Energy-saving control cabinet for RCF intelligent air-conditioning system water pump
By designing the air intake and exhaust mechanisms, combined with the drive mechanism and multi-stage bevel gear transmission system, the problem of heat flow disturbance in the water pump energy-saving control cabinet of the air conditioning system was solved, improving heat dissipation and airflow efficiency, and enhancing the stability and installation firmness of the equipment.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- ZHUHAI BEIJIALAI AUTOMATION TECH CO LTD
- Filing Date
- 2025-04-30
- Publication Date
- 2026-04-17
AI Technical Summary
The energy-saving control cabinet of the water pump in the existing air conditioning system has difficulty in guiding the gas inside the equipment, causing the heat flow to wander inside the equipment and making it difficult to be effectively discharged, thus affecting the heat dissipation efficiency.
An energy-saving control cabinet including an air intake mechanism and an air exhaust mechanism was designed. The air exhaust mechanism is driven by a drive mechanism to guide the heat flow out, and the air intake mechanism improves the gas transmission efficiency. The multi-stage bevel gear and sprocket chain transmission system is used to stabilize the transmission and ensure the stability of equipment operation and heat dissipation efficiency.
It achieves effective heat flow guidance and discharge, improves heat dissipation efficiency and airflow efficiency, and enhances equipment stability and installation firmness.
Smart Images

Figure CN224139336U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of air conditioning control cabinet technology, specifically an energy-saving control cabinet for water pumps in RCF intelligent air conditioning systems. Background Technology
[0002] An energy-saving control cabinet for air conditioning system water pumps is a device used to optimize the operation of water pumps in air conditioning systems to achieve energy savings. However, existing energy-saving control cabinets for air conditioning system water pumps have some shortcomings, such as:
[0003] Application No.: CN202210172508.4 describes an energy-saving control cabinet for a water pump in an intelligent air conditioning system. This device can accelerate the airflow speed inside the cabinet through exhaust ventilation, thereby improving the heat dissipation performance of the cabinet. At the same time, under the drive of wind power, it can control the regulating device to drive the exhaust device to swing back and forth, thereby increasing the heat dissipation area and achieving a uniform heat dissipation effect. However, in actual use, due to the difficulty in guiding the gas inside the device, the heat flow may be chaotic inside the device, which may result in the heat flow being difficult to dissipate.
[0004] Therefore, we proposed an energy-saving control cabinet for the water pump of the RCF intelligent air conditioning system to solve the problems mentioned above. Utility Model Content
[0005] The purpose of this utility model is to provide an energy-saving control cabinet for water pumps in RCF intelligent air conditioning systems, in order to solve the problem mentioned in the background art that most energy-saving control cabinets for water pumps in air conditioning systems on the market are difficult to guide the gas inside the equipment, which may cause the heat flow to run around inside the equipment and thus make it difficult to discharge the heat.
[0006] To achieve the above objectives, the present invention provides the following technical solution: an energy-saving control cabinet for a water pump in an RCF intelligent air conditioning system, comprising a main body and an air intake box disposed at the bottom of the main body, wherein the air intake box is provided with an air intake mechanism and a drive mechanism;
[0007] The main body of the device is equipped with an air outlet mechanism, and the bottom of the air outlet mechanism is connected to the drive mechanism. The air outlet mechanism includes a reciprocating threaded shaft, and a fan housing is provided on the outside of the reciprocating threaded shaft. A first bevel gear is provided inside the fan housing. A grooved rod is slidably connected to the inner side of the first bevel gear. A second bevel gear is meshed at the front end of the first bevel gear. A third bevel gear is connected to the front end of the second bevel gear. A fourth bevel gear is meshed at the left end of the third bevel gear. An air outlet fan blade is connected to the left end of the fourth bevel gear.
[0008] By driving the air outlet mechanism, the air outlet mechanism can guide the heat flow generated inside the device body, so that the heat flow can be better discharged into the device body. This makes heat dissipation more convenient and increases the heat dissipation efficiency of the device.
[0009] As a preferred technical solution of this utility model, the drive mechanism includes a drive motor, which is located inside the air intake box. A third sprocket is provided on the top of the drive motor. A second chain is engaged on the outer side of the third sprocket, and a fourth sprocket is engaged at the rear end of the second chain. The top of the third sprocket is connected to a reciprocating threaded shaft, and the top of the fourth sprocket is fixedly connected to a grooved rod.
[0010] The above technical solution enables the drive motor to operate more stably when driving the reciprocating threaded shaft and the grooved rod in the air outlet mechanism, thereby increasing the efficiency of the equipment during use.
[0011] As a preferred technical solution of this utility model, the top of the drive motor is connected to the air intake mechanism, and the air intake mechanism includes a first sprocket, and a first chain is engaged on the outer side of the first sprocket. A second sprocket is engaged on the left end of the first chain, and an air intake fan blade is connected to the top of the second sprocket. A filter block is connected to the left end of the air intake box, and an air intake mesh is connected to the top of the air intake box.
[0012] The above technical solution makes it easier for the air inlet box to transfer gas to the main body of the device, thereby increasing the airflow efficiency of the device.
[0013] As a preferred technical solution of this utility model, the top of the air intake mesh is connected to the bottom of the main body of the device, and the front end of the second bevel gear is provided with a drive shaft, and the outer side of the drive shaft is fixedly connected to the third bevel gear.
[0014] The above technical solution enables the second bevel gear to be more stable when connected with the third bevel gear, thereby increasing the stability of the equipment during operation.
[0015] As a preferred technical solution of this utility model, a controller body is installed inside the main body of the device, and a water pump body is installed inside the main body of the device.
[0016] The above technical solution enables greater stability when installing air conditioning control equipment and water pumps inside the main body of the device, thereby increasing the stability of the device during installation.
[0017] As a preferred technical solution of this utility model, a pipe is connected to the rear end of the water pump body, and the pipe passes through the rear end of the device body to connect with other equipment.
[0018] The above technical solution enables the water pump body to be more stable when connected to other equipment, thereby increasing the stability of the equipment during installation.
[0019] As a preferred technical solution of this utility model, the front end of the device body is provided with a closed door, and the closed door is rotatably connected to the front end of the device body through a hinge, and the left end of the device body is provided with an air outlet.
[0020] The above technical solution enables the closed door to be more stable when connected to the main body of the device, thereby increasing the robustness of the device during use.
[0021] Compared with the prior art, the beneficial effects of this utility model are: by driving the air outlet mechanism to operate, the air outlet mechanism can guide the heat flow generated inside the device body, so that the heat flow can be better discharged into the device body. When the device is dissipating heat, it is more convenient and the heat dissipation efficiency of the device is increased.
[0022] Furthermore, the air intake mechanism makes it easier for the air intake box to transfer gas into the main body of the device, thereby increasing the airflow efficiency of the device.
[0023] Furthermore, by adjusting the drive shaft, the connection between the second and third bevel gears becomes more stable, thereby increasing the stability of the device during operation. Attached Figure Description
[0024] Figure 1 This is a front view of the structure of this utility model;
[0025] Figure 2 This is a three-dimensional structural schematic diagram of the front cross-section of this utility model;
[0026] Figure 3 This is a three-dimensional structural diagram of the air intake fan blade of this utility model;
[0027] Figure 4 This is a three-dimensional structural diagram of the reciprocating threaded shaft and the grooved rod of this utility model;
[0028] Figure 5 This is a three-dimensional structural schematic diagram of the front cross-section of the fan casing of this utility model;
[0029] Figure 6 This is a three-dimensional structural schematic diagram of the fan casing of this utility model, viewed from top.
[0030] In the diagram: 1. Main body of the device; 2. Air inlet box; 3. Drive motor; 4. First sprocket; 5. First chain; 6. Second sprocket; 7. Air inlet fan blade; 8. Air inlet screen; 9. Filter block; 10. Air outlet screen; 11. Third sprocket; 12. Second chain; 13. Fourth sprocket; 14. Reciprocating threaded shaft; 15. Grooved rod; 16. Fan housing; 17. First bevel gear; 18. Second bevel gear; 19. Drive shaft; 20. Third bevel gear; 21. Fourth bevel gear; 22. Air outlet fan blade; 23. Controller body; 24. Water pump body; 25. Closing door. Detailed Implementation
[0031] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments.
[0032] To address the problem of difficulty in guiding heat flow inside the main body 1 of the device in the prior art, the following solution is disclosed. Please refer to [link / reference]. Figures 1-6 This utility model provides a technical solution: an energy-saving control cabinet for water pumps in RCF intelligent air conditioning systems, including a device body 1 and an air inlet box 2 disposed at the bottom of the device body 1, wherein the air inlet box 2 is provided with an air inlet mechanism and a drive mechanism.
[0033] The main body 1 of the device is provided with an air outlet mechanism, and the bottom of the air outlet mechanism is connected to the drive mechanism. The air outlet mechanism includes a reciprocating threaded shaft 14, and a fan housing 16 is provided on the outside of the reciprocating threaded shaft 14. A first bevel gear 17 is provided inside the fan housing 16. A grooved rod 15 is slidably connected to the inner side of the first bevel gear 17. A second bevel gear 18 is meshed at the front end of the first bevel gear 17. A third bevel gear 20 is connected to the front end of the second bevel gear 18. A fourth bevel gear 21 is meshed at the left end of the third bevel gear 20. An air outlet fan blade 22 is connected to the left end of the fourth bevel gear 21.
[0034] The drive mechanism includes a drive motor 3, which is located inside the air intake box 2. The drive motor 3 has a third sprocket 11 on its top. A second chain 12 is engaged on the outer side of the third sprocket 11, and a fourth sprocket 13 is engaged at the rear end of the second chain 12. The top of the third sprocket 11 is connected to a reciprocating threaded shaft 14, and the top of the fourth sprocket 13 is fixedly connected to a grooved rod 15.
[0035] The top of the drive motor 3 is connected to the air intake mechanism, and the air intake mechanism includes a first sprocket 4, and a first chain 5 is engaged on the outside of the first sprocket 4. A second sprocket 6 is engaged on the left end of the first chain 5, and an air intake fan blade 7 is connected to the top of the second sprocket 6. A filter block 9 is connected to the left end of the air intake box 2, and an air intake mesh 8 is connected to the top of the air intake box 2.
[0036] The top of the air intake mesh 8 is connected to the bottom of the device body 1, and the front end of the second bevel gear 18 is provided with a drive shaft 19, and the outer side of the drive shaft 19 is fixedly connected to the third bevel gear 20. The controller body 23 is installed inside the device body 1, and the water pump body 24 is installed inside the device body 1.
[0037] The pump body 24 has a pipe connected to its rear end, and the pipe passes through the rear end of the device body 1 to connect with other equipment. The device body 1 has a closing door 25 at its front end, and the closing door 25 is rotatably connected to the front end of the device body 1 via a hinge. The device body 1 also has an air outlet 10 at its left end.
[0038] Working principle: When using the energy-saving control cabinet of the air conditioning system water pump, first connect the equipment power supply and the power grid to supply power, then drive the intake mechanism to run, so that the intake mechanism transmits gas to the inside of the main body 1. At the same time, the drive mechanism also drives the exhaust mechanism to run, so that the reciprocating threaded shaft 14 drives the fan housing 16 to move up and down. At the same time, the grooved rod 15 also drives the first bevel gear 17 inside the fan housing 16 to rotate, so that the first bevel gear 17 drives the second bevel gear 18 to rotate, and the second bevel gear 18 drives the third bevel gear 20 to rotate, so that the third bevel gear 20 drives the fourth bevel gear 21 and the exhaust fan blade 22 to rotate, so that the exhaust fan blade 22 is driven to rise and fall by the fan housing 16 when rotating.
[0039] When the drive mechanism is running, the drive motor 3 will drive the third sprocket 11 to rotate, so that the third sprocket 11 drives the fourth sprocket 13 to rotate through the second chain 12, so that the third sprocket 11 and the fourth sprocket 13 rotate simultaneously, thereby causing the third sprocket 11 to drive the reciprocating threaded shaft 14 to rotate, and the fourth sprocket 13 to drive the grooved rod 15 to rotate.
[0040] When the drive motor 3 is running, it will also drive the air intake mechanism to run, which will cause the air intake mechanism to drive the first chain 5 to rotate through the first sprocket 4, which in turn will drive the second sprocket 6 to rotate. The second sprocket 6 will then drive the air intake fan blades 7 to rotate, so that the filter block 9 will filter and transmit the air to the air intake box 2, and the air intake fan blades 7 will transmit the air through the air intake net 8 to the inside of the device body 1, and then discharge it through the air outlet net 10.
[0041] This completes a series of tasks. The contents not described in detail in this specification are existing technologies known to those skilled in the art.
[0042] It will be apparent to those skilled in the art that this invention is not limited to the details of the exemplary embodiments described above, and that it can be implemented in other specific forms without departing from the spirit or essential characteristics of this invention. Therefore, the embodiments should be considered illustrative and non-limiting in all respects, and the scope of this invention is defined by the appended claims rather than the foregoing description. Thus, it is intended that all variations falling within the meaning and scope of equivalents of the claims be included within this invention. No reference numerals in the claims should be construed as limiting the scope of the claims.
Claims
1. An energy-saving control cabinet for a water pump in an RCF intelligent air conditioning system, comprising a main body (1) and an air intake box (2) disposed at the bottom of the main body (1), wherein the air intake box (2) is provided with an air intake mechanism and a drive mechanism; Its features are: The main body (1) of the device is provided with an air outlet mechanism, and the bottom of the air outlet mechanism is connected to the drive mechanism. The air outlet mechanism includes a reciprocating threaded shaft (14), and a fan housing (16) is provided on the outside of the reciprocating threaded shaft (14). A first bevel gear (17) is provided inside the fan housing (16). A grooved rod (15) is slidably connected to the inner side of the first bevel gear (17). A second bevel gear (18) is meshed at the front end of the first bevel gear (17). A third bevel gear (20) is connected to the front end of the second bevel gear (18). A fourth bevel gear (21) is meshed at the left end of the third bevel gear (20). An air outlet fan blade (22) is connected to the left end of the fourth bevel gear (21).
2. The energy-saving control cabinet for the water pump of the RCF intelligent air conditioning system according to claim 1, characterized in that, The drive mechanism includes a drive motor (3), which is located inside the air intake box (2). The drive motor (3) has a third sprocket (11) on top. The third sprocket (11) is engaged with a second chain (12) on its outer side, and a fourth sprocket (13) is engaged with the rear end of the second chain (12). The top of the third sprocket (11) is connected to a reciprocating threaded shaft (14), and the top of the fourth sprocket (13) is fixedly connected to a grooved rod (15).
3. The energy-saving control cabinet for the water pump of the RCF intelligent air conditioning system according to claim 2, characterized in that, The top of the drive motor (3) is connected to the air intake mechanism, and the air intake mechanism includes a first sprocket (4), and a first chain (5) is engaged on the outside of the first sprocket (4). A second sprocket (6) is engaged on the left end of the first chain (5), and an air intake fan blade (7) is connected to the top of the second sprocket (6). A filter block (9) is connected to the left end of the air intake box (2), and an air intake mesh (8) is connected to the top of the air intake box (2).
4. The energy-saving control cabinet for the water pump of the RCF intelligent air conditioning system according to claim 3, characterized in that, The top of the air intake mesh (8) is connected to the bottom of the main body (1), and the front end of the second bevel gear (18) is provided with a drive shaft (19), and the outer side of the drive shaft (19) is fixedly connected to the third bevel gear (20).
5. The energy-saving control cabinet for the water pump of the RCF intelligent air conditioning system according to claim 4, characterized in that, The device body (1) is equipped with a controller body (23) and a water pump body (24).
6. The energy-saving control cabinet for the water pump of the RCF intelligent air conditioning system according to claim 5, characterized in that, The pump body (24) has a pipe connected to its rear end, and the pipe passes through the rear end of the device body (1) to connect with other equipment.
7. The energy-saving control cabinet for the water pump of the RCF intelligent air conditioning system according to claim 6, characterized in that, The device body (1) has a closed door (25) at the front end, and the closed door (25) is rotatably connected to the front end of the device body (1) via a hinge. The device body (1) also has an air outlet (10) at the left end.
Citation Information
Patent Citations
Energy-saving control cabinet for water pump of intelligent air conditioning system
CN114508838A