CN221829281U - A rack-mounted server that is easy to install - Google Patents
A rack-mounted server that is easy to install Download PDFInfo
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- 238000005192 partition Methods 0.000 claims abstract description 69
- 230000007246 mechanism Effects 0.000 claims description 19
- 238000001816 cooling Methods 0.000 claims description 10
- 238000009423 ventilation Methods 0.000 claims description 4
- 230000017525 heat dissipation Effects 0.000 abstract description 43
- 230000002159 abnormal effect Effects 0.000 abstract description 7
- 230000000694 effects Effects 0.000 description 11
- 238000009434 installation Methods 0.000 description 8
- 238000010586 diagram Methods 0.000 description 6
- 101100012902 Saccharomyces cerevisiae (strain ATCC 204508 / S288c) FIG2 gene Proteins 0.000 description 3
- 101100233916 Saccharomyces cerevisiae (strain ATCC 204508 / S288c) KAR5 gene Proteins 0.000 description 2
- 238000000034 method Methods 0.000 description 2
- 101001121408 Homo sapiens L-amino-acid oxidase Proteins 0.000 description 1
- 101000827703 Homo sapiens Polyphosphoinositide phosphatase Proteins 0.000 description 1
- 102100026388 L-amino-acid oxidase Human genes 0.000 description 1
- 102100023591 Polyphosphoinositide phosphatase Human genes 0.000 description 1
- 230000005856 abnormality Effects 0.000 description 1
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- 230000000052 comparative effect Effects 0.000 description 1
- 238000013500 data storage Methods 0.000 description 1
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Abstract
本申请公开了一种便于安装的上架式服务器,属于上架式服务器技术领域。包括服务器柜体和四个线槽,四个所述线槽螺纹安装于服务柜体内,所述线槽侧面固定设有多个托块,四个线槽形成框架结构,并通过托块滑动式卡接安装多个设备箱体,将每个设备箱体通过两个T形隔板和一个内隔板隔成四个腔室分别对应于服务器设备的一个散热区域,当任一散热区域温度异常时,电阻检测仪检测到热敏测阻杆的电阻变化,使微型电机启动,可通过微型电机的输出端传动半面齿轮转动,继而通过齿板沿两个导块反复位移,通过U形架带动转臂摆动,且转臂开设腰型槽沿导轴滑动,继而可通过拉板带动百叶摆动,使服务器设备更加稳定的运行。
The present application discloses a rack-mounted server that is easy to install, belonging to the technical field of rack-mounted servers. It includes a server cabinet and four wire troughs, the four wire troughs are threadedly installed in the service cabinet, a plurality of brackets are fixedly arranged on the side of the wire trough, the four wire troughs form a frame structure, and a plurality of equipment boxes are installed by sliding and clamping the brackets, each equipment box is divided into four chambers by two T-shaped partitions and an inner partition, respectively corresponding to a heat dissipation area of the server equipment, when the temperature of any heat dissipation area is abnormal, the resistance detector detects the resistance change of the thermistor resistance measuring rod, and starts the micro motor, which can be driven by the output end of the micro motor to rotate the half-face gear, and then repeatedly displaced along the two guide blocks through the tooth plate, and the swing arm is driven to swing through the U-shaped frame, and the swing arm is provided with a waist-shaped groove to slide along the guide shaft, and then the shutter can be driven to swing through the pull plate, so that the server equipment can run more stably.
Description
技术领域Technical Field
本申请涉及上架式服务器技术领域,更具体地说,涉及一种便于安装的上架式服务器。The present application relates to the technical field of rack-mounted servers, and more specifically, to a rack-mounted server that is easy to install.
背景技术Background Art
上架式服务器是指安装在标准机架上的服务器设备,这种服务器安装在机架内,通常用于数据中心、企业机房等环境,为组织提供计算和数据存储等服务,通常设计为密集型配置,可以堆叠多台服务器在一个机架中,充分利用空间并提高数据中心的效率,现有公开技术号为CN213690431U提出的一种多接口架式服务器,该装置通过多处散热降温机构的设置,使服务器的散热能力得到了提升,从而保证了服务器的工作稳定性,但是使用时,对比文献中的服务器在安装于机架上时,因服务器内元器件的分布在设计上会出现散热不均现象,即按照散热能力可划分出不同的散热分区,现有的服务器安装于机架上散热方式多是通过服务器自带的散热机构进行统一散热方式,散热效率不高,容易因不同分区邹然出现负载变化而瞬时产生热能无法快速排出,造成元器件损坏,导致服务器使用中断,服务器位于机架上的安装高度不方便快速调节,导致部分服务器数据线接取工作困难,鉴于此,我们提出一种便于安装的上架式服务器。A rack-mounted server refers to a server device installed on a standard rack. This type of server is installed in a rack and is usually used in data centers, corporate computer rooms, and other environments to provide computing and data storage services to organizations. It is usually designed as a dense configuration, and multiple servers can be stacked in a rack to make full use of space and improve the efficiency of the data center. The existing public technology number CN213690431U proposes a multi-interface rack-mounted server. The device improves the heat dissipation capacity of the server by setting up multiple heat dissipation and cooling mechanisms, thereby ensuring the working stability of the server. However, when used, compared with the server in the literature When the server is installed on the rack, uneven heat dissipation will occur due to the distribution of components in the server in the design. That is, different heat dissipation zones can be divided according to the heat dissipation capacity. The existing heat dissipation method for servers installed on the rack is mostly unified heat dissipation through the server's own heat dissipation mechanism. The heat dissipation efficiency is not high. It is easy for the sudden load changes in different zones to generate instantaneous heat energy that cannot be quickly discharged, causing damage to components and interruption of server use. The installation height of the server on the rack is not convenient to adjust quickly, which makes it difficult to access the data cables of some servers. In view of this, we propose a rack-mounted server that is easy to install.
实用新型内容Utility Model Content
1.要解决的技术问题1. Technical problems to be solved
本申请的目的在于提供一种便于安装的上架式服务器,解决了上述背景技术中对比文献中的服务器在安装于机架上时,因服务器内元器件的分布在设计上会出现散热不均现象,即按照散热能力可划分出不同的散热分区,现有的服务器安装于机架上散热方式多是通过服务器自带的散热机构进行统一散热方式,散热效率不高,容易因不同分区邹然出现负载变化而瞬时产生热能无法快速排出,造成元器件损坏,导致服务器使用中断,服务器位于机架上的安装高度不方便快速调节,导致部分服务器数据线接取工作困难的技术问题,实现了四个线槽形成框架结构,并通过托块滑动式卡接安装多个设备箱体,将每个设备箱体通过两个T形隔板和一个内隔板隔成四个腔室分别对应于服务器设备的一个散热区域,当任一散热区域温度异常时,电阻检测仪检测到热敏测阻杆的电阻变化,使微型电机启动,可通过微型电机的输出端传动半面齿轮转动,继而通过齿板沿两个导块反复位移,通过U形架带动转臂摆动,且转臂开设腰型槽沿导轴滑动,继而可通过拉板带动百叶摆动,使服务器设备更加稳定的运行的技术效果。The purpose of the present application is to provide a rack-mounted server that is easy to install, which solves the problem that when the server in the comparative literature in the above-mentioned background technology is installed on the rack, the server will have uneven heat dissipation due to the distribution of components in the server in the design, that is, different heat dissipation zones can be divided according to the heat dissipation capacity. The existing heat dissipation method for the server installed on the rack is mostly to use the heat dissipation mechanism of the server itself for unified heat dissipation, which has low heat dissipation efficiency. It is easy to generate instantaneous heat energy due to sudden load changes in different zones, which cannot be quickly discharged, causing damage to components and interruption of server use. The installation height of the server on the rack is not convenient to adjust quickly, resulting in some server data line access. The difficult technical problems at work were solved by forming a frame structure with four wire troughs, and installing multiple equipment boxes through sliding card connection of support blocks. Each equipment box was divided into four chambers by two T-shaped partitions and an inner partition, which corresponded to a heat dissipation area of the server equipment respectively. When the temperature of any heat dissipation area is abnormal, the resistance detector detects the resistance change of the thermistor rod, starts the micro motor, and can drive the half-gear to rotate through the output end of the micro motor, and then repeatedly move along the two guide blocks through the tooth plate, and drive the swing arm to swing through the U-shaped frame, and the swing arm is provided with a waist-shaped groove to slide along the guide shaft, and then the shutter can be driven to swing through the pull plate, so that the server equipment can run more stably. Technical effect.
2.技术方案2. Technical solution
本申请技术方案提供了一种便于安装的上架式服务器,包含:服务器柜体和四个线槽,四个所述线槽螺纹安装于服务柜体内,所述线槽侧面固定设有多个托块,所述线槽通过托块卡接安装设备箱体,所述设备箱体内固定设有两个T形隔板和一个内隔板,所述T形隔板固定设于内隔板底端处,所述设备箱体内位于内隔板底部通过两个T形隔板隔成有四个腔室,且每个腔室内内均固定安装有散热风扇和温控调节机构,所述设备箱体内位于内隔板上部滑动安装有服务器设备。The technical solution of the present application provides a rack-mounted server that is easy to install, comprising: a server cabinet and four wire troughs, the four wire troughs are threadedly installed in the service cabinet, a plurality of support blocks are fixedly provided on the sides of the wire troughs, the wire troughs are clamped and installed on an equipment box through the support blocks, two T-shaped partitions and an inner partition are fixedly provided in the equipment box, the T-shaped partition is fixed at the bottom end of the inner partition, the equipment box is located at the bottom of the inner partition and is divided into four chambers by two T-shaped partitions, and a cooling fan and a temperature control mechanism are fixedly installed in each chamber, and a server device is slidably installed on the upper part of the inner partition in the equipment box.
通过采用上述技术方案,将四个线槽通过螺钉螺纹安装于服务器柜体内部,形成框架结构,线槽侧面通过固定设置多个托块,可实现滑动式卡接安装多个设备箱体,将每个设备箱体内部固定设置两个T形隔板和一个内隔板,可通过两个T形隔板使内隔板底部形成四个腔室,每个腔室内部均固定安装散热风扇和温控调节机构,而位于内隔板上部滑动安装服务器设备,继而服务器设备可实现方便安装和拆卸,且服务器设备底部散热区域可分成四个分区,实现分区散热效果,继而使服务器设备位于不同分区的元器件设备散热效果调节,使服务器设备更加稳定的运行。By adopting the above technical scheme, four wire ducts are installed inside the server cabinet by screw threads to form a frame structure, and a plurality of support blocks are fixedly arranged on the side of the wire duct, so that a plurality of equipment boxes can be installed by sliding snap-in, and two T-shaped partitions and an inner partition are fixedly arranged inside each equipment box, and four chambers can be formed at the bottom of the inner partition by the two T-shaped partitions, and a cooling fan and a temperature control adjustment mechanism are fixedly installed inside each chamber, and the server equipment is slidably installed on the upper part of the inner partition, so that the server equipment can be conveniently installed and disassembled, and the heat dissipation area at the bottom of the server equipment can be divided into four partitions to achieve a partitioned heat dissipation effect, so that the heat dissipation effect of the components and equipment of the server equipment located in different partitions can be adjusted, so that the server equipment can run more stably.
可选的,所述服务器设备的两侧处均电性连接有接线端子,所述服务器设备通过接线端子的壳体滑动安装于设备箱体内。Optionally, both sides of the server device are electrically connected with connection terminals, and the server device is slidably installed in the device box through the shell of the connection terminals.
通过采用上述技术方案,服务器设备两侧的接线端子可与通过线槽内穿接的电源线和数据线束进行电性连接,服务器设备通过两个接线端子沿滑动式安装设备箱体内,使服务器设备可实现方便安装和拆卸。By adopting the above technical solution, the wiring terminals on both sides of the server device can be electrically connected to the power cord and data harness passed through the wire trough. The server device is installed in the device box in a sliding manner through two wiring terminals, so that the server device can be easily installed and disassembled.
可选的,所述设备箱体的底板位于四角处均开设有一个矩形卡槽,所述设备箱体通过四个矩形卡槽与托块卡接连接,所述内隔板上开设有四个呈矩形阵列分布的通风槽和四个矩形槽,所述设备箱体的底板固定设有四个顶块,所述顶块上端贴合连接服务器设备底面。Optionally, a rectangular slot is provided at each of the four corners of the bottom plate of the equipment box, the equipment box is connected to the support block via the four rectangular slots, four ventilation slots and four rectangular slots distributed in a rectangular array are provided on the inner partition plate, and four top blocks are fixedly provided on the bottom plate of the equipment box, and the upper ends of the top blocks are fitted to the bottom surface of the server device.
通过采用上述技术方案,设备箱体的四角分别通过开设一个矩形卡槽,可沿四个线槽滑动安装,并通过托块进行卡接限位处理,从而设备箱体整体沿四个线槽组成的框架调节安装高度,方便安装和使用,当服务器设备滑动安装设备箱体内部时,可通过四个顶块进行托持,继而使服务器设备与内隔板之间形成一定的空间,有利于散热处理。By adopting the above technical solution, a rectangular slot is opened at each of the four corners of the equipment box, which can be slidably installed along the four wire troughs, and the support blocks are used for card connection and limiting processing, so that the installation height of the equipment box as a whole can be adjusted along the frame composed of the four wire troughs, which is convenient for installation and use. When the server equipment is slidably installed inside the equipment box, it can be supported by the four top blocks, thereby forming a certain space between the server equipment and the inner partition, which is conducive to heat dissipation.
可选的,所述T形隔板上均开设有腰型槽,所述T形隔板上均转动安装有百叶,所述百叶之间转动安装有拉板,所述拉板与温控调节机构传动连接,所述设备箱体两侧处均开设有导槽,所述设备箱体通过导槽滑动安装服务器设备。Optionally, waist-shaped grooves are provided on the T-shaped partitions, louvers are rotatably installed on the T-shaped partitions, pull plates are rotatably installed between the louvers, the pull plates are transmission-connected to the temperature control adjustment mechanism, guide grooves are provided on both sides of the equipment box, and the equipment box slides and installs the server equipment through the guide grooves.
通过采用上述技术方案,每个腔室内散热风扇工作,可将热空气经百叶处流出,并最终排至服务器柜体外部,每个腔室对应服务器设备的散热区域出现温度异常时,可通过温控调节机构电控调节拉板工作,使百叶摆动,继而增加空气流动速率,增加排风和散热效果。By adopting the above technical solution, the cooling fan in each chamber works, and the hot air can flow out through the louvers and finally be discharged to the outside of the server cabinet. When the temperature abnormality occurs in the heat dissipation area of the server equipment corresponding to each chamber, the pull plate can be electrically adjusted through the temperature control adjustment mechanism to make the louvers swing, thereby increasing the air flow rate and increasing the exhaust and heat dissipation effects.
可选的,所述温控调节机构包括有电阻检测仪,所述电阻检测仪固定设于设备箱体内底面处,所述电阻检测仪电性连接有热敏测阻杆和微型电机,所述热敏测阻杆上端贯穿内隔板,所述微型电机固定安装于电阻检测仪内,所述微型电机的输出端传动连接有半面齿轮,所述半面齿轮啮合连接有齿板,所述齿板两端滑动连接有导块,所述导块固定设于电阻检测仪上,所述齿板上固定设有U形架,所述U形架上端内传动连接有转臂,所述转臂贯穿腰型槽,所述转臂开设有调节槽,所述调节槽处滑动安装有导轴,所述导轴与T形隔板转动连接,所述转臂远离U形架的一端通过转轴转动连接拉板。Optionally, the temperature control adjustment mechanism includes a resistance detector, which is fixed on the bottom surface of the equipment box, and is electrically connected to a thermistor and a micro motor. The upper end of the thermistor passes through an inner partition, and the micro motor is fixedly installed in the resistance detector. The output end of the micro motor is transmission-connected with a half-face gear, and the half-face gear is meshingly connected with a tooth plate. Both ends of the tooth plate are slidably connected with guide blocks, and the guide blocks are fixed on the resistance detector. A U-shaped frame is fixed on the tooth plate, and a rotating arm is transmission-connected to the upper end of the U-shaped frame, and the rotating arm passes through a waist-shaped groove. The rotating arm is provided with an adjustment groove, and a guide shaft is slidably installed at the adjustment groove. The guide shaft is rotatably connected to the T-shaped partition, and the end of the rotating arm away from the U-shaped frame is rotationally connected to the pull plate through a rotating shaft.
通过采用上述技术方案,服务器设备底部任一散热区域出现温度异常时,电阻检测仪检测到热敏测阻杆的电阻变化,使微型电机启动,可通过微型电机的输出端传动半面齿轮转动,继而通过齿板沿两个导块反复位移,通过U形架带动转臂摆动,且转臂开设腰型槽沿导轴滑动,继而可通过拉板带动百叶摆动。By adopting the above technical solution, when an abnormal temperature occurs in any heat dissipation area at the bottom of the server equipment, the resistance detector detects the resistance change of the thermistor measuring rod, starts the micro motor, and can drive the half-face gear to rotate through the output end of the micro motor, and then repeatedly move along the two guide blocks through the tooth plate, drive the rotating arm to swing through the U-shaped frame, and the rotating arm has a waist-shaped groove that slides along the guide shaft, and then can drive the shutter to swing through the pull plate.
3.有益效果3. Beneficial effects
本申请技术方案中提供的一个或多个技术方案,至少具有如下技术效果或优点:四个线槽形成框架结构,并通过托块滑动式卡接安装多个设备箱体,将每个设备箱体通过两个T形隔板和一个内隔板隔成四个腔室分别对应于服务器设备的一个散热区域,当任一散热区域温度异常时,电阻检测仪检测到热敏测阻杆的电阻变化,使微型电机启动,可通过微型电机的输出端传动半面齿轮转动,继而通过齿板沿两个导块反复位移,通过U形架带动转臂摆动,且转臂开设腰型槽沿导轴滑动,继而可通过拉板带动百叶摆动,使服务器设备更加稳定的运行。One or more technical solutions provided in the technical solution of the present application have at least the following technical effects or advantages: four wire troughs form a frame structure, and multiple equipment boxes are installed by sliding and clamping of support blocks, and each equipment box is divided into four chambers by two T-shaped partitions and an inner partition, respectively corresponding to a heat dissipation area of the server equipment. When the temperature of any heat dissipation area is abnormal, the resistance detector detects the resistance change of the thermistor measuring rod, and starts the micro motor. The half-gear can be driven to rotate through the output end of the micro motor, and then repeatedly displaced along the two guide blocks through the tooth plate, and the rotating arm is driven to swing through the U-shaped frame, and the rotating arm is provided with a waist-shaped groove to slide along the guide shaft, and then the shutter can be driven to swing through the pull plate, so that the server equipment can operate more stably.
附图说明BRIEF DESCRIPTION OF THE DRAWINGS
图1为本申请一较佳实施例公开的一种便于安装的上架式服务器的整体结构示意图;FIG1 is a schematic diagram of the overall structure of a rack-mounted server that is easy to install disclosed in a preferred embodiment of the present application;
图2为本申请一较佳实施例公开的一种便于安装的上架式服务器的散热风扇和温控调节机构结构示意图;FIG2 is a schematic diagram of a heat dissipation fan and a temperature control mechanism structure of a rack-mounted server that is easy to install, disclosed in a preferred embodiment of the present application;
图3为本申请一较佳实施例公开的一种便于安装的上架式服务器的图2中A处放大结构示意图;FIG3 is an enlarged structural diagram of point A in FIG2 of a rack-mounted server that is easy to install disclosed in a preferred embodiment of the present application;
图4为本申请一较佳实施例公开的一种便于安装的上架式服务器的图3中C处放大结构示意图;FIG4 is an enlarged structural diagram of a rack-mounted server that is easy to install disclosed in a preferred embodiment of the present application at C in FIG3 ;
图5为本申请一较佳实施例公开的一种便于安装的上架式服务器的图2中B处放大结构示意图;FIG5 is an enlarged structural diagram of point B in FIG2 of a rack-mounted server that is easy to install disclosed in a preferred embodiment of the present application;
图6为本申请一较佳实施例公开的一种便于安装的上架式服务器的服务器设备结构示意图;FIG6 is a schematic diagram of a server device structure of a rack-mounted server that is easy to install disclosed in a preferred embodiment of the present application;
图中标号说明:1、线槽;11、托块;2、服务器设备;21、接线端子;3、设备箱体;31、内隔板;311、通风槽;312、矩形槽;32、T形隔板;321、腰型槽;33、百叶;34、拉板;35、导槽;36、矩形卡槽;37、顶块;4、散热风扇;5、温控调节机构;51、热敏测阻杆;52、电阻检测仪;53、半面齿轮;54、齿板;55、导块;56、U形架;57、转臂;571、调节槽;572、导轴。Explanation of the numbers in the figure: 1. Wire duct; 11. Support block; 2. Server equipment; 21. Wiring terminal; 3. Equipment box; 31. Inner partition; 311. Ventilation slot; 312. Rectangular slot; 32. T-shaped partition; 321. Waist-shaped slot; 33. Shutter; 34. Pull plate; 35. Guide slot; 36. Rectangular slot; 37. Top block; 4. Cooling fan; 5. Temperature control adjustment mechanism; 51. Thermistor measuring rod; 52. Resistance tester; 53. Half-face gear; 54. Tooth plate; 55. Guide block; 56. U-shaped frame; 57. Rotating arm; 571. Adjustment slot; 572. Guide shaft.
具体实施方式DETAILED DESCRIPTION
以下结合说明书附图对本申请作进一步详细说明。The present application is further described in detail below in conjunction with the accompanying drawings.
参照图1和图2,本申请实施例提供了一种便于安装的上架式服务器,包含:服务器柜体和四个线槽1,四个线槽1螺纹安装于服务柜体内,线槽1侧面固定设有多个托块11,线槽1通过托块11卡接安装设备箱体3,设备箱体3内固定设有两个T形隔板32和一个内隔板31,T形隔板32固定设于内隔板31底端处,设备箱体3内位于内隔板31底部通过两个T形隔板32隔成有四个腔室,且每个腔室内内均固定安装有散热风扇4和温控调节机构5,设备箱体3内位于内隔板31上部滑动安装有服务器设备2,将四个线槽1通过螺钉螺纹安装于服务器柜体内部,形成框架结构,线槽1侧面通过固定设置多个托块11,可实现滑动式卡接安装多个设备箱体3,将每个设备箱体3内部固定设置两个T形隔板32和一个内隔板31,可通过两个T形隔板32使内隔板31底部形成四个腔室,每个腔室内部均固定安装散热风扇4和温控调节机构5,而位于内隔板31上部滑动安装服务器设备2,继而服务器设备2可实现方便安装和拆卸,且服务器设备2底部散热区域可分成四个分区,实现分区散热效果,继而使服务器设备2位于不同分区的元器件设备散热效果调节,使服务器设备2更加稳定的运行。1 and 2, an embodiment of the present application provides a rack-mounted server that is easy to install, comprising: a server cabinet and four wire troughs 1, the four wire troughs 1 are threadedly installed in the service cabinet, a plurality of brackets 11 are fixedly provided on the side of the wire trough 1, the wire trough 1 is clamped and installed with an equipment box 3 through the brackets 11, two T-shaped partitions 32 and an inner partition 31 are fixedly provided in the equipment box 3, the T-shaped partition 32 is fixedly provided at the bottom end of the inner partition 31, the equipment box 3 is located at the bottom of the inner partition 31 and is divided into four chambers by two T-shaped partitions 32, and a cooling fan 4 and a temperature control adjustment mechanism 5 are fixedly installed in each chamber, a server device 2 is slidably installed on the upper part of the inner partition 31 in the equipment box 3, and the four wire troughs 1 are installed on the upper part of the inner partition 31 by screw threads. A frame structure is formed inside the server cabinet. A plurality of supporting blocks 11 are fixedly arranged on the side of the wire trough 1, so that a plurality of equipment boxes 3 can be installed by sliding snap-in. Two T-shaped partitions 32 and an inner partition 31 are fixedly arranged inside each equipment box 3. Four chambers can be formed at the bottom of the inner partition 31 through the two T-shaped partitions 32. A cooling fan 4 and a temperature control adjustment mechanism 5 are fixedly installed inside each chamber. The server device 2 is slidably installed on the upper part of the inner partition 31. The server device 2 can be conveniently installed and disassembled, and the heat dissipation area at the bottom of the server device 2 can be divided into four partitions to achieve a partitioned heat dissipation effect. The heat dissipation effect of the components and equipment of the server device 2 located in different partitions can be adjusted, so that the server device 2 can run more stably.
参照图1和图6,服务器设备2的两侧处均电性连接有接线端子21,服务器设备2通过接线端子21的壳体滑动安装于设备箱体3内,服务器设备2两侧的接线端子21可与通过线槽1内穿接的电源线和数据线束进行电性连接,服务器设备2通过两个接线端子21沿滑动式安装设备箱体3内,使服务器设备2可实现方便安装和拆卸。1 and 6 , both sides of the server device 2 are electrically connected with wiring terminals 21. The server device 2 is slidably installed in the device box 3 through the shell of the wiring terminals 21. The wiring terminals 21 on both sides of the server device 2 can be electrically connected to the power cord and data harness passed through the wire trough 1. The server device 2 is slidably installed in the device box 3 through two wiring terminals 21, so that the server device 2 can be easily installed and disassembled.
参照图2至图4,设备箱体3的底板位于四角处均开设有一个矩形卡槽36,设备箱体3通过四个矩形卡槽36与托块11卡接连接,内隔板31上开设有四个呈矩形阵列分布的通风槽311和四个矩形槽312,设备箱体3的底板固定设有四个顶块37,顶块37上端贴合连接服务器设备2底面,设备箱体3的四角分别通过开设一个矩形卡槽36,可沿四个线槽1滑动安装,并通过托块11进行卡接限位处理,从而设备箱体3整体沿四个线槽1组成的框架调节安装高度,方便安装和使用,当服务器设备2滑动安装设备箱体3内部时,可通过四个顶块37进行托持,继而使服务器设备2与内隔板31之间形成一定的空间,有利于散热处理。2 to 4 , a rectangular card slot 36 is provided at each of the four corners of the bottom plate of the equipment box 3. The equipment box 3 is connected to the support block 11 by means of the four rectangular card slots 36. Four ventilation slots 311 and four rectangular slots 312 distributed in a rectangular array are provided on the inner partition 31. Four top blocks 37 are fixedly provided on the bottom plate of the equipment box 3. The upper ends of the top blocks 37 are fitted and connected to the bottom surface of the server device 2. The four corners of the equipment box 3 are respectively provided with a rectangular card slot 36, which can be slidably installed along the four wire troughs 1, and the support block 11 is used for card connection and limiting processing, so that the installation height of the equipment box 3 as a whole can be adjusted along the frame composed of the four wire troughs 1, which is convenient for installation and use. When the server device 2 is slidably installed inside the equipment box 3, it can be supported by the four top blocks 37, thereby forming a certain space between the server device 2 and the inner partition 31, which is conducive to heat dissipation.
参照图2至图3,T形隔板32上均开设有腰型槽321,T形隔板32上均转动安装有百叶33,百叶33之间转动安装有拉板34,拉板34与温控调节机构5传动连接,设备箱体3两侧处均开设有导槽35,设备箱体3通过导槽35滑动安装服务器设备2,每个腔室内散热风扇4工作,可将热空气经百叶33处流出,并最终排至服务器柜体外部,每个腔室对应服务器设备2的散热区域出现温度异常时,可通过温控调节机构5电控调节拉板34工作,使百叶33摆动,继而增加空气流动速率,增加排风和散热效果。2 to 3, waist-shaped grooves 321 are provided on the T-shaped partitions 32, shutters 33 are rotatably installed on the T-shaped partitions 32, pull plates 34 are rotatably installed between the shutters 33, the pull plates 34 are transmission-connected to the temperature control adjustment mechanism 5, guide grooves 35 are provided on both sides of the equipment box 3, and the equipment box 3 slides and installs the server equipment 2 through the guide grooves 35. When the cooling fan 4 in each chamber works, the hot air can flow out through the shutters 33 and finally be discharged to the outside of the server cabinet. When the temperature in the heat dissipation area corresponding to the server equipment 2 in each chamber is abnormal, the pull plate 34 can be electrically adjusted through the temperature control adjustment mechanism 5 to make the shutters 33 swing, thereby increasing the air flow rate and increasing the exhaust and heat dissipation effects.
参照图2至图4,温控调节机构5包括有电阻检测仪52,电阻检测仪52固定设于设备箱体3内底面处,电阻检测仪52电性连接有热敏测阻杆51和微型电机,热敏测阻杆51上端贯穿内隔板31,微型电机固定安装于电阻检测仪52内,微型电机的输出端传动连接有半面齿轮53,半面齿轮53啮合连接有齿板54,齿板54两端滑动连接有导块55,导块55固定设于电阻检测仪52上,齿板54上固定设有U形架56,U形架56上端内传动连接有转臂57,转臂57贯穿腰型槽321,转臂57开设有调节槽571,调节槽571处滑动安装有导轴572,导轴572与T形隔板32转动连接,转臂57远离U形架56的一端通过转轴转动连接拉板34,服务器设备2底部任一散热区域出现温度异常时,电阻检测仪52检测到热敏测阻杆51的电阻变化,使微型电机启动,可通过微型电机的输出端传动半面齿轮53转动,继而通过齿板54沿两个导块55反复位移,通过U形架56带动转臂57摆动,且转臂57开设腰型槽321沿导轴572滑动,继而可通过拉板34带动百叶33摆动。2 to 4, the temperature control mechanism 5 includes a resistance detector 52, which is fixedly arranged at the bottom surface of the equipment box 3. The resistance detector 52 is electrically connected to a thermistor resistance measuring rod 51 and a micro motor. The upper end of the thermistor resistance measuring rod 51 passes through the inner partition 31, and the micro motor is fixedly installed in the resistance detector 52. The output end of the micro motor is transmission-connected with a half-face gear 53, and the half-face gear 53 is meshingly connected with a tooth plate 54. The two ends of the tooth plate 54 are slidably connected with guide blocks 55, and the guide blocks 55 are fixedly arranged on the resistance detector 52. A U-shaped frame 56 is fixedly arranged on the tooth plate 54. A rotating arm 57 is transmission-connected to the upper end of the U-shaped frame 56, and the rotating arm 57 passes through the waist-shaped groove 321. 57 is provided with an adjustment groove 571, and a guide shaft 572 is slidably installed at the adjustment groove 571. The guide shaft 572 is rotatably connected to the T-shaped partition 32. The end of the rotating arm 57 away from the U-shaped frame 56 is rotatably connected to the pull plate 34 through the rotating shaft. When an abnormal temperature occurs in any heat dissipation area at the bottom of the server device 2, the resistance detector 52 detects the resistance change of the thermistor resistance measuring rod 51, and starts the micro motor. The half-face gear 53 can be driven to rotate through the output end of the micro motor, and then repeatedly displaced along the two guide blocks 55 through the tooth plate 54, and the rotating arm 57 is driven to swing through the U-shaped frame 56. The rotating arm 57 is provided with a waist-shaped groove 321 to slide along the guide shaft 572, and then the shutter 33 can be driven to swing through the pull plate 34.
工作原理:将四个线槽1通过螺钉螺纹安装于服务器柜体内部,形成框架结构,线槽1侧面通过固定设置多个托块11,设备箱体3的四角分别通过开设一个矩形卡槽36,可沿四个线槽1滑动安装,并通过托块11进行卡接限位处理,从而设备箱体3整体沿四个线槽1组成的框架调节安装高度,方便安装和使用,将每个设备箱体3内部固定设置两个T形隔板32和一个内隔板31,可通过两个T形隔板32使内隔板31底部形成四个腔室,每个腔室内部均固定安装散热风扇4和温控调节机构5,而位于内隔板31上部,服务器设备2通过两个接线端子21沿滑动式安装设备箱体3内,并通过四个顶块37进行托持,继而使服务器设备2与内隔板31之间形成一定的空间,有利于散热处理,使服务器设备2可实现方便安装和拆卸,且服务器设备2底部散热区域可分成四个分区,实现分区散热效果,服务器设备2底部任一散热区域出现温度异常时,电阻检测仪52检测到热敏测阻杆51的电阻变化,使微型电机启动,可通过微型电机的输出端传动半面齿轮53转动,继而通过齿板54沿两个导块55反复位移,通过U形架56带动转臂57摆动,且转臂57开设腰型槽321沿导轴572滑动,继而可通过拉板34带动百叶33摆动,继而增加空气流动速率,增加排风和散热效果,继而使服务器设备2位于不同分区的元器件设备散热效果调节,使服务器设备2更加稳定的运行。Working principle: four wire ducts 1 are installed inside the server cabinet by screw threads to form a frame structure. Multiple support blocks 11 are fixedly arranged on the side of the wire duct 1. A rectangular slot 36 is opened at each corner of the equipment box 3, which can be slidably installed along the four wire ducts 1 and is clamped and limited by the support block 11. Therefore, the installation height of the equipment box 3 as a whole can be adjusted along the frame formed by the four wire ducts 1, which is convenient for installation and use. Two T-shaped partitions 32 and an inner partition 31 are fixedly arranged inside each equipment box 3. Four chambers can be formed at the bottom of the inner partition 31 by the two T-shaped partitions 32. A cooling fan 4 and a temperature control adjustment mechanism 5 are fixedly installed inside each chamber, and are located on the upper part of the inner partition 31. The server equipment 2 is slidably installed in the equipment box 3 through two wiring terminals 21, and is supported by four top blocks 37, so that the server equipment 2 and A certain space is formed between the inner partitions 31, which is conducive to heat dissipation processing, so that the server device 2 can be easily installed and disassembled, and the heat dissipation area at the bottom of the server device 2 can be divided into four partitions to achieve a partitioned heat dissipation effect. When an abnormal temperature occurs in any heat dissipation area at the bottom of the server device 2, the resistance detector 52 detects the resistance change of the thermistor resistance measuring rod 51, and starts the micro motor. The half-face gear 53 can be driven to rotate through the output end of the micro motor, and then the gear plate 54 is repeatedly displaced along the two guide blocks 55, and the U-shaped frame 56 drives the rotating arm 57 to swing, and the rotating arm 57 is provided with a waist-shaped groove 321 to slide along the guide shaft 572, and then the pull plate 34 can be used to drive the louver 33 to swing, thereby increasing the air flow rate, increasing the exhaust and heat dissipation effect, and then adjusting the heat dissipation effect of the components and equipment of the server device 2 located in different partitions, so that the server device 2 can run more stably.
Claims (5)
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