Voltage-controlled temperature and pressure balancing electrical device and control system thereof

CN117526128BActive Publication Date: 2026-09-25THE FIRST COMPARY OF CHINA EIGHTH ENG BUREAU LTD
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Patent Information

Application Number
CN202311485600.7
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-11-08
Publication Date
2026-09-25
Estimated Expiration
2043-11-08

AI Technical Summary

Technical Problem

[0008]本发明的目的就在于为了解决上述问题而提供一种电压控制温压平衡的电气设备及其控制系统,以解决现有技术中对于设备的中部位置无法进行降温处理,降温的设备只能固定在一处;当需要降温时,无法精准的对局部需要降温的地方进行针对性的降温处理的问题

Benefits of technology

[0022]1、该电压控制温压平衡的电气设备,第一齿轮转动带动啮合连接的第二齿轮转动,第二齿轮转动带动固定连接的转动盘转动,当转动盘转动通过第一拉杆拉动第二拉杆使推动板在固定框中进行往复移动,此时转动存储框内部的设置于靠近出热气管一侧的连通头进行吸气,并且将其中一个固定筒外侧设置单向进气阀,抽出的热气通过出热气管在排出,出热气管外侧设置有单向出气阀,对电气控制柜中部的位置的热气抽出处理,通过第一磁铁与第二磁铁之间的磁性,推动第二磁铁进行移动,将连通筒外侧开设的流通槽露出,从而使气体可以顺利流通。

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Abstract

The application provides a voltage-controlled temperature and pressure balanced electrical equipment and a control system thereof, and relates to the technical fields of electrical equipment and control systems. The voltage-controlled temperature and pressure balanced electrical equipment comprises an electrical control cabinet, heat dissipation fans are installed on both sides of the electrical control cabinet, a cover plate is hinged to the front side of the electrical control cabinet, a support placement plate is fixedly connected inside the electrical control cabinet, and a fixed circular frame is arranged outside the support placement plate. When cold air is filled into the rotating storage frame, the control valve outside the communication head is closed, the first servo motor is started, the output end of the first servo motor drives the third gear to rotate, the third gear drives the meshed fourth gear to rotate, the rotating storage frame is rotated, the cold air storage part is aligned with the position requiring cooling, the control valve is opened to open the communication head, and local precise cooling treatment is performed.
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Description

Technical Field

[0001] This invention relates to an electrical device for controlling temperature and pressure balance, specifically an electrical device and its control system for voltage-controlled temperature and pressure balance, belonging to the technical field of electrical equipment and control systems. Background Technology

[0002] Distribution cabinets, also commonly called distribution boxes, are divided into power distribution cabinets, lighting distribution cabinets, and metering cabinets. They are the final-level equipment in a power distribution system. Distribution cabinets are a general term for motor control centers. Because a distribution cabinet is a cabinet that integrates electrical components for power distribution, its reliability, durability, and integrity require regular monitoring and inspection.

[0003] A self-regulating cooling device for measuring the temperature of electrical equipment wires, patent number CN111698873A, is disclosed. It includes a support frame, with an electrical device mounted in the center of the frame. Multiple wires extend from the electrical device to both sides of the support frame. A first support plate is horizontally mounted on the electrical device, with an air vent in the center. The first support plate is mounted above the support frame via two vertically symmetrical connecting rods. A second retaining ring is fixed to the lower end of the first support plate on each connecting rod. The top of the first connecting rod is threaded, and a bolt is threaded onto the upper end of the first support plate on each connecting rod. An annular water tank filled with water is located on the top surface of the first support plate. This device effectively reduces the temperature of the electrical equipment and its wires. The higher the temperature of the electrical equipment and its wires, the better the cooling effect of the device. It also allows for the recycling of water, effectively preventing water waste.

[0004] The above solution has many advantages, but it also has the following drawbacks:

[0005] 1. Cooling cannot be performed on the middle part of the equipment; the cooling equipment must be fixed in one place.

[0006] 2. When cooling is required, it is not possible to accurately target and cool the areas that need cooling. Summary of the Invention

[0007] (a) Technical problems to be solved

[0008] The purpose of this invention is to provide a voltage-controlled temperature and pressure balance electrical device and its control system to solve the above-mentioned problems, thereby addressing the issues in the prior art where cooling of the central part of the device is not possible, the cooling device can only be fixed in one place, and when cooling is required, it is impossible to accurately target the localized areas that need cooling.

[0009] (II) Technical Solution

[0010] This invention is achieved through the following technical solution: an electrical device for voltage-controlled temperature and pressure balance, comprising an electrical control cabinet, cooling fans installed on both sides of the electrical control cabinet, a cover plate hinged to the front of the electrical control cabinet, a support plate fixedly connected inside the electrical control cabinet, a fixed circular frame provided on the outer side of the support plate, multiple temperature sensors fixedly connected to one side of the fixed circular frame, a rotating storage frame rotatably connected to one side of the fixed circular frame, multiple connecting heads fixedly connected to the outer side of the rotating storage frame, control valves provided on the outer side of each of the multiple connecting heads, and two connecting movable plates fixedly connected to the outer side of the fixed circular frame, with temperature control components provided on the outer side of the connecting movable plates;

[0011] The electrical control cabinet is equipped with two reciprocating lead screws. The two reciprocating lead screws are respectively connected to the moving plate and connected to the moving plate through ball nut pairs. A transmission component for providing power to the temperature control component is provided between the reciprocating lead screws and the moving plate.

[0012] Preferably, the temperature control component includes two rotating disks, both of which are rotatably connected to the outside of the connecting movable plate. A first pull rod is rotatably connected to the top of each rotating disk, a second pull rod is hinged to one end of the first pull rod, and a push plate is fixedly connected to one end of the second pull rod.

[0013] Preferably, the temperature control component further includes two fixed frames, which are respectively fixedly connected to the outside of the connecting moving plate. The two push plates are respectively disposed inside the fixed frames and slidably connected to the fixed frames. A fixed cylinder is fixedly connected to one end of each of the two fixed frames. A connecting pipe is fixedly connected to the front side of the fixed cylinder. The push plates can move back and forth inside the fixed frames to achieve a suction effect.

[0014] Preferably, one of the fixed frames is fixedly connected to a hot air pipe, which is connected to the outside of the electrical control cabinet; the other fixed frame is fixedly connected to a cold air pipe, and a refrigeration device is fixedly connected to the outside of the electrical control cabinet, which is connected to the cold air pipe.

[0015] Preferably, two partition plates are fixedly connected inside the rotating storage frame, and two connecting cylinders are fixedly connected inside the rotating storage frame. The connecting pipe communicates with the connecting cylinders, and a first magnet is fixedly connected inside the connecting pipe. A flow groove is opened on the outside of the connecting cylinder, and a connecting plate is fixedly connected inside the connecting cylinder. A telescopic rod is fixedly connected between the connecting plate and the second magnet. A spring is sleeved on the outside of the telescopic rod, and both ends of the spring are fixedly connected to the connecting plate and the second magnet, respectively. The first magnet and the second magnet repel each other magnetically, and the magnetic effect of the first magnet can push the second magnet to move, exposing the flow groove opened on the outside of the connecting cylinder, thereby allowing the gas to flow smoothly.

[0016] Preferably, the transmission assembly includes two first gears, which are respectively sleeved on the outside of two reciprocating lead screws. A limit groove is formed on the outside of the reciprocating lead screw. A limit block is fixedly connected to the inner wall of the first gear. The limit block is disposed inside the limit groove and slidably connected to the limit groove. A second gear is meshed with the outside of the first gear. The second gear is fixedly connected to the outside of the rotating disk.

[0017] Preferably, the transmission assembly further includes two synchronous pulleys, which are respectively fixedly connected to the outside of the two reciprocating lead screws. The two synchronous pulleys are connected to each other by belt drive. A second servo motor is fixedly connected to the outside of the electrical control cabinet. The output end of the second servo motor is fixedly connected to the reciprocating lead screw, so that the two reciprocating lead screws are synchronously driven through the two synchronous pulleys and the belt.

[0018] Preferably, a fourth gear is fixedly connected to the front side of the rotating storage frame, and a third gear is meshed with the outer side of the fourth gear. A first servo motor is fixedly connected to the outer side of the fixed circular frame, and the output end of the first servo motor is fixedly connected to the third gear. This allows the stored heat inside the rotating storage frame to be transferred, enabling precise heat dissipation at the required locations.

[0019] A control system for voltage-controlled temperature and pressure balance electrical equipment includes a control terminal and an information acquisition unit. The output of the control terminal is connected to a management unit. The output of the information acquisition unit is connected to the input of the management unit. The output of the information acquisition unit is connected to an operating status analysis unit. The output of the operating status analysis unit is connected to a feedback module. The output of the feedback module is connected to the input of a piping unit. The output of the management unit is connected to a maintenance module. The output of the maintenance module is connected to the input of the operating status analysis unit. The output of the management unit is connected to a temperature control module. The output of the temperature control module is connected to the input of the information acquisition unit. The output of the management unit is connected to a voice signal transmitter. The output of the voice signal transmitter is connected to a mobile terminal.

[0020] Preferably, the information acquisition unit includes a temperature sensor module and an operation status monitoring module. The output terminals of both the temperature sensor module and the operation status monitoring module are connected to the management unit and the operation status analysis unit. The operation status analysis unit includes a temperature threshold module and a voltage and pressure threshold module.

[0021] This invention provides an electrical device and its control system for voltage-controlled temperature and pressure balance, which has the following beneficial effects:

[0022] 1. This voltage-controlled temperature and pressure balancing electrical equipment involves a first gear rotating to drive a meshing second gear, which in turn drives a fixed rotating disk. As the disk rotates, the first pull rod pulls the second pull rod, causing the push plate to reciprocate within the fixed frame. At this time, the connecting head inside the rotating storage frame, located near the hot gas outlet pipe, draws in air. A one-way inlet valve is installed on the outside of one of the fixed cylinders, and the extracted hot gas is discharged through the hot gas outlet pipe. A one-way outlet valve is also installed on the outside of the hot gas outlet pipe to extract hot gas from the central area of ​​the electrical control cabinet. The magnetism between the first and second magnets pushes the second magnet to move, exposing the flow groove on the outside of the connecting cylinder, allowing gas to flow smoothly.

[0023] 2. This voltage-controlled temperature and pressure balance electrical equipment, when it is necessary to cool the other side of the electrical control cabinet, after the cold air is filled into the rotating storage frame, the control valve on the outside of the connector is closed. Then, the first servo motor is started, and the output end of the first servo motor drives the third gear to rotate. The third gear drives the meshed fourth gear to rotate, thereby rotating the storage frame and aligning the cold air storage part with the position that needs to be cooled. Then, the connector is opened by the control valve to perform precise local cooling.

[0024] 3. The control system of this voltage-controlled temperature and pressure balance electrical equipment monitors data in real time through the temperature sensor module and the operation status monitoring module in the information acquisition unit. The monitored temperature and operation data are transmitted to the operation status analysis unit and the management unit. When the management unit issues a command, the operation status analysis unit analyzes and processes the data. The temperature threshold module and the voltage and pressure threshold module compare the data with the expected set data thresholds. When the values ​​are exceeded, the feedback module issues a maintenance command to the management unit and sends a message to the mobile terminal through a voice signal transmitter, so that personnel can detect the problem in time and avoid major accidents. Attached Figure Description

[0025] Figure 1 This is a schematic diagram of the overall structure of the present invention;

[0026] Figure 2 This is a partial sectional view of the electrical control cabinet of the present invention;

[0027] Figure 3 This is a schematic diagram of the fixed circular frame structure of the present invention;

[0028] Figure 4 This is a schematic diagram of the fourth gear structure of the present invention;

[0029] Figure 5 This is a schematic cross-sectional view of the rotating storage frame of the present invention;

[0030] Figure 6 This is a schematic diagram of the third gear structure of the present invention;

[0031] Figure 7 This is a schematic diagram of the fixed frame structure of the present invention;

[0032] Figure 8 This is a schematic diagram of the rotating disk structure of the present invention;

[0033] Figure 9 This is a schematic diagram of the first servo motor structure of the present invention;

[0034] Figure 10 This is a schematic diagram of the control system structure of the present invention;

[0035] Figure 11 This is a schematic diagram of the operational status analysis unit structure of the present invention.

[0036] [Explanation of Key Component Symbols]

[0037] 1. Electrical control cabinet; 2. Support plate; 3. Cooling fan; 4. Fixed circular frame; 5. Rotating storage frame; 8. Divider plate; 9. Connecting head; 10. Reciprocating screw; 11. Limiting slide; 12. Connecting moving plate; 13. First gear; 14. Limiting block; 15. Second gear; 16. Fixed frame; 17. Rotating disk; 18. First pull rod; 19. Second pull rod; 21. Refrigeration equipment; 22. Third gear; 23. First servo motor; 24. Fourth gear; 25. Synchronous pulley; 26. Second servo motor; 27. Cooling pipe; 28. Telescopic rod; 29. ​​Spring; 30. Flow groove 31. Connecting plate; 32. Fixing cylinder; 33. Pushing plate; 34. Temperature sensor; 35. Hot air outlet pipe; 36. Connecting pipe; 37. First magnet; 38. Second magnet; 39. Connecting cylinder; 40. Control terminal; 41. Management unit; 42. Information acquisition unit; 421. Temperature sensor module; 422. Operation status monitoring module; 43. Operation status analysis unit; 431. Temperature threshold module; 432. Voltage and pressure threshold module; 44. Feedback module; 46. Maintenance module; 47. Temperature control module; 48. Voice signal transmitter; 49. Mobile terminal; 50. Cover plate. Detailed Implementation

[0038] This invention provides an electrical device and its control system for voltage-controlled temperature and pressure balance.

[0039] Please see Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 , Figure 6 , Figure 7 , Figure 8 and Figure 9The system includes an electrical control cabinet 1, with cooling fans 3 installed on both sides of the electrical control cabinet 1. A cover plate 50 is hinged to the front of the electrical control cabinet 1. A support plate 2 is fixedly connected inside the electrical control cabinet 1. A fixed circular frame 4 is provided on the outside of the support plate 2. Multiple temperature sensors 34 are fixedly connected to one side of the fixed circular frame 4. A rotating storage frame 5 is rotatably connected to one side of the fixed circular frame 4. Multiple connecting heads 9 are fixedly connected to the outside of the rotating storage frame 5. Control valves are provided on the outside of each of the multiple connecting heads 9. Two connecting movable plates 12 are fixedly connected to the outside of the fixed circular frame 4. Temperature control components are provided on the outside of the connecting movable plates 12.

[0040] The electrical control cabinet 1 is equipped with two reciprocating screws 10. The two reciprocating screws 10 are respectively connected to the moving plate 12 and connected to the moving plate 12 through a ball nut pair. A transmission component for providing power to the temperature control component is provided between the reciprocating screws 10 and the moving plate 12.

[0041] Specifically, by starting the second servo motor 26, the second servo motor 26 drives one of the reciprocating lead screws 10 to rotate, and rotates through the outer synchronous pulley 25. The two synchronous pulleys 25 are connected by a belt drive, which in turn causes the reciprocating lead screw 10 to drive the connecting moving plate 12 to move. The connecting moving plate 12 drives the fixed circular frame 4 to move, so that the temperature sensor 34 fixedly connected to one side of the fixed circular frame 4 monitors the temperature inside the electrical control cabinet 1. When the temperature inside the electrical control cabinet 1 is high, the cooling fans 3 on both sides of the electrical control cabinet 1 are started, and the hot air inside the electrical control cabinet 1 is extracted by the cooling fans 3 and air is introduced through the ventilation slot on the rear side of the electrical control cabinet 1.

[0042] Please refer to it again. Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 , Figure 6 , Figure 7 , Figure 8 and Figure 9 The temperature control assembly includes two rotating disks 17, both rotatably connected to the outside of the connecting moving plate 12. A first pull rod 18 is rotatably connected to the top of each rotating disk 17, and a second pull rod 19 is hinged to one end of the first pull rod 18. A push plate 33 is fixedly connected to one end of the second pull rod 19. The temperature control assembly also includes two fixed frames 16, each fixedly connected to the outside of the connecting moving plate 12. Two push plates 33 are respectively disposed inside the fixed frames 16 and slidably connected to the fixed frames 16. A fixed cylinder 32 is fixedly connected to one end of each fixed frame 16, and a connecting pipe 36 is fixedly connected to the front side of the fixed cylinder 32. The cylinder can reciprocate within the fixed frame 16 via the push plates 33 to achieve a suction effect.

[0043] One of the fixed frames 16 is fixedly connected to a hot air pipe 35, which is connected to the outside of the electrical control cabinet 1. The other fixed frame 16 is fixedly connected to a cold air pipe 27, and the outside of the electrical control cabinet 1 is fixedly connected to a refrigeration device 21, which is connected to the cold air pipe 27.

[0044] Two partition plates 8 are fixedly connected inside the rotating storage frame 5, and two connecting cylinders 39 are fixedly connected inside the rotating storage frame 5. The connecting pipe 36 communicates with the connecting cylinders 39, and a first magnet 37 is fixedly connected inside the connecting pipe 36. A flow groove 30 is opened on the outside of the connecting cylinder 39, and a connecting plate 31 is fixedly connected inside the connecting cylinder 39. A telescopic rod 28 is fixedly connected between the connecting plate 31 and the second magnet 38. A spring 29 is sleeved on the outside of the telescopic rod 28. The two ends of the spring 29 are fixedly connected to the connecting plate 31 and the second magnet 38, respectively. The first magnet 37 and the second magnet 38 are magnetically repelled. The second magnet 38 can be moved by the magnetic effect of the first magnet 37, exposing the flow groove 30 opened on the outside of the connecting cylinder 39, so that the gas can flow smoothly.

[0045] The transmission assembly includes two first gears 13, which are respectively sleeved on the outer sides of two reciprocating lead screws 10. Limiting grooves 11 are formed on the outer sides of the reciprocating lead screws 10. Limiting blocks 14 are fixedly connected to the inner walls of the first gears 13, and the limiting blocks 14 are disposed inside the limiting grooves 11 and slidably connected to them. A second gear 15 is meshed with the outer side of the first gears 13 and is fixedly connected to the outer side of the rotating disk 17. The transmission assembly also includes two synchronous pulleys 25, which are respectively fixedly connected to the outer sides of the two reciprocating lead screws 10 and connected by a belt drive. A second servo motor 26 is fixedly connected to the outer side of the electrical control cabinet 1, and the output end of the second servo motor 26 is fixedly connected to the reciprocating lead screws 10, enabling the two reciprocating lead screws 10 to be synchronously driven through the two synchronous pulleys 25 and the belt.

[0046] Specifically, when comprehensive heat dissipation is required in the middle of the electrical control cabinet 1, the reciprocating screw 10 rotates, driving the first gear 13 to rotate via the limit block 14. The rotation of the first gear 13 drives the meshing second gear 15 to rotate, and the rotation of the second gear 15 drives the fixedly connected rotating disk 17 to rotate. When the rotating disk 17 rotates, it pulls the second pull rod 19 via the first pull rod 18, causing the push plate 33 to reciprocate within the fixed frame 16. At this time, the connecting head 9 located inside the rotating storage box 5 near the hot air outlet pipe 35 draws in air, and a one-way air inlet valve is installed on the outside of one of the fixed cylinders 32. The extracted hot air is then discharged through the hot air outlet pipe 35, which is equipped with a one-way air outlet valve on the outside. The hot air in the middle of the electrical control cabinet 1 is extracted by the magnetism between the first magnet 37 and the second magnet 38, which pushes the second magnet 38 to move, exposing the flow groove 30 on the outside of the connecting cylinder 39, thus allowing the gas to flow smoothly.

[0047] In addition, another rotating disk 17 also rotates, but a single air outlet valve is provided on the outside of another fixed cylinder 32, and a one-way air inlet valve is provided on the outside of the cold air pipe 27, so that the cold air inside the refrigeration equipment 21 is injected into the rotating storage frame 5 and then discharged through the connecting head 9.

[0048] Please refer to it again. Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 , Figure 6 , Figure 7 , Figure 8 and Figure 9 A fourth gear 24 is fixedly connected to the front of the rotating storage frame 5, and a third gear 22 is meshed with the outer side of the fourth gear 24. A first servo motor 23 is fixedly connected to the outer side of the fixed circular frame 4, and the output end of the first servo motor 23 is fixedly connected to the third gear 22. This allows the coolant stored inside the rotating storage frame 5 to be transferred, and precise heat dissipation treatment to the required location.

[0049] Specifically, when it is necessary to cool the other side of the electrical control cabinet 1, after the cold air is filled into the rotating storage frame 5, the control valve on the outside of the connector 9 is closed. Then, the first servo motor 23 is started, and the output end of the first servo motor 23 drives the third gear 22 to rotate. The third gear 22 drives the meshed fourth gear 24 to rotate, thereby rotating the storage frame 5 to align the cold air storage part with the position that needs to be cooled. Then, the connector 9 is opened by the control valve to perform precise local cooling.

[0050] Please refer to it again. Figure 10 and Figure 11The system includes a control terminal 40 and an information acquisition unit 42. The output of the control terminal 40 is connected to a management unit 41. The output of the information acquisition unit 42 is connected to the input of the management unit 41. The output of the information acquisition unit 42 is connected to an operation status analysis unit 43. The output of the operation status analysis unit 43 is connected to a feedback module 44. The output of the feedback module 44 is connected to the input of the pipeline unit 41. The output of the management unit 41 is connected to a maintenance module 46. The output of the maintenance module 46 is connected to the input of the operation status analysis unit 43. The output of the management unit 41 is connected to a temperature control module 47. The output of the temperature control module 47 is connected to the input of the information acquisition unit 42. The output of the management unit 41 is connected to a voice signal transmitter 48. The output of the voice signal transmitter 48 is connected to a mobile terminal 49. The information acquisition unit 42 includes a temperature sensor module 421 and an operation status monitoring module 422. The output terminals of the temperature sensor module 421 and the operation status monitoring module 422 are both connected to the management unit 41 and the operation status analysis unit 43. The operation status analysis unit 43 includes a temperature threshold module 431 and a voltage and pressure threshold module 432.

[0051] Specifically, when the temperature sensor module 421 and the operation status monitoring module 422 in the information acquisition unit 42 collect data in real time, the monitored temperature and operation data are transmitted to the operation status analysis unit 43 and the management unit 41. When the management unit 41 issues an instruction, the operation status analysis unit 43 analyzes and processes the data status. The temperature threshold module 431 and the voltage and pressure threshold module 432 are compared with the expected set data thresholds. When the values ​​are exceeded, the feedback module 44 issues a maintenance command to the management unit 41, and the voice signal transmitter 48 sends a message to the mobile terminal 49 so that personnel can discover the problem in time and avoid major accidents.

[0052] Working principle: When it is necessary to dissipate heat in the middle of the electrical control cabinet 1, the reciprocating screw 10 rotates, which drives the first gear 13 to rotate through the limit block 14. The rotation of the first gear 13 drives the meshing second gear 15 to rotate. The rotation of the second gear 15 drives the fixed rotating disk 17 to rotate. When the rotating disk 17 rotates, it pulls the second pull rod 19 through the first pull rod 18, causing the push plate 33 to move back and forth in the fixed frame 16. At this time, the connecting head 9 inside the rotating storage box 5, which is located near the hot air pipe 35, draws in air. A one-way air inlet valve is set on the outside of one of the fixed cylinders 32. The extracted hot air is discharged through the hot air pipe 35. A one-way air outlet valve is set on the outside of the hot air pipe 35 to extract the hot air in the middle of the electrical control cabinet 1. The magnetism between the first magnet 37 and the second magnet 38 pushes the second magnet 38 to move, exposing the flow groove 30 opened on the outside of the connecting cylinder 39, so that the gas can flow smoothly.

[0053] In addition, another rotating disk 17 also rotates, but a single air outlet valve is provided on the outside of another fixed cylinder 32, and a one-way air inlet valve is provided on the outside of the cold air pipe 27, so that the cold air inside the refrigeration equipment 21 is injected into the rotating storage frame 5 and then discharged through the connecting head 9.

[0054] When it is necessary to cool the other side of the electrical control cabinet 1, after the cold air is filled into the rotating storage frame 5, the control valve on the outside of the connector 9 is closed. Then, the first servo motor 23 is started. The output end of the first servo motor 23 drives the third gear 22 to rotate. The third gear 22 drives the meshed fourth gear 24 to rotate, thereby rotating the storage frame 5 and aligning the part of the cold air storage with the position that needs to be cooled.

[0055] The foregoing has shown and described the basic principles, main features, and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited to the above embodiments. The embodiments and descriptions in the specification are merely illustrative of the principles of the invention. Various changes and modifications can be made to the invention without departing from its spirit and scope, and all such changes and modifications fall within the scope of the present invention as claimed. The scope of protection of this invention is defined by the appended claims and their equivalents.

Claims

1. A voltage-controlled temperature and pressure balancing electrical device, comprising an electrical control cabinet (1), wherein cooling fans (3) are installed on both sides of the electrical control cabinet (1), and a cover plate (50) is hinged to the front side of the electrical control cabinet (1), characterized in that: The electrical control cabinet (1) is internally fixedly connected to a support plate (2). A fixed circular frame (4) is provided on the outside of the support plate (2). Multiple temperature sensors (34) are fixedly connected to one side of the fixed circular frame (4). A rotating storage frame (5) is rotatably connected to one side of the fixed circular frame (4). Multiple connecting heads (9) are fixedly connected to the outside of the rotating storage frame (5). Control valves are provided on the outside of each of the multiple connecting heads (9). Two connecting movable plates (12) are fixedly connected to the outside of the fixed circular frame (4). (12) A temperature control component is provided on the outside. The temperature control component includes two rotating disks (17). Both rotating disks (17) are rotatably connected to the outside of the connecting moving plate (12). A first pull rod (18) is rotatably connected to the top of the rotating disks (17). A second pull rod (19) is hinged to one end of the first pull rod (18). A push plate (33) is fixedly connected to one end of the second pull rod (19). The temperature control component also includes two fixed frames (16). The two fixed frames (16) are respectively fixedly connected to the outside of the connecting moving plate (12). Two push plates (33) are respectively disposed inside the fixed frame (16) and slidably connected to the fixed frame (16). A fixed cylinder (32) is fixedly connected to one end of each of the two fixed frames (16). A connecting pipe (36) is fixedly connected to the front side of the fixed cylinder (32). Two partition plates (8) are fixedly connected inside the rotating storage frame (5). Two connecting cylinders (39) are fixedly connected inside the rotating storage frame (5). The connecting pipe (36) communicates with the connecting cylinders (39). A first magnet is fixedly connected inside the connecting pipe (36). (37) The connecting pipe (36) is provided with a first magnet (37), the outer side of the connecting cylinder (39) is provided with a flow groove (30), the inner side of the connecting cylinder (39) is fixedly connected with a connecting plate (31), the connecting plate (31) and the second magnet (38) are fixedly connected with a telescopic rod (28), the outer side of the telescopic rod (28) is provided with a spring (29), the two ends of the spring (29) are fixedly connected to the connecting plate (31) and the second magnet (38) respectively, and the first magnet (37) and the second magnet (38) are magnetically repulsive; The electrical control cabinet (1) is equipped with two reciprocating screws (10). The two reciprocating screws (10) are respectively connected to the moving plate (12) and connected to the moving plate (12) through ball nut pair. A transmission component for providing power to the temperature control component is provided between the reciprocating screws (10) and the moving plate (12).

2. The electrical equipment for voltage-controlled temperature and pressure balance according to claim 1, characterized in that: One of the fixed frames (16) is fixedly connected to a hot air pipe (35), which is connected to the outside of the electrical control cabinet (1). The other fixed frame (16) is fixedly connected to a cold air pipe (27), and a refrigeration device (21) is fixedly connected to the outside of the electrical control cabinet (1). The refrigeration device (21) is connected to the cold air pipe (27).

3. The electrical equipment for voltage-controlled temperature and pressure balance according to claim 1, characterized in that: The transmission assembly includes two first gears (13), which are respectively sleeved on the outside of two reciprocating screws (10). A limiting groove (11) is opened on the outside of the reciprocating screw (10). A limiting block (14) is fixedly connected to the inner wall of the first gear (13). The limiting block (14) is set inside the limiting groove (11) and slidably connected to the limiting groove (11). A second gear (15) is meshed on the outside of the first gear (13). The second gear (15) is fixedly connected to the outside of the rotating disk (17).

4. The electrical equipment for voltage-controlled temperature and pressure balance according to claim 3, characterized in that: The transmission assembly also includes two synchronous pulleys (25), which are fixedly connected to the outside of two reciprocating screws (10) respectively. The two synchronous pulleys (25) are connected by belt drive. A second servo motor (26) is fixedly connected to the outside of the electrical control cabinet (1). The output end of the second servo motor (26) is fixedly connected to the reciprocating screw (10).

5. The electrical equipment for voltage-controlled temperature and pressure balance according to claim 1, characterized in that: The rotating storage frame (5) is fixedly connected to the front side of a fourth gear (24), and the fourth gear (24) is meshed with a third gear (22) on the outside. The fixed circular frame (4) is fixedly connected to the outside of a first servo motor (23), and the output end of the first servo motor (23) is fixedly connected to the third gear (22).

6. A control system for a voltage-controlled temperature and pressure balancing electrical device, applicable to the voltage-controlled temperature and pressure balancing electrical device as described in any one of claims 1-5, characterized in that, The system includes a control terminal (40) and an information acquisition unit (42). The output of the control terminal (40) is connected to a management unit (41). The output of the information acquisition unit (42) is connected to the input of the management unit (41). The output of the information acquisition unit (42) is connected to a running status analysis unit (43). The output of the running status analysis unit (43) is connected to a feedback module (44). The output of the feedback module (44) is connected to the input of the pipeline unit (41). The output of the management unit (41) is connected to a maintenance module (46). The output of the maintenance module (46) is connected to the input of the running status analysis unit (43). The output of the management unit (41) is connected to a temperature control module (47). The output of the temperature control module (47) is connected to the input of the information acquisition unit (42). The output of the management unit (41) is connected to a voice signal transmitter (48). The output of the voice signal transmitter (48) is connected to a mobile terminal (49).

7. The control system for voltage-controlled temperature and pressure balancing electrical equipment according to claim 6, characterized in that: The information acquisition unit (42) includes a temperature sensor module (421) and an operation status monitoring module (422). The output terminals of the temperature sensor module (421) and the operation status monitoring module (422) are connected to the management unit (41) and the operation status analysis unit (43). The operation status analysis unit (43) includes a temperature threshold module (431) and a voltage and pressure threshold module (432).

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