A server management device and a test device

By designing a server management device including a buffer spring and an automatic dustproof mechanism, the problems of dust accumulation and vulnerability of housing in existing server cooling holes are solved, and higher stability and service life are achieved.

CN115952036BActive Publication Date: 2025-06-27INSPUR SUZHOU INTELLIGENT TECH CO LTD
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Patent Information

Application Number
CN202211662132.1
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-12-23
Publication Date
2025-06-27
Estimated Expiration
2042-12-23

AI Technical Summary

Technical Problem

During long-term use of existing servers, the heat dissipation holes are prone to accumulate dust and cause short circuits of electronic components, and the rectangular shell is prone to move during collisions, causing lines to fall off, resulting in data loss.

Method used

A server management device is designed, including a body, a buffer spring, a dustproof mechanism and a disassembly mechanism. The dustproof mechanism realizes automatic drop and rise of the dustproof plate through the coordination of guide grooves, telescopic rods, fixing springs and wire ropes to avoid dust accumulation.

Benefits of technology

It effectively prevents dust accumulation, reduces the probability of short-circuiting of electronic components, improves the service life of the server, and enhances the stability and disassemblyability of the server through buffer springs and disassembly mechanisms.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses a server management device, comprising: a body, both sides of the body are provided with heat dissipation holes, and a cavity for accommodating a server is inside; a plurality of buffer springs, one end of which is connected to the top surface of the body; a top plate, connected to the other ends of the plurality of buffer springs; a connecting rod, one end of which is connected to the outside of the top plate; a dust-proof mechanism, including a dust-proof chamber and a steering chamber, and the steering chamber is inside the dust-proof chamber. The solution proposed by the present invention can ensure that when not in use, the dust-proof plate covers the heat dissipation holes, so that dust will not accumulate in the heat dissipation holes, reducing the probability of short circuit of internal electronic components of the server and improving the service life of the server.
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Description

Technical Field

[0001] The present invention relates to the field of servers, and particularly to a server management device and a testing device. Background Art

[0002] A server is a type of computer that runs faster, has a higher load, and is more expensive than an ordinary computer. It provides computing or application services for other client machines (such as terminals like PCs, smartphones, ATMs, and even large devices like train systems) in a network, and has high-speed CPU computing power, long-term reliable operation, strong I / O external data throughput capacity, and better scalability. However, the following defects still exist during the use of servers:

[0003] Existing servers have the function of a testing terminal device, which is a physical performance testing instrument used in the field of electronics and communication technology and is convenient to use. However, during long-term use, a large amount of dust will accumulate in the heat dissipation holes of the server, and the accumulated dust is likely to cause short circuits in the internal electronic components of the server. Moreover, the outer shells of existing servers are all rectangular, and they are prone to move when collided, and the movement will cause the circuit to fall off, easily resulting in data loss and thus causing significant losses. Summary of the Invention

[0004] In view of this, in order to overcome at least one of the above problems, an embodiment of the present invention provides a server management device, including:

[0005] A body, with heat dissipation holes opened on both sides of the body and having a cavity inside for accommodating a server;

[0006] A plurality of buffer springs, one end of which is connected to the top surface of the body;

[0007] A top plate, connected to the other ends of the plurality of buffer springs;

[0008] A connecting rod, one end of which is connected to the outside of the top plate;

[0009] A dust-proof mechanism, including a dust-proof chamber and a steering chamber, with the steering chamber inside the dust-proof chamber;

[0010] Wherein, a guiding groove is provided on the outer surface of one side of the dust-proof chamber, and the guiding groove is adapted to the connecting rod. Fixed rods are fixedly connected to the inner surfaces of both sides of the dust-proof chamber. The other ends of the two fixed rods are fixedly connected to stabilizing rods. A limiting rod slides on the outer surface of the other ends of the two stabilizing rods, and the limiting rod is connected to the other end of the connecting rod. A moving rod is fixedly connected to the upper end of the limiting rod;

[0011] The bottom surface of the steering bin is provided with slot holes, and several fixing springs are fixedly connected to the top surface; the slot holes are adapted to the moving rod, and one end of the several fixing springs away from the steering bin is fixedly connected with a dust-proof plate, and the dust-proof plate is adapted to the heat dissipation holes;

[0012] Wherein, fixed pulleys are fixedly connected to the inner surfaces of both sides of the dust-proof bin, two steel wire ropes are fixedly connected to the outer surface of one side of the dust-proof plate, and one end of the two steel wire ropes away from the dust-proof plate after passing through the fixed pulleys is fixedly connected to the other end of the moving rod.

[0013] In some embodiments, a pressing block is arranged on the outer surface of one side of the dust-proof mechanism;

[0014] The other ends of the two fixed rods are respectively connected to sliding blocks, reset springs are fixedly connected to the outer surfaces of one sides of the two sliding blocks, and one ends of the two reset springs away from the sliding blocks are respectively fixedly connected to the inner surfaces of both sides of the dust-proof bin;

[0015] Wherein, the two sliding blocks are both adapted to the pressing block, and the pressing block is located in the middle position between the two sliding blocks. When the pressing block is pressed, the pressing block squeezes the two sliding blocks, and the two sliding blocks will move respectively to both sides away from the pressing block. The movement of the sliding block drives the movement of the fixed rod, the movement of the fixed rod drives the movement of the stabilizing rod, and the movement of the stabilizing rod away from the limiting rod liberates the limiting rod;

[0016] The buffer spring pushes the top plate to move upward, the top plate drives the movement of the connecting rod, the connecting rod will drive the limiting rod to rise, the limiting rod will drive the moving rod to rise, the rising of the moving rod will pull the steel wire rope, and the steel wire rope will pull the dust-proof plate to descend under the action of the fixed pulley so that the dust-proof plate will move away from the heat dissipation hole.

[0017] In some embodiments, a disassembly mechanism is further included, and the disassembly mechanism is adapted to the dust-proof mechanism;

[0018] Wherein, the disassembly mechanism includes a base.

[0019] In some embodiments, two slot holes are provided on the bottom surface of the dust-proof bin, extension rods are fixedly connected to the bottom surfaces of the two sliding blocks, stabilizing mechanisms are slidably connected to one ends of the two extension rods away from the sliding blocks, linkage rods are fixedly arranged on the bottom surfaces of the two stabilizing mechanisms, suction cups are fixedly connected to one ends of the two linkage rods away from the stabilizing mechanisms, and the two suction cups are respectively adapted to the two slot holes;

[0020] Among them, the stabilizing mechanism includes a stabilizing bin. A sliding rod is fixedly connected between the inner surfaces on both sides of the stabilizing bin. A sliding plate is slidably connected to the outer surface of one side of the two sliding rods, and a moving block is fixedly connected to the bottom surface of the sliding plate. A sliding rail is fixedly connected to the inner bottom surface of the stabilizing bin. A special-shaped block is slidably connected to the outer surface of one side of the sliding rail, and the special-shaped block is adapted to the moving block;

[0021] Among them, when the pressing block presses the two sliding blocks, the sliding blocks move to drive the extension rod to move. The extension rod drives the sliding plate to move. The sliding plate moves to drive the moving block to move. The moving block moves to drive the special-shaped block to descend under the action of the sliding rail. The descending of the special-shaped block drives the linkage rod to descend. The descending of the linkage rod drives the suction cup to tightly press on the inner bottom surface of the base.

[0022] In some embodiments, four ventilation slots are opened on the bottom surface of the base of the disassembly mechanism, and threaded rods are threadedly connected to the outer surfaces of one side of the four ventilation slots;

[0023] Among them, by rotating the threaded rod, the suction of the suction cup is lost, and when the top plate is pressed, the limiting rod is fixed.

[0024] Based on the same inventive concept, according to another aspect of the present invention, an embodiment of the present invention further provides a server test, including a server and a management device for accommodating the server. Among them, the management device includes:

[0025] A body with heat dissipation holes opened on both sides and a cavity for accommodating the server inside;

[0026] A plurality of buffer springs, one end of which is connected to the top surface of the body;

[0027] A top plate connected to the other ends of the plurality of buffer springs;

[0028] A connecting rod, one end of which is connected to the outside of the top plate;

[0029] A dust-proof mechanism, including a dust-proof bin and a steering bin, and the steering bin is inside the dust-proof bin;

[0030] Among them, a guiding groove is provided on the outer surface of one side of the dust-proof bin, and the guiding groove is adapted to the connecting rod. Telescopic rods are fixedly connected to the inner surfaces on both sides of the dust-proof bin. The other ends of the two telescopic rods are fixedly connected to fixed rods. One ends of the two fixed rods are fixedly connected to stabilizing rods. A limiting rod slides on the outer surface of the other ends of the two stabilizing rods. The limiting rod is connected to the other end of the connecting rod, and a moving rod is fixedly connected to the upper end of the limiting rod;

[0031] The bottom surface of the steering bin is provided with slot holes, and a number of fixed springs are fixedly connected to the top surface; the slot holes are adapted to the moving rod, and one end of the number of fixed springs away from the steering bin is fixedly connected with a dust-proof plate, and the dust-proof plate is adapted to the heat dissipation holes;

[0032] Wherein, fixed pulleys are fixedly connected to the inner surfaces of both sides of the dust-proof bin, two steel wire ropes are fixedly connected to the outer surface of one side of the dust-proof plate, and after the two steel wire ropes pass through the fixed pulleys, the ends away from the dust-proof plate are fixedly connected to the other end of the moving rod.

[0033] In some embodiments, a pressing block is arranged on the outer surface of one side of the dust-proof mechanism;

[0034] The other ends of the two fixed rods are respectively connected to sliding blocks, return springs are fixedly connected to the outer surfaces of one side of the two sliding blocks, and the ends of the two return springs away from the sliding blocks are respectively fixedly connected to the inner surfaces of both sides of the dust-proof bin;

[0035] Wherein, both sliding blocks are adapted to the pressing block, and the pressing block is located in the middle position between the two sliding blocks. When the pressing block is pressed, the pressing block squeezes the two sliding blocks, and the two sliding blocks will move away from the pressing block to both sides respectively. The movement of the sliding block drives the fixed rod to move, the movement of the fixed rod drives the stabilizing rod to move, and the movement of the stabilizing rod away from the limiting rod liberates the limiting rod;

[0036] The buffer spring pushes the top plate to move upward, the top plate drives the connecting rod to move, the connecting rod will drive the limiting rod to rise, the limiting rod will drive the moving rod to rise, the rising of the moving rod will pull the steel wire rope, and the steel wire rope will pull the dust-proof plate to descend under the action of the fixed pulley so that the dust-proof plate will move away from the heat dissipation hole.

[0037] In some embodiments, a disassembly mechanism is further included, and the disassembly mechanism is adapted to the dust-proof mechanism;

[0038] Wherein, the disassembly mechanism includes a base.

[0039] In some embodiments, two slot holes are opened on the bottom surface of the dust-proof bin, extension rods are fixedly connected to the bottom surfaces of the two sliding blocks, stabilizing mechanisms are slidably connected to the ends of the two extension rods away from the sliding blocks, linkage rods are fixedly arranged on the bottom surfaces of the two stabilizing mechanisms, suction cups are fixedly connected to the ends of the two linkage rods away from the stabilizing mechanisms, and the two suction cups are respectively adapted to the two slot holes;

[0040] Among them, the stabilizing mechanism includes a stabilizing bin. A sliding rod is fixedly connected between the inner surfaces on both sides of the stabilizing bin. A sliding plate is slidably connected to the outer surface of one side of the two sliding rods, and a moving block is fixedly connected to the bottom surface of the sliding plate. A sliding rail is fixedly connected to the inner bottom surface of the stabilizing bin. An irregular-shaped block is slidably connected to the outer surface of one side of the sliding rail, and the irregular-shaped block is adapted to the moving block;

[0041] Among them, when the pressing block squeezes the two sliding blocks, the sliding blocks move to drive the extension rod to move. The extension rod drives the sliding plate to move. The sliding plate moves to drive the moving block to move. The moving block moves to drive the irregular-shaped block to descend under the action of the sliding rail. The descent of the irregular-shaped block drives the linkage rod to descend. The descent of the linkage rod drives the suction cup to tightly press against the inner bottom surface of the base.

[0042] In some embodiments, four ventilation slots are opened on the bottom surface of the base of the disassembly mechanism, and threaded rods are threadedly connected to the outer surfaces of one side of the four ventilation slots;

[0043] Among them, by rotating the threaded rod, the suction of the suction cup is lost, and when the top plate is pressed, the limiting rod is fixed.

[0044] One of the beneficial technical effects of the present invention is as follows: In the solution proposed by the present invention, the movement of the fixed rod drives the movement of the stabilizing rod. The stabilizing rod moves away from the limiting rod, and the limiting rod is released. The elastic force of the fixed spring pushes the top plate to move. The movement of the top plate drives the movement of the connecting rod. The connecting rod drives the limiting rod to rise. The rise of the limiting rod drives the movement rod to rise. The movement rod rises to pull the steel wire rope. The steel wire rope pulls the dust-proof plate to descend under the action of the fixed pulley. The dust-proof plate moves away from the heat dissipation holes, so as to facilitate the normal use of the server. When the server test terminal management device is placed and not in use, the dust-proof plate covers the heat dissipation holes all the time, so that dust will not accumulate in the heat dissipation holes, reducing the probability of short circuit of the internal electronic components of the server and improving the service life of the server. Description of the Drawings

[0045] In order to more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the following will briefly introduce the drawings required for the description of the embodiments or the prior art. Obviously, the following drawings are only some embodiments of the present invention. For those of ordinary skill in the art, other embodiments can be obtained based on these drawings without creative efforts.

[0046] Figure 1 It is a diagram of the server management device provided by the embodiment of the present invention;

[0047] Figure 2 It is a schematic diagram of the internal structure of the dust-proof mechanism provided by the embodiment of the present invention;

[0048] Figure 3 For Figure 2 The enlarged structural schematic diagram at position A in

[0049] Figure 4 The sectional structural schematic diagram of the stabilizing mechanism provided by the embodiment of the present invention;

[0050] Figure 5 The structural schematic diagram of the disassembly mechanism provided by the embodiment of the present invention. Detailed implementation manners

[0051] To make the objectives, technical solutions and advantages of the present invention clearer and more understandable, the following further describes the embodiments of the present invention in detail with reference to specific embodiments and the accompanying drawings.

[0052] It should be noted that all the expressions using "first" and "second" in the embodiments of the present invention are used to distinguish two entities or parameters with the same name but different, so it can be seen that "first" and "second" are only for the convenience of expression and should not be construed as a limitation to the embodiments of the present invention. This will not be elaborated one by one in the subsequent embodiments.

[0053] In the embodiments of the present invention: 1. Body; 2. Dust-proof mechanism; 3. Stabilizing mechanism; 4. Disassembly mechanism; 10. Heat dissipation holes; 11. Fixed plate; 12. Buffer spring; 13. Top plate; 14. Connecting rod; 15. Pressing block; 20. Dust-proof bin; 21. Guide groove; 22. Telescopic rod; 23. Steering bin; 24. Hole; 25. Extension rod; 26. Linking rod; 27. Suction cup; 30. Stabilizing bin; 31. Slide bar; 32. Slide plate; 33. Moving block; 34. Slide rail; 35. Special-shaped block; 40. Base; 41. Ventilation slot; 42. Threaded rod; 220. Fixed rod; 221. Sliding block; 222. Return spring; 223. Stabilizing rod; 224. Limiting rod; 225. Moving rod; 230. Slot; 231. Fixed spring; 232. Dust-proof plate; 233. Fixed pulley; 234. Steel wire rope.

[0054] According to one aspect of the present invention, an embodiment of the present invention provides a server management device, as Figure 1 shown, which may include:

[0055] A body, with heat dissipation holes opened on both sides of the body and a cavity for accommodating a server inside;

[0056] A plurality of buffer springs, one end of which is connected to the top surface of the body;

[0057] A top plate, connected to the other ends of the plurality of buffer springs;

[0058] A connecting rod, one end of which is connected to the outside of the top plate;

[0059] The dust-proof mechanism includes a dust-proof bin and a steering bin, and the steering bin is inside the dust-proof bin;

[0060] Wherein, a guide groove is provided on the outer surface of one side of the dust-proof bin, and the guide groove is adapted to the connecting rod. Fixed telescopic rods are fixedly connected to the inner surfaces of both sides of the dust-proof bin. The other ends of the two telescopic rods are fixedly connected to fixed rods. One ends of the two fixed rods are fixedly connected to stabilizing rods. A limiting rod slides on the outer surface of the other ends of the two stabilizing rods. The limiting rod is connected to the other end of the connecting rod, and a moving rod is fixedly connected to the upper end of the limiting rod;

[0061] A slot is formed in the bottom surface of the steering bin, and a plurality of fixed springs are fixedly connected to the top surface; the slot is adapted to the moving rod, and one ends of the plurality of fixed springs away from the steering bin are fixedly connected to a dust-proof plate, and the dust-proof plate is adapted to the heat dissipation holes;

[0062] Wherein, fixed pulleys are fixedly connected to the inner surfaces of both sides of the dust-proof bin. Two steel wires are fixedly connected to the outer surface of one side of the dust-proof plate, and the ends of the two steel wires away from the dust-proof plate after passing through the fixed pulleys are fixedly connected to the other end of the moving rod.

[0063] In an embodiment of the present invention, the body 1 is an existing server device. Heat dissipation holes 10 are formed in the outer surfaces of both sides of the body 1. A fixing plate 11 is fixedly connected to the top surface of the body 1. A plurality of buffer springs 12 are fixedly connected to the top surface of the fixing plate 11. One ends of the plurality of buffer springs 12 away from the fixing plate 11 are fixedly connected to a top plate 13. Connecting rods 14 are fixedly connected to the outer surfaces of both sides of the top plate 13. Dust-proof mechanisms 2 are fixedly connected to the other ends of the two connecting rods 14 away from the top plate 13, and the two dust-proof mechanisms 2 are the same. A pressing block 15 is arranged on the outer surface of one side of the dust-proof mechanism 2. A disassembly mechanism 4 is fixedly connected to the bottom surface of the body 1, and the disassembly mechanism 4 is adapted to the dust-proof mechanism 2.

[0064] The solution proposed by the present invention will drive the stabilizing rod to move by moving the fixed rod. The movement of the stabilizing rod will move away from the limiting rod, and the limiting rod will be released. The elastic force of the fixed spring will push the top plate to move. The movement of the top plate will drive the connecting rod to move. The connecting rod will drive the limiting rod to rise. The rise of the limiting rod will drive the moving rod to rise. The rise of the moving rod will pull the steel wire rope. Under the action of the fixed pulley, the steel wire rope will pull the dust-proof plate to descend. The dust-proof plate will move away from the heat dissipation holes, so as to facilitate the normal use of the server. When the server test terminal management device is placed and not in use, the dust-proof plate covers the heat dissipation holes, so that dust will not accumulate in the heat dissipation holes, which will reduce the probability of short circuit of the internal electronic components of the server and improve the service life of the server.

[0065] In some embodiments, a pressing block is arranged on the outer surface of one side of the dust-proof mechanism;

[0066] The other ends of the two fixed rods are respectively connected to sliding blocks. One outer surface of each of the two sliding blocks is fixedly connected with a return spring, and one ends of the two return springs away from the sliding blocks are respectively fixedly connected to the inner surfaces of two sides of the dust-proof bin;

[0067] Wherein, both sliding blocks are adapted to a pressing block, and the pressing block is located in the middle position between the two sliding blocks. When the pressing block is pressed, the pressing block squeezes the two sliding blocks, and the two sliding blocks will respectively move towards two sides away from the pressing block. The movement of the sliding block drives the movement of the fixed rod, the movement of the fixed rod drives the movement of the stabilizing rod, and the movement of the stabilizing rod away from the limiting rod liberates the limiting rod;

[0068] The buffer spring pushes the top plate to move upward. The top plate drives the movement of the connecting rod, the connecting rod will drive the limiting rod to rise, the limiting rod will drive the moving rod to rise, the rising of the moving rod will pull the steel wire rope, and under the action of the fixed pulley, the steel wire rope will pull the dust-proof plate to descend so that the dust-proof plate will move away from the heat dissipation holes.

[0069] Specifically, as Figure 2 and Figure 3 shown, when the server test terminal management device needs to be used, the movement of the sliding block 221 will facilitate controlling the return spring 222 to generate elastic force. At the same time, the movement of the sliding block 221 will drive the movement of the fixed rod 220, the movement of the fixed rod 220 will drive the movement of the stabilizing rod 223, the movement of the stabilizing rod 223 will move away from the limiting rod 224, and the limiting rod 224 is liberated. The elastic force of the buffer spring 12 will push the top plate 13 to move. The top plate 13 is convenient to be tightly connected to the inner top surface of the external bin for installing the server, thereby increasing the stability of the server. At the same time, the movement of the sliding block 221 will drive the movement of the extension rod 25, the extension rod 25 will drive the movement of the sliding plate 32, the movement of the sliding plate 32 will drive the movement of the moving block 33, the movement of the moving block 33 will drive the special-shaped block 35 to descend under the action of the slide rail 34, the descending of the special-shaped block 35 will drive the linkage rod 26 to descend, and the descending of the linkage rod 26 will drive the suction cup 27 to tightly press on the inner bottom surface of the base 40, which will make the server not shift when bearing external pressure and enable the server to be stably used. At the same time, the movement of the top plate 13 will drive the movement of the connecting rod 14, the connecting rod 14 will drive the limiting rod 224 to rise, the rising of the limiting rod 224 will drive the moving rod 225 to rise, the rising of the moving rod 225 will pull the steel wire rope 234, and under the action of the fixed pulley 233, the steel wire rope 234 will pull the dust-proof plate 232 to descend, and the dust-proof plate 232 will move away from the heat dissipation holes 10, thereby facilitating the normal use of the server.

[0070] In some embodiments, a disassembly mechanism is further included, and the disassembly mechanism is adapted to the dust-proof mechanism;

[0071] Among them, the disassembly mechanism includes a base.

[0072] In some embodiments, two slots are formed in the bottom surface of the dust-proof bin. Extension rods are fixedly connected to the bottom surfaces of the two sliding blocks. The far ends of the two extension rods away from the sliding blocks are both slidably connected with a stabilizing mechanism. Linkage rods are fixedly arranged on the bottom surfaces of the two stabilizing mechanisms. The far ends of the two linkage rods away from the stabilizing mechanisms are both fixedly connected with suction cups, and the two suction cups are respectively adapted to the two slots.

[0073] Among them, the stabilizing mechanism includes a stabilizing bin. A sliding rod is fixedly connected between the inner surfaces on both sides of the stabilizing bin. A sliding plate is slidably connected to the outer surface of one side of the two sliding rods, and a moving block is fixedly connected to the bottom surface of the sliding plate. A sliding rail is fixedly connected to the inner bottom surface of the stabilizing bin. A special-shaped block is slidably connected to the outer surface of one side of the sliding rail, and the special-shaped block is adapted to the moving block.

[0074] Among them, when the pressing block presses the two sliding blocks, the sliding blocks move to drive the extension rods to move. The extension rods drive the sliding plate to move. The sliding plate moves to drive the moving block to move. The moving block moves to drive the special-shaped block to descend under the action of the sliding rail. The descent of the special-shaped block drives the linkage rod to descend. The descent of the linkage rod drives the suction cup to tightly press on the inner bottom surface of the base.

[0075] Specifically, as Figure 3 and Figure 4 shown, the dust-proof mechanism 2 includes a dust-proof bin 20. A guiding groove 21 is formed in the outer surface of one side of the dust-proof bin 20, and the guiding groove 21 is adapted to the connecting rod 14. The inner surfaces on both sides of the dust-proof bin 20 are both fixedly connected with telescopic rods 22. One ends of the two telescopic rods 22 are both fixedly connected with fixed rods 220. One ends of the two fixed rods 220 are both fixedly connected with sliding blocks 221, and the two sliding blocks 221 are both adapted to the pressing block 15. Return springs 222 are fixedly connected to the outer surfaces of one sides of the two sliding blocks 221, and the far ends of the two return springs 222 away from the sliding blocks 221 are respectively fixedly connected with the inner surfaces on both sides of the dust-proof bin 20. One ends of the two fixed rods 220 away from the sliding blocks 221 are both fixedly connected with stabilizing rods 223. A limiting rod 224 is slidably connected to the outer surface of one side of the two stabilizing rods 223, and a moving rod 225 is fixedly connected to the outer surface of one side of the limiting rod 224.

[0076] During specific use, when an external pressure presses the pressing block 15, the movement of the sliding block 221 facilitates controlling the return spring 222 to generate elastic force. At the same time, the movement of the moving block 33 drives the fixed rod 220 to move. The movement of the fixed rod 220 drives the stabilizing rod 223 to move. The movement of the stabilizing rod 223 moves away from the limiting rod 224, and the limiting rod 224 is released. The elastic coefficient of the return spring 222 is determined according to the actual situation.

[0077] The inner surface of the dust-proof bin 20 is fixedly connected with a steering bin 23. A slot hole 230 is formed in the bottom surface of the steering bin 23, and the slot hole 230 is adapted to the moving rod 225. A plurality of fixing springs 231 are fixedly connected to the top surface of the steering bin 23. One end of the plurality of fixing springs 231 away from the steering bin 23 is fixedly connected with a dust-proof plate 232, and the dust-proof plate 232 is adapted to the heat dissipation holes 10. Fixed pulleys 233 are fixedly connected to both inner surfaces of the two sides of the dust-proof bin 20. Two steel wire ropes 234 are fixedly connected to one outer surface of the dust-proof plate 232, and one end of the two steel wire ropes 234 away from the dust-proof plate 232 is fixedly connected with one end of the moving rod 225.

[0078] During specific use, the elastic force of the fixing spring 231 will push the top plate 13 to move. The movement of the top plate 13 will drive the connecting rod 14 to move. The connecting rod 14 will drive the limiting rod 224 to rise. The rise of the limiting rod 224 will drive the moving rod 225 to rise. The rise of the moving rod 225 will pull the steel wire rope 234. Under the action of the fixed pulley 233, the steel wire rope 234 will pull the dust-proof plate 232 to descend. The dust-proof plate 232 will move away from the heat dissipation holes 10, so as to facilitate the normal use of the server. The elastic coefficient of the fixing spring 231 is determined according to the actual situation. The steel wire rope 234 is an existing spiral steel wire bundle formed by twisting steel wires with mechanical properties and geometric dimensions meeting the requirements together according to certain rules. Its length and deflection angle are determined according to the actual situation.

[0079] In some embodiments, two slot holes 24 are formed in the bottom surface of the dust-proof bin 20. Extension rods 25 are fixedly connected to the bottom surfaces of the two sliding blocks 221. One end of the two extension rods 25 away from the sliding blocks 221 is slidably connected with a stabilizing mechanism 3. Linking rods 26 are fixedly arranged on the bottom surfaces of the two stabilizing mechanisms 3. One end of the two linking rods 26 away from the stabilizing mechanisms 3 is fixedly connected with a suction cup 27, and the two suction cups 27 are respectively adapted to the two slot holes 24. The stabilizing mechanism 3 includes a stabilizing bin 30. A sliding rod 31 is fixedly connected between the inner surfaces of both sides of the stabilizing bin 30. A sliding plate 32 is slidably connected to one outer surface of the two sliding rods 31, and a moving block 33 is fixedly connected to the bottom surface of the sliding plate 32. A slide rail 34 is fixedly connected to the inner bottom surface of the stabilizing bin 30. A special-shaped block 35 is slidably connected to one outer surface of the slide rail 34, and the special-shaped block 35 is adapted to the moving block 33.

[0080] During specific use, the movement of the sliding block 221 will drive the extension rod 25 to move. The extension rod 25 will drive the sliding plate 32 to move. The movement of the sliding plate 32 will drive the moving block 33 to move. The movement of the moving block 33 will drive the special-shaped block 35 to descend under the action of the slide rail 34. The descent of the special-shaped block 35 will drive the linking rod 26 to descend. The descent of the linking rod 26 will drive the suction cup 27 to tightly press against the inner bottom surface of the base 40, so that the server will not shift when bearing external pressure, and the server can be stably used. The size of the suction cup 27 is determined according to the actual situation.

[0081] In some embodiments, four ventilation grooves are formed on the bottom surface of the base of the disassembly mechanism, and threaded rods are threadedly connected to the outer surfaces of one sides of the four ventilation grooves.

[0082] Among them, by rotating the threaded rod, the suction cup loses suction, and when the top plate is pressed, the limiting rod is fixed.

[0083] Specifically, as Figure 5 shown, the disassembly mechanism 4 includes a base 40. Four ventilation grooves 41 are formed on the bottom surface of the base 40, and threaded rods 42 are threadedly connected to the outer surfaces of one sides of the four ventilation grooves 41.

[0084] During specific use, by rotating the threaded rod 42, the suction cup 27 loses suction, and when the top plate 13 is pressed, it is convenient to restore the server test terminal management device to its original state.

[0085] The solution proposed by the present invention facilitates the movement of the sliding block through the provided pressing block. When the server test terminal management device needs to be used, the movement of the sliding block will facilitate the control of the return spring to generate elastic force. At the same time, the movement of the moving block will drive the fixed rod to move, the movement of the fixed rod will drive the stable rod to move, the movement of the stable rod will move away from the limiting rod, the limiting rod is released, the elastic force of the fixed spring will push the top plate to move, the movement of the top plate will drive the connecting rod to move, the connecting rod will drive the limiting rod to rise, the rise of the limiting rod will drive the moving rod to rise, the rise of the moving rod will pull the steel wire rope, and the steel wire rope will pull the dust-proof plate to descend under the action of the fixed pulley, and the dust-proof plate will move away from the heat dissipation hole, thus facilitating the normal use of the server. When the server test terminal management device is placed and not in use, the dust-proof plate covers the heat dissipation hole, so that dust will not accumulate in the heat dissipation hole, reducing the probability of short circuit of internal electronic components of the server and increasing the service life of the server.

[0086] The provided buffer spring facilitates pushing the top plate to be tightly connected to the inner top surface of the bin for installing the server, thereby increasing the stability of the server. At the same time, the movement of the sliding block will drive the extension rod to move, the extension rod will drive the sliding plate to move, the movement of the sliding plate will drive the moving block to move, the movement of the moving block will drive the special-shaped block to descend under the action of the slide rail, the descent of the special-shaped block will drive the linkage rod to descend, and the descent of the linkage rod will drive the suction cup to tightly press on the inner bottom surface of the disassembly mechanism, so that the server will not shift when bearing external pressure, enabling the server to be stably used and increasing the service life of the server.

[0087] Based on the same inventive concept, according to another aspect of the present invention, an embodiment of the present invention further provides a server test, including a server and a management device for accommodating the server. Among them, the management device includes:

[0088] The body has heat dissipation holes on both sides and a cavity inside for accommodating servers.

[0089] A number of buffer springs, one end of which is connected to the top surface of the body.

[0090] The top plate is connected to the other ends of the number of buffer springs.

[0091] The connecting rod, one end of which is connected to the outside of the top plate.

[0092] The dust-proof mechanism includes a dust-proof chamber and a steering chamber, and the steering chamber is inside the dust-proof chamber.

[0093] Among them, a guide groove is provided on the outer surface of one side of the dust-proof chamber, and the guide groove is adapted to the connecting rod. Fixed rods are fixedly connected to the inner surfaces of both sides of the dust-proof chamber. The other ends of the two telescopic rods are fixedly connected to the fixed rods. The outer surfaces of one ends of the two fixed rods are slidably provided with limit rods, and the limit rods are connected to the other ends of the connecting rods. A moving rod is fixedly connected to the upper end of the limit rod.

[0094] A slot hole is provided on the bottom surface of the steering chamber, and a number of fixed springs are fixedly connected to the top surface. The slot hole is adapted to the moving rod. The other ends of the number of fixed springs away from the steering chamber are fixedly connected to a dust-proof plate, and the dust-proof plate is adapted to the heat dissipation hole.

[0095] Among them, fixed pulleys are fixedly connected to the inner surfaces of both sides of the dust-proof chamber. Two steel wire ropes are fixedly connected to the outer surface of one side of the dust-proof plate, and the other ends of the two steel wire ropes away from the dust-proof plate pass through the fixed pulleys and are fixedly connected to the other ends of the moving rod.

[0096] In some embodiments, a pressing block is provided on the outer surface of one side of the dust-proof mechanism.

[0097] The other ends of the two fixed rods are respectively connected to sliding blocks. Return springs are fixedly connected to the outer surfaces of one sides of the two sliding blocks, and the other ends of the two return springs away from the sliding blocks are respectively fixedly connected to the inner surfaces of both sides of the dust-proof chamber.

[0098] Among them, both sliding blocks are adapted to the pressing block, and the pressing block is in the middle position between the two sliding blocks. When the pressing block is pressed, the pressing block squeezes the two sliding blocks, and the two sliding blocks will move respectively to both sides away from the pressing block. The movement of the sliding blocks drives the fixed rods to move, the movement of the fixed rods drives the stable rods to move, and the stable rods move away from the limit rod to liberate the limit rod.

[0099] The buffer spring pushes the top plate to move upward. The top plate drives the connecting rod to move. The connecting rod drives the limiting rod to rise. The limiting rod drives the moving rod to rise. The rising of the moving rod pulls the steel wire rope. Under the action of the fixed pulley, the steel wire rope pulls the dust-proof plate to descend so that the dust-proof plate moves away from the heat dissipation holes.

[0100] In some embodiments, a disassembly mechanism is further included, and the disassembly mechanism is adapted to the dust-proof mechanism;

[0101] Among them, the disassembly mechanism includes a base.

[0102] In some embodiments, two slots are opened on the bottom surface of the dust-proof bin. Extension rods are fixedly connected to the bottom surfaces of the two sliding blocks. The far ends of the two extension rods away from the sliding blocks are slidably connected with stabilizing mechanisms. Linkage rods are fixedly arranged on the bottom surfaces of the two stabilizing mechanisms. The far ends of the two linkage rods away from the stabilizing mechanisms are fixedly connected with suction cups, and the two suction cups are respectively adapted to the two slots;

[0103] Among them, the stabilizing mechanism includes a stabilizing bin. A sliding rod is fixedly connected between the inner surfaces on both sides of the stabilizing bin. A sliding plate is slidably connected to the outer surface of one side of the two sliding rods, and a moving block is fixedly connected to the bottom surface of the sliding plate. A slide rail is fixedly connected to the inner bottom surface of the stabilizing bin. A special-shaped block is slidably connected to the outer surface of one side of the slide rail, and the special-shaped block is adapted to the moving block;

[0104] Among them, when the pressing block squeezes the two sliding blocks, the movement of the sliding blocks drives the extension rods to move. The extension rods drive the sliding plate to move. The movement of the sliding plate drives the moving block to move. The movement of the moving block drives the special-shaped block to descend under the action of the slide rail. The descent of the special-shaped block drives the linkage rod to descend. The descent of the linkage rod drives the suction cup to tightly press on the inner bottom surface of the base.

[0105] In some embodiments, four air-permeable slots are opened on the bottom surface of the base of the disassembly mechanism, and threaded rods are threadedly connected to the outer surfaces of one sides of the four air-permeable slots;

[0106] Among them, by rotating the threaded rod, the suction force of the suction cup is lost, and when the top plate is pressed, the limiting rod is fixed.

[0107] Those skilled in the art will also understand that the various exemplary logical blocks, modules, circuits, and algorithm steps described in connection with the disclosure herein can be implemented as electronic hardware, computer software, or a combination of both. To clearly illustrate this interchangeability of hardware and software, functions have been generally described for various illustrative components, blocks, modules, circuits, and steps. Whether this function is implemented as software or hardware depends on the particular application and the design constraints imposed on the overall system. The functions that can be implemented in various ways by those skilled in the art for each specific application, but such implementation decisions should not be construed as causing a departure from the scope of the disclosure of the embodiments of the present invention.

[0108] The above are exemplary embodiments disclosed by the present invention. However, it should be noted that various changes and modifications can be made without departing from the scope of the disclosure of the embodiments of the present invention as defined by the claims. The functions, steps, and / or actions of the method claims according to the disclosed embodiments herein need not be performed in any specific order. In addition, although the elements disclosed in the embodiments of the present invention can be described or claimed in individual form, they can also be understood as plural unless explicitly limited to the singular.

[0109] It should be understood that, as used herein, unless the context clearly supports an exception, the singular form "a" is also intended to include the plural form. It should also be understood that the "and / or" used herein refers to any and all possible combinations of one or more of the related listed items.

[0110] The serial numbers of the disclosed embodiments of the present invention above are for description only and do not represent the superiority or inferiority of the embodiments.

[0111] Those of ordinary skill in the art can understand that all or part of the steps to implement the above embodiments can be completed by hardware, or can be completed by a program instructing relevant hardware. The program can be stored in a computer-readable storage medium. The above-mentioned storage medium can be a read-only memory, a magnetic disk, an optical disc, etc.

[0112] Those of ordinary skill in the art should understand that the discussion of any of the above embodiments is only exemplary and is not intended to imply that the scope of the disclosure of the embodiments of the present invention (including the claims) is limited to these examples; under the concept of the embodiments of the present invention, the technical features between the above embodiments or different embodiments can also be combined, and there are many other variations in different aspects of the embodiments of the present invention as above, which are not provided in detail for the sake of brevity. Therefore, any omissions, modifications, equivalent replacements, improvements, etc. made within the spirit and principles of the embodiments of the present invention shall be included within the protection scope of the embodiments of the present invention.

Claims

1. A server management device, characterized in that, Comprising: A body, with heat dissipation holes opened on both sides of the body and a cavity for accommodating a server inside; A number of buffer springs, one end of which is connected to the top surface of the body; A top plate, connected to the other ends of the number of buffer springs; A connecting rod, one end of which is connected to the outer side of the top plate; A dust-proof mechanism, including a dust-proof chamber and a steering chamber, with the steering chamber inside the dust-proof chamber; Wherein, a guiding groove is provided on the outer surface of one side of the dust-proof chamber, and the guiding groove is adapted to the connecting rod. Fixed connection rods are fixedly connected to the inner surfaces of both sides of the dust-proof chamber. The other ends of the two telescopic rods are fixedly connected to fixed rods. Fixed connection rods are fixedly connected to one ends of the two fixed rods. A limiting rod is slidably connected to the outer surface of the other ends of the two stabilizing rods. The limiting rod is connected to the other end of the connecting rod, and a moving rod is fixedly connected to the upper end of the limiting rod; A slot hole is opened on the bottom surface of the steering chamber, and a number of fixed springs are fixedly connected to the top surface; the slot hole is adapted to the moving rod. The other ends of the number of fixed springs away from the steering chamber are fixedly connected to a dust-proof plate, and the dust-proof plate is adapted to the heat dissipation hole; Fixed pulleys are fixedly connected to the inner surfaces of both sides of the dust-proof chamber. Two steel wires are fixedly connected to the outer surface of one side of the dust-proof plate. After passing through the fixed pulleys, the ends of the two steel wires away from the dust-proof plate are fixedly connected to the other end of the moving rod; A pressing block is provided on the outer surface of one side of the dust-proof mechanism; The other ends of the two fixed rods are respectively connected to sliding blocks. Return springs are fixedly connected to the outer surfaces of one side of the two sliding blocks. The other ends of the two return springs away from the sliding blocks are respectively fixedly connected to the inner surfaces of both sides of the dust-proof chamber; Both sliding blocks are adapted to the pressing block. The pressing block is located in the middle position between the two sliding blocks. When the pressing block is pressed, the pressing block squeezes the two sliding blocks, and the two sliding blocks will move away from the pressing block to both sides respectively. The movement of the sliding block drives the fixed rod to move, the movement of the fixed rod drives the stabilizing rod to move, and the stabilizing rod moves away from the limiting rod to liberate the limiting rod; The buffer spring pushes the top plate to move upward. The top plate drives the connecting rod to move. The connecting rod will drive the limiting rod to rise. The limiting rod will drive the moving rod to rise. The rising of the moving rod will pull the steel wire. Under the action of the fixed pulley, the steel wire will pull the dust-proof plate to descend so that the dust-proof plate will move away from the heat dissipation hole.

2. The management device according to claim 1, wherein It further includes a disassembly mechanism, and the disassembly mechanism is adapted to the dust-proof mechanism; Wherein, the disassembly mechanism includes a base.

3. The management device according to claim 2, characterized in that, Two slot holes are opened on the bottom surface of the dust-proof chamber. Extension rods are fixedly connected to the bottom surfaces of the two sliding blocks. The other ends of the two extension rods away from the sliding blocks are slidably connected to stabilizing mechanisms. Linking rods are fixedly arranged on the bottom surfaces of the two stabilizing mechanisms. The other ends of the two linking rods away from the stabilizing mechanisms are fixedly connected to suction cups, and the two suction cups are respectively adapted to the two slot holes; Among them, the stabilizing mechanism includes a stabilizing bin. A sliding rod is fixedly connected between the inner surfaces on both sides of the stabilizing bin. A sliding plate is slidably connected to the outer surface of one side of the two sliding rods, and a moving block is fixedly connected to the bottom surface of the sliding plate. A sliding rail is fixedly connected to the inner bottom surface of the stabilizing bin. An irregular-shaped block is slidably connected to the outer surface of one side of the sliding rail, and the irregular-shaped block is adapted to the moving block; Among them, when the pressing block presses the two sliding blocks, the sliding blocks move to drive the extension rod to move. The extension rod drives the sliding plate to move. The sliding plate moves to drive the moving block to move. The moving block moves to drive the irregular-shaped block to descend under the action of the sliding rail. The descent of the irregular-shaped block drives the linkage rod to descend. The descent of the linkage rod drives the suction cup to tightly press on the inner bottom surface of the base.

4. The management device according to claim 3, characterized in that, Four air vents are opened on the bottom surface of the base of the disassembly mechanism, and threaded rods are threadedly connected to the outer surfaces of one side of the four air vents; Among them, by rotating the threaded rod, the suction of the suction cup is lost, and when the top plate is pressed, the limiting rod is fixed.

5. A server testing device, characterized in that, It includes a server and a management device for accommodating the server. Among them, the management device includes: A body with heat dissipation holes opened on both sides and a cavity for accommodating the server inside; A number of buffer springs, one end of which is connected to the top surface of the body; A top plate connected to the other ends of the number of buffer springs; A connecting rod, one end of which is connected to the outside of the top plate; A dust-proof mechanism, including a dust-proof bin and a steering bin, and the steering bin is inside the dust-proof bin; Among them, a guiding groove is provided on the outer surface of one side of the dust-proof bin, and the guiding groove is adapted to the connecting rod. Telescopic rods are fixedly connected to the inner surfaces on both sides of the dust-proof bin. The other ends of the two telescopic rods are fixedly connected to fixed rods. One ends of the two fixed rods are fixedly connected to stabilizing rods. A limiting rod slides on the outer surface of the other ends of the two stabilizing rods. The limiting rod is connected to the other end of the connecting rod, and a moving rod is fixedly connected to the upper end of the limiting rod; A slot hole is opened on the bottom surface of the steering bin, and a number of fixed springs are fixedly connected to the top surface; the slot hole is adapted to the moving rod, and the other ends of the number of fixed springs away from the steering bin are fixedly connected to a dust-proof plate, and the dust-proof plate is adapted to the heat dissipation hole; Fixed pulleys are fixedly connected to the inner surfaces on both sides of the dust-proof bin. Two steel wires are fixedly connected to the outer surface of one side of the dust-proof plate, and the ends of the two steel wires away from the dust-proof plate after passing through the fixed pulleys are fixedly connected to the other end of the moving rod; A pressing block is arranged on the outer surface of one side of the dust-proof mechanism; The other ends of the two fixed rods are respectively connected to sliding blocks. Return springs are fixedly connected to the outer surfaces of one side of the two sliding blocks, and the ends of the two return springs away from the sliding blocks are respectively fixedly connected to the inner surfaces on both sides of the dust-proof bin; Both sliding blocks are adapted to the pressing block, and the pressing block is located at the middle position between the two sliding blocks. When the pressing block is pressed, the pressing block squeezes the two sliding blocks, and the two sliding blocks will move away from the pressing block to both sides respectively. The movement of the sliding block drives the movement of the fixed rod, the movement of the fixed rod drives the movement of the stabilizing rod, and the movement of the stabilizing rod away from the limiting rod liberates the limiting rod. The buffer spring pushes the top plate to move upward. The top plate drives the movement of the connecting rod, the connecting rod will drive the limiting rod to rise, the limiting rod will drive the moving rod to rise, and the rising of the moving rod will pull the steel wire rope. Under the action of the fixed pulley, the steel wire rope will pull the dust-proof plate to descend so that the dust-proof plate will move away from the heat dissipation holes.

6. The testing device according to claim 5, wherein It further includes a disassembly mechanism, and the disassembly mechanism is adapted to the dust-proof mechanism. Among them, the disassembly mechanism includes a base.

7. The test device according to claim 6, characterized in that Two slots are opened on the bottom surface of the dust-proof bin. Extension rods are fixedly connected to the bottom surfaces of the two sliding blocks. The ends of the two extension rods away from the sliding blocks are both slidably connected with stabilizing mechanisms. Linking rods are fixedly arranged on the bottom surfaces of the two stabilizing mechanisms. The ends of the two linking rods away from the stabilizing mechanisms are both fixedly connected with suction cups, and the two suction cups are respectively adapted to the two slots. Among them, the stabilizing mechanism includes a stabilizing bin. A sliding rod is fixedly connected between the inner surfaces on both sides of the stabilizing bin. A sliding plate is slidably connected to the outer surface of one side of the two sliding rods, and a moving block is fixedly connected to the bottom surface of the sliding plate. A sliding rail is fixedly connected to the inner bottom surface of the stabilizing bin. A special-shaped block is slidably connected to the outer surface of one side of the sliding rail, and the special-shaped block is adapted to the moving block. Among them, when the pressing block squeezes the two sliding blocks, the movement of the sliding block will drive the movement of the extension rod, the extension rod will drive the movement of the sliding plate, the movement of the sliding plate will drive the movement of the moving block, the movement of the moving block will drive the special-shaped block to descend under the action of the sliding rail, the descent of the special-shaped block will drive the linking rod to descend, and the descent of the linking rod will drive the suction cup to tightly press on the inner bottom surface of the base.

8. The testing device according to claim 7, wherein Four air-permeable slots are opened on the bottom surface of the base of the disassembly mechanism, and threaded rods are threadedly connected to the outer surfaces of one side of the four air-permeable slots. Among them, by rotating the threaded rod, the suction force of the suction cup is lost, and when the top plate is pressed, the limiting rod is fixed.

Citation Information

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