CN214482018U - Refrigerating small cabinet type server - Google Patents

Refrigerating small cabinet type server Download PDF

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Publication number
CN214482018U
CN214482018U CN202120564820.9U CN202120564820U CN214482018U CN 214482018 U CN214482018 U CN 214482018U CN 202120564820 U CN202120564820 U CN 202120564820U CN 214482018 U CN214482018 U CN 214482018U
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Prior art keywords
server
heat exchange
box
fan
air inlet
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CN202120564820.9U
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Chinese (zh)
Inventor
蒋胜男
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Shandong Yingxin Computer Technology Co Ltd
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Shandong Yingxin Computer Technology Co Ltd
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Priority to CN202120564820.9U priority Critical patent/CN214482018U/en
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Abstract

The utility model discloses a refrigeration small-size cabinet type server, including base, fan case, server mount, server machine case, air admission subassembly and heat transfer device, the base top is located to the server machine case, is equipped with temperature sensor on the server machine case, the four corners is equipped with the fan case respectively above the base, and it has the door plant to articulate between the adjacent fan case, and the top of fan case is equipped with the air admission subassembly, one side of base is equipped with heat transfer device, heat transfer device passes through the intake pipe with fan incasement chamber and communicates, the heat transfer device roof is equipped with the controller. The server can realize automatic heat dissipation, is high in flexibility, the heat dissipation system has a high-strength dustproof effect, and external dust can be prevented from entering the server in the heat dissipation process, so that the service life of the server is prolonged, convenience is brought to people to operate and use, and the safety performance is high.

Description

Refrigerating small cabinet type server
Technical Field
The utility model relates to a server field, specific refrigerating small-size cabinet type server that says so.
Background
The application of server is very extensive, especially, involve the small-size cabinet type server, the current small-size cabinet type server function is more single, the flexibility is poor, in the radiating time, often there are a lot of dusts to enter into the server inside, cause server life to be low, and current radiator equipment is direct in with the inside temperature discharge atmosphere of server, cause thermal loss, also cause global warming, can not let heat cyclic utilization, when the automatic control system of server inside breaks down, can not pass through remote alarm, and control through long-range, can not ensure the normal work of server in real time.
SUMMERY OF THE UTILITY MODEL
The utility model aims at providing a refrigeration small-size cabinet type server, this server have improved quick-witted case radiating efficiency, can also avoid the dust to get into inside the server simultaneously, guarantee the normal operating of equipment, extension server life.
The utility model provides a technical scheme that its technical problem adopted is: the utility model provides a small-size cabinet type server of refrigeration, includes base, fan case, server mount, server machine case, air inlet assembly and heat transfer device, the base top is located to the server machine case, is equipped with temperature sensor on the server machine case, the four corners is equipped with the fan case respectively above the base, and articulated between the adjacent fan case have a door plant, and the top of fan case is equipped with air inlet assembly, one side of base is equipped with heat transfer device, heat transfer device and fan case inner chamber pass through the intake pipe intercommunication, the heat transfer device roof is equipped with the controller.
Furthermore, four sides of the base are respectively provided with a threading hole, and the bottom surface of the base is respectively provided with a support plate corresponding to two sides.
Further, the air inlet assembly comprises a filter box, an air inlet hole and an air outlet hole, the top of the fan box is arranged on the filter box, the top wall of the filter box is provided with the air inlet hole, the bottom wall of the filter box is provided with the air outlet hole, and a filter screen for filtering air is arranged in the filter box.
Further, heat transfer device includes heat transfer case, thermodetector, inlet tube, blast pipe, drain pipe, circulating pump, heat exchange tube, guide plate and exhaust hole, the top of heat transfer case is equipped with the controller, and one side of controller is equipped with the thermodetector that detects the coolant temperature, and the internally mounted of heat transfer case has a plurality of guide plate, the guide plate is equipped with the heat exchange tube, a side tip of heat transfer case is equipped with the inlet tube, and the opposite side of heat transfer case is equipped with the circulating pump, circulating pump and controller electric connection, circulating pump one side is equipped with the drain pipe, the top of heat transfer case is equipped with the blast pipe.
Furthermore, one end of the air inlet pipe is communicated with the inner cavity of the fan box, and the other end of the air inlet pipe is communicated with a heat exchange pipe in the heat exchange device.
Furthermore, four fan case inner chambers communicate with each other and link to each other with the intake pipe, and one side that every fan case corresponds server machine case is equipped with exhaust hole and illumination lamp plate respectively, and the lateral wall of every fan case is equipped with switch respectively, and fan case inner chamber is equipped with the air exhauster, air exhauster and controller electric connection.
The utility model has the advantages that:
1. the utility model discloses a server can realize automatic heat dissipation, and the flexibility is strong, and cooling system has the dustproof effect of excelling in, can prevent that external dust from entering into the server inside radiating process to improve the life of server, the people of being convenient for operate and use, the security performance is strong.
2. The server of the utility model can rapidly convey the heat inside the server to the thermal power generation equipment, thereby improving the power generation efficiency and saving the power generation energy; the power can be supplied to the server, the energy is saved, the acceleration of global greenhouse effect is avoided, the temperature in the server room can be kept at normal temperature, a fan is not needed to be used for discharging, and the cost is saved.
Drawings
FIG. 1 is an overall structure diagram of the present invention;
FIG. 2 is a view showing an internal structure of FIG. 1;
fig. 3 is a schematic diagram of the internal structure of the heat exchange box.
In the figure:
the system comprises a server fixing frame 1, a server case 2, a temperature sensor 3, a base 4, a supporting plate 5, a toughened glass door 6, a hinge 7, a power switch 8, a fan box 10, a filter box 11, an air inlet hole 12, a heat exchange box 14, an air inlet pipe 15, a temperature detector 16, a controller 17, a water inlet pipe 18, an exhaust pipe 19, a water outlet pipe 20, a circulating pump 21, a threading hole 22, a lighting lamp plate 23, a heat exchange pipe 24, a flow guide plate 25 and an exhaust hole 26.
Detailed Description
The following detailed description of a refrigerated mini-rack server according to the present invention will be made with reference to the accompanying drawings.
As shown in fig. 1-3, the utility model discloses a small-size cabinet type server of refrigeration, including base 4, fan case 10, server mount 1, server machine case 2, subassembly and heat transfer device admit air, 4 tops of base are located to server machine case 2, are equipped with temperature sensor 3 on the server machine case 2, the four corners is equipped with fan case 10 respectively above the base, and it has the door plant to articulate between the adjacent fan case, and the door plant is toughened glass board 6, seals server machine case through setting up four door plants, prevents that the dust from getting into inside the server, avoids causing the server short circuit to improve the samaric life-span that closes of server. The top of fan case 10 is equipped with air intake assembly, one side of base 4 is equipped with heat transfer device, heat transfer device and fan case inner chamber are through intake pipe 15 intercommunication, the heat transfer device roof is equipped with controller 17. Server machine case 2 is all installed to four sides of the inside of server mount 1, and server mount 1 passes through the bolt and installs on the top of base 4, and backup pad 5 is all installed to the bottom both sides of base 4, and the fan case links to each other with filter box 11 of subassembly that admits air.
The air inlet assembly comprises a filter box 11 and an air inlet hole 12, the filter box 11 is arranged at the top of the fan box 10, the top wall of the filter box 11 is provided with the air inlet hole, the bottom wall of the filter box 11 is provided with an air outlet hole, and a filter screen for filtering air is arranged in the filter box. The air enters the inner cavity of the filter box through an air inlet at the top of the filter box, the air filtered by the filter screen enters the server case 2 from an air outlet at the bottom wall of the filter box 11 to cool and exchange heat with the server case, and the hot air after heat exchange is pumped into the case body by the fan box and enters the heat exchange device through the air inlet pipe to finally exchange heat through liquid cooling.
As shown in fig. 2 and 3, the heat exchange device includes a heat exchange box 14, a temperature detector 16, a water inlet pipe 18, an exhaust pipe 19, a drain pipe 20, a circulating pump 21, a heat exchange pipe 24, a guide plate 25 and an exhaust hole 26, the top of the heat exchange box 14 is provided with the controller 17, one side of the controller 17 is provided with the temperature detector 16 for detecting the temperature of the cooling liquid, the inside of the heat exchange box 14 is provided with a plurality of guide plates 25, the guide plates 25 are provided with the heat exchange pipe 24, one side end of the heat exchange box 14 is provided with the water inlet pipe 18, the other side of the heat exchange box 14 is provided with the circulating pump 21, the circulating pump is electrically connected with the controller, one side of the circulating pump 21 is provided with the drain pipe 20, and the top of the heat exchange box 14 is provided with the exhaust pipe 19. One end of the air inlet pipe is communicated with the inner cavity of the fan box, and the other end of the air inlet pipe is communicated with a heat exchange pipe in the heat exchange device. The heat exchange pipe 24 is connected with the exhaust pipe 19, the water inlet pipe 18 is connected with the heat exchange box 14 in a welding mode, and the circulating pump 21 is installed on one side of the heat exchange box 14 through bolts and a sealing gasket and is connected with the inner cavity of the heat exchange box 14.
The inner cavities of the four fan boxes 10 are communicated and connected with the air inlet pipe 15, one side, corresponding to the server case, of each fan box 10 is provided with an exhaust hole 26 and a lighting lamp panel 23 respectively, the outer side wall of each fan box 10 is provided with a power switch 8 respectively, the inner cavity of each fan box 10 is provided with an exhaust fan, and the exhaust fans are electrically connected with the controller 17. Detect the temperature of each position on the server through temperature sensor 3, when the too high temperature appears, can pass through controller control fan and rotate.
The server can visually see the working condition of the server through the toughened glass doors 6 on the periphery, when the server works, the temperature sensor 3 is used for sensing the temperature on the shell of the server, when the temperature reaches a set value, the controller 17 is used for controlling the fan brake in the fan box 10 so as to suck the outside air into the filter box 11 through the air inlet 12, the air is filtered through the filter screen in the filter box 11, the filtered air enters the case, the hot air is pumped into the air inlet pipe 15 through the exhaust hole 26 and is conveyed into the heat exchange pipe 24 through the air inlet pipe 15, meanwhile, the cooling liquid in the heat exchange box 14 can realize heat exchange, the heat is exchanged into the cooling liquid, the temperature of the cooling liquid is detected through the temperature detector 16, when the temperature reaches the set value, the controller 17 is used for controlling the circulating pump 21 to brake so as to suck the cooling liquid into the heating power generation equipment, therefore, the heat can be reasonably utilized, the indoor temperature of the server cannot be too high, the greenhouse effect caused by discharging a large amount of heat to the atmosphere cannot be caused, and the heat exchange gas is discharged through the exhaust pipe 19 and can be reused.
The foregoing is merely illustrative of some of the principles of the present invention and the description is not intended to limit the invention to the specific constructions and applications shown, so that all modifications and equivalents that may be utilized are within the scope of the invention.
Other technical features than those described in the specification are known to those skilled in the art.

Claims (6)

1. The refrigerating small cabinet type server is characterized by comprising a base, fan boxes, a server fixing frame, a server case, air inlet assemblies and heat exchange devices, wherein the server case is arranged at the top of the base, temperature sensors are arranged on the server case, the fan boxes are respectively arranged at four corners of the upper surface of the base, door plates are hinged between the adjacent fan boxes, the air inlet assemblies are arranged at the top ends of the fan boxes, the heat exchange devices are arranged on one sides of the base and are communicated with the inner cavities of the fan boxes through air inlet pipes, and a controller is arranged on the top wall of each heat exchange device.
2. The refrigerated mini-cabinet server as claimed in claim 1, wherein the base has threading holes at four sides, and support plates at two corresponding sides of the bottom.
3. The refrigerated mini cabinet server according to claim 1 or 2, wherein the air inlet assembly comprises a filter box, an air inlet hole and an air outlet hole, the filter box is arranged on the top of the fan box, the top wall of the filter box is provided with the air inlet hole, the bottom wall of the filter box is provided with the air outlet hole, and a filter screen for filtering air is arranged in the filter box.
4. The refrigerating mini-cabinet type server according to claim 3, wherein the heat exchange device comprises a heat exchange box, a temperature detector, a water inlet pipe, an exhaust pipe, a drain pipe, a circulating pump, a heat exchange pipe, a guide plate and an exhaust hole, the top of the heat exchange box is provided with a controller, one side of the controller is provided with the temperature detector for detecting the temperature of the cooling liquid, a plurality of guide plates are installed inside the heat exchange box, the guide plates are provided with the heat exchange pipe, the end part of one side of the heat exchange box is provided with the water inlet pipe, the other side of the heat exchange box is provided with the circulating pump, the circulating pump is connected with the controller, the drain pipe is arranged on one side of the circulating pump, and the exhaust pipe is arranged on the top of the heat exchange box.
5. The refrigerated mini-cabinet server as claimed in claim 1, wherein one end of the air inlet pipe is communicated with the inner cavity of the fan box, and the other end is communicated with the heat exchange pipe of the heat exchange device.
6. The refrigerated mini-cabinet server of claim 1, wherein the four fan boxes are connected to each other and to the air inlet duct, each fan box is provided with an air outlet and an illumination lamp panel on a side corresponding to the server cabinet, the outer side wall of each fan box is provided with a power switch, the fan box is provided with an air extractor in the inner cavity, and the air extractor is connected to the controller through a circuit.
CN202120564820.9U 2021-03-19 2021-03-19 Refrigerating small cabinet type server Active CN214482018U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202120564820.9U CN214482018U (en) 2021-03-19 2021-03-19 Refrigerating small cabinet type server

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202120564820.9U CN214482018U (en) 2021-03-19 2021-03-19 Refrigerating small cabinet type server

Publications (1)

Publication Number Publication Date
CN214482018U true CN214482018U (en) 2021-10-22

Family

ID=78157304

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202120564820.9U Active CN214482018U (en) 2021-03-19 2021-03-19 Refrigerating small cabinet type server

Country Status (1)

Country Link
CN (1) CN214482018U (en)

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