因此一般来说服务器应具备承担服务并且保障服务的能力,服务器的构成包括处理器、硬盘、内存和系统总线等,和通用的计算机架构类似,但是由于需要提供高可靠的服务,因此在处理能力、稳定性、可靠性、安全性、可扩展性和可管理性等方面要求较高,在网络环境下,根据服务器提供的服务类型不同,分为文件服务器、数据库服务器、应用程序服务器和WEB服务器等。A server, also known as a server, is a device that provides computing services. Since the server needs to respond to service requests and process them, generally speaking, the server should have the ability to undertake and guarantee services. The composition of the server includes a processor, a hard disk, and a memory. It is similar to the general computer architecture, but because of the need to provide highly reliable services, it has higher requirements in terms of processing power, stability, reliability, security, scalability and manageability. Under the environment, according to the different types of services provided by the server, it is divided into file server, database server, application server and WEB server.

目前市场上现有的机柜结构简单,虽然能实现有序排列放置服务器的目的,但是由于服务器散热机柜的散热口设置在机柜的正上方,风扇在对机柜内部进行散热的时候,只能吹到最上层的服务器,而下层的服务器由于被上层服务器所阻挡,使下层服务器周围的空气无法流动,热气无法散出,累积的热量很容易使服务器设备过热而死机,导致网络系统的运行异常。At present, the existing cabinets on the market have a simple structure. Although the purpose of placing servers in an orderly arrangement can be achieved, since the cooling ports of the server cooling cabinet are set directly above the cabinet, the fans can only blow up to the The uppermost server and the lower server are blocked by the upper server, so that the air around the lower server cannot flow, and the heat cannot be dissipated. The accumulated heat can easily cause the server equipment to overheat and crash, resulting in abnormal operation of the network system.

发明内容SUMMARY OF THE INVENTION

本发明的目的是克服现有技术中的不足,提供一种新型服务器机柜散热装置,该装置通过散热机构将机柜内的热量吹散,再通过冷却管内的冷却液将热量吸收掉,从而提高机柜的散热效率,冷却液从其中一根冷却管输入到冷却液循环管的内部,在此过程中,冷却液吸收机柜内部的热量,然后在搅拌桨叶的作用下,加快冷却液的散热,然后再经过传动机构、复位机构、循环机构以及另一根冷却管的配合下,将冷却循环箱内的冷却液输送到冷却液储存箱内,在此过程中,冷却液再次吸收机柜内部的热量,如此往复实现对机柜内设备的散热,大大提高了机柜的散热效率。The purpose of the present invention is to overcome the deficiencies in the prior art and provide a new type of cooling device for server cabinets, which blows away the heat in the cabinet through the cooling mechanism, and then absorbs the heat through the cooling liquid in the cooling pipe, thereby improving the performance of the cabinet. The cooling liquid is input from one of the cooling pipes to the inside of the cooling liquid circulation pipe. During this process, the cooling liquid absorbs the heat inside the cabinet, and then under the action of the stirring blade, the cooling liquid is accelerated to dissipate heat, and then With the cooperation of the transmission mechanism, reset mechanism, circulation mechanism and another cooling pipe, the cooling liquid in the cooling circulation box is transported to the cooling liquid storage tank. During this process, the cooling liquid absorbs the heat inside the cabinet again. This reciprocation realizes the heat dissipation of the equipment in the cabinet, which greatly improves the heat dissipation efficiency of the cabinet.

为了实现上述目的,本发明采用的技术方案是:In order to achieve the above object, the technical scheme adopted in the present invention is:

一种新型服务器机柜散热装置,包括支腿,所述支腿的顶部安装有冷却液循环箱,所述冷却液循环箱的顶部安装有机柜,在冷却液循环箱的内部设有散热片,所述散热板的一端贯穿冷却液循环箱的底板,延伸到冷却液循环箱的底部,所述机柜的内部设有散热机构,在服务器的内部安装有孔板、两个冷却管,在机柜的侧壁上开有送风孔,所述送风孔内安装有过滤网,在机柜的顶部安装有冷却液储存箱,在冷却液储存箱的顶部设有传动机构、进料管、L型管、循环机构以及复位机构,所述进料管安装在冷却液储存箱的一侧,所述传动机构安装在进料管的一侧,并与所述复位机构相配合,所述复位机构安装在传动机构的一侧,在复位机构的顶部安装有散热板,所述循环机构安装在复位机构的底部,且循环机构的底部贯穿冷却液储存箱的顶板与其中一个冷却管相连接,循环机构与冷却液储存箱滑动连接,所述L型管安装在复位机构的底部,且L型管的一端与循环机构相连接、另一端贯穿冷却液储存箱的顶板延伸到冷却液储存箱的内部,且在L型管的内部安装有第一单向阀,所述两个冷却管对称安装在机柜的两侧壁上,其中一个冷却管的一端连接冷却液储存箱、另一端连接冷却液循环箱,另一个冷却管的一端贯穿冷却液循环箱的顶板延伸到冷却液循环箱的内部、另一端贯穿机柜的顶板与所述循环机构相连接。A new type of cooling device for server cabinets, comprising legs, a cooling liquid circulation box is installed on the top of the legs, a cabinet is installed on the top of the cooling liquid circulation box, and heat sinks are arranged inside the cooling liquid circulation box, so the One end of the cooling plate penetrates through the bottom plate of the cooling liquid circulation box and extends to the bottom of the cooling liquid circulation box. There are air supply holes on the wall, a filter screen is installed in the air supply holes, a cooling liquid storage box is installed on the top of the cabinet, and a transmission mechanism, a feeding pipe, an L-shaped pipe, a transmission mechanism, a feeding pipe, an L-shaped pipe, Circulation mechanism and reset mechanism, the feed pipe is installed on one side of the cooling liquid storage tank, the transmission mechanism is installed on one side of the feed pipe, and cooperates with the reset mechanism, and the reset mechanism is installed on the transmission On one side of the mechanism, a heat dissipation plate is installed on the top of the reset mechanism, the circulation mechanism is mounted on the bottom of the reset mechanism, and the bottom of the circulation mechanism penetrates the top plate of the cooling liquid storage tank and is connected to one of the cooling pipes, and the circulation mechanism is connected to the cooling pipe. The liquid storage tank is slidably connected, the L-shaped pipe is installed at the bottom of the reset mechanism, and one end of the L-shaped pipe is connected with the circulation mechanism, and the other end extends through the top plate of the cooling liquid storage tank to the inside of the cooling liquid storage tank, and is at the bottom of the cooling liquid storage tank. A first check valve is installed inside the L-shaped pipe. The two cooling pipes are symmetrically installed on the two side walls of the cabinet. One end of one cooling pipe is connected to the cooling liquid storage tank, the other end is connected to the cooling liquid circulation box, and the other is connected to the cooling liquid circulation tank. One end of a cooling pipe penetrates the top plate of the cooling liquid circulation box and extends to the inside of the cooling liquid circulation box, and the other end penetrates the top plate of the cabinet and is connected to the circulation mechanism.

优选的,所述散热片和散热板均设有多个,多个散热板均匀分布在复位机构上,多个散热片均匀分布在冷却液循环箱的底部,散热片和散热板用于对冷却液散热,保证了冷却液对热量的正常吸收,大大提高了散热效率。Preferably, there are multiple cooling fins and cooling plates, the multiple cooling plates are evenly distributed on the reset mechanism, and the multiple cooling fins are evenly distributed at the bottom of the cooling liquid circulation box. The cooling fins and the cooling plates are used for cooling Liquid heat dissipation ensures the normal absorption of heat by the cooling liquid and greatly improves the heat dissipation efficiency.

优选的,所述冷却管采用蛇形结构,能够增加冷却管与机柜内部热量的接触面积,大大提高了散热效率。Preferably, the cooling pipe adopts a serpentine structure, which can increase the contact area between the cooling pipe and the heat inside the cabinet, and greatly improves the heat dissipation efficiency.

优选的,所述机柜的侧壁上还安装有散热管,所述散热管设有多个,多个散热管均匀分布在机柜的侧壁上,散热管采用倒V型结构,散热管能够将机柜内部的热量排出机柜,加快散热效率,保证了机柜内部设备的正常工作。Preferably, the side walls of the cabinet are further provided with heat dissipation pipes, and the heat dissipation pipes are provided with a plurality of them, and the plurality of heat dissipation pipes are evenly distributed on the side walls of the cabinet. The heat inside the cabinet is discharged from the cabinet to speed up the heat dissipation efficiency and ensure the normal operation of the equipment inside the cabinet.

优选的,所述传动机构包括安装座、驱动电机、转动轴和凸轮,所述安装座固定安装在冷却液储存箱的顶部,所述驱动电机安装在安装座上,所述转动轴安装在驱动电机的输出端,所述凸轮安装在转动轴上,并与所述复位机构相配合,传动机构能够为复位机构提供动力,带动循环机构将冷却液从冷却液循环箱内输入到冷却液储存箱内,且在整个过程中,冷却液能够将机柜内的热量吸收掉,提高了散热效率,保证了机柜内设备的正常运行。Preferably, the transmission mechanism includes a mounting seat, a driving motor, a rotating shaft and a cam, the mounting seat is fixedly installed on the top of the coolant storage tank, the driving motor is mounted on the mounting seat, and the rotating shaft is mounted on the driving At the output end of the motor, the cam is installed on the rotating shaft and cooperates with the reset mechanism. The transmission mechanism can provide power for the reset mechanism and drive the circulation mechanism to input the cooling liquid from the cooling liquid circulation box to the cooling liquid storage tank. In the whole process, the cooling liquid can absorb the heat in the cabinet, improve the heat dissipation efficiency, and ensure the normal operation of the equipment in the cabinet.

优选的,所述复位机构包括支撑板、两个导向柱,所述两个导向柱对称安装在支撑板的两端,并与支撑板滑动连接,在每个导向柱上均安装有复位弹簧,所述复位弹簧的一端安装在支撑板的上、另一端安装在机柜的顶部,两个导向柱的顶部均安装有限位块,所述支撑板与所述传动机构上的凸轮相配合,复位机构与循环机构相配合,保证能够将冷却液从冷却液循环箱内,输入到冷却液储存箱内,提高了冷却液对热量的吸收效率。Preferably, the reset mechanism includes a support plate and two guide columns, the two guide columns are symmetrically installed at both ends of the support plate and are slidably connected to the support plate, and a return spring is installed on each guide column, One end of the return spring is installed on the support plate, the other end is installed on the top of the cabinet, the top of the two guide columns are installed with limit blocks, the support plate is matched with the cam on the transmission mechanism, and the reset mechanism In cooperation with the circulation mechanism, the cooling liquid can be input from the cooling liquid circulation tank to the cooling liquid storage tank, which improves the heat absorption efficiency of the cooling liquid.

优选的,所述循环机构包括筒体外壳,在筒体外壳的内部设有滑动片和连接管,所述滑动片与筒体外壳滑动连接,所述连接管安装在滑动片上,且连接管的底部贯穿筒体外壳的底板与所述冷却管相连接,且连接管与筒体外壳底板滑动连接,在连接管的安装有第二单向阀,循环机构能够将冷却液从冷却液循环箱输入到冷却液储存箱内,使得冷却液在机柜内能够循环吸收热量,大大提高了散热效率,保证了机柜内设备的正常运作。Preferably, the circulation mechanism includes a cylindrical shell, a sliding sheet and a connecting pipe are arranged inside the cylindrical shell, the sliding sheet is slidably connected with the cylindrical shell, the connecting pipe is mounted on the sliding sheet, and the connecting pipe is The bottom penetrates through the bottom plate of the cylindrical shell and is connected with the cooling pipe, and the connecting pipe is slidably connected with the bottom plate of the cylindrical shell. A second one-way valve is installed on the connecting pipe, and the circulation mechanism can input the cooling liquid from the cooling liquid circulation tank In the cooling liquid storage box, the cooling liquid can circulate and absorb heat in the cabinet, which greatly improves the heat dissipation efficiency and ensures the normal operation of the equipment in the cabinet.

优选的,所述散热机构包括电动机、搅拌轴、齿条、搅拌桨叶,所述电动机安装在冷却液循环箱的底部一侧,电动机的输出端安装有转轴,在转轴上安装有第一锥齿轮,所述搅拌轴贯穿的一端安装有第二锥齿轮,所述第二锥齿轮与第一锥齿轮相啮合,搅拌轴的另一端贯穿冷却液循环箱,延伸到机柜的内部,且在机柜内部的搅拌轴上安装有传动齿轮,所述传动齿轮与齿条相啮合,所述齿条的底部安装有燕尾块,在机柜底板上开有燕尾槽,所述燕尾块设在燕尾槽中,在齿条的一端安装有散热电机,所述散热电机的输出轴上安装有风扇,所述搅拌桨叶设置在冷却循环箱内,并安装在搅拌轴上,散热机构能够将机柜内部的热量吹散,方便冷却液将机柜内的热量吸收掉,提高了散热效率,搅拌桨叶能够对冷却液循环箱内的冷却液进行搅拌散热,加快了冷却液的散热效率,使得冷却液能够循环使用,节约了生产成本,提高了散热效率,保证了机柜内部的设备正常工作。Preferably, the heat dissipation mechanism includes a motor, a stirring shaft, a rack, and a stirring blade, the motor is installed on one side of the bottom of the cooling liquid circulation box, a rotating shaft is installed at the output end of the motor, and a first cone is installed on the rotating shaft Gear, a second bevel gear is installed at one end of the stirring shaft, the second bevel gear meshes with the first bevel gear, and the other end of the stirring shaft penetrates the cooling liquid circulation box, extends to the inside of the cabinet, and is in the cabinet. A transmission gear is installed on the inner stirring shaft, and the transmission gear is meshed with the rack. A dovetail block is installed at the bottom of the rack, and a dovetail groove is opened on the bottom plate of the cabinet, and the dovetail block is arranged in the dovetail groove. A heat dissipation motor is installed at one end of the rack, and a fan is installed on the output shaft of the heat dissipation motor. The stirring blade is arranged in the cooling circulation box and installed on the stirring shaft. The heat dissipation mechanism can blow the heat inside the cabinet. It is convenient for the cooling liquid to absorb the heat in the cabinet, which improves the heat dissipation efficiency. The stirring blades can stir and dissipate the cooling liquid in the cooling liquid circulation box, which speeds up the cooling liquid heat dissipation efficiency and enables the cooling liquid to be recycled. The production cost is saved, the heat dissipation efficiency is improved, and the equipment inside the cabinet is guaranteed to work normally.

优选的,所述齿条设有两个,两个齿条设在传动齿轮的两侧,每个齿条上都安装有散热电机,散热电机的输出轴上安装有风扇,加大了散热范围,提高了散热效率,保证了散热效果和机柜内设备的正常运行。Preferably, the racks are provided with two, the two racks are provided on both sides of the transmission gear, each rack is installed with a heat dissipation motor, and a fan is installed on the output shaft of the heat dissipation motor, which increases the heat dissipation range , improve the heat dissipation efficiency, ensure the heat dissipation effect and the normal operation of the equipment in the cabinet.

本发明的有益效果是:The beneficial effects of the present invention are:

1)本装置该装置通过散热机构将机柜内的热量吹散,再通过冷却管内的冷却液将热量吸收掉,从而提高机柜的散热效率,冷却液从其中一根冷却管输入到冷却液循环管的内部,在此过程中,冷却液吸收机柜内部的热量,然后在搅拌桨叶的作用下,加快冷却液的散热,然后再经过传动机构、复位机构、循环机构以及另一根冷却管的配合下,将冷却循环箱内的冷却液输送到冷却液储存箱内,在此过程中,冷却液再次吸收机柜内部的热量,如此往复实现对机柜内设备的散热,大大提高了机柜的散热效率。1) This device blows away the heat in the cabinet through the cooling mechanism, and then absorbs the heat through the cooling liquid in the cooling pipe, thereby improving the cooling efficiency of the cabinet. The cooling liquid is input from one of the cooling pipes to the cooling liquid circulation pipe During this process, the cooling liquid absorbs the heat inside the cabinet, and then under the action of the stirring blade, the cooling liquid is accelerated to dissipate heat, and then passes through the transmission mechanism, the reset mechanism, the circulation mechanism and the cooperation of another cooling pipe. Then, the cooling liquid in the cooling circulation box is transported to the cooling liquid storage box. During this process, the cooling liquid absorbs the heat inside the cabinet again, so as to realize the heat dissipation of the equipment in the cabinet, which greatly improves the heat dissipation efficiency of the cabinet.

2)本装置散热片和散热板均设有多个,多个散热板均匀分布在复位机构上,多个散热片均匀分布在冷却液循环箱的底部,散热片和散热板用于对冷却液散热,保证了冷却液对热量的正常吸收,大大提高了散热效率。2) There are multiple heat sinks and heat sinks in the device. Multiple heat sinks are evenly distributed on the reset mechanism. Multiple heat sinks are evenly distributed at the bottom of the cooling liquid circulation box. The heat dissipation ensures the normal absorption of heat by the coolant, which greatly improves the heat dissipation efficiency.

3)本装置冷却管采用蛇形结构,能够增加冷却管与机柜内部热量的接触面积,大大提高了散热效率。3) The cooling pipe of the device adopts a serpentine structure, which can increase the contact area between the cooling pipe and the heat inside the cabinet, and greatly improve the heat dissipation efficiency.

4)本装置机柜的侧壁上还安装有散热管,所述散热管设有多个,多个散热管均匀分布在机柜的侧壁上,散热管采用倒V型结构,散热管能够将机柜内部的热量排出机柜,加快散热效率,保证了机柜内部设备的正常工作。4) The side wall of the cabinet of the device is also installed with heat dissipation pipes. There are multiple heat dissipation pipes. The multiple heat dissipation pipes are evenly distributed on the side wall of the cabinet. The heat dissipation pipes adopt an inverted V-shaped structure. The internal heat is discharged from the cabinet to speed up the heat dissipation efficiency and ensure the normal operation of the equipment inside the cabinet.

5)本装置传动机构能够为复位机构提供动力,带动循环机构将冷却液从冷却液循环箱内输入到冷却液储存箱内,且在整个过程中,冷却液能够将机柜内的热量吸收掉,提高了散热效率,保证了机柜内设备的正常运行。5) The transmission mechanism of the device can provide power for the reset mechanism, and drive the circulation mechanism to input the cooling liquid from the cooling liquid circulation box to the cooling liquid storage tank, and in the whole process, the cooling liquid can absorb the heat in the cabinet, Improve the heat dissipation efficiency and ensure the normal operation of the equipment in the cabinet.

6)本装置复位机构与循环机构相配合,保证能够将冷却液从冷却液循环箱内,输入到冷却液储存箱内,提高了冷却液对热量的吸收效率。6) The reset mechanism of the device cooperates with the circulation mechanism to ensure that the cooling liquid can be input from the cooling liquid circulation box to the cooling liquid storage tank, which improves the heat absorption efficiency of the cooling liquid.

7)本装置循环机构能够将冷却液从冷却液循环箱输入到冷却液储存箱内,使得冷却液在机柜内能够循环吸收热量,大大提高了散热效率,保证了机柜内设备的正常运作。7) The circulation mechanism of the device can input the cooling liquid from the cooling liquid circulation box to the cooling liquid storage box, so that the cooling liquid can circulate and absorb heat in the cabinet, which greatly improves the heat dissipation efficiency and ensures the normal operation of the equipment in the cabinet.

8)本装置散热机构能够将机柜内部的热量吹散,方便冷却液将机柜内的热量吸收掉,提高了散热效率,搅拌桨叶能够对冷却液循环箱内的冷却液进行搅拌散热,加快了冷却液的散热效率,使得冷却液能够循环使用,节约了生产成本,提高了散热效率,保证了机柜内部的设备正常工作;齿条设有两个,两个齿条设在传动齿轮的两侧,每个齿条上都安装有散热电机,散热风扇的输出轴上安装有风扇,加大了散热范围,提高了散热效率,保证了散热效果和机柜内设备的正常运行。8) The heat dissipation mechanism of the device can blow away the heat inside the cabinet, which is convenient for the cooling liquid to absorb the heat in the cabinet, and improves the heat dissipation efficiency. The cooling efficiency of the cooling liquid enables the cooling liquid to be recycled, saves the production cost, improves the cooling efficiency, and ensures the normal operation of the equipment inside the cabinet; there are two racks, and the two racks are arranged on both sides of the transmission gear , Each rack is installed with a cooling motor, and a fan is installed on the output shaft of the cooling fan, which increases the cooling range, improves the cooling efficiency, and ensures the cooling effect and the normal operation of the equipment in the cabinet.

附图说明Description of drawings

附图1是本发明一种新型服务器机柜散热装置结构示意图。FIG. 1 is a schematic structural diagram of a novel server cabinet cooling device of the present invention.

附图2是本发明中复位机构的结构示意图。FIG. 2 is a schematic structural diagram of the reset mechanism in the present invention.

附图3是本发明中传动机构的结构示意图。Figure 3 is a schematic structural diagram of the transmission mechanism in the present invention.

附图4是本发明中循环机构的结构示意图。Figure 4 is a schematic structural diagram of the circulation mechanism in the present invention.

附图5是本发明中散热机构的结构示意图。FIG. 5 is a schematic structural diagram of the heat dissipation mechanism in the present invention.

附图6是本发明中传动齿轮和齿条的啮合图。Figure 6 is the meshing diagram of the transmission gear and the rack in the present invention.

图中:1、支腿;2、冷却液循环箱;3、过滤网;4、冷却管;5、孔板;6、机柜;7、冷却液储存箱;8、进料管;9、传动机构;901、安装座;902、驱动电机;903、转动轴;904、凸轮;10、第一单向阀;11、L型管;12、散热板;13、复位机构;1301、导向柱;1302、支撑板;1303、限位块;1304、复位弹簧;14、循环机构;1401、筒体外壳;1402、滑动片;1403、第二单向阀;1404、连接管;15、散热管;16、送风孔;17、散热机构;1701、电动机;1702、转轴;1703、第二锥齿轮;1704、搅拌轴;1705、燕尾槽;1706、燕尾块;1707、齿条;1708、风扇;1709、散热电机;17010、搅拌桨叶;17011、第一锥齿轮;17012、传动齿轮;18、散热片。In the picture: 1. Outriggers; 2. Cooling liquid circulation box; 3. Filter screen; 4. Cooling pipe; 5. Orifice plate; 6. Cabinet; 7. Cooling liquid storage tank; 8. Feeding pipe; 9. Transmission Mechanism; 901, mounting seat; 902, drive motor; 903, rotating shaft; 904, cam; 10, first one-way valve; 11, L-shaped pipe; 12, cooling plate; 13, reset mechanism; 1301, guide column; 1302, support plate; 1303, limit block; 1304, return spring; 14, circulation mechanism; 1401, cylinder shell; 1402, sliding sheet; 1403, second one-way valve; 1404, connecting pipe; 15, cooling pipe; 16, air supply hole; 17, heat dissipation mechanism; 1701, motor; 1702, shaft; 1703, second bevel gear; 1704, stirring shaft; 1705, dovetail groove; 1706, dovetail block; 1707, rack; 1708, fan; 1709, cooling motor; 17010, stirring blade; 17011, first bevel gear; 17012, transmission gear; 18, heat sink.

具体实施方式Detailed ways

下面结合附图1-6,对本发明实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本发明一部分实施例,而不是全部的实施例。基于本发明中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都属于本发明保护的范围。The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings 1-6. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

在本发明的描述中,需要理解的是,术语“纵向”、“横向”、“上”、“下”、“前”、“后”、“左”、“右”、“竖直”、“水平”、“顶”、“底”、“内”、“外”等指示的方位或位置关系为基于附图所示的方位或位置关系,仅是为了便于描述本发明,而不是指示或暗示所指的装置或元件必须具有特定的方位、以特定的方位构造和操作,因此不能理解为对本发明的限制。In the description of the present invention, it should be understood that the terms "portrait", "horizontal", "upper", "lower", "front", "rear", "left", "right", "vertical", The orientation or positional relationship indicated by "horizontal", "top", "bottom", "inner", "outer", etc. is based on the orientation or positional relationship shown in the drawings, and is only for the convenience of describing the present invention, rather than indicating or It is implied that the device or element referred to must have a particular orientation, be constructed and operate in a particular orientation, and therefore should not be construed as limiting the invention.

一种新型服务器机柜6散热装置,包括支腿1,所述支腿1的顶部安装有冷却液循环箱2,所述冷却液循环箱2的顶部安装有机柜6,在冷却液循环箱2的内部设有散热片18,所述散热板12的一端贯穿冷却液循环箱2的底板,延伸到冷却液循环箱2的底部,所述机柜6的内部设有散热机构17,在服务器的内部安装有孔板5、两个冷却管4,在机柜6的侧壁上开有送风孔16,所述送风孔16内安装有过滤网3,在机柜6的顶部安装有冷却液储存箱7,在冷却液储存箱7的顶部设有传动机构9、进料管8、L型管11、循环机构14以及复位机构13,所述进料管8安装在冷却液储存箱7的一侧,所述传动机构9安装在进料管8的一侧,并与所述复位机构13相配合,所述复位机构13安装在传动机构9的一侧,在复位机构13的顶部安装有散热板12,所述循环机构14安装在复位机构13的底部,且循环机构14的底部贯穿冷却液储存箱7的顶板与其中一个冷却管4相连接,循环机构14与冷却液储存箱7滑动连接,所述L型管11安装在复位机构13的底部,且L型管11的一端与循环机构14相连接、另一端贯穿冷却液储存箱7的顶板延伸到冷却液储存箱7的内部,且在L型管11的内部安装有第一单向阀10,所述两个冷却管4对称安装在机柜6的两侧壁上,其中一个冷却管4的一端连接冷却液储存箱7、另一端连接冷却液循环箱2,另一个冷却管4的一端贯穿冷却液循环箱2的顶板延伸到冷却液循环箱2的内部、另一端贯穿机柜6的顶板与所述循环机构14相连接;本装置该装置通过散热机构17将机柜6内的热量吹散,再通过冷却管4内的冷却液将热量吸收掉,从而提高机柜6的散热效率,冷却液从其中一根冷却管4输入到冷却液循环管的内部,在此过程中,冷却液吸收机柜6内部的热量,然后在搅拌桨叶17010的作用下,加快冷却液的散热,然后再经过传动机构9、复位机构13、循环机构14以及另一根冷却管4的配合下,将冷却循环箱内的冷却液输送到冷却液储存箱7内,在此过程中,冷却液再次吸收机柜6内部的热量,如此往复实现对机柜6内设备的散热,大大提高了机柜6的散热效率。A new type of cooling device for server cabinet 6, comprising legs 1, a cooling liquid circulation box 2 is installed on the top of the legs 1, a cabinet 6 is installed on the top of the cooling liquid circulation box 2, and a cooling liquid circulation box 2 is installed on the top. A cooling fin 18 is provided inside, and one end of the cooling plate 12 penetrates through the bottom plate of the cooling liquid circulation box 2 and extends to the bottom of the cooling liquid circulation box 2. The inside of the cabinet 6 is provided with a cooling mechanism 17, which is installed inside the server. There is a perforated plate 5 and two cooling pipes 4, and an air supply hole 16 is opened on the side wall of the cabinet 6, a filter screen 3 is installed in the air supply hole 16, and a cooling liquid storage box 7 is installed on the top of the cabinet 6 , There is a transmission mechanism 9, a feeding pipe 8, an L-shaped pipe 11, a circulation mechanism 14 and a reset mechanism 13 on the top of the cooling liquid storage tank 7, and the feeding pipe 8 is installed on one side of the cooling liquid storage tank 7, The transmission mechanism 9 is installed on one side of the feeding pipe 8 and cooperates with the reset mechanism 13 . The reset mechanism 13 is installed on one side of the transmission mechanism 9 , and a heat sink 12 is installed on the top of the reset mechanism 13 . , the circulation mechanism 14 is installed at the bottom of the reset mechanism 13, and the bottom of the circulation mechanism 14 is connected to one of the cooling pipes 4 through the top plate of the cooling liquid storage tank 7, and the circulation mechanism 14 is slidably connected with the cooling liquid storage tank 7, so The L-shaped pipe 11 is installed at the bottom of the reset mechanism 13, and one end of the L-shaped pipe 11 is connected to the circulation mechanism 14, and the other end extends through the top plate of the cooling liquid storage tank 7 to the interior of the cooling liquid storage tank 7, and is located at the L-shaped pipe 11. A first one-way valve 10 is installed inside the shaped pipe 11, the two cooling pipes 4 are symmetrically installed on the two side walls of the cabinet 6, one end of one cooling pipe 4 is connected to the cooling liquid storage tank 7, and the other end is connected to the cooling liquid storage tank 7. In the liquid circulation box 2, one end of the other cooling pipe 4 extends through the top plate of the cooling liquid circulation box 2 to the interior of the cooling liquid circulation box 2, and the other end penetrates through the top plate of the cabinet 6 and is connected to the circulation mechanism 14; The heat in the cabinet 6 is blown away by the heat dissipation mechanism 17, and then the heat is absorbed by the cooling liquid in the cooling pipe 4, thereby improving the heat dissipation efficiency of the cabinet 6. The cooling liquid is input from one of the cooling pipes 4 to the cooling liquid circulation pipe During this process, the cooling liquid absorbs the heat inside the cabinet 6, and then under the action of the stirring blade 17010, the cooling liquid is accelerated to dissipate heat, and then passes through the transmission mechanism 9, the reset mechanism 13, the circulation mechanism 14 and another With the cooperation of the cooling pipes 4, the cooling liquid in the cooling circulation box is transported to the cooling liquid storage tank 7. During this process, the cooling liquid absorbs the heat inside the cabinet 6 again, so as to realize the heat dissipation of the equipment in the cabinet 6. , greatly improving the heat dissipation efficiency of the cabinet 6 .

其中,循环机构14与冷却液储存箱7的接触处,散热片18与冷却液循环箱2的连接处,L型管11与冷却液储存箱7的连接处,均设有密封垫,防止冷却液渗出,影响服务器正常工作,第一单向阀10保证冷却液能够从循环机构14输入到冷却液储存箱7内,而冷却液却不能够从冷却液储存箱7输入到循环机构14内,保证了冷却液的正产循环。Among them, the contact between the circulation mechanism 14 and the cooling liquid storage tank 7, the connection between the heat sink 18 and the cooling liquid circulation tank 2, and the connection between the L-shaped pipe 11 and the cooling liquid storage tank 7 are all provided with sealing gaskets to prevent cooling. The liquid seeps out and affects the normal operation of the server. The first one-way valve 10 ensures that the cooling liquid can be input from the circulation mechanism 14 into the cooling liquid storage tank 7, but the cooling liquid cannot be input from the cooling liquid storage tank 7 into the circulation mechanism 14. , to ensure the positive circulation of the coolant.

所述散热片18和散热板12均设有多个,多个散热板12均匀分布在复位机构13上,多个散热片18均匀分布在冷却液循环箱2的底部,散热片18和散热板12用于对冷却液散热,保证了冷却液对热量的正常吸收,大大提高了散热效率。The cooling fins 18 and the cooling plates 12 are provided with a plurality of them. The plurality of cooling fins 12 are evenly distributed on the reset mechanism 13. The plurality of cooling fins 18 are evenly distributed at the bottom of the cooling liquid circulation box 2. 12 is used to dissipate heat from the coolant, which ensures the normal absorption of heat by the coolant and greatly improves the heat dissipation efficiency.

所述冷却管4采用蛇形结构,能够增加冷却管4与机柜6内部热量的接触面积,大大提高了散热效率。The cooling pipe 4 adopts a serpentine structure, which can increase the contact area between the cooling pipe 4 and the heat inside the cabinet 6 and greatly improves the heat dissipation efficiency.

优选的,所述机柜6的侧壁上还安装有散热管15,所述散热管15设有多个,多个散热管15均匀分布在机柜6的侧壁上,散热管15采用倒V型结构,散热管15能够将机柜6内部的热量排出机柜6,加快散热效率,保证了机柜6内部设备的正常工作。Preferably, the side walls of the cabinet 6 are further provided with heat dissipation pipes 15 , and there are multiple heat dissipation pipes 15 , and the plurality of heat dissipation pipes 15 are evenly distributed on the side walls of the cabinet 6 , and the heat dissipation pipes 15 are inverted V-shaped. structure, the heat dissipation pipe 15 can discharge the heat inside the cabinet 6 to the cabinet 6 to speed up the heat dissipation efficiency and ensure the normal operation of the equipment inside the cabinet 6 .

其中,散热管15能够保证热量从机柜6内排出到机柜6外,同样能够防止雨水和杂物从散热管15输入到机柜6内,保证了机柜6内部的整洁,提高了散热效率。The heat dissipation pipe 15 can ensure that heat is discharged from the cabinet 6 to the outside of the cabinet 6, and can also prevent rainwater and sundries from entering the cabinet 6 from the heat dissipation pipe 15, ensuring the cleanliness of the interior of the cabinet 6 and improving the heat dissipation efficiency.

所述传动机构9包括安装座901、驱动电机902、转动轴903和凸轮904,所述安装座901固定安装在冷却液储存箱7的顶部,所述驱动电机902安装在安装座901上,所述转动轴903安装在驱动电机902的输出端,所述凸轮904安装在转动轴903上,并与所述复位机构13相配合,传动机构9能够为复位机构13提供动力,带动循环机构14将冷却液从冷却液循环箱2内输入到冷却液储存箱7内,且在整个过程中,冷却液能够将机柜6内的热量吸收掉,提高了散热效率,保证了机柜6内设备的正常运行。The transmission mechanism 9 includes a mounting seat 901, a driving motor 902, a rotating shaft 903 and a cam 904. The mounting seat 901 is fixedly mounted on the top of the coolant storage tank 7, and the driving motor 902 is mounted on the mounting seat 901, so the The rotating shaft 903 is installed on the output end of the driving motor 902, the cam 904 is installed on the rotating shaft 903, and cooperates with the reset mechanism 13, the transmission mechanism 9 can provide power for the reset mechanism 13, and drive the circulation mechanism 14 to The cooling liquid is input from the cooling liquid circulation tank 2 to the cooling liquid storage tank 7, and in the whole process, the cooling liquid can absorb the heat in the cabinet 6, improve the heat dissipation efficiency, and ensure the normal operation of the equipment in the cabinet 6 .

所述复位机构13包括支撑板1302、两个导向柱1301,所述两个导向柱1301对称安装在支撑板1302的两端,并与支撑板1302滑动连接,在每个导向柱1301上均安装有复位弹簧1304,所述复位弹簧1304的一端安装在支撑板1302的上、另一端安装在机柜6的顶部,两个导向柱1301的顶部均安装有限位块1303,所述支撑板1302与所述传动机构9上的凸轮904相配合,复位机构13与循环机构14相配合,保证能够将冷却液从冷却液循环箱2内,输入到冷却液储存箱7内,提高了冷却液对热量的吸收效率。The reset mechanism 13 includes a support plate 1302 and two guide columns 1301. The two guide columns 1301 are symmetrically installed on both ends of the support plate 1302, and are slidably connected to the support plate 1302, and are installed on each guide column 1301. There is a return spring 1304, one end of the return spring 1304 is installed on the support plate 1302, the other end is installed on the top of the cabinet 6, the top of the two guide columns 1301 are installed with limit blocks 1303, the support plate 1302 and all The cams 904 on the transmission mechanism 9 cooperate with each other, and the reset mechanism 13 cooperates with the circulation mechanism 14 to ensure that the cooling liquid can be input from the cooling liquid circulation tank 2 to the cooling liquid storage tank 7, which improves the cooling liquid to heat. absorption efficiency.

所述循环机构14包括筒体外壳1401,在筒体外壳1401的内部设有滑动片1402和连接管1404,所述滑动片1402与筒体外壳1401滑动连接,所述连接管1404安装在滑动片1402上,且连接管1404的底部贯穿筒体外壳1401的底板与所述冷却管4相连接,且连接管1404与筒体外壳1401底板滑动连接,在连接管1404的安装有第二单向阀1403,循环机构14能够将冷却液从冷却液循环箱2输入到冷却液储存箱7内,使得冷却液在机柜6内能够循环吸收热量,大大提高了散热效率,保证了机柜6内设备的正常运作。The circulation mechanism 14 includes a cylindrical casing 1401, and a sliding sheet 1402 and a connecting pipe 1404 are arranged inside the cylindrical casing 1401. The sliding sheet 1402 is slidably connected with the cylindrical casing 1401, and the connecting pipe 1404 is installed on the sliding sheet. 1402, and the bottom of the connecting pipe 1404 is connected to the cooling pipe 4 through the bottom plate of the cylindrical shell 1401, and the connecting pipe 1404 is slidably connected to the bottom plate of the cylindrical shell 1401, and a second one-way valve is installed on the connecting pipe 1404 1403, the circulation mechanism 14 can input the cooling liquid from the cooling liquid circulation tank 2 to the cooling liquid storage tank 7, so that the cooling liquid can circulate and absorb heat in the cabinet 6, which greatly improves the heat dissipation efficiency and ensures the normal operation of the equipment in the cabinet 6. operate.

其中,第一单向阀10和第二单向阀1403的设置,保证了筒体外壳1401能够做活塞运动,将冷却液循环箱2内的冷却液从另一根冷却管4吸入到筒体外壳1401内,进入筒体外壳1401内的冷却液接触到支撑板1302表面,将热量传递到支撑板1302,支撑板1302将热量传递到多个散热板12上进行散热,散热后的冷却液从L型管11中被推出到冷却液储存箱7中,再进入到一侧的冷却管4中进行循环散热,实现冷却液的循环,提高了散热效率。The arrangement of the first one-way valve 10 and the second one-way valve 1403 ensures that the cylinder shell 1401 can perform piston movement, and the cooling liquid in the cooling liquid circulation box 2 is sucked into the cylinder from another cooling pipe 4 In the casing 1401, the cooling liquid entering the cylindrical casing 1401 contacts the surface of the support plate 1302, and transfers the heat to the support plate 1302, and the support plate 1302 transfers the heat to the plurality of heat dissipation plates 12 for heat dissipation. The L-shaped pipe 11 is pushed out into the cooling liquid storage tank 7, and then enters the cooling pipe 4 on one side for circulating heat dissipation, thereby realizing the circulation of the cooling liquid and improving the heat dissipation efficiency.

所述散热机构17包括电动机1701、搅拌轴1704、齿条1707、搅拌桨叶17010,所述电动机1701安装在冷却液循环箱2的底部一侧,电动机1701的输出端安装有转轴1702,在转轴1702上安装有第一锥齿轮17011,所述搅拌轴1704贯穿的一端安装有第二锥齿轮1703,所述第二锥齿轮1703与第一锥齿轮17011相啮合,搅拌轴1704的另一端贯穿冷却液循环箱2,延伸到机柜6的内部,且在机柜6内部的搅拌轴1704上安装有传动齿轮17012,所述传动齿轮17012与齿条1707相啮合,所述齿条1707的底部安装有燕尾块1706,在机柜6底板上开有燕尾槽1705,所述燕尾块1706设在燕尾槽1705中,在齿条1707的一端安装有散热电机1709,所述散热电机1709的输出轴上安装有风扇1708,所述搅拌桨叶17010设置在冷却循环箱内,并安装在搅拌轴1704上,散热机构17能够将机柜6内部的热量吹散,方便冷却液将机柜6内的热量吸收掉,提高了散热效率,搅拌桨叶17010能够对冷却液循环箱2内的冷却液进行搅拌散热,加快了冷却液的散热效率,使得冷却液能够循环使用,节约了生产成本,提高了散热效率,保证了机柜6内部的设备正常工作。The heat dissipation mechanism 17 includes a motor 1701, a stirring shaft 1704, a rack 1707, and a stirring paddle 17010. The motor 1701 is installed on the bottom side of the cooling liquid circulation box 2, and a rotating shaft 1702 is installed at the output end of the motor 1701. A first bevel gear 17011 is installed on the 1702, a second bevel gear 1703 is installed at one end of the stirring shaft 1704, the second bevel gear 1703 meshes with the first bevel gear 17011, and the other end of the stirring shaft 1704 runs through the cooling The liquid circulation box 2 extends to the inside of the cabinet 6, and a transmission gear 17012 is installed on the stirring shaft 1704 inside the cabinet 6. The transmission gear 17012 meshes with the rack 1707, and the bottom of the rack 1707 is installed with a dovetail Block 1706, a dovetail slot 1705 is opened on the bottom plate of the cabinet 6, the dovetail block 1706 is arranged in the dovetail slot 1705, a cooling motor 1709 is installed at one end of the rack 1707, and a fan is installed on the output shaft of the cooling motor 1709 1708, the stirring blade 17010 is arranged in the cooling circulation box and is installed on the stirring shaft 1704, the heat dissipation mechanism 17 can blow away the heat inside the cabinet 6, and it is convenient for the cooling liquid to absorb the heat in the cabinet 6, which improves the Heat dissipation efficiency, the stirring blade 17010 can stir and dissipate the cooling liquid in the cooling liquid circulation box 2, which speeds up the cooling liquid heat dissipation efficiency, enables the cooling liquid to be recycled, saves the production cost, improves the heat dissipation efficiency, and ensures the cabinet 6 The equipment inside works normally.

所述齿条1707设有两个,两个齿条1707设在传动齿轮17012的两侧,每个齿条1707上都安装有散热电机1709,散热电机1709的输出轴上安装有风扇1708,加大了散热范围,提高了散热效率,保证了散热效果和机柜6内设备的正常运行。There are two racks 1707. The two racks 1707 are arranged on both sides of the transmission gear 17012. Each rack 1707 is installed with a cooling motor 1709, and a fan 1708 is installed on the output shaft of the cooling motor 1709. The heat dissipation range is enlarged, the heat dissipation efficiency is improved, and the heat dissipation effect and the normal operation of the equipment in the cabinet 6 are ensured.

一种新型服务器机柜6散热装置,其工作过程如下:将冷却液从进料管8输入到冷却液储存箱7内,然后打开电动机1701、散热电机1709和驱动电机902,电动机1701的输出端带动转轴1702旋转,转轴1702带动第一锥齿轮17011旋转,第一锥齿轮17011带动第二锥齿轮1703旋转,第二锥齿轮1703带动搅拌轴1704旋转,搅拌轴1704带动传动齿轮17012旋转,传动齿轮17012带动齿条1707移动,齿条1707带动燕尾块1706在燕尾槽1705内滑动,齿条1707带动散热电机1709移动,散热电机1709带动风扇1708旋转,风从进风孔进入到机柜6内,风扇1708对机柜6内部进行吹风散热,带有热量的热风从多个散热管15排出,散热管15为倒置的V型,防止雨水和杂物进入机柜6内,保证了装置的正常使用,冷却液沿着其中一根冷却管4流入到冷却液循环箱2的过程中,将机柜6内的热量带走一部分,带有热量的冷却液进入到冷却液循环箱2中,电动机1701带动搅拌轴1704旋转,搅拌轴1704带动搅拌桨叶17010旋转进行冷却液循环箱2内的冷却液,进行冷却液的辅助散热,从而提高散热效率,驱动电机902输出端带动凸轮904旋转,凸轮904反复敲打支撑板1302配合复位弹簧1304的作用,使得支撑板1302做振幅运动,支撑板1302带动筒体外壳1401振幅滑动,从而将冷却液循环箱2内的冷却液从另一根冷却管4吸入到筒体外壳1401内,进入筒体外壳1401内的冷却液接触到支撑板1302表面,将热量传递到支撑板1302,支撑板1302将热量传递到多个散热板12上进行散热,散热后的冷却液从L型管11中被推出到冷却液储存箱7中,再进入到一侧的冷却管4中进行循环散热,如此往复即可达到散热效率。A new type of cooling device for server cabinet 6, its working process is as follows: the cooling liquid is input from the feeding pipe 8 into the cooling liquid storage tank 7, and then the motor 1701, the cooling motor 1709 and the driving motor 902 are turned on, and the output end of the motor 1701 drives the The rotating shaft 1702 rotates, the rotating shaft 1702 drives the first bevel gear 17011 to rotate, the first bevel gear 17011 drives the second bevel gear 1703 to rotate, the second bevel gear 1703 drives the stirring shaft 1704 to rotate, the stirring shaft 1704 drives the transmission gear 17012 to rotate, and the transmission gear 17012 Drive the rack 1707 to move, the rack 1707 drives the dovetail block 1706 to slide in the dovetail slot 1705, the rack 1707 drives the cooling motor 1709 to move, the cooling motor 1709 drives the fan 1708 to rotate, the wind enters the cabinet 6 from the air inlet hole, and the fan 1708 The inside of the cabinet 6 is blown for heat dissipation, and the hot air with heat is discharged from the plurality of heat dissipation pipes 15. The heat dissipation pipes 15 are inverted V-shaped to prevent rainwater and sundries from entering the cabinet 6 and ensure the normal use of the device. When one of the cooling pipes 4 flows into the cooling liquid circulation box 2, a part of the heat in the cabinet 6 is taken away, and the cooling liquid with heat enters the cooling liquid circulation box 2, and the motor 1701 drives the stirring shaft 1704 to rotate. , the stirring shaft 1704 drives the stirring blade 17010 to rotate to carry out the cooling liquid in the cooling liquid circulation box 2, and the auxiliary heat dissipation of the cooling liquid is carried out, thereby improving the heat dissipation efficiency. With the action of the return spring 1304, the support plate 1302 makes an amplitude movement, and the support plate 1302 drives the cylinder shell 1401 to slide in amplitude, thereby sucking the cooling liquid in the cooling liquid circulation box 2 from another cooling pipe 4 to the cylinder shell 1401 Inside, the cooling liquid entering the cylindrical shell 1401 contacts the surface of the support plate 1302, and transfers the heat to the support plate 1302, and the support plate 1302 transfers the heat to the plurality of heat dissipation plates 12 for heat dissipation. The pipe 11 is pushed out into the cooling liquid storage tank 7, and then enters the cooling pipe 4 on one side for circulating heat dissipation, so that the reciprocation can achieve the heat dissipation efficiency.

以上内容仅仅是对本发明的结构所作的举例和说明,所属本技术领域的技术人员对所描述的具体实施例做各种各样的修改或补充或采用类似的方式替代,只要不偏离发明的结构或者超越本权利要求书所定义的范围,均应属于本发明的保护范围。The above content is only an example and description of the structure of the present invention. Those skilled in the art can make various modifications or supplements to the described specific embodiments or use similar methods to replace them, as long as they do not deviate from the structure of the invention. Or beyond the scope defined by the claims, all belong to the protection scope of the present invention.

Claims (9)

1.一种新型服务器机柜散热装置,包括支腿,其特征在于,所述支腿的顶部安装有冷却液循环箱,所述冷却液循环箱的顶部安装有机柜,在冷却液循环箱的内部设有散热片,所述散热板的一端贯穿冷却液循环箱的底板,延伸到冷却液循环箱的底部,所述机柜的内部设有散热机构,在服务器的内部安装有孔板、两个冷却管,在机柜的侧壁上开有送风孔,所述送风孔内安装有过滤网,在机柜的顶部安装有冷却液储存箱,在冷却液储存箱的顶部设有传动机构、进料管、L型管、循环机构以及复位机构,所述进料管安装在冷却液储存箱的一侧,所述传动机构安装在进料管的一侧,并与所述复位机构相配合,所述复位机构安装在传动机构的一侧,在复位机构的顶部安装有散热板,所述循环机构安装在复位机构的底部,且循环机构的底部贯穿冷却液储存箱的顶板与其中一个冷却管相连接,循环机构与冷却液储存箱滑动连接,所述L型管安装在复位机构的底部,且L型管的一端与循环机构相连接、另一端贯穿冷却液储存箱的顶板延伸到冷却液储存箱的内部,且在L型管的内部安装有第一单向阀,所述两个冷却管对称安装在机柜的两侧壁上,其中一个冷却管的一端连接冷却液储存箱、另一端连接冷却液循环箱,另一个冷却管的一端贯穿冷却液循环箱的顶板延伸到冷却液循环箱的内部、另一端贯穿机柜的顶板与所述循环机构相连接。1. A novel cooling device for a server cabinet, comprising legs, characterized in that a cooling liquid circulation box is installed on the top of the legs, and a cabinet is installed on the top of the cooling liquid circulation box, inside the cooling liquid circulation box A cooling fin is provided, and one end of the cooling plate penetrates the bottom plate of the cooling liquid circulation box and extends to the bottom of the cooling liquid circulation box. There is an air supply hole on the side wall of the cabinet, a filter screen is installed in the air supply hole, a cooling liquid storage box is installed on the top of the cabinet, and a transmission mechanism and a feeding mechanism are installed on the top of the cooling liquid storage box. Pipe, L-shaped pipe, circulation mechanism and reset mechanism, the feed pipe is installed on one side of the coolant storage tank, the transmission mechanism is installed on one side of the feed pipe, and cooperates with the reset mechanism, so The reset mechanism is installed on one side of the transmission mechanism, a heat dissipation plate is installed on the top of the reset mechanism, the circulation mechanism is installed on the bottom of the reset mechanism, and the bottom of the circulation mechanism penetrates the top plate of the cooling liquid storage tank and is in contact with one of the cooling pipes. The circulation mechanism is slidably connected with the cooling liquid storage tank, the L-shaped pipe is installed at the bottom of the reset mechanism, and one end of the L-shaped pipe is connected with the circulation mechanism, and the other end extends through the top plate of the cooling liquid storage tank to the cooling liquid storage tank. Inside the box, and a first one-way valve is installed inside the L-shaped pipe, the two cooling pipes are symmetrically installed on the two side walls of the cabinet, one end of one cooling pipe is connected to the cooling liquid storage tank, and the other end is connected to the cooling liquid storage tank. In the cooling liquid circulation box, one end of the other cooling pipe extends through the top plate of the cooling liquid circulation box to the interior of the cooling liquid circulation box, and the other end penetrates through the top plate of the cabinet and is connected to the circulation mechanism. 2.根据权利要求1所述的一种新型服务器机柜散热装置,其特征在于,所述散热片和散热板均设有多个,多个散热板均匀分布在复位机构上,多个散热片均匀分布在冷却液循环箱的底部。2. A new type of cooling device for server cabinets according to claim 1, characterized in that there are a plurality of said cooling fins and cooling plates, the plurality of cooling plates are evenly distributed on the reset mechanism, and the plurality of cooling fins are evenly distributed. Distributed at the bottom of the coolant circulation tank. 3.根据权利要求1所述的一种新型服务器机柜散热装置,其特征在于,所述冷却管采用蛇形结构。3 . The new type of cooling device for a server cabinet according to claim 1 , wherein the cooling pipe adopts a serpentine structure. 4 . 4.根据权利要求1所述的一种新型服务器机柜散热装置,其特征在于,所述机柜的侧壁上还安装有散热管,所述散热管设有多个,多个散热管均匀分布在机柜的侧壁上,散热管采用倒V型结构。4 . The new type of cooling device for a server cabinet according to claim 1 , wherein a heat dissipation pipe is further installed on the side wall of the cabinet, the heat dissipation pipe is provided with a plurality of heat dissipation pipes, and the plurality of heat dissipation pipes are evenly distributed on the radiator. 5 . On the side wall of the cabinet, the heat pipe adopts an inverted V-shaped structure. 5.根据权利要求1所述的一种新型服务器机柜散热装置,其特征在于,所述传动机构包括安装座、驱动电机、转动轴和凸轮,所述安装座固定安装在冷却液储存箱的顶部,所述驱动电机安装在安装座上,所述转动轴安装在驱动电机的输出端,所述凸轮安装在转动轴上,并与所述复位机构相配合。5 . The new type of server cabinet cooling device according to claim 1 , wherein the transmission mechanism comprises a mounting seat, a driving motor, a rotating shaft and a cam, and the mounting seat is fixedly installed on the top of the cooling liquid storage tank. 6 . , the drive motor is mounted on the mounting seat, the rotating shaft is mounted on the output end of the drive motor, and the cam is mounted on the rotating shaft and cooperates with the reset mechanism. 6.根据权利要求5所述的一种新型服务器机柜散热装置,其特征在于,所述复位机构包括支撑板、两个导向柱,所述两个导向柱对称安装在支撑板的两端,并与支撑板滑动连接,在每个导向柱上均安装有复位弹簧,所述复位弹簧的一端安装在支撑板的上、另一端安装在机柜的顶部,两个导向柱的顶部均安装有限位块,所述支撑板与所述传动机构上的凸轮相配合。6 . The new type of cooling device for a server cabinet according to claim 5 , wherein the reset mechanism comprises a support plate and two guide columns, and the two guide columns are symmetrically installed at both ends of the support plate and are symmetric 6 . It is slidably connected with the support plate, and a return spring is installed on each guide column. One end of the return spring is installed on the support plate, and the other end is installed on the top of the cabinet. The tops of the two guide columns are installed with limit blocks. , the support plate is matched with the cam on the transmission mechanism. 7.根据权利要求1所述的一种新型服务器机柜散热装置,其特征在于,所述循环机构包括筒体外壳,在筒体外壳的内部设有滑动片和连接管,所述滑动片与筒体外壳滑动连接,所述连接管安装在滑动片上,且连接管的底部贯穿筒体外壳的底板与所述冷却管相连接,且连接管与筒体外壳底板滑动连接,在连接管的安装有第二单向阀。7 . The new type of cooling device for server cabinets according to claim 1 , wherein the circulation mechanism comprises a cylindrical shell, and a sliding sheet and a connecting pipe are arranged inside the cylindrical shell, and the sliding sheet is connected to the cylindrical shell. 8 . The body shell is slidably connected, the connecting pipe is installed on the sliding sheet, and the bottom of the connecting pipe penetrates the bottom plate of the cylindrical shell and is connected with the cooling pipe, and the connecting pipe is slidably connected with the bottom plate of the cylindrical shell, and the connecting pipe is installed with a Second one-way valve. 8.根据权利要求1所述的一种新型服务器机柜散热装置,其特征在于,所述散热机构包括电动机、搅拌轴、齿条、搅拌桨叶,所述电动机安装在冷却液循环箱的底部一侧,电动机的输出端安装有转轴,在转轴上安装有第一锥齿轮,所述搅拌轴贯穿的一端安装有第二锥齿轮,所述第二锥齿轮与第一锥齿轮相啮合,搅拌轴的另一端贯穿冷却液循环箱,延伸到机柜的内部,且在机柜内部的搅拌轴上安装有传动齿轮,所述传动齿轮与齿条相啮合,所述齿条的底部安装有燕尾块,在机柜底板上开有燕尾槽,所述燕尾块设在燕尾槽中,在齿条的一端安装有散热电机,所述散热电机的输出轴上安装有风扇,所述搅拌桨叶设置在冷却循环箱内,并安装在搅拌轴上。8 . The new type of server cabinet cooling device according to claim 1 , wherein the cooling mechanism comprises a motor, a stirring shaft, a rack, and a stirring blade, and the motor is installed at the bottom of the cooling liquid circulation box. 9 . A rotating shaft is installed at the output end of the motor, a first bevel gear is installed on the rotating shaft, a second bevel gear is installed at one end of the agitating shaft, the second bevel gear meshes with the first bevel gear, and the mixing shaft The other end of the cooling liquid circulation box runs through the cooling liquid circulation box and extends to the inside of the cabinet, and a transmission gear is installed on the stirring shaft inside the cabinet. A dovetail slot is opened on the bottom plate of the cabinet, the dovetail block is arranged in the dovetail slot, a cooling motor is installed at one end of the rack, a fan is installed on the output shaft of the cooling motor, and the stirring blade is arranged in the cooling circulation box inside and installed on the stirring shaft. 9.根据权利要求8所述的一种新型服务器机柜散热装置,其特征在于,所述齿条设有两个,两个齿条设在传动齿轮的两侧,每个齿条上都安装有散热电机,散热电机的输出轴上安装有风扇。9 . The new type of server cabinet cooling device according to claim 8 , wherein there are two racks, the two racks are arranged on both sides of the transmission gear, and each rack is installed with a radiator. 10 . The cooling motor is provided with a fan on the output shaft of the cooling motor.
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CN113741666A (en) * 2021-08-30 2021-12-03 苏州浪潮智能科技有限公司 An internal cooling device for a server that is easy to install components
CN113937636A (en) * 2021-09-26 2022-01-14 广州电力通信网络有限公司 Intelligence looped netowrk cabinet is with pressing down dirt cooling structure based on thing networking
CN114251869A (en) * 2021-11-25 2022-03-29 浙江创基有机硅材料有限公司 Efficient cooling device for MQ silicon resin production
CN114934243A (en) * 2022-05-26 2022-08-23 吴亮东 Auxiliary heat dissipation device for aluminum profile
CN115839322A (en) * 2022-12-08 2023-03-24 安徽同盛重型装备有限公司 Rapid cooling device of stacked wind power ring piece and using method thereof
CN116234268A (en) * 2023-04-04 2023-06-06 盛威安全设备(浙江)有限公司 Communication cabinet with self-regulating overheat function
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Publication number Priority date Publication date Assignee Title
CN112688188A (en) * 2020-12-21 2021-04-20 江苏中自电气技术有限公司 Modular low-voltage cabinet with assembly structure
CN112835425A (en) * 2020-12-28 2021-05-25 吉安职业技术学院 A computer water-cooled chassis coolant dispensing equipment
CN112930084A (en) * 2021-01-22 2021-06-08 苏州浪潮智能科技有限公司 Server cabinet and heat dissipation method thereof
CN112930084B (en) * 2021-01-22 2022-11-29 苏州浪潮智能科技有限公司 Server cabinet and heat dissipation method thereof
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CN113068371A (en) * 2021-02-04 2021-07-02 安徽江淮朗格电气有限公司 Four-axis servo driver heat abstractor
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CN113741666B (en) * 2021-08-30 2023-07-14 苏州浪潮智能科技有限公司 A cooling device inside a server for easy component installation
CN113937636A (en) * 2021-09-26 2022-01-14 广州电力通信网络有限公司 Intelligence looped netowrk cabinet is with pressing down dirt cooling structure based on thing networking
CN114251869A (en) * 2021-11-25 2022-03-29 浙江创基有机硅材料有限公司 Efficient cooling device for MQ silicon resin production
CN114251869B (en) * 2021-11-25 2023-07-25 浙江创基有机硅材料有限公司 High-efficient cooling device is used in MQ silicone resin production
CN114934243A (en) * 2022-05-26 2022-08-23 吴亮东 Auxiliary heat dissipation device for aluminum profile
CN115839322B (en) * 2022-12-08 2025-11-14 安徽同盛重型装备有限公司 A rapid cooling device for stacked wind turbine components and its application method
CN115839322A (en) * 2022-12-08 2023-03-24 安徽同盛重型装备有限公司 Rapid cooling device of stacked wind power ring piece and using method thereof
CN116234244B (en) * 2023-02-06 2023-12-05 晶通(高邮)集成电路有限公司 Packaging circuit placing box
CN116234244A (en) * 2023-02-06 2023-06-06 晶通(高邮)集成电路有限公司 Packaging circuit placing box
CN116234268B (en) * 2023-04-04 2023-08-18 盛威安全设备(浙江)有限公司 A self-regulating communication cabinet for overheating
CN116234268A (en) * 2023-04-04 2023-06-06 盛威安全设备(浙江)有限公司 Communication cabinet with self-regulating overheat function
CN117177536A (en) * 2023-09-05 2023-12-05 深圳云边低碳技术有限公司 Cabinet with cooling liquid distribution function
CN117596842A (en) * 2023-11-27 2024-02-23 国网山东省电力公司烟台市蓬莱区供电公司 A green power smart operation and maintenance AC-DC conversion device for power transmission and transformation projects
CN117596842B (en) * 2023-11-27 2024-09-24 国网山东省电力公司烟台市蓬莱区供电公司 A green power intelligent operation and maintenance AC/DC conversion device for power transmission and transformation projects
CN118382278A (en) * 2024-06-26 2024-07-23 苏州元脑智能科技有限公司 Server cabinets and servers

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