Machine room anti-seismic base
By designing a multi-stage energy dissipation structure and adjusting components for the seismic base of the computer room, the problems of low energy dissipation efficiency and insufficient drainage in existing technologies have been solved, achieving a more efficient seismic resistance and protection effect.
Patent Information
- Application Number
- CN202310739825.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-06-21
- Publication Date
- 2025-12-26
- Estimated Expiration
- 2043-06-21
AI Technical Summary
The existing vibration damping structure of the computer room has low energy dissipation efficiency, the base cannot be raised or lowered and cannot effectively drain water, resulting in insufficient safety of the computer room equipment.
An anti-seismic base for a computer room was designed, comprising a lower support component, an upper support component, an adjustment component, and a dehumidification component. It adopts a multi-stage energy dissipation structure, using rubber balls, rubber rings, springs, and rollers to dissipate energy. The height is adjusted by a motor, and it is equipped with a drainage system and dehumidification louvers.
It improves the earthquake resistance of the computer room, reduces vibration amplitude, ensures equipment safety, and allows for height adjustment to drain accumulated water, thus enhancing the protective performance of the computer room.
Smart Images

Figure CN116733275B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application relates to the technical field of building installation engineering, and particularly discloses an anti-seismic base for a machine room. BACKGROUND
[0002] Data carried by a data center machine room is very important. The data storage equipment needs to be in a non-stop state for a long time, and the stored data is very important. Some equipment is the key to the operation of a business system, but the general machine room has weak damping and anti-seismic capacity, so that the safety of the internal equipment cannot be guaranteed after the machine room is disturbed by external factors, and the internal equipment is prone to damage, thereby affecting the subsequent use of the machine room.
[0003] The existing protection measure is to connect the machine room and the ground through a damping support, and the damping support is directly fixed to the ground. When the ground is subjected to a large vibration impact, the lower part of the support is prone to deformation and separation from the ground, thereby causing damage to the building on the upper part of the support. For example, the patent file with the publication number CN216239975U discloses a smart campus prefabricated machine room with an anti-seismic structure. The bottom of the machine room body is fixedly installed with four connecting plates through bolts, and the four connecting plates are arranged at the four corners of the bottom of the machine room body. The lower surface of the connecting plate is fixedly installed with a damping assembly, and the bottom of the damping assembly is fixedly installed with a base. The anti-seismic assembly is fixedly installed between the connecting plate and the base. The damping structure of the patent file is relatively single and weak, so that the energy dissipation efficiency is low, thereby possibly causing a large vibration amplitude of the machine room. Moreover, the damping structure of the machine room cannot adjust the lifting of the machine room. Rainwater is prone to accumulate under the machine room after raining, which has the risk of flowing into the machine room. Long-term accumulation of rainwater can affect the machine room, and is not conducive to the actual application of the machine room. SUMMARY
[0004] The application aims to provide an anti-seismic base for a machine room to solve the problems of low energy dissipation efficiency of the damping structure, non-lifting of the base and non-drainage.
[0005] To achieve the above-mentioned purpose, the application provides the following technical scheme: an anti-seismic base for a machine room for anti-seismic of the machine room, comprising a lower support assembly, an upper support assembly, an adjusting assembly and a dehumidifying assembly. The upper support assembly is movably arranged on the upper end of the lower support assembly. The adjusting assembly is arranged between the lower support assembly and the upper support assembly. The dehumidifying assembly is symmetrically arranged on both sides of the lower support assembly.
[0006] The lower support assembly comprises a support seat, a first supporting rod and a second supporting rod. The first supporting rod is rotatably arranged at the bottom of the support seat. The first supporting rod is inserted into the second supporting rod. The first supporting rod is movably connected with the second supporting rod through a rubber ball.
[0007] The upper support assembly comprises a first support plate, a third support rod, a first spring and a roller, the machine room is fixedly arranged on the upper end of the first support plate, the first support plate is rollingly connected with the inner wall of the support base through the roller, the third support rod is rotatably arranged on the lower end of the first support plate, the third support rod is obliquely arranged, and the first spring is arranged between the middle part of the third support rod and the first support plate;
[0008] The adjusting assembly comprises a driving part, a lifting part and a damping support, the driving part comprises a motor and a first bevel gear, the motor is fixedly arranged on the middle part of the lower end of the first support plate, the first bevel gear is fixedly connected with the output shaft of the motor, the lifting part comprises a lead screw, a second bevel gear is fixedly arranged on the lead screw, the first bevel gear is in meshing transmission connection with the second bevel gear, the upper end of the damping support is fixedly connected with the lifting part, and the lower end is fixedly connected with the support base;
[0009] The dehumidification assembly comprises a long-stroke electromagnet and a louver, the long-stroke electromagnet is fixedly arranged on the upper surface of the support base, and the louver is opened or closed through the long-stroke electromagnet.
[0010] Further, the lower support assembly further comprises a drainage pool, the drainage pool is fixedly arranged on the bottom of the support base, the first support rod is distributed outside the drainage pool, the lower end of the drainage pool is provided with a drain pipe, a plurality of first drainage holes are formed in the bottom of the support base, the adjusting assembly further comprises a support part, the support part is symmetrically arranged at both ends of the support base, the support part is arranged perpendicularly to the driving part, the support part comprises a first support base, a second drainage hole is formed in the bottom of the first support base in penetration, and the second drainage hole is in communication with the first drainage hole, the drainage pool and the drain pipe.
[0011] Further, the support part further comprises a connecting block and a sliding rod, the connecting block is fixedly arranged on the lower end of the first support plate, the upper end of the sliding rod is fixedly arranged on the lower end of the connecting block, the upper end of the first support base is provided with a second rubber ring, the sliding rod is in sliding connection with the second rubber ring, and the lower end of the sliding rod is fixedly connected with a sliding block.
[0012] Further, the adjusting assembly further comprises a first containing box, the lifting part further comprises a second support base, the first containing box is fixedly arranged on the lower end of the first support plate, the first bevel gear and the second bevel gear are located in the first containing box, the upper end of the second support base is connected with a first connecting piece in a threaded manner, the lower end of the lead screw is connected with the middle part of the first connecting piece in a threaded manner, and a rubber pad is fixedly arranged on the lower end in the second support base.
[0013] Further, the shock-absorbing support base comprises a third support base, a second support plate, the third support base is fixedly arranged in the support base, a second spring is arranged between the third support base and the second support plate, the lower end of the second support plate is inserted into the third support base and is in sliding connection with the third support base, the lifting part is fixedly arranged on the upper end of the second support plate, and the outer ring diameter of the lower end of the second support plate is smaller than the inner ring diameter of the upper end of the third support base.
[0014] Further, the dehumidification assembly further comprises a connecting rod, the support base is symmetrically provided with mounting holes on both sides, square grooves are formed on both sides of the mounting holes, baffles are arranged between the square grooves and the mounting holes, first sliding grooves are arranged on the upper end of the square grooves, the first sliding grooves penetrate through the support base and are in communication with the square grooves, the louver is arranged in the mounting hole and is in rotary connection with the baffle, the connecting rod is arranged in the square groove and is in sliding connection with the first sliding groove and in movable connection with the louver.
[0015] Further, the louver comprises blades, first connecting rods and a second connecting rod, the first connecting rods are symmetrically arranged at both ends of the blades, the blades are arranged in the mounting hole, the first connecting rods penetrate through the baffle, the first connecting rods are in rotary connection with the baffle and the support base, a through hole is formed in the lower part of the connecting rod, a plurality of second connecting rods are arranged in the through hole at intervals, one end of the second connecting rod is fixedly connected with the first connecting rod, a sliding hole is formed in the end of the second connecting rod away from the first connecting rod, and the second connecting rod is in sliding connection with the sliding hole.
[0016] Further, one side of the upper support assembly is provided with a water level detector, and the water level detector is fixedly arranged on one end of the support base outside and close to the louver.
[0017] Further, the first supporting rod is provided with a protruding block on the upper part, the protruding block is located in the second supporting rod, a protruding block is arranged on the inner wall of the second supporting rod, a third spring is arranged between the protruding block and the protruding block, a first rubber ring is fixedly arranged on the upper end of the second supporting rod, a U-shaped groove is formed in the lower end of the second supporting rod, the first supporting rod is inserted into the first rubber ring, the rubber ball is in sliding connection with the U-shaped groove, and a fourth spring is arranged between the second supporting rod and the lower surface of the support base.
[0018] Further, the long-stroke electromagnet comprises a shell, a push rod, a moving iron core, an end cover and a bottom plate, the bottom plate is fixedly arranged on the upper surface of the support base, the shell is arranged on the upper end of the bottom plate, the end cover is arranged on the upper end of the moving iron core, the moving iron core is in sliding connection with the upper end of the shell, the push rod is in sliding connection with the lower end of the shell, the moving iron core and the push rod are both arranged in the shell, one end of the push rod away from the shell is fixedly connected with the connecting rod, and a fifth spring is fixedly arranged between the end cover and the shell.
[0019] Compared with the prior art, the present application has the following advantages:
[0020] 1. The machine room anti-seismic base provided by the present application is provided with multi-stage energy dissipation structures, so that the anti-seismic structure of the machine room is no longer single, the energy dissipation efficiency of the whole anti-seismic base is improved, the amplitude of the machine room is reduced, the anti-seismic capacity of the machine room is improved, and the safety of the equipment inside the machine room is ensured.
[0021] 2. The machine room anti-seismic base provided by the present application is provided with multi-stage energy dissipation structures, so that the anti-seismic structure of the machine room is no longer single, the energy dissipation efficiency of the whole anti-seismic base is improved, the amplitude of the machine room is reduced, the anti-seismic capacity of the machine room is improved, and the safety of the equipment inside the machine room is ensured.
[0022] 3. The machine room anti-seismic base provided by the present application is provided with multi-stage energy dissipation structures, so that the anti-seismic structure of the machine room is no longer single, the energy dissipation efficiency of the whole anti-seismic base is improved, the amplitude of the machine room is reduced, the anti-seismic capacity of the machine room is improved, and the safety of the equipment inside the machine room is ensured.
[0023] 4. The machine room anti-seismic base provided by the present application is provided with multi-stage energy dissipation structures, so that the anti-seismic structure of the machine room is no longer single, the energy dissipation efficiency of the whole anti-seismic base is improved, the amplitude of the machine room is reduced, the anti-seismic capacity of the machine room is improved, and the safety of the equipment inside the machine room is ensured.
[0024] 5. The machine room anti-seismic base provided by the present application is provided with multi-stage energy dissipation structures, so that the anti-seismic structure of the machine room is no longer single, the energy dissipation efficiency of the whole anti-seismic base is improved, the amplitude of the machine room is reduced, the anti-seismic capacity of the machine room is improved, and the safety of the equipment inside the machine room is ensured. BRIEF DESCRIPTION OF DRAWINGS
[0025] Figure 1 It is a structure perspective view of the use state of the first embodiment of the present application.
[0026] Figure 2 It is a structure schematic view of the lower support assembly and the upper support assembly of the first embodiment of the present application.
[0027] Figure 3 It is a structure schematic view of the lower support assembly and the upper support assembly of the first embodiment of the present application. Figure 2 It is a structure schematic view of the lower support assembly and the upper support assembly of the first embodiment of the present application.
[0028] Figure 4 for Figure 3 Enlarged view of point A in the middle;
[0029] Figure 5 for Figure 2 Another cross-sectional view;
[0030] Figure 6 This is a half-section structural diagram of an embodiment of the present invention;
[0031] Figure 7 This is a schematic cross-sectional view of the mounting hole in the support assembly according to an embodiment of the present invention;
[0032] Figure 8 This is a schematic diagram of the connection structure between the connecting rod and the louvers in the dehumidification assembly of Embodiment 1 of the present invention;
[0033] Figure 9 This is a schematic diagram of the shock-absorbing support structure in the adjustment assembly of Embodiment 1 of the present invention;
[0034] Figure 10 This is a schematic diagram of the long-stroke electromagnet in the dehumidification assembly of Embodiment 1 of the present invention;
[0035] Figure 11 This is a schematic cross-sectional view of the first support rod and the second support rod in a support assembly according to an embodiment of the present invention;
[0036] Figure 12 This is a schematic diagram of the lower support component and the upper support component in Embodiment 2 of the present invention;
[0037] Figure 13 for Figure 12 Cross-sectional view;
[0038] Figure 14 for Figure 12 Another cross-sectional view.
[0039] In the figure: 1, lower support assembly; 10, support seat; 101, square groove; 102, first slide; 103, baffle; 104, mounting hole; 11, drainage pool; 111, drain pipe; 12, first connecting seat; 13, first supporting rod; 131, protruding block; 132, rubber ball; 14, second supporting rod; 141, first rubber ring; 142, boss; 143, U-shaped groove; 144, third spring; 15, first drainage hole; 16, fourth spring; 2, upper support assembly; 20, first supporting plate; 21, second connecting seat; 22, third supporting rod; 23, first spring; 24, roller; 3, adjusting assembly; 31, driving part; 311, motor; 312, first bevel gear; 313, fixed block; 314, first rotating rod; 315, second rotating rod; 316, third bevel gear; 317, fourth bevel gear; 318, rocker; 32, first containing box; 33, lifting part; 331, second supporting seat; 332, first connecting piece; 333, screw rod; 334, second bevel gear; 335, rubber pad; 34, damping supporting seat; 341, third supporting seat; 342, second supporting plate; 343, second spring; 35, supporting part; 351, connecting block; 352, first supporting seat; 353, sliding block; 354, sliding rod; 355, second drainage hole; 356, second rubber ring; 36, second containing box; 4, dehumidification assembly; 41, long-stroke electromagnet; 411, shell; 412, end cover; 413, moving iron core; 414, housing; 415, push rod; 416, fifth spring; 417, supporting block; 418, bottom plate; 42, louver; 421, blade; 422, first connecting rod; 423, second connecting piece; 43, connecting rod; 431, second connecting rod; 5, machine room; 6, water level detector. DETAILED DESCRIPTION
[0040] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative work fall within the scope of protection of the present application.
[0041] In the following description of the present application, it should be noted that the terms "upper", "lower", "left", "right", "inner", "outer" and the like indicate the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, and do not indicate or imply that the devices or elements referred to must have a particular orientation or be constructed and operated in a particular orientation. The term "connection" only means the connection between devices and has no special meaning.
[0042] Moreover, the technical fields and installation modes involved in the embodiments of the application described below can be combined with each other as long as they do not conflict with each other.
[0043] Embodiment one: please refer to Figures 1-11 The anti-seismic base for a computer room is used for anti-seismic of the computer room 5, comprising a lower support assembly 1, an upper support assembly 2, an adjusting assembly 3 and a dehumidification assembly 4, the upper support assembly 2 is movably arranged on the upper end of the lower support assembly 1, the adjusting assembly 3 is arranged between the lower support assembly 1 and the upper support assembly 2, the dehumidification assembly 4 is symmetrically arranged on the outer side of the lower support assembly 1, and the lower support assembly 1 is provided with a water level detector 6 on one end close to one side of the dehumidification assembly 4;
[0044] The lower support assembly 1 comprises a support base 10, a drainage pool 11, a plurality of first supporting rods 13 and a plurality of second supporting rods 14, four first connecting seats 12 are arranged at the bottom of the support base 10, the upper end of the first supporting rod 13 is hingedly connected with the first connecting seat 12, the lower end is inserted with the second supporting rod 14, the drainage pool 11 is fixedly arranged at the bottom of the support base 10, the first supporting rod 13 is distributed on the outer side of the drainage pool 11, the first supporting rod 13 and the second supporting rod 14 are obliquely arranged, the fourth spring 16 is arranged between the second supporting rod 14 and the lower surface of the support base 10, the upper part of the first supporting rod 13 is provided with a protruding block 131, the protruding block 131 is located in the interior of the second supporting rod 14, the inner wall of the second supporting rod 14 is provided with a protruding platform 142 in the middle part, the third spring 144 is fixedly arranged between the protruding platform 142 and the protruding block 131, the first rubber ring 141 is arranged between the upper end of the second supporting rod 14 and the first supporting rod 13, the U-shaped recess 143 is formed in the interior lower end of the second supporting rod 14, the rubber ball 132 is matched with the U-shaped recess 143, the rubber ball 132 can be slightly rotated in the U-shaped recess 143, the first rubber ring 141 is arranged at the connection between the first supporting rod 13 and the second supporting rod 14, the first supporting rod 13 is matched with the second supporting rod 14 through the rubber ball 132, the first rubber ring 141 and the rubber ball 132 are pressed when the vibration occurs, and the third spring 144 is pressed, and the vibration between the support base 10 and the ground can be energy-dissipated when the first rubber ring 141, the rubber ball 132 and the third spring 144 return to the original state;
[0045] The upper support assembly 2 comprises a first support plate 20, a third support rod 22, a first spring 23 and a roller 24, the machine room 5 is fixedly arranged on the upper end of the first support plate 20, the first support plate 20 is rollingly connected with the inner wall of the support base 10 through the roller 24, eight second connecting seats 21 are arranged around the lower end of the first support plate 20, two are arranged at intervals on each side, the upper end of the third support rod 22 is hingedly connected with the second connecting seat 21, the third support rod 22 is arranged obliquely, the first spring 23 is arranged between the end of the third support rod 22 away from the second connecting seat 21 and the first support plate 20, the roller 24 is rotatably arranged at the lower end of the third support rod 22, the roller 24 is in contact with the inner wall of the support base 10, the roller 24 is wrapped with rubber outside and is inflated inside, so that the damping effect can be achieved, the third support rod 22 is arranged obliquely at the lower end of the first support plate 20, the first spring 23 is connected between the third support rod 22 and the first support plate 20, when the support base 10 shakes, the third support rod 22 rotates, the first spring 23 is stretched or compressed, and the vibration between the upper support assembly 2 and the support base 10 can be further dissipated under the action of the elastic force of the first spring 23 and the roller 24.
[0046] The adjusting assembly 3 comprises a driving part 31, a lifting part 33 and a damping support 34, the driving part 31 comprises a motor 311 and a first bevel gear 312, the motor 311 is fixedly arranged at the middle of the lower end of the first support plate 20, the first bevel gear 312 is fixedly connected with the output shaft of the motor 311, the motor 311 is a double-output-shaft motor, has two symmetrical output shafts, and the two output shafts can rotate synchronously, the first bevel gear 312 is provided with two first bevel gears 312, which are fixedly arranged at the two ends of the output shaft of the motor 311, the lifting part 33 comprises a second support 331 and a lead screw 333, the lower end of the lead screw 333 is threadedly connected with the second support 331, and the upper end of the lead screw 333 is fixedly provided with a second bevel gear 334; the first bevel gear 312 is in meshing transmission connection with the second bevel gear 334; the second support 331 is provided with two second supports 331 and is symmetrically arranged at the two ends of the output shaft of the motor 311; the lower end of the damping support 34 is fixedly connected with the support base 10.
[0047] Further, the adjusting assembly 3 further comprises a first containing box 32, the first containing box 32 is fixedly arranged at the lower end of the first support plate 20, the first bevel gear 312 and the second bevel gear 334 are located in the first containing box 32, the second support 331 is threadedly connected with a first connecting piece 332 at the upper end, the lead screw 333 is threadedly connected with the middle of the first connecting piece 332, the second support 331 is fixedly provided with a rubber pad 335 at the lower end, and the rubber pad 335 can play a buffering and damping role when the lead screw 333 moves to the bottom of the second support 331.
[0048] Further, the lower end of the drainage pool 11 is provided with a drain pipe 111, the bottom of the support base 10 is provided with a plurality of first drainage holes 15, the adjusting assembly 3 further comprises a support part 35, the support part 35 is symmetrically arranged on both sides of the output shaft of the motor 311, the support part 35 comprises a first support 352, the bottom of the first support 352 is provided with a second drainage hole 355, the second drainage hole 355 can be communicated with the first drainage hole 15, the drainage pool 11 and the drain pipe 111, the drainage pool 11 is arranged at the lower end of the device, and the second drainage hole 355 is arranged at the lower end of the first support 352, the communication and blockage of the second drainage hole 355 and the first drainage hole 15 are controlled by the sliding block 353, so that the height of the machine room 5 can be adjusted while the accumulated water in the support base 10 is drained.
[0049] Further, the support part 35 further comprises a connecting block 351 and a sliding rod 354, the connecting block 351 is fixedly arranged at the lower end of the first support plate 20, the lower end of the sliding rod 354 is fixedly connected with the upper end of the connecting block 351, the upper end of the first support 352 is provided with an opening, and the opening is fixedly provided with a second rubber ring 356, the sliding rod 354 is slidably connected with the second rubber ring 356, and the lower end of the sliding rod 354 is fixedly connected with the sliding block 353, so that the second drainage hole 355 and the first drainage hole 15 are blocked or communicated by moving the sliding block 353.
[0050] Further, the damping support 34 comprises a third support 341 and a second support plate 342, the third support 341 is fixedly arranged in the support base 10, the second spring 343 is fixedly arranged between the third support 341 and the second support plate 342, the lower end of the second support plate 342 is inserted into the third support 341 and is movably connected with the third support 341, the second support 331 is fixedly arranged on the upper end of the second support plate 342, and the outer ring diameter of the lower end of the second support plate 342 is smaller than the inner ring diameter of the upper end of the third support 341, so that the second support plate 342 can slightly shake in the third support 341, and the second spring 343 is used for damping and energy dissipation in the circumferential direction, the damping support 34 is arranged between the second support 331 and the support base 10, the second spring 343 is deformed under pressure when vibration occurs, the second rubber ring 356 is arranged at the connection position of the sliding rod 354 and the first support 352, and the second rubber ring 356 is deformed under pressure, so that the second spring 343 and the second rubber ring 356 can dissipate the vibration between the upper support assembly 2 and the support base 10.
[0051] Further, the dehumidification assembly 4 comprises a long-stroke electromagnet 41, a louver 42 and a connecting rod 43, the long-stroke electromagnet 41 is fixedly arranged on the upper surface of the support base 10, the long-stroke electromagnet 41 comprises a shell 414 and a push rod 415, the shell 414 is internally provided with a coil, the push rod 415 is in sliding connection with the shell 414, one end of the push rod 415 away from the shell 414 is fixedly connected with the connecting rod 43, the connecting rod 43 is in movable connection with the louver 42, the louver 42 is in rotary connection with the support base 10, the support base 10 is symmetrically provided with mounting holes 104 on both sides, square grooves 101 are formed on both sides of the mounting holes 104, baffles 103 are arranged between the square grooves 101 and the mounting holes 104, the first slide 102 is arranged on the upper end of the square groove 101, the first slide 102 penetrates through the support base 10 and is in communication with the square groove 101, the louver 42 is arranged in the mounting hole 104 and is in rotary connection with the baffle 103, the connecting rod 43 is arranged in the square groove 101 and is in sliding connection with the first slide 102, the dehumidification assembly 4 is arranged on the side of the support base 10, the opening and closing of the louver 42 are controlled by the long-stroke electromagnet 41, so that the interior of the device can be ventilated and dehumidified, and the impact on the machine room 5 is avoided, which is very convenient.
[0052] Further, the louver 42 comprises blades 421, first connecting rods 422 and second connecting rods 423, the first connecting rods 422 are symmetrically arranged at both ends of the blades 421, the blades 421 are arranged in the mounting holes 104, the first connecting rods 422 penetrate through the baffles 103 at both ends, the first connecting rods 422 are in rotary connection with the baffles 103, the connecting rod 43 is provided with through holes at the lower part, a plurality of second connecting rods 431 are arranged in the through holes at intervals, one end of the second connecting rod 423 is fixedly connected with the first connecting rod 422, the other end of the second connecting rod 423 away from the first connecting rod 422 is provided with a sliding hole, and the second connecting rod 431 is in sliding connection with the sliding hole.
[0053] Further, the long-stroke electromagnet 41 further comprises a moving iron core 413, an end cover 412 and a bottom plate 418, the bottom plate 418 is provided with a plurality of supporting blocks 417 at the lower end, the supporting blocks 417 are fixedly connected with the upper surface of the support base 10, the end cover 412 is arranged at the upper end of the moving iron core 413, the moving iron core 413 is in sliding connection with the upper end of the shell 414, the moving iron core 413 can slide along the shell 414 when the shell 414 is powered on or powered off, the push rod 415 is in sliding connection with the lower end of the shell 414, the fifth spring 416 is fixedly arranged between the end cover 412 and the shell 414, the outer shell 411 is arranged on the upper surface of the bottom plate 418, the outer shell 411 is sleeved outside the shell 414 and the end cover 412, the lower end of the push rod 415 is fixedly connected with the upper end of the connecting rod 43, the long-stroke electromagnet 41 is a prior art, and the specific structure and working principle are not described.
[0054] Further, the water level detector 6 is fixedly arranged outside the support base 10 near one end of the louvers 42, and can detect the water level outside the support base 10 in real time, so as to control the starting of the motor 311 to raise the machine room 5 and discharge the water accumulated in the support base 10.
[0055] When the anti-seismic base for machine room is used, the whole device is buried in the ground at the position below the drainage pool 11, the first support rod 13 and the second support rod 14 are inserted into the ground, and the machine room 5 is installed on the upper end of the first support plate 20. When the lower support assembly 1 shakes under the vibration, the first support rod 13 and the second support rod 14 slide, the first support rod 13 collides with the first rubber ring 141 to deform the first rubber ring 141, the rubber ball 132 is deformed under the pressure in the U-shaped groove 143, the third spring 144 is deformed under the pressure, and the fourth spring 16 is deformed under the tension or pressure. When the first rubber ring 141, the rubber ball 132, the third spring 144 and the fourth spring 16 return to the original state, the vibration between the support base 10 and the ground can be damped. Meanwhile, the slide rod 354 collides with the second rubber ring 356, the second support plate 342 is pressed by the second support base 34, the third support rod 22 is pressed to rotate, the first spring 23 is deformed under the pressure or tension, and the rubber outside the roller 24 and the inflatable structure inside the roller 24 can absorb part of the vibration on the side of the first support plate 20 and the machine room 5. When the second rubber ring 356, the second spring 343 and the first spring 23 return to the original state, the vibration between the first support plate 20 and the support base 10 can be damped, and the stability of the first support plate 20 and the machine room 5 can be maintained.
[0056] When the water level detector 6 detects that there is water outside the anti-seismic base that needs to raise the height of the machine room 5, the motor 311 is started, the output shaft of the motor 311 rotates, at the same time drives the first bevel gear 312 at both ends to rotate, the second bevel gear 334 meshing transmission with the first bevel gear 312 rotates, drives the lead screw 333 to rotate, the lead screw 333 moves upward through the thread along the first connecting piece 332, pushes the entire upper support assembly 2 to move upward, drives the machine room 5 to move upward, at the same time the first supporting plate 20 moves to drive the connecting block 351 to move, drives the slide rod 354 to move upward, the sliding block 353 moves upward, makes the second drain hole 355 communicate with the first drain hole 15, if there is water entering the anti-seismic base, the water can enter the drainage tank 11 through the first drain hole 15 from the second drain hole 355, and the water in the drainage tank 11 can be discharged through the drain pipe 111, when it is sunny and needs to be dehumidified in the device, the long-stroke electromagnet 41 is powered on, the moving iron core 413 moves downward under the action of the coil in the shell 414, drives the end cover 412 to move downward, the fifth spring 416 is compressed and deformed, the moving iron core 413 moves downward to drive the push rod 415 to move, the push rod 415 drives the connecting rod 43 to move downward, the second connecting piece 423 connected with the connecting rod 43 slides around the axis of the first connecting rod 422, drives the first connecting rod 422 to rotate, that is, the blades 421 of the louver window 42 are opened for ventilation and dehumidification, when the dehumidification is completed, the power of the long-stroke electromagnet 41 is turned off, the end cover 412 moves upward under the action of the elastic force of the fifth spring 416, drives the moving iron core 413 to restore to the original position, and then reverses the motor 311 to lower the height of the machine room 5 back to the initial position. The device is provided with multi-stage energy dissipation structure, so that the anti-seismic structure of the machine room 5 is no longer single, the energy dissipation efficiency of the entire anti-seismic base is improved, the amplitude of the machine room 5 is reduced, the anti-seismic capacity of the machine room 5 is improved, and the safety of the equipment in the machine room 5 is ensured.
[0057] Specific embodiment two: please refer to Figures 12-14 The driving part 31 further includes a fixed block 313 and a first rotating rod 314, the fixed block 313 is fixedly arranged at the middle part of the lower end of the first supporting plate 20, the first rotating rod 314 is rotatably arranged in the middle part of the fixed block 313, the first bevel gear 312 is fixedly arranged at both ends of the first rotating rod 314, the end face of the first bevel gear 312 away from the first containing box 32 is fixedly arranged with a second rotating rod 315, one end of the second rotating rod 315 away from the first bevel gear 312 is fixedly arranged with a third bevel gear 316, a rocker 318 is rotatably arranged on one side of the first supporting plate 20, the rocker 318 is vertically arranged and penetrates through the first supporting plate 20, a fourth bevel gear 317 is fixedly arranged at the lower end of the rocker 318, the third bevel gear 316 and the fourth bevel gear 317 are meshing transmission, a second containing box 36 is arranged on the side of the lower end of the first supporting plate 20 away from the first containing box 32, the second rotating rod 315, the third bevel gear 316 and the fourth bevel gear 317 are all located in the second containing box 36.
[0058] When the height is manually adjusted, the rocker 318 is rotated, the fourth bevel gear 317 is rotated, the third bevel gear 316 engaged with the fourth bevel gear 317 is rotated, the second rotating rod 315 is rotated, the first bevel gear 312 fixed with the second rotating rod 315 is rotated, the first rotating rod 314 is rotated, the second bevel gear 334 engaged with the first bevel gear 312 is rotated, the lead screw 333 is rotated, the lead screw 333 is moved upward along the first connecting piece 332 through the thread, the whole upper supporting assembly 2 is pushed to move upward, and the machine room 5 is moved upward.
[0059] The other settings are the same as in Embodiment One.
[0060] Although the embodiments of the present application have been shown and described, it is to be understood that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present application, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A seismic-resistant base for computer rooms, used for seismic resistance in computer rooms, characterized in that: The utility model provides a kind of computer room, including lower support component, upper support component, adjusting component and dehumidification component, the upper support component is movably arranged on the upper end of lower support component, the adjusting component is arranged between lower support component and upper support component, and the dehumidification component is symmetrically arranged on both sides of lower support component; The lower support component includes a support seat, a first support rod and a second support rod, the first support rod is rotatably arranged at the bottom of the support seat, the first support rod is inserted with the second support rod, and the first support rod is movably connected with the second support rod through a rubber ball. The upper support component includes a first support plate, a third support rod, a first spring and a roller, the computer room is fixedly arranged on the upper end of the first support plate, the first support plate is rollingly connected with the inner wall of the support seat through the roller, the third support rod is rotatably arranged at the lower end of the first support plate, the third support rod is obliquely arranged, and the first spring is arranged between the middle part of the third support rod and the first support plate. The adjusting component includes a driving part, a lifting part and a shock-absorbing support, the driving part includes a motor and a first bevel gear, the motor is fixedly arranged at the middle part of the lower end of the first support plate, the first bevel gear is fixedly connected with the output shaft of the motor, the lifting part includes a lead screw, the second bevel gear is fixedly arranged on the lead screw, the first bevel gear is meshingly and drivingly connected with the second bevel gear, the upper end of the shock-absorbing support is fixedly connected with the lifting part, and the lower end of the shock-absorbing support is fixedly connected with the support seat. The dehumidification component includes a long-stroke electromagnet and a louver, the long-stroke electromagnet is fixedly arranged on the upper surface of the support seat, and the louver is opened or closed by the long-stroke electromagnet.
2. The anti-seismic base for a machine room as claimed in claim 1, characterized in that: The lower support component further includes a drainage tank, the drainage tank is fixedly arranged at the bottom of the support seat, the first support rod is distributed outside the drainage tank, the lower end of the drainage tank is provided with a drain pipe, a plurality of first drainage holes are formed in the bottom of the support seat, the adjusting component further includes a support part, the support part is symmetrically arranged at both ends of the support seat, the support part is perpendicularly arranged with the driving part, the support part includes a first support base, a second drainage hole is formed through the bottom of the first support base, and the second drainage hole is in communication with the first drainage hole, the drainage tank and the drain pipe.
3. The anti-seismic base for a machine room as claimed in claim 2, characterized in that: The support part further includes a connecting block and a slide rod, the connecting block is fixedly arranged at the lower end of the first support plate, the upper end of the slide rod is fixedly arranged at the lower end of the connecting block, the upper end of the first support base is provided with a second rubber ring, the slide rod is slidingly connected with the second rubber ring, and the lower end of the slide rod is fixedly connected with a sliding block, so that the second drainage hole is blocked or communicated with the first drainage hole by moving the sliding block.
4. The anti-seismic base for a machine room as claimed in claim 3, characterized in that: The adjusting component further includes a first containing box, the lifting part further includes a second support base, the first containing box is fixedly arranged at the lower end of the first support plate, the first bevel gear and the second bevel gear are located inside the first containing box, the upper end of the second support base is threadedly connected with a first connecting piece, the lower end of the lead screw is threadedly connected with the middle part of the first connecting piece, and a rubber pad is fixedly arranged at the lower end inside the second support base.
5. The anti-seismic base for a machine room as claimed in claim 1, characterized in that: The damping support includes a third support, a second support plate, the third support is fixedly arranged in the support seat, the second spring is arranged between the third support and the second support plate, the lower end of the second support plate is inserted into the third support and is in sliding connection with the third support, the lifting part is fixedly arranged on the upper end of the second support plate, and the outer ring diameter of the lower end of the second support plate is smaller than the inner ring diameter of the upper end of the third support.
6. The anti-seismic base for a machine room as claimed in claim 1, characterized in that: The dehumidification assembly further includes a connecting rod, the support seat is symmetrically provided with mounting holes on both sides, square grooves are formed on both sides of the mounting holes, baffles are arranged between the square grooves and the mounting holes, first sliding grooves are arranged on the upper end of the square grooves, the first sliding grooves penetrate the support seat and are in communication with the square grooves, the louvers are arranged in the mounting holes and are in rotary connection with the baffles, the connecting rod is arranged in the square groove, and the connecting rod is in sliding connection with the first sliding groove and in movable connection with the louvers.
7. The anti-seismic base for a machine room as claimed in claim 6, characterized in that: The louvers include blades, first connecting rods and second connecting rods, the first connecting rods are symmetrically arranged at both ends of the blades, the blades are arranged in the mounting holes, the first connecting rods penetrate the baffles, the first connecting rods are in rotary connection with the baffles and the support seat, the connecting rod is provided with a through hole in the lower part, a plurality of second connecting rods are arranged in the through hole at intervals, one end of the second connecting rod is fixedly connected with the first connecting rod, and a sliding hole is formed in the end of the second connecting rod away from the first connecting rod, and the second connecting rod is in sliding connection with the sliding hole.
8. The anti-seismic base for a machine room as claimed in claim 1, characterized in that: One side of the upper support assembly is provided with a water level detector, and the water level detector is fixedly arranged on one end of the support seat outside and close to the louvers.
9. The anti-seismic base for a machine room as claimed in claim 1, characterized in that: The first supporting rod is provided with a protrusion on the upper part, the protrusion is located in the second supporting rod, a boss is arranged in the middle of the inner wall of the second supporting rod, a third spring is arranged between the boss and the protrusion, a first rubber ring is fixedly arranged on the upper end of the second supporting rod, a U-shaped groove is formed in the lower end of the second supporting rod, the first supporting rod is inserted into the first rubber ring, the rubber ball is in sliding connection with the U-shaped groove, and a fourth spring is arranged between the second supporting rod and the lower surface of the support seat.
10. The anti-seismic base for a machine room as claimed in claim 9, characterized in that: The long-stroke electromagnet includes a shell, a push rod, a moving iron core, an end cover and a bottom plate, the bottom plate is fixedly arranged on the upper surface of the support seat, the shell is arranged on the upper end of the bottom plate, the end cover is arranged on the upper end of the moving iron core, the moving iron core is in sliding connection with the upper end of the shell, the push rod is in sliding connection with the lower end of the shell, the moving iron core and the push rod are both arranged in the shell, one end of the push rod away from the shell is fixedly connected with the connecting rod, and a fifth spring is fixedly arranged between the end cover and the shell.
Citation Information
Patent Citations
Smart campus prefabricated machine room with anti-seismic structure
CN216239975U
Fabricated building damping device convenient to disassemble and assemble
CN211228980U
Anti-seismic supporting device for house
CN217300057U