Special magnetic quenching type load switch module for data center

Through the motor-driven dehumidification and heat dissipation design, the moisture-proof and heat dissipation problems of the magnetic blown arc-extinguishing load switch module are solved, convenient maintenance and efficient dehumidification particle replacement are achieved, and the operation efficiency and safety of the data center are improved.

CN120497064AActive Publication Date: 2025-08-15JIANGSU SHUANGHUI POWER DEV
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Patent Information

Application Number
CN202510778167.9
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-11
Publication Date
2025-08-15
Estimated Expiration
2045-06-11

AI Technical Summary

Technical Problem

The existing magnetic blown arc-extinguishing load switch module lacks effective drying and dehumidification measures in moisture-proof treatment, which leads to moisture intrusion in the data center, affects insulation performance and causes safety hazards. At the same time, the heat dissipation effect is poor, and the maintenance and dehumidification particle replacement process is cumbersome, affecting the operation efficiency of the data center.

Method used

By installing a motor to drive the connection gears, the dehumidification particle storage tube drives the scraper to scrape dust and uses a cooling fan to dry the dehumidification particles. Combined with the design of the threaded rod and the electric telescopic rod, it is convenient to move the switch module body and simplify the replacement of the dehumidification particles, realizing a drying environment and convenient maintenance.

Benefits of technology

It realizes the drying environment and efficient heat dissipation in the installation box, simplifies the maintenance and dehumidification particle replacement process, and improves the operating efficiency and safety of the data center.

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Abstract

The invention discloses a special magnetic quenching type load switch module for a data center, and belongs to the technical field of switch modules. The two sets of adjusting mechanisms are arranged and used for adjusting the position; the switch module body is arranged on the adjusting mechanism; the heat dissipation mechanisms are arranged in total, each heat dissipation mechanism is arranged on the adjusting mechanism, the dehumidification particle storage pipe is adjusted to drive a scraper to rotate so as to scrape dust on the surface of the dustproof net, meanwhile, the rotation direction of the stirring rod and the rotation direction of the dehumidification particle storage pipe are adjusted to be opposite, and heat generated by heat dissipation is used for drying dehumidification particles; according to the invention, the dehumidification particles can be recycled, the dry environment in the mounting box is ensured, dust removal can be carried out on a dustproof net, the heat dissipation effect can be improved, convenient movement and maintenance of the switch module body can be realized by adjusting the rotation of a threaded rod, and the replacement of the dehumidification particles is simpler and quicker by adjusting an electric telescopic rod.
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Description

Technical Field

[0001] The invention belongs to the technical field of switch modules, in particular to a magnetic blow-out arc-extinguishing load switch module dedicated to a data center. Background Art

[0002] The magnetic blow-out arc-extinguishing load switch module is a load switch device that quickly extinguishes the arc through the action of a magnetic field. When cutting off the circuit, it can use the magnetic blow-out effect to lengthen the arc and introduce it into the arc-extinguishing device, thereby accelerating the arc extinction and ensuring the safe disconnection of the circuit. In the context of data centers increasingly becoming the core infrastructure of modern information technology, the stability and reliability of their operation are extremely important. The data center-specific magnetic blow-out arc-extinguishing load switch module plays an indispensable role as a key component to ensure the normal operation of the data center power system. By using the magnetic blow-out arc-extinguishing principle, it can quickly and effectively extinguish the arc during the circuit opening and closing process, preventing the arc from damaging the switching equipment, thereby ensuring the safe disconnection and connection of the circuit.

[0003] The existing magnetic blow-out arc-extinguishing load switch module lacks effective drying and dehumidification measures in moisture-proof treatment. The air humidity in the data center varies greatly, and moisture can easily penetrate into the switch module, resulting in a decrease in insulation performance and causing safety hazards such as short circuits. Under long-term high-load operation, the switch module is prone to a large amount of heat, which is generally dissipated through a cooling fan, which cannot reasonably utilize the heat generated by heat dissipation. In addition, during long-term use, the dustproof net is prone to dust accumulation, and if it is not cleaned in time, its heat dissipation effect is poor. In addition, the maintenance and replacement of dehumidification particles are cumbersome. The switch module is located in the installation box, which requires a lot of time and manpower, affecting the operating efficiency of the data center. Summary of the Invention

[0004] The purpose of the present invention is to: a magnetic blow-out arc-extinguishing load switch module dedicated to a data center, which drives the connecting gear to rotate by installing a motor, and through transmission, the dehumidification particle storage tube drives the scraper to rotate, and the scraper can scrape the dust on the surface of the dustproof net, and at the same time, the rotating motor adjusts multiple stirring rods to drive the rotating rod to rotate in the dehumidification particle storage tube, and the stirring rod and the dehumidification particle storage tube rotate in opposite directions. The heat of the installation box is dissipated by the heat dissipation fan, and the heat passes through the dehumidification particle storage tube. The heat generated by the heat dissipation is used to dry the dehumidification particles, thereby realizing the reuse of the dehumidification particles, which not only ensures the dry environment in the installation box, but also can remove dust from the dustproof net and increase the heat dissipation effect. By fixing the rotation of the motor and rotating the threaded rod through the meshing between the gears, the convenient movement of the adjustment switch module body is realized, which is convenient for maintenance. By adjusting the electric telescopic rod, the replacement of the dehumidification particles is simpler and faster, which greatly shortens the maintenance time, reduces the impact of maintenance on the operation of the data center, and improves the overall operation efficiency.

[0005] The technical solution adopted by the present invention is as follows: a magnetic blow-out arc-extinguishing load switch module dedicated to a data center includes: an installation box; an adjustment mechanism, two groups of which are provided, and are configured to adjust the position; a switch module body, and the switch module body is arranged on the adjustment mechanism; a heat dissipation mechanism, two groups of which are provided, and each group of the heat dissipation mechanisms is provided on the adjustment mechanism, and is configured to dissipate heat to the switch module body; and a dehumidification and cleaning mechanism, two groups of which are provided, and each group of the dehumidification and cleaning mechanisms is provided on the heat dissipation mechanism, and is configured for dehumidification and cleaning.

[0006] Wherein, mounting grooves are provided on both sides of the mounting box, and each set of the adjustment mechanisms includes a threaded rod, a limiting rod, a moving block, a mounting plate and a power component. The threaded rod rotates and passes through the outer surface of one side of the mounting box, and one end of the limiting rod is fixedly connected to the inner wall of one side of the mounting groove. The moving block is threadedly sleeved on the outer surface of the threaded rod, and the moving block is slidably sleeved on the outer surface of the limiting rod. The bottom of the mounting plate is fixedly connected to the top of the moving block, and the power component is arranged on the threaded rod.

[0007] Among them, the power component includes a fixed motor, a fixed gear and a mounting gear. The fixed motor is fixedly connected to the outer surface of one side of the mounting box. The fixed gear is fixedly sleeved on the output end of the fixed motor. The mounting gear is fixedly sleeved on the outer surface of the threaded rod, and the mounting gear and the fixed gear are engaged with each other.

[0008] Among them, each group of the heat dissipation mechanism includes a movable frame, multiple cooling fans, a heat-conducting component and a dustproof net. The bottom of the movable frame is fixedly connected to the top of the movable block, and the dustproof net is fixedly embedded in the outer surface of one side of the movable frame.

[0009] The heat-conducting component includes a heat-conducting sheet and a plurality of heat-dissipating tubes. The heat-conducting sheet is fixedly connected to the upper inner wall of the movable frame, and the plurality of heat-dissipating tubes are fixedly passed through the heat-conducting sheet.

[0010] The dehumidification cleaning mechanism includes a moving part, a rotating part and a stirring part. The moving part is arranged on the moving frame, the rotating part is arranged on the moving part, and the stirring part is arranged on the moving part and the rotating part.

[0011] The movable part includes two support blocks, two electric telescopic rods and a movable block, one side outer surface of each support block is fixedly connected to the one side outer surface of the movable frame, one end of each electric telescopic rod is fixedly connected to the top of the support block, and the bottom of the movable block is fixedly connected to the extended ends of the two electric telescopic rods.

[0012] In which, the rotating parts include multiple dehumidification particle storage tubes, multiple scrapers, multiple fixed synchronous wheels, a mounting motor, a connecting gear and a transmission gear. The top end of each dehumidification particle storage tube is rotatably connected to the inner wall of the movable frame, and the outer surfaces of one side of the multiple scrapers are respectively fixedly connected to the outer surfaces of the multiple dehumidification particle storage tubes. Each of the fixed synchronous wheels is fixedly sleeved on the outer surface of the dehumidification particle storage tube, and each fixed synchronous wheel is transmitted to each other through a synchronous belt. The mounting motor is fixedly connected to the inner wall of one side of the movable frame, the connecting gear is fixedly sleeved on the output end of the mounting motor, and the transmission gear is fixedly sleeved on the outer surface of one of the dehumidification particle storage tubes, and the transmission gear and the connecting gear are engaged with each other.

[0013] In which, the stirring component includes a rotating motor, multiple transmission synchronous wheels, multiple stirring rods, multiple rotating rods and multiple rotating blocks, one end of each stirring rod rotates and passes through the top of the movable block, one end of each rotating rod is fixedly connected to the outer surface of the rotating rod, the top of each rotating block is fixedly connected to the bottom end of the rotating rod, and each rotating block is located in the dehumidification particle storage tube, the rotating motor is fixedly connected to the top of the movable block, one of the transmission synchronous wheels is fixedly sleeved on the output end of the rotating motor, and the other multiple transmission synchronous wheels are respectively fixedly sleeved on the outer surfaces of the multiple stirring rods, and each of the transmission synchronous wheels is transmitted to each other through a synchronous belt.

[0014] The method of using the magnetic blowout type load switch module for data centers includes the following steps:

[0015] Step 1: Heat dissipation of the switch module body: The heat of the switch module body is conducted out through the heat conducting sheet, blown out through the heat pipe and the cooling fan, and discharged through the dustproof net to dissipate the heat of the switch module body;

[0016] Step 2, dehumidification and cleaning: Dehumidification particles are stored in the dehumidification particle storage tube for drying the installation box. The connecting gear is driven to rotate by the installation motor. The meshing of the connecting gear and the transmission gear causes one of the dehumidification particle storage tubes to rotate. The dehumidification particle storage tube drives the scraper to rotate through the transmission of multiple fixed synchronous wheels and synchronous belts. The scraper can scrape the dust on the surface of the dustproof net and cooperate with the stirring component to dry the dehumidification particles. The rotating motor drives one of the transmission synchronous wheels to rotate. The transmission of multiple transmission synchronous wheels and synchronous belts causes multiple stirring rods to drive the rotating rods to rotate in the dehumidification particle storage tube. The heat of the installation box is dissipated by the cooling fan. The heat passes through the dehumidification particle storage tube to dry the dehumidification particles in the dehumidification particle storage tube, and the dehumidification particles can be reused.

[0017] Step 3: Inspect the switch module body: Turn on the fixed motor, which drives the fixed gear to rotate. The fixed gear and the mounting gear are engaged, which causes the threaded rod to rotate. The limit rod is used to limit the movement of the moving block, which drives the mounting plate, the switch module body, the heat dissipation mechanism, and the dehumidification and cleaning mechanism to move until the switch module body moves out of the installation box, making it easier for the user to inspect the switch module body.

[0018] Step 4. Replace the dehumidification particles: When the dehumidification particles need to be replaced, adjust the heat dissipation mechanism and the dehumidification cleaning mechanism through the adjustment mechanism, and then drive the movable block downward through the electric telescopic rod, so that the stirring rod pushes the rotating block to move in the dehumidification particle storage tube until the rotating block is separated from the dehumidification particle storage tube, and the dehumidification particles are discharged from the bottom of the dehumidification particle storage tube and can be collected. The movable block is driven to move upward through the electric telescopic rod. The movable block rises, so that the top of the dehumidification particle storage tube leaks out and the dehumidification particles can be placed in.

[0019] In summary, due to the adoption of the above technical solution, the beneficial effects of the present invention are:

[0020] (1) In the present invention, a motor is installed to drive the connecting gear to rotate, and through transmission, the dehumidification particle storage tube drives the scraper to rotate. The scraper can scrape the dust on the surface of the dustproof net. At the same time, the motor is rotated to adjust multiple stirring rods to drive the rotating rods to rotate in the dehumidification particle storage tube. The stirring rods and the dehumidification particle storage tube rotate in opposite directions. The heat of the installation box is dissipated by the heat dissipation fan. The heat passes through the dehumidification particle storage tube, and the heat generated by the heat dissipation is used to dry the dehumidification particles, thereby realizing the reuse of the dehumidification particles. This not only ensures a dry environment in the installation box, but also can remove dust from the dustproof net and increase the heat dissipation effect.

[0021] (2) In the present invention, the threaded rod is rotated by fixing the rotation of the motor through the meshing of the gears, thereby realizing convenient movement of the regulating switch module body, which is convenient for maintenance. The replacement of the dehumidification particles is made simpler and faster through the adjustment of the electric telescopic rod, which greatly shortens the maintenance time, reduces the impact of maintenance on the operation of the data center, and improves the overall operation efficiency. BRIEF DESCRIPTION OF THE DRAWINGS

[0022] Figure 1 It is a front perspective view of the present invention;

[0023] Figure 2 It is a front perspective partial cross-sectional view of the present invention;

[0024] Figure 3 A side perspective partial cross-sectional view of the present invention;

[0025] Figure 4 For the present invention Figure 3 A magnified view of part A;

[0026] Figure 5 It is a top perspective partial cross-sectional view of the present invention;

[0027] Figure 6 It is a partial top perspective cross-sectional view of the present invention;

[0028] Figure 7 It is a partial front perspective view of the dehumidification and cleaning mechanism of the present invention;

[0029] Figure 8 It is a partial frontal perspective cross-sectional view of the dehumidification and cleaning mechanism of the present invention;

[0030] Figure 9 A top perspective sectional view of a portion of the dehumidifying and cleaning mechanism of the present invention;

[0031] Figure 10 For the present invention Figure 9 Magnified view of part B.

[0032] Markings in the figure: 1. Installation box; 2. Adjustment mechanism; 201. Fixed motor; 202. Fixed gear; 203. Installation gear; 204. Threaded rod; 205. Limit rod; 206. Moving block; 207. Installation plate; 208. Switch module body; 3. Heat dissipation mechanism; 301. Moving frame; 302. Heat conducting plate; 303. Heat dissipation pipe; 304. Dustproof net; 305. Cooling fan; 4. Dehumidification and cleaning mechanism; 401. Support block; 402. Electric telescopic rod; 403. Movable block; 404. Rotating motor; 405. Transmission synchronous wheel; 406. Stirring rod; 407. Rotating rod; 408. Rotating block; 409. Dehumidification particle storage tube; 410. Scraper; 411. Fixed synchronous wheel; 412. Installation motor; 413. Connecting gear; 414. Transmission gear. DETAILED DESCRIPTION

[0033] In order to make the purpose, technical solutions and advantages of the present invention more clearly understood, the present invention will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present invention and are not intended to limit the present invention.

[0034] Reference Figures 1-10: The present invention provides a technical solution: a magnetic blow-out arc-extinguishing load switch module dedicated to a data center, comprising: an installation box 1; an adjustment mechanism 2, two groups of adjustment mechanisms 2 are provided, which are configured to adjust the position; a switch module body 208, the switch module body 208 is provided on the adjustment mechanism 2; a heat dissipation mechanism 3, two groups of heat dissipation mechanisms 3 are provided, each group of heat dissipation mechanisms 3 is provided on the adjustment mechanism 2, and is configured to dissipate heat to the switch module body 208; and a dehumidification and cleaning mechanism 4, two groups of dehumidification and cleaning mechanisms 4 are provided, each group of dehumidification and cleaning mechanisms 4 is provided on the heat dissipation mechanism 3, and is configured for dehumidification and cleaning.

[0035] In this embodiment: the installation box 1 is used to install the magnetic blow-out arc-extinguishing load switch module, the adjustment mechanism 2 is used to adjust the position of the switch module body 208, so as to facilitate the maintenance of the switch module body 208, and the dehumidification particles in the dehumidification and cleaning mechanism 4 can also be replaced, the heat dissipation mechanism 3 is used for heat dissipation, and the dehumidification and cleaning mechanism 4 is used for dehumidification and cleaning, which can increase the heat dissipation effect of the heat dissipation mechanism 3.

[0036] Specifically, mounting grooves are provided on both sides of the mounting box 1, and each set of adjustment mechanisms 2 includes a threaded rod 204, a limiting rod 205, a moving block 206, a mounting plate 207 and a power component. The threaded rod 204 rotates and passes through the outer surface of one side of the mounting box 1, and one end of the limiting rod 205 is fixedly connected to the inner wall of one side of the mounting groove. The moving block 206 is threadedly sleeved on the outer surface of the threaded rod 204, and the moving block 206 is slidably sleeved on the outer surface of the limiting rod 205. The bottom of the mounting plate 207 is fixedly connected to the top of the moving block 206, and the power component is arranged on the threaded rod 204.

[0037] In this embodiment: the moving block 206 is slidably embedded in the installation groove, and the power component is set to provide rotation. The threaded rod 204 is rotated by the rotational force provided by the power component. The moving block 206 can drive the mounting plate 207 and the switch module body 208 to move through the limiting rod 205. When the switch module body 208 moves out of the installation box 1, it is convenient for the staff to inspect the switch module body 208. The outer surface of the mounting plate 207 is provided with multiple mounting holes for installing the switch module.

[0038] Specifically, the power component includes a fixed motor 201, a fixed gear 202 and an installation gear 203. The fixed motor 201 is fixedly connected to the outer surface of one side of the installation box 1, the fixed gear 202 is fixedly sleeved on the output end of the fixed motor 201, and the installation gear 203 is fixedly sleeved on the outer surface of the threaded rod 204, and the installation gear 203 and the fixed gear 202 are engaged with each other.

[0039] In this embodiment: by turning on the fixed motor 201, the fixed motor 201 can drive the fixed gear 202 to rotate, and through the engagement of the fixed gear 202 and the mounting gear 203, the threaded rod 204 rotates. The principle and structure of the fixed motor 201 are common knowledge to those skilled in the art and will not be introduced in detail here. Its model can be selected according to actual usage.

[0040] Specifically, each set of heat dissipation mechanisms 3 includes a movable frame 301, multiple cooling fans 305, heat-conducting components and a dust-proof net 304. The bottom of the movable frame 301 is fixedly connected to the top of the movable block 206, and the dust-proof net 304 is fixedly embedded in the outer surface of one side of the movable frame 301.

[0041] In this embodiment: the movable frame 301 is moved by the adjustment mechanism 2, the cooling fan 305 is provided for heat dissipation, the heat-conducting component is provided for heat conduction, and the dust-proof net 304 is provided for dust prevention. The principle and structure of the cooling fan 305 are common knowledge to those skilled in the art and will not be described in detail here. The model can be selected according to actual usage.

[0042] Specifically, the heat conducting component includes a heat conducting sheet 302 and a plurality of heat dissipation pipes 303 . The heat conducting sheet 302 is fixedly connected to the upper inner wall of the movable frame 301 , and the plurality of heat dissipation pipes 303 are fixedly passed through the heat conducting sheet 302 .

[0043] In this embodiment, the heat conducting sheet 302 can conduct heat away, and the plurality of heat dissipation pipes 303 penetrate the movable frame 301 to increase air circulation and achieve the function of rapid heat dissipation.

[0044] Specifically, the dehumidification cleaning mechanism 4 includes a moving part, a rotating part and a stirring part. The moving part is arranged on the moving frame 301, the rotating part is arranged on the moving part, and the stirring part is arranged on the moving part and the rotating part.

[0045] In this embodiment: the setting of the movable part can adjust the position of the stirring part, which can facilitate the staff to replace the dehumidification particles, and dry the dehumidification particles through the heat generated by heat dissipation. In addition, the cooperation of the rotating part and the stirring part can realize the reuse of the dehumidification particles, and can also clean the dustproof net 304, reduce the blockage of the dustproof net 304, and increase the heat dissipation effect.

[0046] Specifically, the moving parts include two support blocks 401, two electric telescopic rods 402 and a movable block 403. The outer surface of one side of each support block 401 is fixedly connected to the outer surface of one side of the movable frame 301, one end of each electric telescopic rod 402 is fixedly connected to the top of the support block 401, and the bottom of the movable block 403 is fixedly connected to the extended ends of the two electric telescopic rods 402.

[0047] In this embodiment: the support block 401 is configured to support the electric telescopic rod 402, and the electric telescopic rod 402 is configured to adjust the position of the movable block 403, so that the movable block 403 can be moved up and down, and the position of the stirring component can be adjusted to replace the dehumidification particles. The principle and structure of the electric telescopic rod 402 are common knowledge to those skilled in the art and will not be described in detail here. Its model can be selected according to actual usage.

[0048] Specifically, the rotating parts include multiple dehumidification particle storage tubes 409, multiple scrapers 410, multiple fixed synchronous wheels 411, an installation motor 412, a connecting gear 413 and a transmission gear 414. The top of each dehumidification particle storage tube 409 is rotatably connected to the inner wall of the movable frame 301, and the outer surfaces of one side of the multiple scrapers 410 are respectively fixedly connected to the outer surfaces of the multiple dehumidification particle storage tubes 409. Each fixed synchronous wheel 411 is fixedly sleeved on the outer surface of the dehumidification particle storage tube 409, and each fixed synchronous wheel 411 is mutually transmitted through a synchronous belt. The installation motor 412 is fixedly connected to the inner wall of one side of the movable frame 301, the connecting gear 413 is fixedly sleeved on the output end of the installation motor 412, and the transmission gear 414 is fixedly sleeved on the outer surface of one of the dehumidification particle storage tubes 409, and the transmission gear 414 and the connecting gear 413 are engaged with each other.

[0049] In this embodiment: by installing a motor 412 to drive the connecting gear 413 to rotate, through the engagement of the connecting gear 413 and the transmission gear 414, one of the dehumidification particle storage tubes 409 is rotated, and through the transmission of multiple fixed synchronous wheels 411 and synchronous belts, the dehumidification particle storage tube 409 drives the scraper 410 to rotate. The scraper 410 can scrape the dust on the surface of the dustproof net 304, and cooperate with the stirring component to dry the dehumidification particles. At the same time, when dehumidifying the installation box 1, the dehumidification particles are rotated to increase the dehumidification effect. The principle and structure of the installation motor 412 are common knowledge of technicians in this field and will not be introduced in detail here. Its model can be selected according to actual usage.

[0050] Specifically, the stirring component includes a rotating motor 404, multiple transmission synchronous wheels 405, multiple stirring rods 406, multiple rotating rods 407 and multiple rotating blocks 408. One end of each stirring rod 406 rotates through the top of the movable block 403, one end of each rotating rod 407 is fixedly connected to the outer surface of the rotating rod 407, the top of each rotating block 408 is fixedly connected to the bottom end of the rotating rod 407, and each rotating block 408 is located in the dehumidification particle storage tube 409. The rotating motor 404 is fixedly connected to the top of the movable block 403, one of the transmission synchronous wheels 405 is fixedly sleeved on the output end of the rotating motor 404, and the other multiple transmission synchronous wheels 405 are respectively fixedly sleeved on the outer surfaces of the multiple stirring rods 406, and each transmission synchronous wheel 405 is mutually transmitted through a synchronous belt.

[0051] In this embodiment, the rotation direction of the motor 412 installed in the rotating component is opposite to that of the rotating motor 404, and the rotating motor 404 drives one of the transmission synchronous wheels 405 to rotate. Through the transmission of multiple transmission synchronous wheels 405 and the synchronous belt, multiple stirring rods 406 drive the rotating rod 407 to rotate in the dehumidification particle storage pipe 409, and the heat of the installation box 1 is dissipated by the cooling fan 305. The heat passes through the dehumidification particle storage pipe 409 to dry the dehumidification particles in the dehumidification particle storage pipe 409. The dehumidification particles can be reused and driven by the electric telescopic rod 402. The block 403 moves downward, so that the stirring rod 406 pushes the rotating block 408 to move in the dehumidification particle storage tube 409 until the rotating block 408 is separated from the dehumidification particle storage tube 409, and the dehumidification particles are discharged from the bottom of the dehumidification particle storage tube 409 and can be collected. The movable block 403 is driven to move upward by the electric telescopic rod 402, and the movable block 403 rises, so that the top of the dehumidification particle storage tube 409 leaks out and the dehumidification particles can be placed in. The principle and structure of the rotating motor 404 are common knowledge for technicians in this field and will not be introduced in detail here. Its model can be selected according to actual usage.

[0052] The following is a detailed description of the method for using the data center dedicated magnetic blow-out arc-extinguishing load switch module provided by an embodiment of the present invention. The method for using the module includes the following steps: Step 1, heat dissipation of the switch module body 208: the heat of the switch module body 208 is conducted through the heat conducting sheet 302, blown out through the heat dissipation pipe 303 and the heat dissipation fan 305, and discharged through the dustproof net 304, thereby dissipating the heat of the switch module body 208; Step 2, dehumidification and cleaning: the dehumidification particle storage tube 409 stores dehumidification particles for drying the inside of the installation box 1, and the connecting gear 413 is driven to rotate by the installation motor 412, and the connecting gear 413 and the transmission are connected. The meshing of the moving gear 414 causes one of the dehumidification particle storage tubes 409 to rotate, and the dehumidification particle storage tube 409 drives the scraper 410 to rotate through the transmission of multiple fixed synchronous wheels 411 and the synchronous belt. The scraper 410 can scrape the dust on the surface of the dustproof net 304, and at the same time cooperate with the stirring component to dry the dehumidification particles. The rotating motor 404 drives one of the transmission synchronous wheels 405 to rotate, and the transmission of multiple transmission synchronous wheels 405 and the synchronous belt makes the multiple stirring rods 406 drive the rotating rod 407 to rotate in the dehumidification particle storage tube 409, and dissipate the heat of the installation box 1 through the cooling fan 305. The dehumidification particles in the dehumidification particle storage tube 409 are dried and can be reused; Step 3, inspecting the switch module body 208: Turn on the fixed motor 201, and the fixed motor 201 drives the fixed gear 202 to rotate. The threaded rod 204 is rotated by the engagement of the fixed gear 202 and the mounting gear 203. The moving block 206 drives the mounting plate 207, the switch module body 208, the heat dissipation mechanism 3 and the dehumidification cleaning mechanism 4 to move through the limiting rod 205 until the switch module body 208 moves out of the installation box 1, which is convenient for the user to inspect the switch module Block body 208: Step 4, replace the dehumidification particles: When the dehumidification particles need to be replaced, adjust the heat dissipation mechanism 3 and the dehumidification cleaning mechanism 4 through the adjustment mechanism 2, and then drive the movable block 403 to move downward through the electric telescopic rod 402, so that the stirring rod 406 pushes the rotating block 408 to move in the dehumidification particle storage tube 409 until the rotating block 408 is separated from the dehumidification particle storage tube 409, and the dehumidification particles are discharged from the bottom of the dehumidification particle storage tube 409 and can be collected. The movable block 403 is driven to move upward by the electric telescopic rod 402, and the movable block 403 rises, so that the top of the dehumidification particle storage tube 409 leaks out and the dehumidification particles can be placed.

[0053] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions and improvements made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.

Claims

1. Data center dedicated magnetic blow-out load switch module, characterized by: include: Installation box (1); An adjusting mechanism (2), wherein the adjusting mechanism (2) is provided with two groups, and is configured to adjust the position; A switch module body (208), wherein the switch module body (208) is arranged on the adjustment mechanism (2); A heat dissipation mechanism (3), wherein two groups of the heat dissipation mechanisms (3) are provided, and each group of the heat dissipation mechanisms (3) is provided on the adjustment mechanism (2) and is configured to dissipate heat from the switch module body (208); and Dehumidification cleaning mechanism (4), the dehumidification cleaning mechanism (4) is provided in two groups, each group of the dehumidification cleaning mechanism (4) is provided on the heat dissipation mechanism (3), and is provided for dehumidification cleaning.

2. The data center dedicated magnetic blowout load switch module according to claim 1, characterized in that: Both sides of the installation box (1) are provided with installation slots. Each set of the adjustment mechanism (2) comprises a threaded rod (204), a limiting rod (205), a moving block (206), a mounting plate (207) and a power component. The threaded rod (204) rotates and passes through the outer surface of one side of the installation box (1). One end of the limiting rod (205) is fixedly connected to the inner wall of one side of the installation slot. The moving block (206) is threadedly sleeved on the outer surface of the threaded rod (204), and the moving block (206) is slidably sleeved on the outer surface of the limiting rod (205). The bottom of the mounting plate (207) is fixedly connected to the top of the moving block (206). The power component is arranged on the threaded rod (204).

3. The data center dedicated magnetic blowout load switch module according to claim 2, characterized in that: The power component comprises a fixed motor (201), a fixed gear (202) and a mounting gear (203); the fixed motor (201) is fixedly connected to an outer surface of one side of the mounting box (1); the fixed gear (202) is fixedly sleeved on an output end of the fixed motor (201); the mounting gear (203) is fixedly sleeved on an outer surface of a threaded rod (204); and the mounting gear (203) and the fixed gear (202) are meshed with each other.

4. The data center dedicated magnetic blowout load switch module according to claim 3, characterized in that: Each group of the heat dissipation mechanisms (3) comprises a movable frame (301), a plurality of heat dissipation fans (305), a heat-conducting component and a dust-proof net (304); the bottom of the movable frame (301) is fixedly connected to the top of the movable block (206); and the dust-proof net (304) is fixedly embedded in the outer surface of one side of the movable frame (301).

5. The data center dedicated magnetic blowout load switch module according to claim 4, characterized in that: The heat-conducting component comprises a heat-conducting sheet (302) and a plurality of heat-dissipating tubes (303); the heat-conducting sheet (302) is fixedly connected to the upper inner wall of the movable frame (301); and the plurality of heat-dissipating tubes (303) are fixedly passed through the heat-conducting sheet (302).

6. The data center dedicated magnetic blowout load switch module according to claim 5, characterized in that: The dehumidifying and cleaning mechanism (4) comprises a moving part, a rotating part and a stirring part, wherein the moving part is arranged on a moving frame (301), the rotating part is arranged on the moving part, and the stirring part is arranged on the moving part and the rotating part.

7. The data center dedicated magnetic blowout load switch module according to claim 6, characterized in that: The movable component comprises two support blocks (401), two electric telescopic rods (402) and a movable block (403); one side outer surface of each support block (401) is fixedly connected to one side outer surface of the movable frame (301); one end of each electric telescopic rod (402) is fixedly connected to the top of the support block (401); and the bottom of the movable block (403) is fixedly connected to the extended ends of the two electric telescopic rods (402).

8. The data center dedicated magnetic blowout load switch module according to claim 7, characterized in that: The rotating components include a plurality of dehumidification particle storage tubes (409), a plurality of scrapers (410), a plurality of fixed synchronous wheels (411), a mounting motor (412), a connecting gear (413) and a transmission gear (414), the top end of each of the dehumidification particle storage tubes (409) is rotatably connected to the inner wall of the movable frame (301), the outer surfaces of one side of the plurality of scrapers (410) are respectively fixedly connected to the outer surfaces of the plurality of dehumidification particle storage tubes (409), and each of the fixed synchronous wheels (411) is The fixed sleeve is mounted on the outer surface of the dehumidification particle storage tube (409), and each fixed synchronous wheel (411) is mutually driven by a synchronous belt. The mounting motor (412) is fixedly connected to the inner wall of one side of the movable frame (301), and the connecting gear (413) is fixedly mounted on the output end of the mounting motor (412). The transmission gear (414) is fixedly mounted on the outer surface of one of the dehumidification particle storage tubes (409), and the transmission gear (414) and the connecting gear (413) are meshed with each other.

9. The data center dedicated magnetic blowout load switch module according to claim 8, characterized in that: The stirring component comprises a rotating motor (404), a plurality of transmission synchronous wheels (405), a plurality of stirring rods (406), a plurality of rotating rods (407) and a plurality of rotating blocks (408), one end of each stirring rod (406) rotates and passes through the top of the movable block (403), one end of each rotating rod (407) is fixedly connected to the outer surface of the rotating rod (407), the top of each rotating block (408) is fixedly connected to the bottom end of the rotating rod (407), and each rotating block (408) is located in the dehumidification particle storage tube (409), the rotating motor (404) is fixedly connected to the top of the movable block (403), one of the transmission synchronous wheels (405) is fixedly sleeved on the output end of the rotating motor (404), and the other plurality of transmission synchronous wheels (405) are respectively fixedly sleeved on the outer surfaces of the plurality of stirring rods (406), and each of the transmission synchronous wheels (405) is mutually driven by a synchronous belt.

10. A method for using a data center dedicated magnetic blowout load switch module, applied to the data center dedicated magnetic blowout load switch module according to claim 9, characterized in that: The following steps are involved: S1, heat dissipation of the switch module body (208): heat of the switch module body (208) is conducted through the heat conducting sheet (302), blown out through the heat dissipation pipe (303) and the heat dissipation fan (305), and discharged through the dustproof net (304), thereby dissipating heat from the switch module body (208); S2, dehumidification cleaning: Dehumidification particles are stored in the dehumidification particle storage tube (409) for drying the inside of the installation box (1). The connecting gear (413) is driven to rotate by the installation motor (412). The connecting gear (413) and the transmission gear (414) are engaged to rotate one of the dehumidification particle storage tubes (409). The dehumidification particle storage tube (409) drives the scraper (410) to rotate through the transmission of multiple fixed synchronous wheels (411) and synchronous belts. The scraper (410) can scrape the dust on the surface of the dustproof net (304). In addition, the dehumidifying particles are dried by cooperating with the stirring component. The rotating motor (404) drives one of the transmission synchronous wheels (405) to rotate. Through the transmission of multiple transmission synchronous wheels (405) and the synchronous belt, multiple stirring rods (406) drive the rotating rod (407) to rotate in the dehumidifying particle storage pipe (409). The heat of the installation box (1) is dissipated by the heat dissipation fan (305). The heat passes through the dehumidifying particle storage pipe (409) to dry the dehumidifying particles in the dehumidifying particle storage pipe (409), and the dehumidifying particles can be reused. S3, inspecting the switch module body (208): turning on the fixed motor (201), which drives the fixed gear (202) to rotate, and the threaded rod (204) rotates through the engagement of the fixed gear (202) and the mounting gear (203). The moving block (206) drives the mounting plate (207), the switch module body (208), the heat dissipation mechanism (3) and the dehumidification and cleaning mechanism (4) to move through the limiting rod (205), until the switch module body (208) moves out of the installation box (1), so that the user can inspect the switch module body (208); S4. Replacement of dehumidification particles: When the dehumidification particles need to be replaced, the heat dissipation mechanism (3) and the dehumidification cleaning mechanism (4) are adjusted to move by the adjustment mechanism (2), and then the movable block (403) is driven downward by the electric telescopic rod (402), so that the stirring rod (406) pushes the rotating block (408) to move in the dehumidification particle storage tube (409) until the rotating block (408) is separated from the dehumidification particle storage tube (409), and the dehumidification particles are discharged from the bottom of the dehumidification particle storage tube (409) and can be collected. The movable block (403) is driven upward by the electric telescopic rod (402), and the movable block (403) rises, so that the top of the dehumidification particle storage tube (409) leaks out and the dehumidification particles can be put in.

Citation Information

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