Rapidly-deployed multifunctional prefabricated modular data center structure
Through the multifunctional prefabricated modular data center structure, the use of I-shaped plug-in plates and convex slots and other mechanisms has solved the problem that traditional data centers cannot adapt to customized needs, achieved flexible splicing and stable deployment, and improved the convenience of transportation and deployment.
Patent Information
- Application Number
- CN202511295767.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-11
- Publication Date
- 2025-10-10
- Estimated Expiration
- 2045-09-11
Smart Images

Figure CN120769448A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of data center structures, and in particular to a rapidly deployable multifunctional prefabricated modular data center structure. Background Art
[0002] A data center is a physical place where computing, storage, and network equipment are centrally stored. It is used to manage and process data information. It can provide various organizations with the necessary infrastructure to support their information technology needs, including but not limited to data storage, application hosting, network services, etc. With the acceleration of digital transformation and the development of cloud computing technology, the importance of data centers has become increasingly prominent.
[0003] At present, traditional data centers usually adopt standardized designs, such as uniform size, interface and power density. However, in actual use, specific application scenarios (such as edge computing nodes) require compact or distributed layout solutions. Standardized modules are difficult to adapt to such highly customized physical configuration requirements and are difficult to meet people's personalized needs in special scenarios. Moreover, the current data center structure is fixed and cannot be easily disassembled or resized to adapt to different transportation tools or access channels inside the building. There are also great inconveniences during transportation and deployment. Summary of the Invention
[0004] In view of this, the present invention provides a rapidly deployable multifunctional prefabricated modular data center structure that can overcome the difficulties that standardized modules have in adapting to highly customized physical configuration requirements and meeting people's personalized needs in special scenarios. In addition, the current data center structure is fixed and cannot be easily disassembled or resized to accommodate different means of transportation or access passages inside buildings. There are also significant inconveniences during transportation and deployment.
[0005] Technical solution: A rapidly deployable multifunctional prefabricated modular data center structure, comprising a mounting base, an IT module, a radiator, a first mounting plate, a second mounting plate, a cross plate, an I-shaped plug plate, and a connecting mechanism. A radiator is installed on the rear side of the IT module, the top of the IT module is connected to the first mounting plate, the bottom of the IT module is connected to the second mounting plate, the top of the mounting base and the top of the first mounting plate are both connected to cross plates, the tops of the cross plates are each provided with a convex slot, the bottom of the second mounting plate is connected to an I-shaped plug plate, the I-shaped plug plate can be inserted into the convex slot to splice the mounting base and the IT module, and the connecting mechanism is used to connect two adjacent IT modules.
[0006] In a preferred embodiment of the present invention, the connection mechanism includes a rotating shaft, a spur gear, a slide, a spur rack, a plug, a rotating plate, an interface and a switching component. The left and right sides of the IT module are rotatably connected to the rotating shaft, and the rotating shaft is connected to the spur gear. The left and right sides of the bottom of the IT module are slidably connected to the slides, and the slides are connected to the spur racks. The spur racks and the spur gears are meshed. Plugs are evenly spaced at the bottom of the slide. The left and right sides of the top of the IT module are rotatably connected to the rotating plates. Interfaces are evenly spaced on the upper and lower sides and the left and right sides of the rotating plate. The plugs and the interfaces are electrically connected to the IT module. The switching component is used to switch the interfaces.
[0007] In a preferred embodiment of the present invention, the switching component includes a space cam, a limit block, a first slider, a second slider, a first spring and a semicircular block. Installation openings are provided on both the left and right sides of the top of the IT module. The space cams are rotatably connected in the installation openings. The space cams are connected to the rotating plate. Four limit blocks are evenly spaced and connected in the installation openings. The first sliders are slidably connected in the installation openings. The second sliders are slidably connected on the first sliders. A first spring is connected between the second slider and the first slider. The second sliders are provided with limit grooves. The limit blocks are located in the limit grooves. Semicircular blocks are connected to the bottom of the first slider. The semicircular blocks are located in the sliding grooves of the space cams.
[0008] In a preferred embodiment of the present invention, a connecting mechanism is further included, which includes a sliding block, a screw, a sliding frame, a moving block, a plug shaft and a fixed component. The upper and lower sides of the front side of the IT module are symmetrically and slidingly connected with sliding blocks, the sliding blocks are connected to screws through threads, the sliding blocks are connected to sliding frames, the sliding frames have two sockets, the sliding frames are slidably connected with moving blocks, the moving blocks are connected to plug shafts, the plug shafts can be inserted into the sockets to connect the two IT modules, and the fixed component is used to fix the moving blocks.
[0009] In a preferred embodiment of the present invention, the fixing assembly includes a guide block, a wedge block and a second spring, a slot is opened on the moving block, a guide block is connected to the sliding frame, a wedge block is slidably connected to the guide block for fixing the moving block, and a second spring is connected between the wedge block and the guide block.
[0010] In a preferred embodiment of the present invention, a stabilizing mechanism is further included, which includes a third mounting plate, a fourth mounting plate, a plug, a short shaft, a rotating block and a long shaft. The third mounting plate is connected to the left side of the IT module, the fourth mounting plate is connected to the right side of the IT module, the plug is connected to the right side of the fourth mounting plate, the middle part of the third mounting plate is rotatably connected to the short shaft, the short shaft is connected to the rotating block, the rotating block is provided with a socket, the plug can be inserted into the socket to connect the two IT modules, the long shaft is rotatably connected inside the IT module, and the long shaft and the short shaft are driven by bevel gears.
[0011] In a preferred embodiment of the present invention, a limiting mechanism is further included, which includes a limiting plate, a splicing plate, a mounting frame and a stop rod. Splicing grooves are provided on the top of the mounting seat and the top of the limiting plate. The bottom of the limiting plate is connected to a splicing plate, which can be inserted into the splicing groove to splice the mounting seat and the limiting plate. The limiting plate can limit the IT module. The limiting plate is connected to the mounting frame, and stop rods are evenly spaced inside the mounting frame.
[0012] In a preferred embodiment of the present invention, a protection mechanism is further included. The protection mechanism includes a connecting plate and a roller. The front side of the limiting plate is connected to the connecting plate, and the front side of the connecting plate is rotatably connected to the roller at even intervals.
[0013] In a preferred embodiment of the present invention, a dustproof mechanism is further included. The dustproof mechanism includes a circular frame and a sponge strip. The left and right sides of the bottom of the IT module are connected to the circular frame, and the bottom of the circular frame is connected to the sponge strip.
[0014] Compared with the prior art, the present invention has the following advantages: 1. The present invention can splice the mounting base and IT module, or two IT modules, by inserting the I-shaped plug-in plate into the convex-shaped slot. The appropriate number of IT modules and deployment positions can be selected according to the usage scenario to meet people's personalized needs in special scenarios. In addition, the IT module can be disassembled and easily disassembled for convenient transportation and deployment.
[0015] 2. By inserting the plug shaft into the socket, the two sliding frames can be connected, thereby connecting the left and right IT modules to improve the stability of the IT module.
[0016] 3. By inserting the rod into the socket, the left and right IT modules can be connected to further improve the stability of the IT module. The angle of the rotating block can be adjusted to adapt to uneven ground or specific space requirements. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 It is a schematic diagram of the three-dimensional structure of the present invention.
[0018] Figure 2 It is a schematic diagram of the three-dimensional structure of the IT module and the radiator of the present invention.
[0019] Figure 3 It is a schematic diagram of the three-dimensional structure of the horizontal plate and the convex-shaped slot of the present invention.
[0020] Figure 4 It is a schematic diagram of the three-dimensional structure of the I-shaped plugboard of the present invention.
[0021] Figure 5 This is a schematic diagram of the first three-dimensional structure of the connection mechanism of the present invention.
[0022] Figure 6 This is a schematic diagram of the second three-dimensional structure of the connection mechanism of the present invention.
[0023] Figure 7 For the present invention Figure 6 Enlarged view of part A.
[0024] Figure 8 It is a schematic diagram of the three-dimensional structure of the second sliding block, the first spring, the limiting groove and the semicircular block of the present invention.
[0025] Figure 9 This is a first cross-sectional view of the IT module of the present invention.
[0026] Figure 10 This is an enlarged view of part B in the present invention 9.
[0027] Figure 11 This is a second cross-sectional view of the IT module of the present invention.
[0028] Figure 12 This is a third cross-sectional view of the IT module of the present invention.
[0029] Figure 13 This is a schematic diagram of the first three-dimensional structure of the connecting mechanism of the present invention.
[0030] Figure 14 This is a schematic diagram of the second three-dimensional structure of the connecting mechanism of the present invention.
[0031] Figure 15 This is a state diagram of the plug shaft of the present invention being inserted into the socket.
[0032] Figure 16 It is a schematic diagram of the three-dimensional structure of the stabilizing mechanism of the present invention.
[0033] Figure 17 It is a schematic diagram of the three-dimensional structure of the jack and the long shaft of the present invention.
[0034] Figure 18 It is a schematic diagram of the three-dimensional structure of the splicing groove of the present invention.
[0035] Figure 19 It is a schematic diagram of the three-dimensional structure of the limiting mechanism of the present invention.
[0036] Figure 20 It is a schematic diagram of the three-dimensional structure of the protection mechanism of the present invention.
[0037] The above drawings include the following reference numerals: 1, mounting base, 2, IT module, 3, radiator, 4, first mounting plate, 5, second mounting plate, 6, horizontal plate, 7, convex slot, 8, I-shaped insert plate, 9, rotating shaft, 10, spur gear, 11, slide plate, 12, spur rack, 13, plug, 14, rotating plate, 15, interface, 16, mounting opening, 17, space cam, 18, limit block, 19, first slider, 20, second slider, 21, first spring, 22, limit groove, 221, semicircular block, 23. Sliding block, 24. Screw, 25. Sliding frame, 26. Socket, 261. Moving block, 262. Insert shaft, 27. Slot, 28. Guide block, 29. Wedge block, 30. Second spring, 31. Third mounting plate, 32. Fourth mounting plate, 33. Insert rod, 34. Short shaft, 35. Rotating block, 36. Socket, 37. Long shaft, 38. Splicing groove, 39. Limiting plate, 40. Splicing plate, 41. Mounting frame, 42. Stop rod, 43. Connecting plate, 44. Roller, 45. Reciprocating frame, 46. Sponge strip. DETAILED DESCRIPTION
[0038] To make the objectives, technical solutions, and advantages of the present invention more clearly understood, the present invention will be further described in detail below in conjunction with specific embodiments and with reference to the accompanying drawings. It should be understood that these descriptions are merely exemplary and are not intended to limit the scope of the present invention. In addition, in the following description, descriptions of well-known structures and technologies are omitted to avoid unnecessary confusion of the concepts of the present invention.
[0039] See also Figures 1-12 A multifunctional prefabricated modular data center structure for rapid deployment includes a mounting base 1, an IT module 2, a radiator 3, a first mounting plate 4, a second mounting plate 5, a cross plate 6, an I-shaped plug-in plate 8, and a connecting mechanism. Radiators 3 are symmetrically installed on the left and right sides of the rear side of the IT module 2. The top of the IT module 2 is connected to the first mounting plate 4, and the bottom of the IT module 2 is connected to the second mounting plate 5. Cross plates 6 are connected to the left and right sides of the top of the mounting base 1 and the left and right sides of the top of the first mounting plate 4. A convex slot 7 is opened on the top of the cross plate 6. The left and right sides of the bottom of the second mounting plate 5 are connected to the I-shaped plug-in plate 8. The connecting mechanism is used to connect two adjacent IT modules 2.
[0040] See also Figures 5-12The connection mechanism includes a rotating shaft 9, a spur gear 10, a slide 11, a spur rack 12, a plug 13, a rotating plate 14, an interface 15 and a switching component. The left and right sides of the lower part of the IT module 2 are rotatably connected to the rotating shaft 9. The front and rear parts of the rotating shaft 9 are connected to the spur gears 10 through keys. The left and right sides of the bottom of the IT module 2 are slidably connected to the slides 11. The side of the slide 11 facing the rotating shaft 9 is connected to four spur racks 12. The spur racks 12 are engaged with the spur gears 10. Plugs 13 are evenly spaced at the bottom of the slide 11. The left and right sides of the top of the IT module 2 are rotatably connected to the rotating plates 14. Interfaces 15 are evenly spaced on the upper and lower sides and the left and right sides of the rotating plate 14. The plugs 13 and the interfaces 15 are electrically connected to the IT module 2. The switching component is used to switch the interfaces 15.
[0041] See also Figure 6 、 Figure 7 、 Figure 8 、 Figure 11 and Figure 12 The switching assembly includes a space cam 17, a limit block 18, a first slider 19, a second slider 20, a first spring 21 and a semicircular block 221. The IT module 2 has mounting openings 16 on both sides of the top, and the space cam 17 is rotatably connected in the mounting openings 16. The front end of the space cam 17 is connected to the rear side of the rotating plate 14. Four limit blocks 18 are evenly spaced and connected in the mounting openings 16. The first slider 19 is slidably connected in the mounting openings 16. The second slider 20 is slidably connected on the first slider 19. A first spring 21 is connected between the second slider 20 and the first slider 19. The second slider 20 has a limit groove 22. The limit block 18 is located in the limit groove 22. The bottom of the first slider 19 is connected to a semicircular block 221, and the semicircular block 221 is located in the slide groove of the space cam 17 (the slide groove is not numbered, in Figure 7 、 Figure 9 and Figure 11 can be seen in ).
[0042] People can insert the I-shaped plug-in plate 8 on the IT module 2 into the convex slot 7 on the mounting base 1 to splice the mounting base 1 and the IT module 2, and then insert the I-shaped plug-in plate 8 on another IT module 2 into the convex slot 7 on the IT module 2 to splice the two IT modules 2. The appropriate number of IT modules 2 and deployment positions can be selected according to the usage scenario to meet people's personalized needs in special scenarios. The IT module 2 can be disassembled and can be easily disassembled for convenient transportation and deployment. The radiator 3 can dissipate heat for the IT module 2 to prevent the IT module 2 from being damaged due to excessive temperature. Then rotate the shaft 9, the shaft 9 drives the spur gear 10 to rotate, the spur gear 10 drives the spur rack 12 to move downward, the spur rack 12 drives the slide 11 to move downward, the slide 11 drives the plug 13 to move downward, and the plug 13 is inserted into the interface 15 to connect the corresponding For two adjacent IT modules 2, if the interface 15 and the plug 13 at the top of the rotating plate 14 do not match, people can push the second slider 20 to disengage the limit block 18 and the limit slot 22, compress the first spring 21, and then push the first slider 19 forward. The first slider 19 drives the semicircular block 221 to move forward, and the semicircular block 221 slides in the slide slot of the space cam 17, so that the space cam 17 can rotate. The space cam 17 drives the rotating plate 14 to rotate, and the rotating plate 14 drives the interface 15 to rotate, switch the interface 15, and rotate the matching interface 15 to correspond to the plug 13 to adapt to different plugs 13, and then release the second slider 20. Under the action of the first spring 21, the second slider 20 is reset, so that the limit block 18 is inserted into the limit slot 22, thereby limiting the first slider 19 and the semicircular block 221 to prevent the space cam 17 from rotating.
[0043] See also Figures 13-15 , also includes a connecting mechanism, the connecting mechanism includes a sliding block 23, a screw 24, a sliding frame 25, a moving block 261, an insertion shaft 262 and a fixing component. The upper and lower sides of the front side of the IT module 2 are symmetrically slidably connected with the sliding blocks 23. The upper and lower parts of the sliding block 23 are threadedly connected with screws 24. The front sides of the sliding blocks 23 are connected to the sliding frames 25. The sliding frames 25 on the left and right sides have two sockets 26 on the sides away from each other. The two sockets 26 on the same sliding frame 25 are arranged opposite to each other. The sliding blocks 261 are slidably connected in the sliding frames 25. The side of the moving block 261 facing the socket 26 is connected with the insertion shaft 262. The fixing component is used to fix the moving block 261.
[0044] See also Figure 14 and Figure 15The fixed component includes a guide block 28, a wedge block 29 and a second spring 30. The moving block 261 is provided with a slot 27. The sliding frame 25 is connected to the guide block 28. The guide block 28 is slidably connected to the wedge block 29. The inclined surface of the wedge block 29 faces the moving block 261. Two second springs 30 are connected between the wedge block 29 and the guide block 28.
[0045] When the IT module 2 is spliced in the left and right directions, the sliding frame 25 can be moved up and down so that the two sliding frames 25 contact each other, and then the screws 24 are tightened to fix the sliding block 23 and the sliding frame 25, and then the moving block 261 is pushed to drive the plug shaft 262 to move, and the plug shaft 262 is inserted into the socket 26 to connect the two sliding frames 25, thereby connecting the left and right IT modules 2 to improve the stability of the IT module 2. During the movement, the moving block 261 will contact the inclined surface on the wedge block 29 and push the wedge block 29 to move the wedge block 29, and the second spring 30 will be compressed. When the wedge block 29 and the slot 27 correspond, under the action of the second spring 30, the wedge block 29 will be inserted into the slot 27 to fix the moving block 261 and prevent the moving block 261 from moving, thereby preventing the plug shaft 262 from moving out of the socket 26.
[0046] See also Figure 1 、 Figure 16 and Figure 17 , also includes a stabilizing mechanism, the stabilizing mechanism includes a third mounting plate 31, a fourth mounting plate 32, a plug 33, a short shaft 34, a rotating block 35 and a long shaft 37, the third mounting plate 31 is connected to the left side of the IT module 2, the fourth mounting plate 32 is connected to the right side of the IT module 2, two plug rods 33 are connected to the middle of the right side of the fourth mounting plate 32, the two plug rods 33 are arranged opposite to each other up and down, the middle of the third mounting plate 31 is rotatably connected to the short shaft 34, the left end of the short shaft 34 is connected to the rotating block 35, the upper and lower parts of the rotating block 35 are provided with sockets 36, the middle of the left side of the IT module 2 is rotatably connected to the long shaft 37, and the long shaft 37 and the short shaft 34 are driven by bevel gears.
[0047] When the IT modules 2 are being spliced in the left and right directions, the rod 33 can be inserted into the socket 36 to connect the left and right IT modules 2, thereby further improving the stability of the IT modules 2. During the deployment of the IT modules 2, the angle of the IT modules 2 will be fine-tuned according to actual needs. At this time, the long shaft 37 can be rotated, and the long shaft 37 drives the short shaft 34 to rotate through the bevel gear, and the short shaft 34 drives the rotating block 35 to rotate, so that the angles of the rotating block 35 and the rod 33 are consistent, ensuring that the rod 33 can be inserted into the socket 36 to adapt to uneven ground or specific space requirements.
[0048] See also Figure 18 and Figure 19It also includes a limiting mechanism, the limiting mechanism includes a limiting plate 39, a splicing plate 40, a mounting frame 41 and a blocking rod 42, the top rear side of the mounting seat 1 and the top of the limiting plate 39 are provided with splicing grooves 38, the bottom of the limiting plate 39 is connected with the splicing plate 40, the limiting plate 39 is connected with the mounting frame 41, and the mounting frame 41 is uniformly and spacedly connected with the blocking rod 42.
[0049] People can insert the splicing plate 40 on the limiting plate 39 into the splicing groove 38 on the mounting seat 1, splice the limiting plate 39 to the mounting seat 1, and limit the IT module 2, so as to avoid the IT module 2 from sliding backward, the top of the limiting plate 39 is also provided with the splicing groove 38, and the limiting plate 39 can be spliced, so as to limit the IT module 2 on the upper layer, and the blocking rod 42 can block external objects, so as to avoid that the external objects touch the rear side of the IT module 2.
[0050] Please refer to Figure 20 It also includes a protection mechanism, the protection mechanism includes a connecting plate 43 and a roller 44, and the left and right sides of the front side of the limiting plate 39 are connected with the connecting plate 43, and the front side of the connecting plate 43 is uniformly and spacedly rotatably connected with the roller 44.
[0051] When the limiting plate 39 is spliced to the mounting seat 1, the roller 44 slides at the rear side of the IT module 2, so as to avoid friction between the limiting plate 39 and the rear side of the IT module 2, thereby avoiding abrasion of the rear side of the IT module 2.
[0052] Please refer to Figure 5 It also includes a dustproof mechanism, the dustproof mechanism includes a back-shaped frame 45 and a sponge strip 46, and the left and right sides of the bottom of the IT module 2 are connected with the back-shaped frame 45, and the bottom of the back-shaped frame 45 is connected with the sponge strip 46.
[0053] When the IT module 2 is spliced in the up-down direction, the back-shaped frame 45 can cover the plug 13 and the interface 15, so as to avoid dust from floating on the plug 13 and the interface 15, and the sponge strip 46 is in contact with the top of the IT module 2, so as to avoid friction between the back-shaped frame 45 and the top of the IT module 2, thereby avoiding abrasion of the top of the IT module 2.
[0054] The above only describes the embodiment of the present application and is not used to limit the present application. Any equivalent replacement within the principle of the present application shall be included in the protection scope of the present application. The contents not described in detail in the present application belong to the prior art known by the person skilled in the art.
Claims
1. A rapidly deployable multifunctional prefabricated modular data center structure comprising a mounting base (1), characterized in that: The invention also includes an IT module (2), a radiator (3), a first mounting plate (4), a second mounting plate (5), a transverse plate (6), an I-shaped insert plate (8) and a connection mechanism. The radiator (3) is installed on the rear side of the IT module (2). The top of the IT module (2) is connected to the first mounting plate (4). The bottom of the IT module (2) is connected to the second mounting plate (5). The top of the mounting seat (1) and the top of the first mounting plate (4) are both connected to the transverse plate (6). The top of the transverse plate (6) is provided with a convex slot (7). The bottom of the second mounting plate (5) is connected to the I-shaped insert plate (8). The I-shaped insert plate (8) can be inserted into the convex slot (7) to splice the mounting seat (1) and the IT module (2). The connection mechanism is used to connect two adjacent IT modules (2).
2. A rapidly deployable multifunctional prefabricated modular data center structure according to claim 1, characterized in that: The connection mechanism includes a rotating shaft (9), a spur gear (10), a slide (11), a spur rack (12), a plug (13), a rotating plate (14), an interface (15) and a switching component. The IT module (2) is rotatably connected to the rotating shaft (9) on both the left and right sides. The rotating shaft (9) is connected to the spur gear (10). The IT module (2) is slidably connected to the slides (11) on both the left and right sides. The slides (11) are connected to the spur rack (12). The spur rack (12) and the spur gear (10) are meshed. The bottom of the slide (11) is evenly spaced with plugs (13). The top of the IT module (2) is rotatably connected to the left and right sides. The rotating plate (14) is evenly spaced with interfaces (15) on both the upper and lower sides and the left and right sides. The plug (13) and the interface (15) are electrically connected to the IT module (2). The switching component is used to switch the interface (15).
3. A rapidly deployable multifunctional prefabricated modular data center structure according to claim 2, characterized in that: The switching assembly includes a space cam (17), a limit block (18), a first slider (19), a second slider (20), a first spring (21) and a semicircular block (221). The IT module (2) has mounting openings (16) on both the left and right sides of the top. The mounting openings (16) are rotatably connected to the space cam (17). The space cam (17) is connected to the rotating plate (14). Four limit blocks (18) are evenly spaced and connected to the mounting openings (16). The mounting openings (16) are slidably connected to the first slider (19). The first slider (19) is slidably connected to the second slider (20). A first spring (21) is connected between the second slider (20) and the first slider (19). The second slider (20) and the first slider (19) have limiting grooves (22) on them. The limit blocks (18) are located in the limiting grooves (22). The bottom of the first slider (19) is connected to the semicircular block (221). The semicircular block (221) is located in the sliding groove of the space cam (17).
4. A rapidly deployable multifunctional prefabricated modular data center structure according to claim 1, characterized in that: The invention also includes a connecting mechanism, which includes a sliding block (23), a screw (24), a sliding frame (25), a moving block (261), an insert shaft (262) and a fixing component. The upper and lower sides of the front side of the IT module (2) are both symmetrically connected to the sliding block (23) in a sliding manner. The sliding block (23) is connected to the screw (24) by a thread. The sliding block (23) is connected to the sliding frame (25). The sliding frame (25) has two sockets (26). The sliding frame (25) is slidably connected to the moving block (261). The moving block (261) is connected to the insert shaft (262). The insert shaft (262) can be inserted into the socket (26) to connect the two IT modules (2). The fixing component is used to fix the moving block (261).
5. A rapidly deployable multifunctional prefabricated modular data center structure according to claim 4, characterized in that: The fixing assembly includes a guide block (28), a wedge block (29) and a second spring (30). The movable block (261) is provided with a slot (27). The sliding frame (25) is connected with a guide block (28). The guide block (28) is slidably connected with a wedge block (29) for fixing the movable block (261). The second spring (30) is connected between the wedge block (29) and the guide block (28).
6. A rapidly deployable multifunctional prefabricated modular data center structure according to claim 1, characterized in that: The invention also includes a stabilizing mechanism, which includes a third mounting plate (31), a fourth mounting plate (32), a plug rod (33), a short shaft (34), a rotating block (35) and a long shaft (37). The left side of the IT module (2) is connected to the third mounting plate (31), the right side of the IT module (2) is connected to the fourth mounting plate (32), the right side of the fourth mounting plate (32) is connected to the plug rod (33), the middle part of the third mounting plate (31) is rotatably connected to the short shaft (34), the short shaft (34) is connected to the rotating block (35), the rotating block (35) is provided with a socket (36), the plug rod (33) can be inserted into the socket (36), and the two IT modules (2) are connected. The long shaft (37) is rotatably connected inside the IT module (2), and the long shaft (37) and the short shaft (34) are driven by bevel gears.
7. A rapidly deployable multifunctional prefabricated modular data center structure according to claim 1, characterized in that: The invention also includes a limiting mechanism, which includes a limiting plate (39), a splicing plate (40), a mounting frame (41) and a stopper (42). The top of the mounting seat (1) and the top of the limiting plate (39) are both provided with a splicing groove (38). The bottom of the limiting plate (39) is connected to the splicing plate (40). The splicing plate (40) can be inserted into the splicing groove (38) to splice the mounting seat (1) and the limiting plate (39). The limiting plate (39) can limit the IT module (2). The limiting plate (39) is connected to the mounting frame (41). The mounting frame (41) is evenly spaced and connected to the stopper (42).
8. A rapidly deployable multifunctional prefabricated modular data center structure according to claim 7, characterized in that: The device further comprises a protection mechanism, which comprises a connecting plate (43) and a roller (44). The front side of the limiting plate (39) is connected to the connecting plate (43), and the front side of the connecting plate (43) is rotatably connected to the roller (44) at even intervals.
9. A rapidly deployable multifunctional prefabricated modular data center structure according to claim 2, characterized in that: The dustproof mechanism also includes a circular frame (45) and a sponge strip (46). The left and right sides of the bottom of the IT module (2) are connected to the circular frame (45), and the bottom of the circular frame (45) is connected to the sponge strip (46).
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