Cloud computing server cabinet
By designing an adjustable cabinet space and a cloud computing server cabinet with self-cleaning cooling mechanism, the problems of high cost of existing cabinets and increased server temperature are solved, and the effect of reducing costs and extending server life is achieved.
Patent Information
- Application Number
- CN202510349095.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-24
- Publication Date
- 2025-07-25
AI Technical Summary
Existing cloud computing server cabinets are usually fixed-sized. When more servers are needed, multiple cabinets need to be purchased, which is cost-effective, and the intake filter is blocked and the server temperature is easily increased, affecting the service life.
A cloud computing server cabinet including cabinet mechanism, fixing mechanism, adjustment mechanism and heat dissipation mechanism is designed. The cabinet space is adjusted through the adjustment mechanism to adapt to the server storage needs of different specifications, and the filter screen is self-cleaned and automatically replaced through the heat dissipation mechanism to ensure the heat dissipation of the server and extend the service life.
It realizes the reduction of usage costs, increase the number of server storage, and extends the service life of the server through self-cleaning and automatic replacement of filters, reducing labor and economic losses.
Smart Images

Figure CN120379174A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of server protection devices, and more particularly to a cloud computing server cabinet. Background Art
[0002] A cloud computing server is a computing service resource pool that uses virtualization technology to encapsulate computing resources, storage resources, and network resources into an independent virtual environment and is specifically designed for enterprise users. When a cloud computing server is in use, the server usually needs to be placed in a cabinet, multiple servers are connected, and the cabinet can effectively protect the server.
[0003] However, the existing cloud computing server cabinets are usually of a fixed size. When more servers need to be stored, multiple cabinets usually need to be purchased for storing and using the servers, resulting in a high usage cost. Moreover, when the air intake filter of the server cabinet is blocked, it is easy to cause the temperature of the servers in the cabinet to rise, affecting the service life of the servers. Summary of the Invention
[0004] Object of the Invention: The technical problem to be solved by the present invention is to provide a cloud computing server cabinet in view of the deficiencies of the prior art.
[0005] To solve the above technical problems, the present invention discloses a cloud computing server cabinet, which includes a cabinet body mechanism, a fixing mechanism, an adjusting mechanism, and a heat dissipation mechanism;
[0006] The fixing mechanism is fixedly connected to the cabinet body mechanism;
[0007] The adjusting mechanism is fixedly connected to the cabinet body mechanism;
[0008] The heat dissipation mechanism is fixedly connected to the cabinet body mechanism.
[0009] The cabinet body mechanism includes: a lower cabinet 1, a connecting cabinet 2, an upper cabinet 3, a lower cabinet door 4, a connecting cabinet door 5, and an upper cabinet door 6;
[0010] The connecting cabinet 2 is slidably connected to the inside of the lower cabinet 1;
[0011] The upper cabinet 3 is fixedly connected to the upper end of the connecting cabinet 2;
[0012] The lower cabinet door 4 is hinged to the front end face of the lower cabinet 1;
[0013] The connecting cabinet door 5 is slidably connected to the inside of the lower cabinet door 4;
[0014] The upper cabinet door 6 is fixedly connected to the upper end face of the connecting cabinet door 5, and the upper cabinet door 6 is hinged to the front end face of the upper cabinet.
[0015] The fixing mechanism includes a first fixing housing 7 and a second fixing housing 8;
[0016] There are two first fixing housings 7, and both of the two first fixing housings are fixedly connected to the outer side of the lower cabinet body; the second fixing housing 8 is fixedly connected to the rear of the lower cabinet body.
[0017] The adjusting mechanism includes: an adjusting support plate 14, a sliding frame 15, a tension spring 16 and a rotating cam 17;
[0018] The adjusting support plate 14 is slidably connected to the inner side of the lower cabinet body 1;
[0019] There are two sliding frames 15, and both of the two sliding frames are slidably connected to the inner side of the adjusting support plate 14;
[0020] There are two tension springs 16, and both ends of the two tension springs are respectively fixedly connected to the outer sides of the two sliding frames 15;
[0021] The rotating cam 17 is rotatably connected to the inner side of the adjusting support plate.
[0022] The adjusting mechanism includes a limit plug 18, a compression spring 19 and a limit slot 20;
[0023] There are multiple groups of limit plugs 18, and all the multiple groups of limit plugs 18 are slidably connected to the inner side of the adjusting support plate 14;
[0024] There are multiple groups of compression springs 19, one ends of the multiple groups of compression springs 19 are respectively fixedly connected to the outer sides of the multiple groups of limit plugs 18, and the other ends of the multiple groups of compression springs 19 are all fixedly connected to the inner side of the adjusting support plate 14.
[0025] The adjusting mechanism includes a connecting rotating shaft 21, an adjusting worm 22 and an adjusting worm gear 23;
[0026] There are two connecting rotating shafts 21, and the two connecting rotating shafts 21 are respectively rotatably connected to the inner sides of the two first fixing housings 7;
[0027] There are two groups of adjusting worms 22, and the two groups of adjusting worms 22 are respectively fixedly connected to the outer sides of the two connecting rotating shafts 21;
[0028] There are two groups of adjusting worm gears 23, and the two groups of adjusting worm gears 23 are respectively rotatably connected to the inner sides of the two first fixing housings 7, and the two groups of adjusting worm gears 23 mesh with the two groups of adjusting worms 22.
[0029] The adjusting mechanism includes an adjusting threaded rod 24 and a fixed threaded part 25;
[0030] There are two groups of adjusting threaded rods 24, and the two groups of adjusting threaded rods 24 are respectively fixedly connected to the upper end faces of the two groups of adjusting worm gears 23;
[0031] There are two sets of the fixed threaded members 25, and both sets of the fixed threaded members 25 are fixedly connected to the outside of the upper cabinet body 3. The two sets of the fixed threaded members 25 are respectively threadedly connected to the two sets of the adjusting threaded rods 24.
[0032] The adjusting mechanism includes a connecting pulley 26, a connecting belt 27 and an operating member 28;
[0033] There are two connecting pulleys 26, and the two connecting pulleys 26 are respectively fixedly connected to the rear end faces of the two connecting rotating shafts 21;
[0034] The connecting belt 27 is covered outside the two connecting pulleys 26;
[0035] The operating member 28 is fixedly connected to the rear end face of the left connecting pulley 26.
[0036] The heat dissipation mechanism includes: a heat dissipation fan 13, a rotating roller 29, a protective filter screen 30, a driving motor 31, a connecting air outlet pipe 9, a fixed air outlet pipe 10, an air inlet 11 and a protective housing 12;
[0037] The connecting air outlet pipe 9 is fixedly connected to the rear end face of the upper cabinet body 3, and the connecting air outlet pipe 9 is communicated with the inside of the upper cabinet body 3;
[0038] The fixed air outlet pipe 10 is fixedly connected to the rear end face of the lower cabinet body 1;
[0039] The air inlet 11 is fixedly connected to the rear end face of the lower cabinet body 1;
[0040] The protective housing 12 is fixedly connected to the rear end faces of the fixed air outlet pipe 10 and the air inlet 11;
[0041] There are two heat dissipation fans 13, and both of the two heat dissipation fans 13 are fixedly installed inside the air inlet 11;
[0042] There are two rotating rollers 29, and both of the two rotating rollers 29 are rotatably connected inside the protective housing 12;
[0043] The protective filter screen 30 is covered outside the two rotating rollers 29;
[0044] The driving motor 31 is fixedly installed outside the protective housing 12, and the rotating shaft of the driving motor 31 is fixedly connected to the lower rotating roller 29.
[0045] The heat dissipation mechanism includes: a fixed cylinder 1101, an exhaust pipe 1201, an air inlet pipe 1202, a pressing member 32 and a pressing switch 33;
[0046] The fixed cylinder 1101 is fixedly connected inside the air inlet 11;
[0047] The exhaust pipe 1201 is fixedly connected to the inner side of the protective housing 12, and the exhaust pipe 1201 is located behind the lower end of the fixed air outlet pipe 10;
[0048] The intake pipe 1202 is fixedly connected to the inner side of the protective housing 12, and the intake pipe 1202 is located behind the air inlet 11;
[0049] The pressing member 32 is slidably connected to the inside of the fixed cylinder;
[0050] The push switch 33 is fixedly installed on the outside of the air inlet, and the push switch 33 is electrically connected to the drive motor 31.
[0051] Advantageous effects:
[0052] 1. Through the setting of the adjustment mechanism, the present invention realizes the adjustment of the cabinet space. By rotating the operating member, the operating member will drive the two connecting rotating shafts to rotate through the connecting belt pulleys and the connecting belt. The rotation of the connecting rotating shaft will drive the adjustment screw rod to rotate under the meshing action of the adjustment worm and the adjustment worm wheel. Then, under the action of the threaded connection between the adjustment screw rod and the fixed threaded member, the upper cabinet body will be driven to slide, adjusting the space in the cabinet, enabling more servers to be stored, reducing the use cost.
[0053] 2. Through the setting of the heat dissipation mechanism, the present invention realizes the heat dissipation of the servers in the cabinet and the self-cleaning of the filter screen. When the heat dissipation fan starts, it will draw the outside air through the intake pipe and then through the protective filter screen into the lower cabinet body, while the hot air in the cabinet body will pass through the connecting air outlet pipe and the fixed air outlet pipe and then through the protective filter screen and be discharged through the exhaust pipe. When the fixed air outlet pipe discharges air, it will blow off the dust on the protective filter screen, reducing the labor intensity and extending the service life of the filter screen. When the protective filter screen behind the air inlet is blocked, the operation of the heat dissipation fan will reduce the air pressure inside the air inlet. At this time, the pressing member will slide towards the inside of the air inlet under the action of the air pressure. The sliding of the air inlet will trigger the push switch, and at this time, the drive motor will start to replace the protective filter screen, ensuring the heat dissipation of the servers in the cabinet, extending the service life of the servers, and reducing the economic loss. BRIEF DESCRIPTION OF THE DRAWINGS
[0054] Figure 1 It is a schematic structural diagram of the main body of the present invention.
[0055] Figure 2 It is a schematic structural diagram of the adjustment support plate of the present invention.
[0056] Figure 3 It is a schematic structural diagram of the inside of the adjustment support plate of the present invention.
[0057] Figure 4 It is a schematic structural diagram of the adjustment screw rod of the present invention.
[0058] Figure 5 For the present invention Figure 4 is a schematic diagram of the locally enlarged structure at position A in the present invention.
[0059] Figure 6 is a schematic diagram of the structure of the protective housing of the present invention.
[0060] Figure 7 is a schematic diagram of the structure of the cooling fan of the present invention.
[0061] Figure 8 is a schematic diagram of the structure of the pressing member of the present invention.
[0062] Figure 9 is a schematic diagram of the structure of the protective filter screen of the present invention. Detailed implementation manners
[0063] The object of the present invention is to provide a cloud computing server cabinet, so as to solve the problems in the above-mentioned background technology that the existing cloud computing server cabinets are usually of a fixed size. When it is necessary to store more servers, it is usually necessary to purchase multiple cabinets for storing and using the servers, resulting in a high usage cost. Moreover, when the intake filter screen of the server cabinet is blocked, it is easy to cause the temperature of the servers in the cabinet to rise, affecting the service life of the servers, etc. The present invention has the advantages of prolonging the service life of the servers and reducing the usage cost.
[0064] In the drawings: 1, lower cabinet body; 2, connecting cabinet body; 3, upper cabinet body; 4, lower cabinet door; 5, connecting cabinet door; 6, upper cabinet door; 7, first fixed housing; 8, second fixed housing; 9, connecting air outlet pipe; 10, fixed air outlet pipe; 11, air inlet; 1101, fixed cylinder; 12, protective housing; 1201, exhaust pipe; 1202, intake pipe; 13, cooling fan; 14, adjusting support plate; 15, sliding frame; 16, tension spring; 17, rotating cam; 18, limit insertion block; 19, compression spring; 20, limit slot; 21, connecting rotating shaft; 22, adjusting worm; 23, adjusting worm gear; 24, adjusting threaded rod; 25, fixed threaded part; 26, connecting pulley; 27, connecting belt; 28, operating member; 29, rotating roller; 30, protective filter screen; 31, drive motor; 32, pressing member; 33, pressing switch.
[0065] As Figure 1 shown: A cloud computing server cabinet includes a cabinet body mechanism, a fixing mechanism, an adjusting mechanism and a heat dissipation mechanism;
[0066] The fixing mechanism is fixedly connected to the cabinet body mechanism;
[0067] The adjusting mechanism is fixedly connected to the cabinet body mechanism;
[0068] The heat dissipation mechanism is fixedly connected to the cabinet body mechanism.
[0069] The cabinet body mechanism includes: lower cabinet body 1, connecting cabinet body 2, upper cabinet body 3, lower cabinet door 4, connecting cabinet door 5, and upper cabinet door 6;
[0070] The connecting cabinet body 2 is slidably connected to the inner side of the lower cabinet body 1;
[0071] The upper cabinet body 3 is fixedly connected to the upper end of the connecting cabinet body 2;
[0072] The lower cabinet door 4 is hinged to the front end face of the lower cabinet body 1;
[0073] The connecting cabinet door 5 is slidably connected to the inner side of the lower cabinet door 4;
[0074] The upper cabinet door 6 is fixedly connected to the upper end face of the connecting cabinet door, and the upper cabinet door 6 is hinged to the front end face of the upper cabinet body.
[0075] The fixing mechanism includes a first fixing housing 7 and a second fixing housing 8;
[0076] There are two first fixing housings 7, and both of the two first fixing housings are fixedly connected to the outer side of the lower cabinet body; the second fixing housing 8 is fixedly connected to the rear of the lower cabinet body.
[0077] Embodiment 1:
[0078] The adjustment of the cabinet space is specifically as follows:
[0079] As Figure 4 and Figure 5 shown:
[0080] The adjustment mechanism includes: adjustment support plate 14, sliding frame 15, tension spring 16, and rotary cam 17;
[0081] The adjustment support plate 14 is slidably connected to the inner side of the lower cabinet body 1;
[0082] There are two sliding frames 15, and both of the two sliding frames are slidably connected to the inner side of the adjustment support plate 14;
[0083] There are two tension springs 16, and both ends of the two tension springs are respectively fixedly connected to the outer sides of the two sliding frames 15;
[0084] The rotary cam 17 is rotatably connected to the inner side of the adjustment support plate.
[0085] The adjustment mechanism includes a limit insertion block 18, a compression spring 19, and a limit slot 20;
[0086] There are multiple groups of limit insertion blocks 18, and multiple groups of limit insertion blocks 18 are all slidably connected to the inner side of the adjustment support plate 14;
[0087] A plurality of compression springs 19 are provided. One ends of the plurality of compression springs 19 are respectively fixedly connected to the outer sides of a plurality of limit insertion blocks 18, and the other ends of the plurality of compression springs 19 are all fixedly connected to the inner side of the adjustment support plate 14.
[0088] The adjustment mechanism includes a connecting rotating shaft 21, an adjustment worm 22 and an adjustment worm gear 23;
[0089] Two connecting rotating shafts 21 are provided. The two connecting rotating shafts 21 are respectively rotatably connected to the inner sides of two first fixed shells 7;
[0090] Two groups of adjustment worms 22 are provided. The two groups of adjustment worms 22 are respectively fixedly connected to the outer sides of the two connecting rotating shafts 21;
[0091] Two groups of adjustment worm gears 23 are provided. The two groups of adjustment worm gears 23 are respectively rotatably connected to the inner sides of two first fixed shells 7, and the two groups of adjustment worm gears 23 are engaged with the two groups of adjustment worms 22.
[0092] The adjustment mechanism includes an adjustment threaded rod 24 and a fixed threaded part 25;
[0093] Two groups of adjustment threaded rods 24 are provided. The two groups of adjustment threaded rods 24 are respectively fixedly connected to the upper end surfaces of the two groups of adjustment worm gears 23;
[0094] Two groups of fixed threaded parts 25 are provided. The two groups of fixed threaded parts 25 are both fixedly connected to the outer side of the upper cabinet body 3, and the two groups of fixed threaded parts 25 are respectively threadedly connected to the two groups of adjustment threaded rods 24.
[0095] The adjustment mechanism includes a connecting pulley 26, a connecting belt 27 and an operating part 28;
[0096] Two connecting pulleys 26 are provided. The two connecting pulleys 26 are respectively fixedly connected to the rear end surfaces of the two connecting rotating shafts 21;
[0097] The connecting belt 27 is covered on the outer sides of the two connecting pulleys 26;
[0098] The operating part 28 is fixedly connected to the rear end surface of the left connecting pulley 26.
[0099] By rotating the operating part 28, the operating part 28 will drive the two connecting rotating shafts 21 to rotate through the connecting pulley 26 and the connecting belt 27. The rotation of the connecting rotating shaft will drive the adjustment threaded rod to rotate under the action of the engagement of the adjustment worm 22 and the adjustment worm gear 23, and then drive the upper cabinet body 3 to slide under the action of the threaded connection between the adjustment threaded rod 24 and the fixed threaded part 25, so as to adjust the space in the cabinet.
[0100] When only a small number of or small servers are stored, the space of the cabinet can be adjusted to become smaller by rotating the operating part clockwise, reducing the space occupied by the overall cabinet; when more or larger servers need to be stored, the space of the cabinet can be adjusted to become larger by rotating the operating part counterclockwise.
[0101] While adjusting the space, adjust the position of the adjusting tray 14 according to the actual size of the server, so that the size of each compartment matches the size of the server as closely as possible, thereby making full use of the storage space, being able to store more servers, and reducing the usage cost.
[0102] Specifically, by rotating the rotary cam 17, the rotary cam 17 is disengaged from the sliding frame 15. At this time, the sliding frame 15 will slide inward toward the adjusting support plate 14 under the action of the tension spring 16. The sliding of the sliding frame 15 will drive the limit insertion block 18 to disengage from the limit slot 20. At this time, the position of the adjusting support plate 14 can be adjusted, and the distance between the adjusting support plates 14 can be adjusted to adapt to servers of different specifications; when the adjusting tray 14 reaches the target position to be adjusted, align the limit insertion block 18 with the limit slot 20, and reinstall the rotary cam 17 into the corresponding position in the sliding frame 15. Under the action of the tension spring 16, the outward sliding of the sliding frame 15 will drive the limit insertion block 18 to be inserted into the limit slot 20 again to achieve fixation.
[0103] Embodiment 2:
[0104] Heat dissipation of the server in the cabinet and self-cleaning of the filter screen:
[0105] As Figure 6 、 Figure 7 、 Figure 8 and Figure 9 shown:
[0106] The heat dissipation mechanism includes: a heat dissipation fan 13, a rotating roller 29, a protective filter screen 30, a driving motor 31, a connecting exhaust pipe 9, a fixed exhaust pipe 10, an air inlet 11, and a protective housing 12;
[0107] The connecting exhaust pipe 9 is fixedly connected to the rear end face of the upper cabinet 3, and the connecting exhaust pipe 9 is communicated with the inside of the upper cabinet 3;
[0108] The fixed exhaust pipe 10 is fixedly connected to the rear end face of the lower cabinet 1;
[0109] The air inlet 11 is fixedly connected to the rear end face of the lower cabinet 1;
[0110] The protective housing 12 is fixedly connected to the rear end faces of the fixed exhaust pipe 10 and the air inlet 11;
[0111] There are two heat dissipation fans 13, and both of the two heat dissipation fans 13 are fixedly installed inside the air inlet 11;
[0112] There are two rotating rollers 29, and both of the two rotating rollers 29 are rotatably connected to the inside of the protective housing 12;
[0113] The protective filter screen 30 is covered outside the two rotating rollers 29;
[0114] The driving motor 31 is fixedly installed outside the protective housing 12, and the rotating shaft of the driving motor 31 is fixedly connected to the lower rotating roller 29.
[0115] The heat dissipation mechanism includes: a fixed cylinder 1101, an exhaust pipe 1201, an intake pipe 1202, a pressing member 32 and a pressing switch 33;
[0116] The fixed cylinder 1101 is fixedly connected to the inside of the air inlet 11;
[0117] The exhaust pipe 1201 is fixedly connected to the inside of the protective housing 12, and the exhaust pipe 1201 is located behind the lower end of the fixed exhaust pipe 10;
[0118] The intake pipe 1202 is fixedly connected to the inside of the protective housing 12, and the intake pipe 1202 is located behind the air inlet 11;
[0119] The pressing member 32 is slidably connected to the inside of the fixed cylinder;
[0120] The pressing switch 33 is fixedly installed outside the air inlet, and the pressing switch 33 is electrically connected to the driving motor 31.
[0121] When the heat dissipation fan 13 is started, the outside air will be drawn into the lower cabinet 1 through the intake pipe 1202 and then through the protective filter screen 30, and the hot air in the cabinet will pass through the connecting exhaust pipe 9 and the fixed exhaust pipe 10 and then pass through the protective filter screen 30 and be discharged through the exhaust pipe 1201. When the fixed exhaust pipe 10 discharges air, it will blow off the dust on the protective filter screen, reducing the labor intensity and prolonging the service life of the filter screen. When the protective filter screen behind the air inlet 11 is blocked, the operation of the heat dissipation fan 13 will reduce the air pressure inside the air inlet. At this time, the pressing member 32 will slide towards the inside of the air inlet 11 under the action of the air pressure. Since the pressing member 32 is fixedly connected to the pressing switch 33, the sliding of the pressing member 32 will trigger the pressing switch 33. At this time, the driving motor 31 will be started, and the start of the driving motor 31 will drive the rotating roller 29 to rotate. The rotation of the rotating roller 29 will drive the protective filter screen 30 covered outside the rotating roller 29 to move, replacing a part of the protective filter screen 30 behind the air inlet 11. Replacing the protective filter screen ensures the heat dissipation of the server in the cabinet, prolongs the service life of the server, and reduces the economic loss.
[0122] The present invention provides a cloud computing server cabinet. There are many methods and ways to specifically implement this technical solution. The above description is only the preferred embodiment of the present invention. It should be noted that for those of ordinary skill in the art of this technology, without departing from the principle of the present invention, several improvements and refinements can be made, and these improvements and refinements should also be regarded as the protection scope of the present invention. Each component not clearly defined in this embodiment can be implemented by using the prior art.
Claims
1. A cloud computing server cabinet, characterized in that, It includes a cabinet body mechanism, a fixing mechanism, an adjusting mechanism, and a heat dissipation mechanism; The fixing mechanism is fixedly connected to the cabinet body mechanism; The adjusting mechanism is fixedly connected to the cabinet body mechanism; The heat dissipation mechanism is fixedly connected to the cabinet body mechanism.
2. The cloud computing server cabinet according to claim 1, characterized in that, The cabinet body mechanism includes: a lower cabinet body (1), a connecting cabinet body (2), an upper cabinet body (3), a lower cabinet door (4), a connecting cabinet door (5), and an upper cabinet door (6); The connecting cabinet body (2) is slidably connected to the inside of the lower cabinet body (1); The upper cabinet body (3) is fixedly connected to the upper end of the connecting cabinet body (2); The lower cabinet door (4) is hinged to the front end face of the lower cabinet body (1); The connecting cabinet door (5) is slidably connected to the inside of the lower cabinet door (4); The upper cabinet door (6) is fixedly connected to the upper end face of the connecting cabinet door, and the upper cabinet door (6) is hinged to the front end face of the upper cabinet body.
3. A cloud computing server cabinet according to claim 2, characterized in that, The fixing mechanism includes a first fixing housing (7) and a second fixing housing (8); There are two first fixing housings (7), and both of the two first fixing housings are fixedly connected to the outside of the lower cabinet body; the second fixing housing (8) is fixedly connected to the rear of the lower cabinet body.
4. The cloud computing server cabinet according to claim 3, characterized in that, The adjusting mechanism includes: an adjusting support plate (14), a sliding frame (15), a tension spring (16), and a rotating cam (17); The adjusting support plate (14) is slidably connected to the inside of the lower cabinet body (1); There are two sliding frames (15), and both of the two sliding frames are slidably connected to the inside of the adjusting support plate (14); There are two tension springs (16), and both ends of the two tension springs are respectively fixedly connected to the outside of the two sliding frames (15); The rotating cam (17) is rotatably connected to the inside of the adjusting support plate.
5. A cloud computing server cabinet according to claim 4, characterized in that, The adjusting mechanism includes a limit plug (18), a compression spring (19), and a limit slot (20); There are multiple groups of limit plugs (18), and all multiple groups of limit plugs (18) are slidably connected to the inside of the adjusting support plate (14); There are multiple groups of compression springs (19), one ends of the multiple groups of compression springs (19) are respectively fixedly connected to the outside of the multiple groups of limit plugs (18), and the other ends of the multiple groups of compression springs (19) are all fixedly connected to the inside of the adjusting support plate (14).
6. The cloud computing server cabinet according to claim 5, wherein, The adjusting mechanism includes a connecting rotating shaft (21), an adjusting worm (22), and an adjusting worm gear (23); There are two connecting rotating shafts (21), and the two connecting rotating shafts (21) are respectively rotatably connected to the inside of the two first fixing housings (7); There are two groups of adjusting worms (22), and the two groups of adjusting worms (22) are respectively fixedly connected to the outside of the two connecting rotating shafts (21); There are two groups of adjusting worm gears (23), and the two groups of adjusting worm gears (23) are respectively rotatably connected to the inside of the two first fixing housings (7), and the two groups of adjusting worm gears (23) are meshed with the two groups of adjusting worms (22).
7. The cloud computing server cabinet according to claim 6, wherein, The adjusting mechanism includes an adjusting threaded rod (24) and a fixed threaded part (25); There are two groups of adjusting threaded rods (24), and the two groups of adjusting threaded rods (24) are respectively fixedly connected to the upper end faces of the two groups of adjusting worm gears (23); There are two sets of the fixed threaded members (25), and both sets of fixed threaded members (25) are fixedly connected to the outside of the upper cabinet body (3). The two sets of fixed threaded members (25) are respectively threadedly connected to the two sets of adjusting threaded rods (24).
8. A cloud computing server cabinet according to claim 7, characterized in that, The adjusting mechanism includes a connecting pulley (26), a connecting belt (27) and an operating member (28); There are two connecting pulleys (26), and the two connecting pulleys (26) are respectively fixedly connected to the rear end faces of the two connecting rotating shafts (21); The connecting belt (27) is wrapped around the outside of the two connecting pulleys (26); The operating member (28) is fixedly connected to the rear end face of the left connecting pulley (26).
9. A cloud computing server cabinet according to claim 1, characterized in that, The heat dissipation mechanism includes: a heat dissipation fan (13), a rotating roller (29), a protective filter screen (30), a driving motor (31), a connecting exhaust pipe (9), a fixed exhaust pipe (10), an air inlet (11) and a protective housing (12); The connecting exhaust pipe (9) is fixedly connected to the rear end face of the upper cabinet body (3), and the connecting exhaust pipe (9) is communicated with the inside of the upper cabinet body (3); The fixed exhaust pipe (10) is fixedly connected to the rear end face of the lower cabinet body (1); The air inlet (11) is fixedly connected to the rear end face of the lower cabinet body (1); The protective housing (12) is fixedly connected to the rear end faces of the fixed exhaust pipe (10) and the air inlet (11); There are two heat dissipation fans (13), and both of the two heat dissipation fans (13) are fixedly installed inside the air inlet (11); There are two rotating rollers (29), and both of the two rotating rollers (29) are rotatably connected inside the protective housing (12); The protective filter screen (30) is wrapped around the outside of the two rotating rollers (29); The driving motor (31) is fixedly installed on the outside of the protective housing (12), and the rotating shaft of the driving motor (31) is fixedly connected to the lower rotating roller (29).
10. A cloud computing server cabinet according to claim 9, characterized in that, The heat dissipation mechanism includes: a fixed cylinder (1101), an exhaust pipe (1201), an intake pipe (1202), a pressing member (32) and a pressing switch (33); The fixed cylinder (1101) is fixedly connected inside the air inlet (11); The exhaust pipe (1201) is fixedly connected inside the protective housing (12), and the exhaust pipe (1201) is located behind the lower end of the fixed exhaust pipe (10); The intake pipe (1202) is fixedly connected inside the protective housing (12), and the intake pipe (1202) is located behind the air inlet (11); The pressing member (32) is slidably connected inside the fixed cylinder; The pressing switch (33) is fixedly installed on the outside of the air inlet, and the pressing switch (33) is electrically connected to the driving motor (31).