WO2021109873A1 - 一种基于大数据的网络机柜散热系统 - Google Patents

一种基于大数据的网络机柜散热系统 Download PDF

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Publication number
WO2021109873A1
WO2021109873A1 PCT/CN2020/129972 CN2020129972W WO2021109873A1 WO 2021109873 A1 WO2021109873 A1 WO 2021109873A1 CN 2020129972 W CN2020129972 W CN 2020129972W WO 2021109873 A1 WO2021109873 A1 WO 2021109873A1
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WO
WIPO (PCT)
Prior art keywords
heat dissipation
fan
plate
cooling
network cabinet
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PCT/CN2020/129972
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English (en)
French (fr)
Inventor
陈凯
陈飞
陈欢
金涛
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安徽飞凯电子技术有限公司
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Publication of WO2021109873A1 publication Critical patent/WO2021109873A1/zh

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    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05KPRINTED CIRCUITS; CASINGS OR CONSTRUCTIONAL DETAILS OF ELECTRIC APPARATUS; MANUFACTURE OF ASSEMBLAGES OF ELECTRICAL COMPONENTS
    • 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

Definitions

  • the invention relates to the field of cabinets, in particular to a heat dissipation system for network cabinets based on big data.
  • Big data refers to a collection of data whose content cannot be captured, managed and processed with conventional software tools within a certain period of time. Big data has five major characteristics, namely, large amount, high speed, diversity, low value density, and authenticity.
  • big data equipment is indispensable.
  • the network cabinets are used to fix these equipment. On the one hand, these equipment can be protected. On the other hand, it is convenient to improve the security of data. In order to ensure the normal operation of the equipment, the network The cabinet cooling system is also essential.
  • the existing big data-based network cabinet heat dissipation system has certain drawbacks when used.
  • the existing big data-based network cabinet heat dissipation system is fixed by bolts during installation, lacking necessary reinforcement measures, and it is easy to cause long-term use. Loose bolts lead to poor installation stability of the cooling system; when the existing big data-based network cabinet cooling system uses cooling fans for heat dissipation, it is affected by the outside temperature, resulting in the exhaust temperature of the cooling fan being not stable enough, which affects the actual Heat dissipation effect:
  • the existing big data-based network cabinet heat dissipation system has relatively general protection performance. The heat dissipation system is directly in contact with the external environment, and the effect of dust and water resistance is general, which has a certain impact on actual use.
  • the purpose of the present invention is to provide a network cabinet heat dissipation system based on big data.
  • the present invention can effectively solve the problem that the existing network cabinet heat dissipation system based on big data is fixed by bolts during installation and lacks necessary reinforcement measures.
  • the use of bolts is easy to cause loosening of the cooling system, resulting in poor installation stability of the cooling system; when the existing network cabinet cooling system based on big data uses cooling fans to dissipate heat, it is affected by the outside temperature, resulting in the exhaust temperature of the cooling fan is not stable enough. Affect the actual heat dissipation effect; the existing big data-based network cabinet heat dissipation system has relatively general protection performance, the heat dissipation system directly contacts the external environment, and the dustproof and waterproof effect is general.
  • a heat dissipation system for a network cabinet based on big data includes a fixed box body, a first heat dissipation fan and a second heat dissipation fan are installed on the top of the fixed box body, and a cooling member is installed on the bottom of the fixed box body, and the cooling member Mounting plates are installed at both ends of the fixed box body, and a first air box and a second air box are respectively installed on both sides of the cooling member at the bottom of the fixed box;
  • the first heat dissipation fan includes an upper fixing plate and a lower fixing plate, a fan housing is installed between the bottom of the upper fixing plate and the top of the lower fixing plate, and a protective net is installed on the top of the upper fixing plate.
  • the fan Axial fan blades are installed inside the shell;
  • the cooling member is composed of a bottom plate and several groups of cooling fins arranged in parallel, the several groups of the cooling fins are all arranged perpendicular to the bottom plate, and several sets of clamping pieces are installed equidistantly on the top surface of the mounting plate;
  • the clip includes a first connecting piece and a second connecting piece, the inner side of the first connecting piece is provided with a rubber washer, and the inner side of the rubber washer is provided with a clamping lever, and the inner side of the second connecting piece is provided with a fixing pin Hole, a clamping plate is clamped between the ends of the first connecting piece and the second connecting piece, and a plurality of pull rods are connected between the ends of the first connecting piece and the second connecting piece, and a plurality of the The tie rods are all arranged inside the clamping plate;
  • a base is installed at the inner bottom end of the first air box, an exhaust fan is installed on the top of the base, and an exhaust pipe is installed at one end of the exhaust fan, and one end of the exhaust pipe is connected with a circular chuck.
  • An insert plate is connected to one end of the circular chuck that is away from the exhaust pipe, and the other end of the exhaust fan is connected to an air inlet pipe.
  • one end of the air inlet pipe away from the exhaust fan is sleeved with a connector, and one end of the connector end away from the air inlet pipe is provided with a U-shaped groove, and a U-shaped groove is clamped on the inner side of the U-shaped groove.
  • a protective cover is installed on the outside of the connecting head, the side wall of the protective cover is fixedly connected with the outer side wall of the first wind box, and a baffle is installed on the side wall of the protective cover away from the side wall of the first wind box to block One end of the plate is clamped into the inner side of the protective cover, and bolts are connected between the protective cover and the top of the baffle.
  • the outer edge of the plug-in board is provided with a sealing gasket
  • the side wall of the plug-in board is equidistantly installed with several sets of exhaust plates, and both sides of the exhaust plate are bonded with arc-shaped sealing gaskets.
  • the first heat dissipation fan and the second heat dissipation fan are horizontally arranged in parallel, and the middle and lower fixing plates of the first heat dissipation fan and the second heat dissipation fan are both fixedly connected to the top surface of the fixing box body by screws.
  • the first connecting piece is fixed to the mounting plate by a clamping lever, the top surface of the mounting plate is arranged in an L shape, and the second connecting piece is arranged in a suspended state, and penetrates the top surface of the mounting plate and lies below each set of fixing pin holes.
  • a set of bolt holes are provided in all positions.
  • both ends of the clamping plate are arranged in a concave shape
  • the ends of the first connecting piece and the second connecting piece are respectively clamped into the concave structure at both ends of the clamping plate
  • the pull rod penetrates through the two sides of the clamping plate.
  • the two ends of the pull rod are respectively connected to the ends of the first connecting piece and the second connecting piece.
  • a plurality of groups of the refrigeration fins are arranged in parallel and equidistant, a plurality of sets of air exhaust plates installed on the side walls of the insert plate are respectively clamped between adjacent refrigeration fins, and the interior of the insert plate is hollowed out.
  • the fixed box body is arranged in a rectangular parallelepiped shape, and the lower part of the fixed box body is communicated with the top of the cooling fin, and the top of the fixed box body is arranged in a mesh structure at the junction of the bottom of the first heat dissipation fan and the second heat dissipation fan. .
  • the specific use steps of the heat dissipation system are as follows:
  • Step 1 First fix the heat dissipation system to the network cabinet, open an installation slot on the door of the network cabinet, and fix the entire heat dissipation system in the installation slot.
  • the outlet ends of the first and second cooling fans are aligned with the network Inside the cabinet, the mounting plates at both ends of the cooling component are attached to the outer wall of the mounting slot, the clamps are set in the inner slot of the mounting slot, and bolts are installed in the bolt holes on the mounting plate to fix the mounting plate with the outer wall of the mounting slot. Pass the bolt hole through the fixing pin hole on the inner side of the second connecting piece, and finally fix the end of the bolt with a nut to fix the entire heat dissipation system to the network cabinet;
  • Step 2 Turn on the exhaust fans inside the first and second fan cases, and at the same time, externally supply cooling to the cooling fins, start the first cooling fan and the second cooling fan, the first cooling fan and the second cooling fan use axial flow
  • the fan blades supply air to the inside of the network cabinet, and the air exhaust plate on the side of the insert plate is clamped between the adjacent cooling fins;
  • Step 3 After the exhaust fan is started, the outside air is sucked into it from the inlet pipe, filtered by the U-shaped dust-proof net inside the U-shaped groove inside the connector, and then sent out to the exhaust pipe, passing through the circular clamp. Then it enters the insert plate, and then enters the cooling fins from each exhaust plate. The air contacts the cooling fins and then cools down. Then, under the rotation of the axial fan blades, the air in the cooling fins is sucked into the first cooling fan and the first cooling fan. Among the second cooling fans, they are finally discharged into the network cabinet to cool down the network cabinet.
  • the present invention can effectively adjust the amount of lubricating oil pressed in, so that the utilization rate of lubricating oil can achieve the best effect, and the rotation speed of the permanent magnet rotor can be obtained through the control block.
  • the pressure difference between the first pressure value and the second pressure value and the temperature difference between the first temperature value and the second temperature value are compared with the preset threshold value and the amount of lubricating oil is adjusted to effectively improve the utilization of lubricating oil Efficiency, and can improve the service life of the oil suction cavity and the oil pressure cavity;
  • the invention can effectively improve the operating efficiency of the motor through the coordinated use of the inner rotor and the outer rotor.
  • Both the inner rotor and the outer rotor adopt a permanent magnet structure without excitation.
  • the inner rotor and the outer rotor are embedded in the motor housing. Internally, it can effectively save space and reduce manufacturing costs.
  • the motor is integrated with the pump body and there is no coupling, which reduces the transmission loss and effectively improves the transmission efficiency.
  • Fig. 1 is a structural diagram of a heat dissipation system for a network cabinet based on big data according to the present invention.
  • FIG. 2 is a structural diagram of a fixed box body, a first heat dissipation fan and a second heat dissipation fan in a heat dissipation system of a network cabinet based on big data according to the present invention.
  • Fig. 3 is a structural diagram of a first cooling fan in a network cabinet cooling system based on big data according to the present invention.
  • Fig. 4 is a structural diagram of a cooling component and a mounting plate in a heat dissipation system of a network cabinet based on big data according to the present invention.
  • Fig. 5 is a cross-sectional view of a card in a heat dissipation system of a network cabinet based on big data according to the present invention.
  • Fig. 6 is a cross-sectional view of the first air box in a heat dissipation system of a network cabinet based on big data according to the present invention.
  • Fig. 7 is an enlarged view of area A in Fig. 6 of a network cabinet heat dissipation system based on big data according to the present invention.
  • Fig. 8 is a side view of a plugboard in a heat dissipation system of a network cabinet based on big data according to the present invention.
  • a network cabinet heat dissipation system based on big data including a fixed box body 1, a first cooling fan 2 and a second cooling fan 3 are installed on the top of the fixed box body 1, and the fixed box body 1
  • a cooling member 4 is installed at the bottom of the cooling member 4, and mounting plates 5 are installed at both ends of the cooling member 4.
  • the bottom of the fixed box body 1 is installed on both sides of the cooling member 4 with a first air box 6 and a second air box 7, respectively,
  • the first air box 6 and the second air box 7 play the role of air supply;
  • the first cooling fan 2 includes an upper fixing plate 8 and a lower fixing plate 9.
  • a fan housing 10 is installed between the bottom of the upper fixing plate 8 and the top of the lower fixing plate 9, and a protective net 11 is installed on the top of the upper fixing plate 8.
  • Axial fan blades 12 are installed inside the fan housing 10, and the axial fan blades 12 send air into the network cabinet;
  • the cooling member 4 is composed of a bottom plate 13 and several groups of cooling fins 14 arranged in parallel.
  • the several groups of cooling fins 14 are arranged perpendicular to the bottom plate 13, and the top surface of the mounting plate 5 is equidistantly installed with several groups of clamping pieces 15 and the clamping pieces 15 are arranged. Play a reinforcement role to prevent loosening;
  • the clamping member 15 includes a first connecting piece 16 and a second connecting piece 19.
  • a rubber washer 17 is provided on the inner side of the first connecting piece 16 and a clamping rod 18 is provided on the inner side of the rubber washer 17, and the inner side of the second connecting piece 19 is provided with Fixing the pin hole 20, a clamping plate 21 is clamped between the ends of the first connecting piece 16 and the second connecting piece 19, and there are several connecting pieces between the ends of the first connecting piece 16 and the second connecting piece 19
  • the tie rods 22 and several tie rods 22 are all arranged inside the clamping plate 21.
  • the tie rods 22 are arranged to further fix the first connecting piece 16 and the second connecting piece 19 to prevent the first connecting piece 16 and the second connecting piece 19 Fall off from the clamping plate 21;
  • a base 23 is installed at the inner bottom end of the first air box 6, an exhaust fan 24 is installed on the top of the base 23, an exhaust duct 25 is installed at one end of the exhaust fan 24, and a circular clamp 26 is connected to one end of the exhaust duct 25 , One end of the circular chuck 26 away from the exhaust pipe 25 is connected with an insert plate 27, and the other end of the exhaust fan 24 is connected with an air inlet pipe 28.
  • the exhaust fan 24 drives the air inlet pipe 28 to inhale air, and then the exhaust air The tube 25 is discharged.
  • One end of the air inlet pipe 28 away from the exhaust fan 24 is sleeved with a connector 29, and one end of the connector 29 away from the air inlet pipe 28 is provided with a U-shaped groove 30, and a U-shaped groove 30 is clamped on the inner side of the U-shaped groove 30.
  • the U-shaped dust-proof net 31 and the U-shaped dust-proof net 31 can effectively prevent dust from entering the inside of the network cabinet from the air inlet pipe 28, and play a dust-proof function.
  • a protective cover 32 is installed on the outside of the connecting head 29, the side wall of the protective cover 32 is fixedly connected with the outer side wall of the first wind box 6, and a side wall of the protective cover 32 away from the side wall of the first wind box 6 is installed with a baffle 33
  • One end of the baffle 33 is clamped into the inside of the protective cover 32, bolts are connected between the protective cover 32 and the top of the baffle 33, and the baffle 33 is provided to block and play a waterproof effect.
  • the outer edge of the insert plate 27 is provided with a sealing gasket 34, and the side wall of the insert plate 27 is equidistantly installed with several sets of exhaust plates 35, both sides of the exhaust plate 35 are glued with arc-shaped sealing gaskets 36, which are set in arc
  • the sealing gasket 36 plays a sealing role, so that the air exhaust plate 35 is locked between the adjacent refrigerating fins 14 to seal the box better.
  • the first heat dissipating fan 2 and the second heat dissipating fan 3 are horizontally arranged in parallel, and the lower fixing plate 9 of the first heat dissipating fan 2 and the second heat dissipating fan 3 are both fixedly connected to the top surface of the fixing box 1 by screws.
  • the first connecting piece 16 is fixed to the mounting plate 5 by a lever 18, the top surface of the mounting plate 5 is arranged in an L shape, and the second connecting piece 19 is arranged in a suspended state, passing through the top surface of the mounting plate 5 by each set of fixing pin holes 20 A set of bolt holes are opened in the lower position of the, and the mounting plate 5 is set in an L shape to facilitate fixing with the mounting slot opened later.
  • Both ends of the clamping plate 21 are arranged in a concave shape.
  • the ends of the first connecting piece 16 and the second connecting piece 19 are respectively clamped into the concave structure at both ends of the clamping plate 21, and the pull rod 22 penetrates the clamping plate 21.
  • Both ends, and the two ends of the tie rod 22 are respectively connected to the ends of the first connecting piece 16 and the second connecting piece 19, and the tie rod 22 is arranged to cooperate with the clamping plate 21, so that the first connecting piece 16 and the second connecting piece 19 are connected More solid.
  • the fixed box body 1 is arranged in a rectangular parallelepiped shape, and the lower part of the fixed box body 1 is communicated with the top of the cooling fin 14, and the top of the fixed box body 1 and the bottom of the first cooling fan 2 and the second cooling fan 3 are in a mesh structure. It is provided that the fixed box body 1 can be ventilated as a whole, thereby facilitating the exhaust operation of the first heat dissipation fan 2 and the second heat dissipation fan 3.
  • a heat dissipation system for a network cabinet based on big data When in use, a fixed box body 1 is used to fix the first cooling fan 2 and the second cooling fan 3, and the lower parts of the first cooling fan 2 and the second cooling fan 3 are fixed.
  • the fixing plate 9 is fixed to the top of the fixing box 1 with screws, so that the first cooling fan 2 and the second cooling fan 3 are fixedly installed.
  • the upper fixing plate 8 cooperates with the lower fixing plate 9 to fix the fan housing 10, axial flow
  • the fan blades 12 are installed inside the fan housing 10, and the protective net 11 is installed on the top of the upper fixing plate 8 for protection.
  • the cooling system is fixed to the network cabinet, and an installation slot is opened on the network cabinet door to connect the entire cooling system Fixed in the mounting slot, the air outlet ends of the first cooling fan 2 and the second cooling fan 3 are aligned with the inside of the network cabinet, the mounting plates 5 at both ends of the cooling member 4 are attached to the outer wall of the mounting slot, and the clamping piece 15 is set In the inner groove of the installation groove, the clamping member 15 is fixed with the clamping plate 21 by the first connecting piece 16 and the second connecting piece 19, and the ends of the first connecting piece 16 and the second connecting piece 19 are both clamped in the clamping
  • the inner side of the plate 21, and several tie rods 22 are connected between the ends of the first connecting piece 16 and the second connecting piece 19, which play a role of reinforcement and prevent the first connecting piece 16 and the second connecting piece 19 from being clamped.
  • the inner side of the plate 21 falls off, and bolts are installed in the bolt holes on the mounting plate 5 to fix the mounting plate 5 to the outer wall of the mounting groove.
  • the bolts are passed through the fixing pin holes 20 opened on the inner side of the second connecting piece 19, and finally the bolts
  • the ends are fixed with nuts to fix the entire heat dissipation system to the network cabinet.
  • the clamps 15 are used to clamp the bolts as a whole, which can effectively prevent the heat dissipation system from loosening after installation.
  • the first connecting piece 16 is sleeved on the clamping rod 18, so that during installation, the first connecting piece 16 can be rotated first to adjust the entire clamping piece 15 to a horizontal state, and the entire heat dissipation system is clamped into the installation slot After that, adjust the clamp 15 to a vertical position, and then fix the bolts, start the exhaust fans 24 inside the first air box 6 and the second air box 7, and at the same time provide external power supply to the refrigeration sheet 14 for cooling, and the bottom of the refrigeration sheet 14 is provided The bottom plate 13 is supported, and the first cooling fan 2 and the second cooling fan 3 are activated.
  • the first cooling fan 2 and the second cooling fan 3 use the axial fan blades 12 to blow air into the network cabinet, and the exhaust on the side of the board 27
  • the air plate 35 is clamped into the adjacent cooling fins 14.
  • the exhaust fan 24 is started, the outside air is sucked into it from the air inlet pipe 28, and passes through the U-shaped dust-proof net inside the U-shaped groove 30 inside the connector 29 31 is filtered, and then sent to the exhaust pipe 25, passes through the circular chuck 26, then enters the insert plate 27, and then enters the refrigeration fin 14 from each exhaust plate 35, and arcs are set on both sides of the exhaust plate 35
  • the arc-shaped gasket 36 is provided with the arc-shaped gasket 36 to ensure the air-tightness when the exhaust plate 35 is clamped between the adjacent cooling fins 14 to avoid air leakage.
  • a protective cover is provided on the outside of the air inlet pipe 28 32 Protect the connector 29 At the same time, a baffle 33 is provided on the side of the protective cover 32.
  • the baffle 33 can prevent rain from entering the air inlet duct 28 in rainy weather. After the air contacts the cooling fin 14, the temperature is cooled, and then the axial flow With the rotation of the fan blades 12, the air in the cooling fins 14 is sucked into the first cooling fan 2 and the second cooling fan 3, and finally discharged into the network cabinet to cool the network cabinet.
  • a clamping member 15 is arranged on the top of the mounting plate 5, and the mounting plate 5 is arranged in an L shape, which facilitates the insertion of the entire heat dissipation system into the installation slot of the network cabinet.
  • bolts are used to install the entire heat dissipation system.
  • the plate 5 is fixed to the network cabinet, the end of the bolt is reinforced by the clamp 15, the bolt used for installation is passed through the fixing pin hole 20 opened inside the second connecting piece 19, and finally the end of the bolt is fixed with a nut, namely The bolts used for installation can be connected to the clamping member 15.
  • the clamping member 15 is fixed with the first connecting piece 16 and the second connecting piece 19 to the clamping plate 21, and the ends of the first connecting piece 16 and the second connecting piece 19 are both It is clamped on the inner side of the clamping plate 21, and several tie rods 22 are connected between the ends of the first connecting piece 16 and the second connecting piece 19 to play a role of reinforcement and prevent the first connecting piece 16 from being connected to the second connecting piece.
  • the piece 19 falls off from the inner side of the clamping plate 21, so that the bolts used in the installation of the heat dissipation system can be reinforced by the clip 15, avoiding the loosening of the bolts for a long time, and improving the firmness of the entire installation system and the network cabinet after installation; Insert the board 27, and install multiple sets of exhaust plates 35 on the side of the insert plate 27, cooperate with the refrigerating fins 14 to snap the exhaust plates 35 into the adjacent refrigerating fins 14.
  • the exhaust fan 24 After starting the exhaust fan 24 and the refrigerating fins 14, The exhaust fan 24 sends the sucked air from the exhaust duct 25 to the insert plate 27, then from the insert plate 27 to each exhaust plate 35, and finally enters each adjacent cooling plate 14 from the exhaust plate 35 Between the cooling fins 14 and the air, the air quickly drops.
  • the air cooled in the cooling fins 14 is sent into the inside of the network cabinet, thereby effectively reducing
  • the temperature of the wind sent by the axial fan blade 12 improves the heat dissipation effect of the first cooling fan 2 and the second cooling fan 3, and effectively prevents the first cooling fan 2 and the second cooling fan 3 from being affected by the outside temperature, resulting in exhaust
  • the wind temperature is too high and affects the heat dissipation problem; by installing a protective cover 32 on the outside of the connector 29, the protective cover 32 is used to protect the connector 29 to prevent the connector 29 from being exposed to the external environment and affecting its service life.
  • the inner groove of the connector 29 is provided with a U-shaped groove 30, and a U-shaped dust-proof net 31 is installed inside the U-shaped groove 30.
  • a baffle 33 can block rain in rainy weather and prevent moisture from entering the air inlet duct 28, so that the entire heat dissipation system has a better Waterproof and dustproof effect.

Abstract

本发明公开了一种基于大数据的网络机柜散热系统,包括固定盒体,所述固定盒体的顶部安装有第一散热风扇和第二散热风扇,所述固定盒体的底部安装有降温构件,且降温构件的两端均安装有安装板,所述固定盒体的底部靠降温构件的两侧分别安装有第一风机箱和第二风机箱,所述第一散热风扇包括上固定板和下固定板,所述上固定板的底部和下固定板的顶部之间安装有风扇壳体,且上固定板的顶部安装有防护网,所述风扇壳体的内部安装有轴流扇叶。本发明能够有效的提高散热系统的散热效果,使得散热系统具备较好的散热性能,且能够有效的防止散热系统在安装之后出现松动的情况,同时能够起到较好的防水防尘作用,防止灰尘进入到网络机柜当中。

Description

一种基于大数据的网络机柜散热系统 技术领域
本发明涉及机柜领域,具体涉及一种基于大数据的网络机柜散热系统。
背景技术
大数据是指无法在一定时间内用常规软件工具对其内容进行抓取、管理和处理的数据集合,大数据有五大特点,即大量、高速、多样、低价值密度、真实性,为了对这些数据内容进行抓取,大数据设备必不可少,采用网络机柜对这些设备进行固定安装,一方面能够对这些设备进行保护,另一方便提高了数据的安全性,为了保证设备的正常运行,网络机柜散热系统同样必不可少。
在现有的基于大数据的网络机柜散热系统在使用时存在一定的弊端,现有的基于大数据的网络机柜散热系统在安装时都是利用螺栓固定,缺乏必要的加固措施,长期使用容易导致螺栓松动,导致散热系统安装稳定性不佳;现有的基于大数据的网络机柜散热系统在利用散热风扇进行散热时,受到外界温度的影响,导致散热风扇的排风温度不够稳定,影响实际的散热效果;现有的基于大数据的网络机柜散热系统防护性能较为一般,散热系统直接与外部环境接触,防尘防水效果一般,给实际使用带来一定的影响。
发明内容
本发明的目的在于提供一种基于大数据的网络机柜散热系统,本发明能够有效的解决现有的基于大数据的网络机柜散热系统在安装时都是利用螺栓固定,缺乏必要的加固措施,长期使用容易导致螺栓松动,导致散热系统安装稳定性不佳;现有的基于大数据的网络机柜散热系统在利用散热风扇进行散热时,受到外界温度的影响,导致散热风扇的排风温度不够稳定,影响实际的散热效果;现有的基于大数据的网络机柜散热系统防护性 能较为一般,散热系统直接与外部环境接触,防尘防水效果一般的问题。
本发明的目的可以通过以下技术方案实现:
一种基于大数据的网络机柜散热系统,包括固定盒体,所述固定盒体的顶部安装有第一散热风扇和第二散热风扇,所述固定盒体的底部安装有降温构件,且降温构件的两端均安装有安装板,所述固定盒体的底部靠降温构件的两侧分别安装有第一风机箱和第二风机箱;
所述第一散热风扇包括上固定板和下固定板,所述上固定板的底部和下固定板的顶部之间安装有风扇壳体,且上固定板的顶部安装有防护网,所述风扇壳体的内部安装有轴流扇叶;
所述降温构件由底板和若干组平行设置的制冷片组成,若干组所述制冷片均与底板呈垂直设置,所述安装板的顶面等距安装有若干组卡件;
所述卡件包括第一连接片和第二连接片,所述第一连接片的内侧设置有橡胶垫圈,且橡胶垫圈的内侧设置有卡杆,所述第二连接片的内侧开设有固定销孔,所述第一连接片和第二连接片的端部之间卡接有夹持板,且第一连接片和第二连接片的端部之间连接有若干根拉杆,若干根所述拉杆均设置在夹持板的内部;
所述第一风机箱的内部底端安装有底座,所述底座的顶部安装有抽风机,且抽风机的一端安装有排风管,所述排风管的一端连接有圆形卡头,所述圆形卡头的一端远离排风管的一端连接有插板,所述抽风机的另一端连接有进风管。
优选的,所述进风管的一端远离抽风机的另一端套接有连接头,且连接头的一端远离进风管的一端开设有U型槽,所述U型槽的内侧卡接有U型防尘网。
优选的,所述连接头的外部安装有防护罩,防护罩的侧壁与第一风机箱的外侧壁固定连接,且防护罩的一侧远离第一风机箱的侧壁安装有挡板, 挡板的一端卡入到防护罩的内侧,贯穿防护罩与挡板的顶部之间连接有螺栓。
优选的,所述插板的外侧边缘设置有密封垫圈,且插板的侧壁等距安装有若干组排风板,所述排风板的两侧均粘接有弧形密封垫。
优选的,所述第一散热风扇和第二散热风扇呈横向平行设置,且第一散热风扇和第二散热风扇中下固定板均通过螺丝与固定盒体的顶面固定连接。
优选的,所述第一连接片通过卡杆与安装板固定,安装板的顶面呈L型设置,第二连接片呈悬空状态设置,贯穿安装板的顶面靠每组固定销孔的下方位置均开设有一组螺栓孔。
优选的,所述夹持板的两端均呈内凹状设置,第一连接片和第二连接片的端部分别卡入到夹持板两端内凹状结构当中,拉杆贯穿夹持板的两端,且拉杆的两端分别连接在第一连接片和第二连接片的端部。
优选的,若干组所述制冷片呈平行等距设置,所述插板侧壁安装的若干组排风板分别卡入到相邻制冷片之间,插板的内部呈镂空状设置。
优选的,所述固定盒体呈长方体状设置,且固定盒体的下部与制冷片顶部相连通,固定盒体的顶部与第一散热风扇和第二散热风扇底部衔接处呈网板状结构设置。
优选的,该散热系统的具体使用步骤如下:
步骤一:首先将该散热系统与网络机柜进行固定,在网络机柜门上开设安装槽,将整个散热系统固定在安装槽内,第一散热风扇和第二散热风扇的出风端均对准网络机柜的内部,降温构件两端的安装板均贴合在安装槽的外壁,卡件设置在安装槽的内槽,在安装板上开设的螺栓孔架设螺栓将安装板与安装槽的外壁固定,同时将螺栓孔穿过第二连接片内侧开设的固定销孔,最后将螺栓的端部利用螺母进行固定,将整个散热系统与网络 机柜固定安装;
步骤二:启动第一风机箱和第二风机箱内部的抽风机,同时,给制冷片外接电源制冷,启动第一散热风扇和第二散热风扇,第一散热风扇和第二散热风扇利用轴流扇叶向网络机柜内部送风,将插板侧边的排风板卡入到相邻的制冷片之间;
步骤三:抽风机启动之后,从进风管将外部空气吸入到其内部,经过连接头内侧的U型槽内部的U型防尘网过滤,之后送出到排风管,经过圆形卡头,随后进入到插板,随后由各个排风板进入到制冷片中,空气与制冷片接触之后降温,随后在轴流扇叶的转动下,将制冷片中的空气吸入到第一散热风扇和第二散热风扇当中,最后排入到网络机柜内部,对网络机柜进行降温。
本发明的有益效果:
本发明通过设置的控制块、压力传感器以及温度传感器的配合使用,可以有效调节润滑油的压入量,使得润滑油的利用率达到最佳效果的目的,通过控制块获取永磁转子的旋转速度、第一压力值第二压力值的压力差以及第一温度值和第二温度值的温度差,与预设的阀值进行对比并调节润滑油的压入量,有效提高了润滑油的利用效率,并且可以提高吸油腔和压油腔的使用寿命;
本发明通过设置的内转子和外转子的配合使用,可以有效提高电机的运转效率,内转子和外转子均采用永磁结构,无需励磁,通过将内转子和外转子镶嵌至电机壳体的内部,可以有效节省空间,并降低制造成本,电机与泵本体一体化,没有联轴节,降低了传动损失,有效提高了传动的效率。
附图说明
为了便于本领域技术人员理解,下面结合附图对本发明作进一步的说 明。
图1为本发明一种基于大数据的网络机柜散热系统的结构图。
图2为本发明一种基于大数据的网络机柜散热系统中固定盒体与第一散热风扇和第二散热风扇的结构图。
图3为本发明一种基于大数据的网络机柜散热系统中第一散热风扇的结构图。
图4为本发明一种基于大数据的网络机柜散热系统中降温构件和安装板的结构图。
图5为本发明一种基于大数据的网络机柜散热系统中卡件的剖面图。
图6为本发明一种基于大数据的网络机柜散热系统中第一风机箱的剖面图。
图7为本发明一种基于大数据的网络机柜散热系统图6中A区的放大图。
图8为本发明一种基于大数据的网络机柜散热系统中插板的侧视图。
图中:1、固定盒体;2、第一散热风扇;3、第二散热风扇;4、降温构件;5、安装板;6、第一风机箱;7、第二风机箱;8、上固定板;9、下固定板;10、风扇壳体;11、防护网;12、轴流扇叶;13、底板;14、制冷片;15、卡件;16、第一连接片;17、橡胶垫圈;18、卡杆;19、第二连接片;20、固定销孔;21、夹持板;22、拉杆;23、底座;24、抽风机;25、排风管;26、圆形卡头;27、插板;28、进风管;29、连接头;30、U型槽;31、U型防尘网;32、防护罩;33、挡板;34、密封垫圈;35、排风板;36、弧形密封垫。
具体实施方式
下面将结合实施例对本发明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作出创造性劳动前提下所获得的所有其它实施例,都属于本发明保护的范围。
请参阅图1-8所示,一种基于大数据的网络机柜散热系统,包括固定盒体1,固定盒体1的顶部安装有第一散热风扇2和第二散热风扇3,固定盒体1的底部安装有降温构件4,且降温构件4的两端均安装有安装板5,固定盒体1的底部靠降温构件4的两侧分别安装有第一风机箱6和第二风机箱7,第一风机箱6和第二风机箱7起到送风作用;
第一散热风扇2包括上固定板8和下固定板9,上固定板8的底部和下固定板9的顶部之间安装有风扇壳体10,且上固定板8的顶部安装有防护网11,风扇壳体10的内部安装有轴流扇叶12,轴流扇叶12将风送入到网络机柜当中;
降温构件4由底板13和若干组平行设置的制冷片14组成,若干组制冷片14均与底板13呈垂直设置,安装板5的顶面等距安装有若干组卡件15,设置卡件15起到加固作用,防止松动;
卡件15包括第一连接片16和第二连接片19,第一连接片16的内侧设置有橡胶垫圈17,且橡胶垫圈17的内侧设置有卡杆18,第二连接片19的内侧开设有固定销孔20,第一连接片16和第二连接片19的端部之间卡接有夹持板21,且第一连接片16和第二连接片19的端部之间连接有若干根拉杆22,若干根拉杆22均设置在夹持板21的内部,设置拉杆22对第一连接片16和第二连接片19进行进一步固定,防止第一连接片16和第二连接片19之间与夹持板21脱落;
第一风机箱6的内部底端安装有底座23,底座23的顶部安装有抽风机24,且抽风机24的一端安装有排风管25,排风管25的一端连接有圆形卡头26,圆形卡头26的一端远离排风管25的一端连接有插板27,抽风机24 的另一端连接有进风管28,抽风机24带动进风管28将空气吸入,再从排风管25排出。
进风管28的一端远离抽风机24的另一端套接有连接头29,且连接头29的一端远离进风管28的一端开设有U型槽30,U型槽30的内侧卡接有U型防尘网31,U型防尘网31能够有效的防止灰尘从进风管28进入到网络机柜内部,起到防尘作用。
连接头29的外部安装有防护罩32,防护罩32的侧壁与第一风机箱6的外侧壁固定连接,且防护罩32的一侧远离第一风机箱6的侧壁安装有挡板33,挡板33的一端卡入到防护罩32的内侧,贯穿防护罩32与挡板33的顶部之间连接有螺栓,设置挡板33起到遮挡作用,起到防水效果。
插板27的外侧边缘设置有密封垫圈34,且插板27的侧壁等距安装有若干组排风板35,排风板35的两侧均粘接有弧形密封垫36,设置弧形密封垫36起到密封作用,使得排风板35卡入到相邻的制冷片14之间密封箱更好。
第一散热风扇2和第二散热风扇3呈横向平行设置,且第一散热风扇2和第二散热风扇3中下固定板9均通过螺丝与固定盒体1的顶面固定连接。
第一连接片16通过卡杆18与安装板5固定,安装板5的顶面呈L型设置,第二连接片19呈悬空状态设置,贯穿安装板5的顶面靠每组固定销孔20的下方位置均开设有一组螺栓孔,安装板5设置成L型便于与后期开设的安装槽固定。
夹持板21的两端均呈内凹状设置,第一连接片16和第二连接片19的端部分别卡入到夹持板21两端内凹状结构当中,拉杆22贯穿夹持板21的两端,且拉杆22的两端分别连接在第一连接片16和第二连接片19的端部,设置拉杆22配合夹持板21,从而使得第一连接片16和第二连接片19连接更加牢固。
若干组制冷片14呈平行等距设置,插板27侧壁安装的若干组排风板35分别卡入到相邻制冷片14之间,插板27的内部呈镂空状设置,插板27设置成镂空状态,便于通气。
固定盒体1呈长方体状设置,且固定盒体1的下部与制冷片14顶部相连通,固定盒体1的顶部与第一散热风扇2和第二散热风扇3底部衔接处呈网板状结构设置,固定盒体1整体可以通风,从而便于第一散热风扇2和第二散热风扇3的排风操作。
一种基于大数据的网络机柜散热系统,在使用时,利用固定盒体1对第一散热风扇2和第二散热风扇3进行固定,将第一散热风扇2和第二散热风扇3中的下固定板9采用螺丝与固定盒体1顶部进行固定,从而将第一散热风扇2和第二散热风扇3进行固定安装,上固定板8配合下固定板9对风扇壳体10进行固定,轴流扇叶12安装在风扇壳体10内部,防护网11安装在上固定板8的顶部起到防护作用,将该散热系统与网络机柜进行固定,在网络机柜门上开设安装槽,将整个散热系统固定在安装槽内,第一散热风扇2和第二散热风扇3的出风端均对准网络机柜的内部,降温构件4两端的安装板5均贴合在安装槽的外壁,卡件15设置在安装槽的内槽,卡件15采用第一连接片16和第二连接片19与夹持板21进行固定,第一连接片16和第二连接片19的端部均卡接在夹持板21的内侧,并在第一连接片16和第二连接片19的端部之间连接若干根拉杆22,起到加固的作用,防止第一连接片16和第二连接片19从夹持板21的内侧脱落,在安装板5上开设的螺栓孔架设螺栓将安装板5与安装槽的外壁固定,同时将螺栓穿过第二连接片19内侧开设的固定销孔20,最后将螺栓的端部利用螺母进行固定,将整个散热系统与网络机柜固定安装,螺栓固定在固定销孔20内之后,利用卡件15对螺栓整体的卡接固定,从而可以有效的防止散热系统安装之后出现松动的情况,第一连接片16套接在卡杆18上,从而在安装时, 可以先对第一连接片16进行转动,将整个卡件15调整至水平状态,整个散热系统卡入到安装槽之后,再将卡件15调节成垂直状态,再对螺栓进行固定,启动第一风机箱6和第二风机箱7内部的抽风机24,同时给制冷片14外接电源制冷,制冷片14底部设置底板13进行支撑,启动第一散热风扇2和第二散热风扇3,第一散热风扇2和第二散热风扇3利用轴流扇叶12向网络机柜内部送风,将插板27侧边的排风板35卡入到相邻的制冷片14之,抽风机24启动之后,从进风管28将外部空气吸入到其内部,经过连接头29内侧的U型槽30内部的U型防尘网31过滤,之后送出到排风管25,经过圆形卡头26,随后进入到插板27,随后由各个排风板35进入到制冷片14中,在排风板35的两侧均设置弧形密封垫36,通过设置弧形密封垫36,进而可以保证排风板35卡入到相邻制冷片14之间时的密封性,避免出现漏风的情况,进风管28的外侧设置防护罩32对连接头29进行防护,同时在防护罩32的侧边设置挡板33,挡板33能在雨水天气起到挡雨作用,防止水分进入到进风管28当中,空气与制冷片14接触之后降温,随后在轴流扇叶12的转动下,将制冷片14中的空气吸入到第一散热风扇2和第二散热风扇3当中,最后排入到网络机柜内部,对网络机柜进行降温。
本发明通过在安装板5的顶部设置卡件15,安装板5设置成L型,便于将整个散热系统卡入到网络机柜的安装槽内,在对整个散热系统进行安装时,采用螺栓将安装板5与网络机柜进行固定,采用卡件15对螺栓端部进行加固,将安装所用螺栓穿过第二连接片19内侧开设的固定销孔20,最后将螺栓的端部利用螺母进行固定,即可将安装所用螺栓与卡件15进行连接,卡件15采用第一连接片16和第二连接片19与夹持板21进行固定,第一连接片16和第二连接片19的端部均卡接在夹持板21的内侧,并在第一连接片16和第二连接片19的端部之间连接若干根拉杆22,起到加固的作用,防止第一连接片16和第二连接片19从夹持板21的内侧脱落,从而 利用卡件15可以对散热系统安装所用螺栓进行加固,避免长时间螺栓出现松动的情况,提高整个安装系统与网络机柜安装之后的牢固性;通过设置插板27,且在插板27的侧边安装多组排风板35,配合制冷片14,将排风板35卡入到相邻制冷片14当中,启动抽风机24和制冷片14之后,抽风机24将所吸入的空气从排风管25送入到插板27,再从插板27送入到各个排风板35当中,最后从排风板35进入到各个相邻的制冷片14之间,在制冷片14与空气的接触下,空气迅速降,在轴流扇叶12转动的引导下,将制冷片14中被冷却的空气送入到网络机柜的内部,从而有效的降低了轴流扇叶12送出的风的温度,提高第一散热风扇2和第二散热风扇3的散热效果,有效的避免了第一散热风扇2和第二散热风扇3受到外界温度的影响,导致排风温度过高而影响散热的问题;通过在连接头29的外侧安装防护罩32,利用防护罩32对连接头29进行防护,避免连接头29暴露在外界环境当中而影响其使用寿命,同时在连接头29的内槽设置U型槽30,在U型槽30的内部安装U型防尘网31,空气进入到进风管28时,能够被U型防尘网31进行过滤,从而避免灰尘进入到网络机柜内部,同时在防护罩32的侧边安装挡板33,挡板33能在雨水天气起到挡雨作用,防止水分进入到进风管28当中,从而整个散热系统具备较好的防水和防尘效果。
以上公开的本发明优选实施例只是用于帮助阐述本发明。优选实施例并没有详尽叙述所有的细节,也不限制该发明仅为所述的具体实施方式。显然,根据本说明书的内容,可作很多的修改和变化。本说明书选取并具体描述这些实施例,是为了更好地解释本发明的原理和实际应用,从而使所属技术领域技术人员能很好地理解和利用本发明。本发明仅受权利要求书及其全部范围和等效物的限制。

Claims (10)

  1. 一种基于大数据的网络机柜散热系统,其特征在于,包括固定盒体(1),所述固定盒体(1)的顶部安装有第一散热风扇(2)和第二散热风扇(3),所述固定盒体(1)的底部安装有降温构件(4),且降温构件(4)的两端均安装有安装板(5),所述固定盒体(1)的底部靠降温构件(4)的两侧分别安装有第一风机箱(6)和第二风机箱(7);
    所述第一散热风扇(2)包括上固定板(8)和下固定板(9),所述上固定板(8)的底部和下固定板(9)的顶部之间安装有风扇壳体(10),且上固定板(8)的顶部安装有防护网(11),所述风扇壳体(10)的内部安装有轴流扇叶(12);
    所述降温构件(4)由底板(13)和若干组平行设置的制冷片(14)组成,若干组所述制冷片(14)均与底板(13)呈垂直设置,所述安装板(5)的顶面等距安装有若干组卡件(15);
    所述卡件(15)包括第一连接片(16)和第二连接片(19),所述第一连接片(16)的内侧设置有橡胶垫圈(17),且橡胶垫圈(17)的内侧设置有卡杆(18),所述第二连接片(19)的内侧开设有固定销孔(20),所述第一连接片(16)和第二连接片(19)的端部之间卡接有夹持板(21),且第一连接片(16)和第二连接片(19)的端部之间连接有若干根拉杆(22),若干根所述拉杆(22)均设置在夹持板(21)的内部;
    所述第一风机箱(6)的内部底端安装有底座(23),所述底座(23)的顶部安装有抽风机(24),且抽风机(24)的一端安装有排风管(25),所述排风管(25)的一端连接有圆形卡头(26),所述圆形卡头(26)的一端远离排风管(25)的一端连接有插板(27),所述抽风机(24)的另 一端连接有进风管(28)。
  2. 根据权利要求1所述的一种基于大数据的网络机柜散热系统,其特征在于,所述进风管(28)的一端远离抽风机(24)的另一端套接有连接头(29),且连接头(29)的一端远离进风管(28)的一端开设有U型槽(30),所述U型槽(30)的内侧卡接有U型防尘网(31)。
  3. 根据权利要求2所述的一种基于大数据的网络机柜散热系统,其特征在于,所述连接头(29)的外部安装有防护罩(32),防护罩(32)的侧壁与第一风机箱(6)的外侧壁固定连接,且防护罩(32)的一侧远离第一风机箱(6)的侧壁安装有挡板(33),挡板(33)的一端卡入到防护罩(32)的内侧,贯穿防护罩(32)与挡板(33)的顶部之间连接有螺栓。
  4. 根据权利要求1所述的一种基于大数据的网络机柜散热系统,其特征在于,所述插板(27)的外侧边缘设置有密封垫圈(34),且插板(27)的侧壁等距安装有若干组排风板(35),所述排风板(35)的两侧均粘接有弧形密封垫(36)。
  5. 根据权利要求1所述的一种基于大数据的网络机柜散热系统,其特征在于,所述第一散热风扇(2)和第二散热风扇(3)呈横向平行设置,且第一散热风扇(2)和第二散热风扇(3)中下固定板(9)均通过螺丝与固定盒体(1)的顶面固定连接。
  6. 根据权利要求1所述的一种基于大数据的网络机柜散热系统,其特征在于,所述第一连接片(16)通过卡杆(18)与安装板(5)固定,安装板(5)的顶面呈L型设置,第二连接片(19)呈悬空状态设置,贯穿安装板(5)的顶面靠每组固定销孔(20)的下方位置均开设有一组螺栓孔。
  7. 根据权利要求1所述的一种基于大数据的网络机柜散热系统,其特征在于,所述夹持板(21)的两端均呈内凹状设置,第一连接片(16)和第二连接片(19)的端部分别卡入到夹持板(21)两端内凹状结构当中, 拉杆(22)贯穿夹持板(21)的两端,且拉杆(22)的两端分别连接在第一连接片(16)和第二连接片(19)的端部。
  8. 根据权利要求4所述的一种基于大数据的网络机柜散热系统,其特征在于,若干组所述制冷片(14)呈平行等距设置,所述插板(27)侧壁安装的若干组排风板(35)分别卡入到相邻制冷片(14)之间,插板(27)的内部呈镂空状设置。
  9. 根据权利要求1所述的一种基于大数据的网络机柜散热系统,其特征在于,所述固定盒体(1)呈长方体状设置,且固定盒体(1)的下部与制冷片(14)顶部相连通,固定盒体(1)的顶部与第一散热风扇(2)和第二散热风扇(3)底部衔接处呈网板状结构设置。
  10. 根据权利要求1所述的一种基于大数据的网络机柜散热系统,其特征在于,该散热系统的具体使用步骤如下:
    步骤一:首先将该散热系统与网络机柜进行固定,在网络机柜门上开设安装槽,将整个散热系统固定在安装槽内,第一散热风扇(2)和第二散热风扇(3)的出风端均对准网络机柜的内部,降温构件(4)两端的安装板(5)均贴合在安装槽的外壁,卡件(15)设置在安装槽的内槽,在安装板(5)上开设的螺栓孔架设螺栓将安装板(5)与安装槽的外壁固定,同时将螺栓孔穿过第二连接片(19)内侧开设的固定销孔(20),最后将螺栓的端部利用螺母进行固定,将整个散热系统与网络机柜固定安装;
    步骤二:启动第一风机箱(6)和第二风机箱(7)内部的抽风机(24),同时,给制冷片(14)外接电源制冷,启动第一散热风扇(2)和第二散热风扇(3),第一散热风扇(2)和第二散热风扇(3)利用轴流扇叶(12)向网络机柜内部送风,将插板(27)侧边的排风板(35)卡入到相邻的制冷片(14)之间;
    步骤三:抽风机(24)启动之后,从进风管(28)将外部空气吸入到 其内部,经过连接头(29)内侧的U型槽(30)内部的U型防尘网(31)过滤,之后送出到排风管(25),经过圆形卡头(26),随后进入到插板(27),随后由各个排风板(35)进入到制冷片(14)中,空气与制冷片(14)接触之后降温,随后在轴流扇叶(12)的转动下,将制冷片(14)中的空气吸入到第一散热风扇(2)和第二散热风扇(3)当中,最后排入到网络机柜内部,对网络机柜进行降温。
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