Heat dissipation system power adjustment mechanism, system and method based on temperature sensing
By installing a temperature sensing component and a heat dissipation system power adjustment mechanism of a control module in the switch cabinet, the problem of inaccurate heat dissipation system power adjustment in the prior art is solved, precise control of the temperature inside the switch cabinet is achieved, and the operating efficiency and service life of the equipment are improved.
Patent Information
- Application Number
- CN202411900166.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-23
- Publication Date
- 2025-09-26
- Estimated Expiration
- 2044-12-23
AI Technical Summary
The existing heat dissipation system power adjustment mechanism is difficult to make accurate real-time adjustments according to the operating temperature and ambient temperature of the equipment inside the switch cabinet, resulting in insufficient heat dissipation of the equipment, affecting the normal operation and service life of the equipment.
A heat dissipation system power adjustment mechanism based on temperature sensing is adopted. By installing an adjustment seat and vertical bracket on the cabinet, combined with temperature sensing components, control modules and power modules, the power of the heat dissipation components can be monitored and adjusted in real time to keep the temperature in various places in the switch cabinet within an appropriate range.
It achieves precise control of the internal temperature of the switch cabinet, ensuring that the equipment operates under appropriate conditions, extending the equipment life and improving operating efficiency.
Smart Images

Figure CN119765065B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of heat dissipation systems, and in particular to a heat dissipation system power adjustment mechanism, system and method based on temperature sensing. Background Art
[0002] Switchgear is an important device used to install, protect, and control electrical equipment and wiring. It plays a vital role in industrial production and the power industry. Within switchgear, various electrical equipment generates a significant amount of heat during operation. If heat is not dissipated promptly, the equipment temperature will rise, affecting normal operation and even causing damage or accidents. To ensure the normal operation of equipment within the switchgear, a cooling system is typically deployed to effectively dissipate heat. Existing cooling systems typically dissipate heat through fans, heat sinks, heat pipes, and other methods. However, these cooling systems typically have fixed power settings, making them difficult to adjust in real time based on factors such as equipment operating status and ambient temperature.
[0003] Some cooling systems now feature power adjustment mechanisms, enabling real-time adjustments to the cooling system's power based on the operating and ambient temperatures of the switchgear's internal equipment. This is crucial for improving switchgear operating efficiency and extending equipment life. However, the temperature measurement structure in current power adjustment mechanisms is difficult to integrate into the switchgear, making it difficult to accurately indicate and control the cooling system's power. Summary of the Invention
[0004] The purpose of the present invention is to provide a heat dissipation system power adjustment mechanism, system and method based on temperature sensing, so as to achieve the purpose of conveniently arranging the temperature measurement structure and solve the problems raised in the above background technology.
[0005] To achieve the above-mentioned purpose, the present invention provides the following technical solutions: a power adjustment mechanism of a heat dissipation system based on temperature sensing, comprising an adjustment seat, the adjustment seat being assembled on a cabinet, and an adjustment system being provided in the adjustment seat, a vertical bracket being fixedly mounted on the adjustment seat, and a fixed base being mounted at the upper and lower ends of the vertical bracket, a movable base being mounted in the middle of the vertical bracket, and the fixed base and the movable base having the same structure, a slot being formed by arranged baffles on the vertical bracket, and a connecting seat being provided at the end of the movable base, a socket being provided on the connecting seat, and the socket being able to be quickly fixed and assembled in the slot through an assembly structure, and a fixed base being provided in the fixed base and the movable base. A rotating rod is provided, and a pressure plate is provided on the rotating rod. The rotating rod can be controlled to rotate by knobs on the fixed base and the movable base, and the fixed base and the movable base can be installed in the assembly head, and a card slot is provided on the assembly head. A hollow seat is fixedly installed on the assembly head, and a telescopic rod is installed on the hollow seat. A temperature sensing component is provided at the end of the telescopic rod, and a push rod is connected to the tail of the temperature sensing component. The push rod can be extended into the hollow seat, and an end head is installed at the end of the hollow seat. An impact structure is provided in the hollow seat, and a push rod is provided in the assembly head to trigger the impact structure. When the pressure plate is clamped in the card slot, the push rod can be pushed.
[0006] Preferably, a heat dissipation component and a heat dissipation slot are respectively provided on both sides of the cabinet, and the heat dissipation component adopts an air cooling device or a water cooling device, and the heat dissipation component is controlled by an adjustment system, and the adjustment seat is set close to the heat dissipation slot.
[0007] Preferably, the adjustment seat is fixed to the cabinet by a bolt assembly, and the vertical bracket is located in the cabinet, the fixed base is pre-installed on the vertical bracket, and the movable base is installed through the connecting seat.
[0008] Preferably, the assembly structure includes an anti-slip block movably mounted on the front of the socket, and the anti-slip block is movably mounted on the guide rod inside the socket, a limiting spring and a control block are fixedly connected to the anti-slip block, and the control block is movably mounted on the rear of the socket.
[0009] Preferably, the rotating rod is horizontally rotatably installed in the fixed base and the movable base, and the pressure plate is vertically connected to both sides of the rotating rod. A first bevel gear is provided at one end of the rotating rod, and a control shaft is rotatably installed on the fixed base and the movable base. The two ends of the control shaft are respectively connected to the second bevel gear and the knob, and the first bevel gear and the second bevel gear are meshed, and the control shaft has a self-fixing function.
[0010] Preferably, the slot is composed of a vertical straight slot and fan-shaped slots on both sides thereof, and the pressure plate can press the assembly head when it is rotated from a vertical state to a horizontal state. The hollow seat is installed on the top of the assembly head, and the telescopic rod is horizontally connected to the side of the hollow seat.
[0011] Preferably, the push rod can penetrate the telescopic rod and enter the hollow seat, and after the telescopic rod is extended, the end and the push rod can enter the telescopic rod, and the temperature sensing component is composed of the anti-collision seat and the sensor therein.
[0012] Preferably, the impact structure includes a force storage spring installed in a hollow seat, and an impact head is fixedly connected to the force storage spring, the push rod is vertically slidably installed on the hollow seat and the assembly head, and the bottom end of the push rod is in the slot, and a limiting part is installed on the top end of the push rod, which can limit the impact head in the force storage state.
[0013] An adjustment system for a power adjustment mechanism of a heat dissipation system based on temperature sensing includes a temperature sensing module, a control module, a power module, a data processing module, and a power regulation module; the temperature sensing module includes a temperature sensing component, which is used to monitor the operating temperature and ambient temperature inside the switch cabinet in real time, and transmit the monitored temperature data to the control module; the control module is used to receive the temperature data transmitted by the temperature sensing module, and control the power module in real time according to preset power adjustment parameters; the power module adjusts the power output according to the instructions of the control module to realize control of the power regulation module; the data processing module is used to process the data transmitted by the temperature sensing module, perform data analysis and processing, and provide real-time temperature monitoring and power adjustment feedback information; the power regulation module is used to directly control the heat dissipation component.
[0014] A method for using a power adjustment mechanism of a heat dissipation system based on temperature sensing includes the following steps:
[0015] S1: First, assemble the adjustment base on the cabinet. Then, based on the fixed base, assemble the movable base on the vertical bracket as needed. Finally, use the assembly head to install the retracted telescopic rod and temperature sensing component on the fixed base and movable base.
[0016] S2, by turning the knob, the assembly head is finally fixed, and the telescopic rod automatically pops out and extends, sending the temperature sensing component into the gap between the components in the cabinet. The temperature inside the cabinet is measured by the distributed temperature sensing component, and the heat dissipation power of the heat dissipation component is adjusted.
[0017] Compared with the prior art, the present invention has the following beneficial effects:
[0018] 1. The power adjustment mechanism of the present invention can measure the temperature at various locations within the cabinet, analyze the temperature conditions within the cabinet through an adjustment system within the adjustment base, perform power control on the heat dissipation components, maintain the temperature at various locations within the cabinet at appropriate conditions, and ensure the normal operation of the switchgear. The adjustment base is the foundation of the power adjustment mechanism and can be assembled on the cabinet. The fixed base and movable base are installed via vertical brackets. The fixed base is located at the upper and lower locations of the cabinet, while the movable base can be assembled at any height as needed. Temperature measurement can be performed at corresponding locations to obtain a more accurate temperature distribution within the cabinet.
[0019] 2. The movable base of the present invention is easy to install, facilitating the arrangement of various components within the cabinet. The movable base is installed via a connector and a socket. A rotating rod with a pressure plate is provided within the fixed base and the movable base. The pressure plate is connected to the assembly head to mount the telescopic rod with the temperature sensing component on the base. The fixed base and the movable base can be used to assemble multiple telescopic rods, and the positions of the telescopic rods can be selected accordingly, allowing the temperature sensing component to be inserted into the corresponding gap.
[0020] 3. While assembling the telescopic rods, the present invention can push the top rod upward, causing the limit piece on the top rod to disengage from the impact head. The impact head allows the telescopic rod to extend, and the temperature sensing component can stop when encountering an obstacle, thereby monitoring the temperature at the corresponding position in the cabinet. Moreover, by controlling the knob, all telescopic rods on the same base can be extended simultaneously. BRIEF DESCRIPTION OF THE DRAWINGS
[0021] Figure 1 This is a first schematic diagram of the overall structure of the cabinet of the present invention.
[0022] Figure 2 This is a second schematic diagram of the overall structure of the cabinet of the present invention.
[0023] Figure 3 This is a first schematic diagram of the temperature measurement structure of the present invention.
[0024] Figure 4 This is a second schematic diagram of the temperature measurement structure of the present invention.
[0025] Figure 5 Schematic diagram of the vertical support structure of the present invention.
[0026] Figure 6 It is a bottom schematic diagram of the movable base structure of the present invention.
[0027] Figure 7 Schematic diagram of the connecting seat structure of the present invention.
[0028] Figure 8 Schematic diagram of the movable base structure of the present invention.
[0029] Figure 9 Schematic diagram of the rotating rod and pressure plate structure of the present invention.
[0030] Figure 10 Schematic diagram of the assembly head and telescopic rod structure of the present invention.
[0031] Figure 11 It is a schematic diagram of the push block and its limiting structure of the present invention.
[0032] In the figure: 1. Adjustment seat; 2. Cabinet; 3. Heat dissipation component; 4. Heat dissipation slot; 5. Vertical bracket; 6. Fixed base; 7. Movable base; 8. Stop rod; 9. Connecting seat; 10. Socket; 11. Anti-slip block; 12. Guide rod; 13. Limit spring; 14. Control block; 15. Rotating rod; 16. Pressing plate; 17. First bevel gear; 18. Control shaft; 19. Second bevel gear; 20. Knob; 21. Assembly head; 22. Slot; 23. Hollow seat; 24. Telescopic rod; 25. Temperature sensing component; 26. Push rod; 27. End; 28. Storage spring; 29. Impact head; 30. Push rod; 31. Limiting piece. DETAILED DESCRIPTION
[0033] The present invention is further described below in conjunction with the accompanying drawings and specific embodiments. It should be noted that, without conflict, the various embodiments or technical features described below can be arbitrarily combined to form new embodiments. It should be noted that the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative work are within the scope of protection of the present invention.
[0034] See also Figures 1 to 11The present invention provides a technical solution: a power adjustment mechanism of a heat dissipation system based on temperature sensing, comprising an adjustment seat 1, the adjustment seat 1 being assembled on a cabinet 2, and an adjustment system being provided in the adjustment seat 1, a vertical bracket 5 being fixedly mounted on the adjustment seat 1, and a fixed base 6 being mounted at the upper and lower ends of the vertical bracket 5, a movable base 7 being mounted in the middle of the vertical bracket 5, and the fixed base 6 and the movable base 7 having the same structure, a slot being formed by arranged baffles 8 on the vertical bracket 5, and a connecting seat 9 being provided at the end of the movable base 7, a socket 10 being provided on the connecting seat 9, and the socket 10 being able to be quickly fixed and assembled in the slot through an assembly structure, a rotating rod 15 being provided in the fixed base 6 and the movable base 7, and a pressing plate 16 being provided on the rotating rod 15 The rotating rod 15 can be controlled to rotate by the knob 20 on the fixed base 6 and the movable base 7, and the fixed base 6 and the movable base 7 can be installed in the assembly head 21, and a card slot 22 is provided on the assembly head 21, a hollow seat 23 is fixedly installed on the assembly head 21, and a telescopic rod 24 is installed on the hollow seat 23, and a temperature sensing component 25 is provided at the end of the telescopic rod 24, and a push rod 26 is connected to the tail of the temperature sensing component 25, the push rod 26 can be extended into the hollow seat 23, and an end head 27 is installed at the end of the hollow seat 23, an impact structure is provided in the hollow seat 23, and a push rod 30 is provided in the assembly head 21 to trigger the impact structure, and the pressure plate 16 can push the push rod 30 when it is clamped in the card slot 22.
[0035] A heat dissipation component 3 and a heat dissipation slot 4 are respectively provided on both sides of the cabinet 2 , and the heat dissipation component 3 adopts an air cooling device or a water cooling device, and the heat dissipation component 3 is controlled by an adjustment system, and the adjustment seat 1 is set close to the heat dissipation slot 4 .
[0036] The power adjustment mechanism of the present invention can measure the temperature at various locations in the cabinet 2, analyze the temperature conditions in the cabinet 2 through the adjustment system in the adjustment base 1, perform power control of the heat dissipation component 3, maintain the temperature at various locations in the cabinet 2 under appropriate conditions, and ensure the normal operation of the switch cabinet.
[0037] The adjustment base 1 is fixed to the cabinet 2 by a bolt assembly, and the vertical bracket 5 is located in the cabinet 2 , the fixed base 6 is pre-installed on the vertical bracket 5 , and the movable base 7 is installed through the connecting base 9 .
[0038] The adjustment seat 1 is the basis of the power adjustment mechanism and can be assembled on the cabinet 2 so that the vertical bracket 5 is located inside the cabinet 2. The fixed base 6 and the movable base 7 are installed through the vertical bracket 5. The fixed base 6 is located at the upper and lower positions of the cabinet 2, and the movable base 7 can be assembled at the corresponding height as needed, so that temperature measurement at the corresponding position can be performed.
[0039] The assembly structure includes an anti-slip block 11 movably mounted on the front of the socket 10, and the anti-slip block 11 is movably mounted on a guide rod 12 inside the socket 10. A limiting spring 13 and a control block 14 are fixedly connected to the anti-slip block 11, and the control block 14 is movably mounted on the rear of the socket 10.
[0040] The movable base 7 is easy to install, which facilitates the arrangement of various components in the cabinet 2. The movable base 7 is installed through the connecting seat 9 and the socket 10. During assembly, the control block 14 is pressed to make the anti-slip block 11 overcome the elastic force of the limit spring 13 and retract into the socket 10. The socket 10 can enter between adjacent baffles 8. Then the control block 14 is released to make the anti-slip block 11 engage in the baffle 8, and the fixation of the movable base 7 is quickly completed.
[0041] A rotating rod 15 is mounted horizontally within the fixed base 6 and the movable base 7, with a pressure plate 16 vertically connected to both sides of the rotating rod 15. A first bevel gear 17 is provided at one end of the rotating rod 15, and a control shaft 18 is rotatably mounted on the fixed base 6 and the movable base 7. The two ends of the control shaft 18 are respectively connected to a second bevel gear 19 and a knob 20. The first bevel gear 17 and the second bevel gear 19 mesh, and the control shaft 18 has a self-locking function. The slot 22 is composed of a vertical straight slot and fan-shaped slots on both sides. When the pressure plate 16 rotates from a vertical to a horizontal state, it can press the assembly head 21. A hollow seat 23 is mounted on the top of the assembly head 21, and a telescopic rod 24 is horizontally connected to the side of the hollow seat 23.
[0042] A rotating rod 15 with a pressure plate 16 is provided in the fixed base 6 and the movable base 7. The telescopic rod 24 with the temperature sensing component 25 can be installed on the base through the connection between the pressure plate 16 and the assembly head 21. The fixed base 6 and the movable base 7 are both provided with a certain length, and multiple telescopic rods 24 can be assembled, and the position of the telescopic rod 24 can be selected accordingly so that the temperature sensing component 25 can be extended into the corresponding gap. When assembling the telescopic rod 24, the assembly head 21 is first placed in the base, and then the control shaft 18 is driven to rotate by the knob 20, and the second bevel gear 19 drives the first bevel gear 17 to rotate, thereby rotating the rotating rod 15, and the pressure plate 16 can be rotated from a vertical state to a horizontal state in the slot 22, pressing the assembly head 21 to prevent the assembly head 21 from moving.
[0043] The push rod 26 can penetrate the telescopic rod 24 and enter the hollow seat 23. After the telescopic rod 24 is extended, the end 27 and the push rod 26 can enter the telescopic rod 24. The temperature sensing assembly 25 is composed of the anti-collision seat and the sensor therein. The impact structure includes a force storage spring 28 installed in the hollow seat 23, and the force storage spring 28 is fixedly connected to the impact head 29. The push rod 30 is vertically slidably mounted on the hollow seat 23 and the assembly head 21, with the bottom end of the push rod 30 located in the slot 22. The top end of the push rod 30 is installed with a limit member 31, which can limit the position of the impact head 29 when the force is stored.
[0044] When the pressure plate 16 rotates to a horizontal state, the push rod 30 can be pushed upward, so that the limit piece 31 on the push rod 30 is disengaged from the impact head 29, and the elastic force of the storage spring 28 pushes the impact head 29 outward, and the impact head 29 hits the end head 27, and then drives the push rod 26 and the temperature sensing component 25 through the end head 27, and uses inertia to extend the telescopic rod 24. The temperature sensing component 25 can stop when encountering an obstacle, so as to monitor the temperature at the corresponding position in the cabinet 2. By controlling the knob 20, all the telescopic rods 24 on the same base can be extended at the same time to enter the cabinet 2 to measure the temperature.
[0045] An adjustment system for a heat dissipation system power adjustment mechanism based on temperature sensing, the adjustment system comprising a temperature sensing module, a control module, a power module, a data processing module, and a power adjustment module;
[0046] The temperature sensing module includes a temperature sensing component 25, which is used to monitor the operating temperature and ambient temperature inside the switch cabinet in real time and transmit the monitored temperature data to the control module;
[0047] The control module is used to receive the temperature data transmitted by the temperature sensing module and control the power module in real time according to the preset power adjustment parameters;
[0048] The power module adjusts the power output according to the instructions of the control module to realize the control of the power regulation module;
[0049] The data processing module is used to process the data transmitted by the temperature sensing module, perform data analysis and processing, and provide real-time temperature monitoring and power adjustment feedback information;
[0050] The power regulation module is used to directly control the heat dissipation component 3 .
[0051] A method for using a power adjustment mechanism of a heat dissipation system based on temperature sensing includes the following steps:
[0052] S1: First, assemble the adjustment base 1 on the cabinet 2. Then, assemble the movable base 7 on the vertical bracket 5 based on the fixed base 6 as needed. Finally, use the assembly head 21 to install the retracted telescopic rod 24 and the temperature sensing component 25 on the fixed base 6 and the movable base 7.
[0053] S2, the final fixation of the assembly head 21 is completed by rotating the knob 20, and at the same time, the telescopic rod 24 automatically pops out and extends, sending the temperature sensing component 25 into the gap between the components in the cabinet 2. The temperature inside the cabinet 2 is measured by the distributed temperature sensing component 25, and the heat dissipation power of the heat dissipation component 3 is adjusted.
[0054] When the power adjustment mechanism of the present invention is in use: first, the adjustment base 1 is the basis of the power adjustment mechanism, which can be assembled on the cabinet 2, so that the vertical bracket 5 is located in the cabinet 2, and the fixed base 6 and the movable base 7 are installed through the vertical bracket 5. The fixed base 6 is located at the upper and lower parts of the cabinet 2, and the movable base 7 can be assembled at the corresponding height as needed, and can measure the temperature at the corresponding position. The movable base 7 has the characteristics of easy installation, which is convenient for the arrangement of various components in the cabinet 2. The movable base 7 is installed through the connecting base 9 and the socket 10. During assembly, by pressing the control block 14, the anti-slip block 11 overcomes the elastic force of the limit spring 13 and retracts into the socket 10, and the socket 10 can enter between the adjacent baffles 8. Then, the control block 14 is released, so that the anti-slip block 11 is clamped in the baffle 8, and the fixation of the movable base 7 is quickly completed. A rotating rod 15 with a pressure plate 16 is provided in the fixed base 6 and the movable base 7. The pressing plate 16 can be connected to the assembly head 21 to install the telescopic rod 24 with the temperature sensing component 25 on the base. The fixed base 6 and the movable base 7 are both provided with a certain length, which can It is possible to assemble multiple telescopic rods 24, and the position of the telescopic rods 24 can be selected accordingly so that the temperature sensing component 25 can be extended into the corresponding gap. When assembling the telescopic rods 24, first place the assembly head 21 into the base, then drive the rotation of the control shaft 18 through the knob 20, and the second bevel gear 19 drives the first bevel gear 17 to rotate, thereby rotating the rotating rod 15, and the pressing plate 16 can be rotated from a vertical state to a horizontal state in the slot 22, pressing the assembly head 21 to prevent the assembly head 21 from moving. When the pressing plate 16 rotates to the horizontal state, The push rod 30 can be pushed upward so that the limit piece 31 on the push rod 30 is disengaged from the impact head 29. The elastic force of the storage spring 28 pushes the impact head 29 outward, and the impact head 29 hits the end head 27. Then, the push rod 26 and the temperature sensing component 25 are driven by the end head 27, and the inertia is used to extend the telescopic rod 24. The temperature sensing component 25 can stop when encountering an obstacle, so as to monitor the temperature at the corresponding position in the cabinet 2. By controlling the knob 20, all the telescopic rods 24 on the same base can be extended at the same time to enter the cabinet 2 to measure the temperature.
[0055] While embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions, and variations may be made to these embodiments without departing from the principles and spirit of the invention, and that the scope of the invention is defined by the appended claims and their equivalents.
Claims
1. A heat dissipation system power adjustment mechanism based on temperature sensing, comprising an adjustment seat (1), characterized in that: The adjustment seat (1) is assembled on the cabinet (2), and an adjustment system is provided in the adjustment seat (1). A vertical bracket (5) is fixedly installed on the adjustment seat (1), and fixed bases (6) are installed at the upper and lower ends of the vertical bracket (5). A movable base (7) is installed in the middle of the vertical bracket (5), and the fixed base (6) and the movable base (7) have the same structure. A slot is formed by arranged blocking rods (8) on the vertical bracket (5), and a connecting seat (9) is provided at the end of the movable base (7). A socket (10) is provided on the connecting seat (9), and the socket (10) can be quickly fixed and assembled in the slot through an assembly structure. A rotating rod (15) is provided in the fixed base (6) and the movable base (7), and a pressure plate (16) is provided on the rotating rod (15). The rotating rod (15) can be moved by the fixed base (6) and the movable base (7). The knob (20) on the base (7) controls the rotation, and the fixed base (6) and the movable base (7) can be loaded into the assembly head (21), and a slot (22) is provided on the assembly head (21), a hollow seat (23) is fixedly installed on the assembly head (21), and a telescopic rod (24) is installed on the hollow seat (23), the end of the telescopic rod (24) is provided with a temperature sensing component (25), and the tail of the temperature sensing component (25) is connected to a push rod (26), the push rod (26) can be extended into the hollow seat (23), and the end of the hollow seat (23) is provided with an end head (27), an impact structure is provided in the hollow seat (23), and a push rod (30) is provided in the assembly head (21) to trigger the impact structure, and the pressure plate (16) can push the push rod (30) when it is engaged in the slot (22); The impact structure includes a force storage spring (28) installed in a hollow seat (23), and a striker (29) is fixedly connected to the force storage spring (28), and a limit member (31) is installed at the top end of the push rod (30), and the limit member (31) can limit the striker (29) in a force storage state. When the impact structure is triggered, the elastic force of the force storage spring (28) sends the striker (29) outward, and the striker (29) strikes the end head (27).
2. The heat dissipation system power adjustment mechanism based on temperature sensing according to claim 1, characterized in that: A heat dissipation component (3) and a heat dissipation slot (4) are respectively provided on both sides of the cabinet (2), and the heat dissipation component (3) adopts an air cooling device or a water cooling device, and the heat dissipation component (3) is controlled by an adjustment system, and the adjustment seat (1) is provided close to the heat dissipation slot (4).
3. The heat dissipation system power adjustment mechanism based on temperature sensing according to claim 1, characterized in that: The adjustment seat (1) is fixed to the cabinet (2) via a bolt assembly, and the vertical bracket (5) is located in the cabinet (2), the fixed base (6) is pre-installed on the vertical bracket (5), and the movable base (7) is installed via the connecting seat (9).
4. The heat dissipation system power adjustment mechanism based on temperature sensing according to claim 1, characterized in that: The assembly structure comprises an anti-slip block (11) movably mounted on the front of the socket (10), and the anti-slip block (11) is movably mounted on a guide rod (12) in the socket (10), a limiting spring (13) and a control block (14) are fixedly connected to the anti-slip block (11), and the control block (14) is movably mounted on the rear of the socket (10).
5. The heat dissipation system power adjustment mechanism based on temperature sensing according to claim 1, characterized in that: The rotating rod (15) is horizontally rotatably mounted in the fixed base (6) and the movable base (7), and the pressure plate (16) is vertically connected to both sides of the rotating rod (15). A first bevel gear (17) is provided at one end of the rotating rod (15), and a control shaft (18) is rotatably mounted on the fixed base (6) and the movable base (7). The two ends of the control shaft (18) are respectively connected to a second bevel gear (19) and a knob (20), and the first bevel gear (17) and the second bevel gear (19) are meshed, and the control shaft (18) has a self-fixing function.
6. The heat dissipation system power adjustment mechanism based on temperature sensing according to claim 1, characterized in that: The clamping slot (22) is composed of a vertical straight slot and fan-shaped slots on both sides thereof, and the pressing plate (16) is capable of pressing the assembly head (21) when it is rotated from a vertical position to a horizontal position. The hollow seat (23) is installed on the top of the assembly head (21), and the telescopic rod (24) is horizontally connected to the side of the hollow seat (23).
7. The heat dissipation system power adjustment mechanism based on temperature sensing according to claim 1, characterized in that: The push rod (26) can penetrate the telescopic rod (24) and enter the hollow seat (23), and after the telescopic rod (24) is extended, the end (27) and the push rod (26) can enter the telescopic rod (24), and the temperature sensing component (25) is composed of the anti-collision seat and the sensor therein.
8. The heat dissipation system power adjustment mechanism based on temperature sensing according to claim 1, characterized in that: The push rod (30) is vertically slidably mounted on the hollow seat (23) and the assembly head (21), and the bottom end of the push rod (30) is located in the slot (22).
9. The adjustment system of the heat dissipation system power adjustment mechanism based on temperature sensing as claimed in claim 1, characterized in that: The adjustment system includes a temperature sensing module, a control module, a power supply module, a data processing module, and a power regulation module; The temperature sensing module includes a temperature sensing component (25) for monitoring the operating temperature and ambient temperature inside the switch cabinet in real time, and transmitting the monitored temperature data to the control module; The control module is used to receive the temperature data transmitted by the temperature sensing module and control the power supply module in real time according to the preset power adjustment parameters; The power supply module adjusts the power output according to the instructions of the control module to realize the control of the power regulation module; The data processing module is used to process the data transmitted by the temperature sensing module, perform data analysis and processing, and provide real-time temperature monitoring and power adjustment feedback information; The power regulation module is used to directly control the heat dissipation component (3).
10. The method for using the power adjustment mechanism of a heat dissipation system based on temperature sensing according to any one of claims 1 to 8, characterized in that: The method of use includes the following steps: S1, first assemble the adjustment base (1) on the cabinet (2), then assemble the movable base (7) on the vertical bracket (5) based on the fixed base (6) as needed, and finally install the retracted telescopic rod (24) and the temperature sensing component (25) on the fixed base (6) and the movable base (7) by means of the assembly head (21); S2, the final fixation of the assembly head (21) is completed by rotating the knob (20), and at the same time, the telescopic rod (24) is automatically popped out and extended, and the temperature sensing component (25) is sent into the gap between the components in the cabinet (2). The temperature in the cabinet (2) is measured by the distributed temperature sensing component (25), and the heat dissipation power of the heat dissipation component (3) is adjusted.
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