CN218181461U - Data storage server heat radiation structure - Google Patents

Data storage server heat radiation structure Download PDF

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Publication number
CN218181461U
CN218181461U CN202222743563.2U CN202222743563U CN218181461U CN 218181461 U CN218181461 U CN 218181461U CN 202222743563 U CN202222743563 U CN 202222743563U CN 218181461 U CN218181461 U CN 218181461U
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shell
assembly
heat dissipation
server
wall
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CN202222743563.2U
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张晓龙
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Abstract

The utility model provides a data storage server heat radiation structure, relate to storage server technical field, including the server shell, be equipped with heat dissipation mechanism on the inner wall of server shell, heat dissipation mechanism includes cooling fan and main heat dissipation fin, be equipped with the assembly shell on the inner wall of server shell, cooling fan demountable assembly is in the assembly shell, main heat dissipation fin intercommunication sets up on the assembly shell, be equipped with the assembly groove on the server shell, assembly shell assembly sets up at the assembly groove, the below of server shell can be dismantled and be equipped with the bottom, the medial surface of bottom is equipped with dustproof otter board, the below of assembly shell is equipped with the mounting panel, the cooling fan assembly sets up on the mounting panel, the assembly shell sets up and can dismantle in the inside of server shell one side and be equipped with the top cap. This application is through the demountable assembly of assembly top cap and bottom, when realizing clearing up radiator fan, can be directly through opening the bottom, can clear up the operation to the fan outside, is convenient for clear up dustproof otter board simultaneously.

Description

Data storage server heat radiation structure
Technical Field
The application relates to the technical field of storage servers, in particular to a heat dissipation structure of a data storage server.
Background
Storage servers are designed for specific purposes and are configured differently, they may be servers that have little extra storage or may have large storage space, some believe that a storage server is a server that has some additional features attached to it, and some define it as a "package" that is specifically targeted for a specific function.
The database storage server with the heat dissipation structure comprises a machine body, a separator is arranged inside the right end of the machine body, a dust cover is inserted inside the separator, a fan is arranged at the left end of the separator, an air guide pipe is inserted in the outer surface of the fan, a water pipe is arranged at the lower end of the fan, a shell is arranged inside the machine body, a hard disk groove is formed in the shell, a power supply bin is arranged at the bottom end of the left side of the machine body, a water tank is arranged at the bottom end of the right side of the shell, the outer surface of the water tank is connected with the water pipe, the outer surface of the shell is connected with the air guide pipe, a first idler wheel is arranged on the left side of the machine body, and a belt is embedded in the outer surface of the first idler wheel. This application is through this application easy operation, and convenient to use can improve equipment's life-span after clearing up the louvre, and holistic practicality obtains promoting to designed the device of accomodating the cable, the practicality is strengthened thereupon also.
However, in the prior art, the heat dissipation structure of the database storage server is single, a large amount of heat can be generated when the database storage server is operated, the current mainstream heat dissipation mode is air cooling, but the air outlet or the air inlet can be constantly attacked by dust when in use, which results in that a large amount of heat can be stored inside the case, the service life of hardware can be shortened, and the case can be damaged, so that a worker needs to frequently clean a heat dissipation fan in the server, the server case needs to be detached in the cleaning process, the outer side of the fan is exposed, and then the heat dissipation fan is cleaned through the cleaning brush, and the operation steps are complicated.
SUMMERY OF THE UTILITY MODEL
The purpose of this application is in order to solve to exist among the prior art and when clearing up the fan, need say that the server shell is pulled down and can be cleared up the fan, and the operation is comparatively inconvenient.
In order to achieve the purpose, the following technical scheme is adopted in the application: the utility model provides a data storage server heat radiation structure, includes the server shell, be equipped with heat dissipation mechanism on the inner wall of server shell, heat dissipation mechanism includes radiator fan and main heat dissipation fin, be equipped with the assembly shell on the inner wall of server shell, radiator fan demountable assembly is in the assembly shell, main heat dissipation fin intercommunication sets up on the assembly shell, be equipped with the assembly groove on the server shell, assembly shell assembles the setting and is in the assembly groove, the below of server shell can be dismantled and be equipped with the bottom, the medial surface of bottom is equipped with dustproof otter board, the below of assembly shell is equipped with the mounting panel, the radiator fan assembles the setting and is in on the mounting panel, the assembly shell sets up the inside one side of server shell can be dismantled and be equipped with the top cap.
As a preferred embodiment, the mounting plate comprises a plurality of supporting blocks and supporting rods, the supporting blocks are arranged below the edge of the inner wall of the mounting shell respectively, the supporting rods are arranged between the supporting blocks in a plurality of crossed mode, the cooling fan is arranged on the supporting blocks, and the mounting plate can be stably assembled with the cooling fan while having good ventilation through the matching of the supporting blocks and the supporting rods.
As a preferred embodiment, a clamping block is arranged on the bottom cover, a clamping groove matched with the clamping block in a clamping manner is arranged below the support block, and the stability of assembly between the bottom cover and the support block is effectively guaranteed through the clamping matching between the clamping block and the clamping groove, and meanwhile, the support block is convenient for workers to disassemble.
As a preferred embodiment, all be equipped with the ventilation duct on bottom, top cap and the assembly shell, the medial surface edge of bottom is equipped with thorn face magic subsides, the edge of dustproof otter board be equipped with the hair side magic subsides that thorn face magic was pasted the adaptation, through the adaptation of pasting of thorn face magic subsides and hair side magic subsides, be convenient for to the demountable assembly between dustproof otter board and the bottom.
As a preferred embodiment, the main heat dissipation fins are provided with a plurality of heat dissipation ends, the heat dissipation ends of the main heat dissipation fins penetrate through the assembly housing and extend to the inside, heat conduction fins are laid on the inner wall of the server housing at the assembly positions for the electrical components, one ends of the heat conduction fins are in assembly connection with the outer sides of the main heat dissipation fins, and through the cooperation of the main heat dissipation fins and the heat conduction fins, heat generated by the internal electrical components of the server can be transmitted to the main heat dissipation fins through the heat conduction fins, so that the heat is guided into the assembly housing through the main heat dissipation fins, and is discharged outwards through the operation of the heat dissipation fan, and an effective heat dissipation effect is achieved.
As a preferred embodiment, a plurality of heat dissipation holes are formed in the side wall of the server housing, small heat dissipation fins are arranged in the heat dissipation holes, and one inner side of each small heat dissipation fin is connected with the heat conduction fin in an assembling manner.
As a preferred embodiment, the server shell outside the heat dissipation holes is provided with a dust cover, the dust cover is provided with air holes, the inner wall of the dust cover is provided with a dust screen, the dust cover is assembled with the outer wall of the server shell in a clamping manner, the dust cover is detachably assembled on the outer side of the heat dissipation holes, the dust prevention operation of the heat dissipation holes is achieved, and the dust cover is convenient for workers to clean the dust cover through the detachable assembly of the dust cover.
Compared with the prior art, the application has the advantages and positive effects that,
1. this application can dismantle through the outside at the assembly shell and set up the bottom, after heat dissipation fan dispels the heat a period in to the server, can pile up a large amount of dusts on the dustproof otter board on the bottom, and the untimely clearance of dust can obstruct heat dissipation fan's radiating effect, and through carrying out removable assembly to the bottom, be convenient for under the condition of not wholly dismantling the server shell, can realize the operation of clearing up of carrying out the clearance to heat dissipation fan and dustproof otter board, it brings great facility to clear up the work for the staff, simultaneously through the top cap that sets up, be convenient for open from the inboard to the assembly shell, thereby carry out the cooling fan to inside setting and clear up or other maintenance operations.
2. This application is through the main radiating fin who sets up and the cooperation of assembly shell, be convenient for with the heat that electrical components produced in the server through with the contact of main radiating fin, with heat conduction to assembly shell in to through radiator fan with the heat effluvium, further increased the radiating efficiency to server shell inside.
Drawings
Fig. 1 is a perspective view of a heat dissipation structure of a data storage server according to the present application;
fig. 2 is an exploded view of a heat dissipation structure of a data storage server according to the present application;
fig. 3 is a schematic view illustrating an assembly structure of a dust screen and a server housing of a heat dissipation structure of a data storage server according to the present application;
fig. 4 is a bottom view of a heat dissipation structure of a data storage server according to the present application.
Illustration of the drawings:
1. a server housing; 2. a heat radiation fan; 3. a primary heat sink fin; 4. assembling the shell; 5. a bottom cover; 6. a dustproof screen plate; 7. mounting a plate; 8. a top cover; 9. a support block; 10. a support bar; 11. a clamping block; 12. a clamping groove; 13. a ventilation slot; 14. a thorn face magic tape; 15. a rough surface magic tape; 16. a heat conductive sheet; 17. heat dissipation holes; 18. a small-sized heat dissipating fin; 19. a dust cover; 20. a dust screen; 21. and (4) air holes.
Detailed Description
The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application, and it is obvious that the described embodiments are only a part of the embodiments of the present application, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present application.
Referring to fig. 1-4, the present application provides a technical solution: a heat radiation structure of a data storage server comprises a server shell 1, a heat radiation mechanism is arranged on the inner wall of the server shell 1, the heat radiation mechanism comprises a heat radiation fan 2 and main heat radiation fins 3, an assembly shell 4 is arranged on the inner wall of the server shell 1, the heat radiation fan 2 is detachably assembled in the assembly shell 4, the main heat radiation fins 3 are communicated and arranged on the assembly shell 4, an assembly groove is arranged on the server shell 1, the assembly shell 4 is assembled and arranged in the assembly groove, a bottom cover 5 is detachably arranged below the server shell 1, a dustproof screen plate 6 is arranged on the inner side of the bottom cover 5, an installation plate 7 is arranged below the assembly shell 4, the heat radiation fan 2 is assembled and arranged on the installation plate 7, a top cover 8 is detachably arranged on one side of the inside of the server shell 1, the bottom cover 5 is detachably arranged on the outer side of the assembly shell 4, after the heat dissipation fan 2 dissipates heat in the server for a period of time, a large amount of dust is accumulated on the dustproof screen 6 on the bottom cover 5, the dust can hinder the heat dissipation effect of the heat dissipation fan 2 due to untimely cleaning, the bottom cover 5 is detachably assembled, so that workers can clean the heat dissipation fan 2 and the dustproof screen 6 without disassembling the whole server shell 1, great convenience is brought to the workers for cleaning work, meanwhile, the assembly shell 4 is conveniently opened from the inner side through the arranged top cover 8, so that the internally arranged heat dissipation fan 2 is cleaned or other maintenance operations are carried out, heat generated by electrical components in the server is conveniently conducted into the assembly shell 4 through the contact of the arranged main heat dissipation fins 3 and the assembly shell 4, and the heat is dissipated by the heat dissipation fan 2, so that the heat dissipation efficiency of the inside of the server shell 1 is further increased.
As shown in fig. 1-4, the mounting plate 7 includes a plurality of supporting blocks 9 and a plurality of supporting rods 10, the supporting blocks 9 are respectively disposed below the edges of the inner wall of the assembly housing 4, the supporting rods 10 are disposed between the supporting blocks 9 in a plurality of intersecting manner, the heat dissipation fan 2 is assembled on the supporting blocks 9, and the mounting plate 7 can be stably assembled with the heat dissipation fan 2 while having good ventilation performance through the cooperation of the supporting blocks 9 and the supporting rods 10.
As shown in fig. 1-4, a clamping block 11 is arranged on the bottom cover 5, a clamping groove 12 which is matched with the clamping block 11 in a clamping manner is arranged below the support block 9, and the stability of assembly between the bottom cover 5 and the support block 9 is effectively ensured through the matching of the clamping block 11 and the clamping groove 12, and meanwhile, the support block is convenient for workers to disassemble.
As shown in fig. 1 to 4, the bottom cover 5, the top cover 8 and the assembling housing 4 are all provided with ventilation grooves 13, the edge of the inner side surface of the bottom cover 5 is provided with a hook and loop fastener 14, the edge of the dustproof screen plate 6 is provided with a loop and loop fastener 15 which is matched with the hook and loop fastener 14 in a sticking manner, and the detachable assembly between the dustproof screen plate 6 and the bottom cover 5 is facilitated through the sticking matching between the hook and loop fastener 14 and the loop and loop fastener 15.
As shown in fig. 1-4, a plurality of main heat dissipation fins 3 are provided, the heat dissipation ends of the main heat dissipation fins 3 penetrate through the assembly housing 4 and extend into the assembly housing 4, heat conduction fins 16 are respectively laid on the inner wall of the server housing 1 at the assembly positions for electrical components, one ends of the heat conduction fins 16 are assembled and connected with the outer sides of the main heat dissipation fins 3, and through the cooperation between the main heat dissipation fins 3 and the heat conduction fins 16, heat generated by the internal electrical components of the server is transferred to the main heat dissipation fins 3 through the heat conduction fins 16, and then the heat is guided into the assembly housing 4 through the main heat dissipation fins 3, and is discharged outwards through the operation of the heat dissipation fan 2, so as to achieve an effective heat dissipation effect.
As shown in fig. 1-4, a plurality of heat dissipation holes 17 are formed in the side wall of the server casing 1, small heat dissipation fins 18 are disposed in the heat dissipation holes 17, and the inner sides of the small heat dissipation fins 18 are connected to the heat conduction fins 16.
As shown in fig. 1-4, a dust cover 19 is arranged on the server housing 1 outside the heat dissipation hole 17, an air hole 21 is arranged on the dust cover 19, a dust screen 20 is arranged on the inner wall of the dust cover 19, the dust cover 19 is in clamping assembly with the outer wall of the server housing 1, the dust cover 19 is detachably assembled outside the heat dissipation hole 17, so that the dust prevention operation of the heat dissipation hole 17 is realized, and the dust cover 19 is conveniently cleaned by workers.
The working principle is as follows: through can dismantle the bottom 5 that sets up in the outside of assembling shell 4, after heat dissipation fan 2 dispels the heat a period of time in to the server, can pile up a large amount of dusts on the dustproof otter board 6 on the bottom 5, and the untimely clearance of dust can obstruct the radiating effect of radiator fan 2, and through carrying out demountable assembly to bottom 5, be convenient for under the condition of not dismantling server shell 1 whole, can realize the operation of clearing up carrying out to radiator fan 2 and dustproof otter board 6, bring great facility for staff's cleaning work, simultaneously through the top cap 8 that sets up, be convenient for open assembly shell 4 from the inboard, thereby clear up or other maintenance operations to radiator fan 2 that the inside set up, through the cooperation of main heat dissipation fin 3 and assembly shell 4 that set up, be convenient for pass through the contact with main heat dissipation fin 3 with the heat that electrical components produced in the server, conduct the heat to assembly shell 4 in, and dispel the heat through radiator fan 2, further increased the radiating efficiency to the inside of server shell 1.
The above description is only a preferred embodiment of the present application, and not intended to limit the present application in other forms, and any person skilled in the art may apply the above-mentioned technical details to various modifications and equivalent embodiments, which may be changed or modified into equivalent variations, without departing from the technical spirit of the present application, and any simple modification, equivalent variation and modification made to the above embodiments according to the technical spirit of the present application still belong to the protection scope of the technical solution of the present application.

Claims (7)

1. The utility model provides a data storage server heat radiation structure, includes server shell (1), its characterized in that, be equipped with heat dissipation mechanism on the inner wall of server shell (1), heat dissipation mechanism includes cooling fan (2) and main heat dissipation fin (3), be equipped with assembly shell (4) on the inner wall of server shell (1), cooling fan (2) demountable assembly is in assembly shell (4), main heat dissipation fin (3) intercommunication sets up on assembly shell (4), be equipped with the assembly groove on server shell (1), assembly shell (4) assembly sets up in the assembly groove, the below of server shell (1) can be dismantled and be equipped with bottom (5), the medial surface of bottom (5) is equipped with dustproof otter board (6), the below of assembly shell (4) is equipped with mounting panel (7), cooling fan (2) assembly sets up on mounting panel (7), assembly shell (4) set up the inside one side of server shell (1) can be dismantled and be equipped with top cap (8).
2. The heat dissipation structure of claim 1, wherein: the mounting plate (7) comprises support blocks (9) and support rods (10), the support blocks (9) are arranged in a plurality and are arranged below the edge of the inner wall of the assembly shell (4), the support rods (10) are arranged in a plurality and are arranged between the support blocks (9) in a cross mode, and the cooling fan (2) is arranged on the support blocks (9).
3. The heat dissipation structure of claim 2, wherein: the bottom cover (5) is provided with a clamping block (11), and a clamping groove (12) matched with the clamping block (11) in a clamping mode is arranged below the support block (9).
4. The heat dissipation structure of claim 3, wherein: all be equipped with ventilation groove (13) on bottom (5), top cap (8) and assembly shell (4), the medial surface edge of bottom (5) is equipped with thorn face magic subsides (14), the edge of dust screen (6) be equipped with thorn face magic subsides (14) paste hair face magic subsides (15) of adaptation.
5. The heat dissipation structure of claim 1, wherein: the server is characterized in that a plurality of main radiating fins (3) are arranged, the radiating ends of the main radiating fins (3) penetrate through the assembly shell (4) and extend to the inside, heat conducting fins (16) are arranged on the inner wall of the server shell (1) and are used for being assembled with electrical components, and one ends of the heat conducting fins (16) are connected with the outer sides of the main radiating fins (3) in an assembling mode.
6. The heat dissipation structure of claim 5, wherein: the server comprises a server shell (1), wherein a plurality of radiating holes (17) are formed in the side wall of the server shell (1), small radiating fins (18) are arranged in the radiating holes (17), and one side, close to the inner side, of each small radiating fin (18) is connected with a heat conducting fin (16) in an assembling mode.
7. The heat dissipation structure of claim 6, wherein: the server shell is characterized in that a dust cover (19) is arranged on the server shell (1) outside the heat dissipation holes (17), air holes (21) are formed in the dust cover (19), a dust screen (20) is arranged on the inner wall of the dust cover (19), and the dust cover (19) is clamped and assembled with the outer wall of the server shell (1).
CN202222743563.2U 2022-10-16 2022-10-16 Data storage server heat radiation structure Active CN218181461U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202222743563.2U CN218181461U (en) 2022-10-16 2022-10-16 Data storage server heat radiation structure

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202222743563.2U CN218181461U (en) 2022-10-16 2022-10-16 Data storage server heat radiation structure

Publications (1)

Publication Number Publication Date
CN218181461U true CN218181461U (en) 2022-12-30

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ID=84607781

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202222743563.2U Active CN218181461U (en) 2022-10-16 2022-10-16 Data storage server heat radiation structure

Country Status (1)

Country Link
CN (1) CN218181461U (en)

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