Electrical control device of integrated sewage treatment equipment

By designing a combination of scraper and dust collection components in the electrical control device, the problem of dust accumulation is solved, more efficient heat dissipation and component protection are achieved, and the stability of the device is ensured.

CN223570267UActive Publication Date: 2025-11-21YUNNAN JINGXIAO ELECTROMECHANICAL AUTOMATION EQUIP CO LTD
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Patent Information

Application Number
CN202422864635.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-22
Publication Date
2025-11-21
Estimated Expiration
2034-11-22

AI Technical Summary

Technical Problem

Existing electrical control devices in integrated wastewater treatment equipment lack dust cleaning structures, leading to internal dust accumulation, reduced heat dissipation efficiency, and potentially damage to components.

Method used

An electrical control device is designed, comprising a control box, a heat dissipation trough, a protective cover, a scraper, a U-shaped plate, a dustproof net, and a dust collection component. The scraper removes dust, the clamping component shakes the dust, and the dust is then removed by the dust collection component, thus achieving automated dust cleaning.

Benefits of technology

This improves the heat dissipation efficiency of components, prevents component damage caused by dust accumulation, and ensures the stable operation of electrical control devices.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model is applicable to the technical field of sewage treatment equipment, and provides an integrated sewage treatment equipment electrical control device which comprises a control box and heat dissipation grooves, the two side walls of the control box are both provided with the heat dissipation grooves, the inner wall of the control box is fixedly connected with two protective covers, one end face of each protective cover is provided with a through groove, and the through grooves are communicated with the heat dissipation grooves. The inner wall of the protective cover is further fixedly connected with two symmetrically-distributed partition plates, the partition plates are fixedly connected with a plurality of evenly-distributed scraping plates, a concentric-square-shaped plate is slidably connected between the partition plates and the inner wall of one end face of the protective cover, a dustproof net is fixedly connected into the concentric-square-shaped plate, and the upper end of the concentric-square-shaped plate is fixedly connected with a fixing column; a straight groove plate is fixedly connected to the upper end of the fixing column, a clamping assembly is arranged on the straight groove plate in a matched mode, and a plurality of first springs are fixedly arranged between the inner wall of the bottom end of the protective cover and the outer wall of the bottom end of the concentric-square-shaped plate. The dust screen has the advantage that dust on the dust screen is removed through the dual functions of scraping and oscillation.
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Description

Technical Field

[0001] This utility model relates to the field of sewage treatment equipment technology, and in particular to an integrated sewage treatment equipment electrical control device. Background Technology

[0002] Wastewater treatment is the process of purifying wastewater to meet the water quality requirements for discharge into a water body or for reuse. Integrated wastewater treatment equipment is required for wastewater treatment, and electrical control devices are needed to control the integrated wastewater treatment equipment during use.

[0003] Modern electrical control devices typically lack dust removal mechanisms, leading to a buildup of dust inside. This significantly reduces the heat dissipation efficiency of components and can even damage internal components in severe cases.

[0004] Therefore, in view of the above situation, there is an urgent need to develop an integrated electrical control device for sewage treatment equipment to overcome the shortcomings in current practical applications. Utility Model Content

[0005] The purpose of this utility model embodiment is to provide an integrated electrical control device for sewage treatment equipment, which aims to solve the problems mentioned in the background art.

[0006] To achieve the above objectives, this utility model provides the following technical solution:

[0007] An integrated sewage treatment equipment electrical control device includes a control box and heat dissipation slots. Heat dissipation slots are provided on both side walls of the control box. Two protective covers are fixedly connected to the inner wall of the control box, with each cover corresponding to one of the heat dissipation slots. A through groove is formed on one end face of each protective cover. Two symmetrically distributed partitions are also fixedly connected to the inner wall of each protective cover. Multiple evenly distributed scrapers are fixedly connected to the partitions. A U-shaped plate is slidably connected between the partitions and the inner wall of one end face of the protective cover. A dustproof net is fixedly connected inside the U-shaped plate, and the scrapers are used to scrape away dust from the surface of the dustproof net. A fixing post is fixedly connected to the upper end of the U-shaped plate, and a straight groove plate is fixedly connected to the upper end of the fixing post. A clamping component is provided on the straight groove plate. The clamping component is used to drive the straight groove plate to rise to a certain height and then release it. Multiple evenly distributed first springs are fixedly installed between the inner wall of the bottom end of the protective cover and the outer wall of the bottom end of the U-shaped plate. The U-shaped plate is driven to oscillate back and forth continuously by the cooperation of the first springs and the clamping component, so that the dust on the dustproof net is loosened by vibration and is more easily removed by the scraper. A dust suction port is opened at the bottom end of the protective cover, and a dust suction component is connected to the dust suction port.

[0008] In a further technical solution, the centerline of the through groove is collinear with the centerline of the heat dissipation groove; the scraper has a trapezoidal cross-section.

[0009] In a further technical solution, the arcs on both sides of the straight groove plate are concentric circles with the same radius.

[0010] A further technical solution includes a clamping assembly comprising a T-shaped plate, a trapezoidal groove, a clamping plate, a push rod, a second spring, and a fixed shaft; a T-shaped plate is slidably connected to the protective cover, and two symmetrically distributed fixed shafts are fixedly connected to the T-shaped plate; a clamping plate is rotatably sleeved on the outer wall of the fixed shaft, and the clamping plate abuts against the inner wall of the protective cover; a trapezoidal groove is provided at the upper end of the protective cover, and the inner wall of the trapezoidal groove is fitted to the upper end of the clamping plate; a push rod is fixedly connected to each clamping plate, and a second spring is fixedly sleeved on each of the two push rods.

[0011] A further technical solution is that an electric telescopic rod is fixedly connected to the upper end of the control box, and a horizontal plate is fixedly connected to the drive end of the electric telescopic rod, with T-shaped plates fixedly connected to both ends of the horizontal plate.

[0012] In a further technical solution, the position height of the push rod is higher than that of the fixed shaft.

[0013] In a further technical solution, the dust collection component includes an air pump and a dust collection bag; the air pump and the dust collection bag are fixedly connected to the side wall of the control box, the air outlet of the air pump is connected to the dust collection bag, and the air inlet of the air pump is fixedly connected to the dust collection port through a hose.

[0014] In summary, the embodiments of this utility model have the following beneficial effects compared with the prior art:

[0015] 1. The clamping assembly lifts the straight slot plate to a certain height and then releases it. The scraper removes the dust from the surface of the dustproof mesh, and the dust removal assembly processes the dust removed from the dustproof mesh, thereby allowing more air to flow through and improving the heat dissipation efficiency of the components.

[0016] 2. The first spring and the clamping assembly work together to drive the reciprocating plate to vibrate continuously, thereby loosening the dust on the dustproof net and making it easier to remove.

[0017] To more clearly illustrate the structural features and effects of this utility model, the following detailed description of this utility model is provided in conjunction with the accompanying drawings and specific embodiments. Attached Figure Description

[0018] Figure 1 This is a three-dimensional structural diagram of the present invention;

[0019] Figure 2 This is a three-dimensional structural schematic diagram of the present invention from another perspective;

[0020] Figure 3 This is a three-dimensional structural diagram of the internal structure of the control box of this utility model;

[0021] Figure 4 This utility model Figure 3 Another perspective of the three-dimensional structure diagram;

[0022] Figure 5 This utility model Figure 3 A schematic diagram of the three-dimensional cross-section structure.

[0023] In the diagram: 1. Control box; 2. Heat dissipation duct; 3. Electric telescopic rod; 4. Horizontal plate; 5. T-shaped plate; 6. Protective cover; 7. Through groove; 8. Partition plate; 9. U-shaped plate; 10. Dustproof net; 11. Scraper; 12. First spring; 13. Dust suction port; 14. Fixed column; 15. Straight groove plate; 16. Trapezoidal groove; 17. Clamping plate; 18. Push rod; 19. Second spring; 20. Air pump; 21. Dust collection bag; 22. Fixed shaft. Detailed Implementation

[0024] To make the objectives, technical solutions, and advantages of this utility model clearer, the present utility model will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain this utility model and are not intended to limit this utility model.

[0025] The specific implementation of this utility model will be described in detail below with reference to specific embodiments.

[0026] like Figure 1-5As shown, this utility model embodiment provides an integrated sewage treatment equipment electrical control device, including a control box 1 and a heat dissipation trough 2. Heat dissipation troughs 2 are provided on both side walls of the control box 1. Two protective covers 6 are fixedly connected to the inner wall of the control box 1, and each protective cover 6 corresponds to one heat dissipation trough 2. A through groove 7 is provided on one end face of each protective cover 6. Two symmetrically distributed partitions 8 are also fixedly connected to the inner wall of the protective cover 6. Multiple evenly distributed scrapers 11 are fixedly connected to the partitions 8. A U-shaped plate 9 is slidably connected between the partitions 8 and the inner wall of one end face of the protective cover 6. A dustproof net 10 is fixedly connected inside the U-shaped plate 9. The scrapers 11 are used to scrape off the dustproof net 10. To remove dust from the surface of the dustproof net 10, a fixed post 14 is fixedly connected to the upper end of the retaining plate 9, and a straight groove plate 15 is fixedly connected to the upper end of the fixed post 14. The straight groove plate 15 is equipped with a clamping component, which is used to lift the straight groove plate 15 to a certain height and then release it. Multiple evenly distributed first springs 12 are fixedly installed between the inner wall of the bottom end of the protective cover 6 and the outer wall of the bottom end of the retaining plate 9. The retaining plate 9 is driven to oscillate back and forth continuously by the cooperation of the first springs 12 and the clamping component, so that the dust on the dustproof net 10 is loosened by vibration and is more easily removed by the scraper 11. Each bottom end of the protective cover 6 is provided with a dust suction port 13, and a dust suction component is connected to the dust suction port 13.

[0027] Furthermore, the centerline of the through groove 7 is collinear with the centerline of the heat dissipation groove 2; the cross-section of the scraper 11 is trapezoidal.

[0028] Furthermore, the arcs on both sides of the straight groove plate 15 are concentric circles with the same radius.

[0029] Specifically, the clamping assembly lifts the straight groove plate 15 to a certain height and then releases it. The scraper 11 scrapes off the dust on the surface of the dustproof net 10. The first spring 12 and the clamping assembly work together to drive the reciprocating plate 9 to vibrate back and forth, thereby loosening the dust on the dustproof net 10 and making it easier to remove. The dust removed from the dustproof net 10 is then processed by the dust suction assembly.

[0030] like Figure 2 , Figure 4 and Figure 5 As shown, the clamping assembly includes a T-shaped plate 5, a trapezoidal groove 16, a clamping plate 17, a push rod 18, a second spring 19, and a fixed shaft 22; the T-shaped plate 5 is slidably connected to the protective cover 6, and two symmetrically distributed fixed shafts 22 are fixedly connected to the T-shaped plate 5. The clamping plate 17 is rotatably sleeved on the outer wall of the fixed shaft 22, and the clamping plate 17 abuts against the inner wall of the protective cover 6; the upper end of the protective cover 6 has a trapezoidal groove 16, and the inner wall of the trapezoidal groove 16 is fitted to the upper end of the clamping plate 17; push rods 18 are fixedly connected to each clamping plate 17, and the second springs 19 are fixedly sleeved on the two push rods 18.

[0031] Furthermore, an electric telescopic rod 3 is fixedly connected to the upper end of the control box 1, and a horizontal plate 4 is fixedly connected to the driving end of the electric telescopic rod 3, and T-shaped plates 5 are fixedly connected to both ends of the horizontal plate 4 respectively.

[0032] Furthermore, the position height of the push rod 18 is higher than that of the fixed shaft 22.

[0033] Specifically, the electric telescopic rod 3 retracts, and then the electric telescopic rod 3 drives the T-shaped plate 5 to descend via the horizontal plate 4. Subsequently, the T-shaped plate 5 drives the clamping plate 17 to descend via the fixed shaft 22 until the lower end of the clamping plate 17 abuts against the straight groove plate 15. As the T-shaped plate 5 continues to descend, the lower ends of the two clamping plates 17 rotate outward simultaneously under the pressure of the straight groove plate 15 until the lower ends of the clamping plates 17 disengage from the upper surface of the straight groove plate 15. Then, the second spring 19 pushes the two lower ends closer together, thereby locking them against the lower surface of the straight groove plate 15. After that, the electric telescopic rod 3 extends, and then the electric telescopic rod 3 drives the T-shaped plate 5 to rise via the horizontal plate 4. Subsequently, the T-shaped plate 5 drives the clamping plate 17 to rise via the fixed shaft 22 until the upper end of the clamping plate 17 abuts against the trapezoidal groove 16. As the T-shaped plate 5 continues to rise, the upper ends of the two clamping plates 17 approach each other under the restriction of the trapezoidal groove 16, thereby causing the lower ends of the two clamping plates 17 to move away from each other. Then, the lower ends of the clamping plates 17 release the straight groove plate 15.

[0034] like Figure 1 and Figure 4 As shown, the dust collection assembly includes an air pump 20 and a dust collection bag 21; the air pump 20 and the dust collection bag 21 are fixedly connected to the side wall of the control box 1, the air outlet of the air pump 20 is connected to the dust collection bag 21, and the air inlet of the air pump 20 is fixedly connected to the dust collection port 13 through a hose.

[0035] Specifically, the dust removed from the dust filter 10 is sucked up by the air pump 20 through the hose and then transported into the dust collection bag 21.

[0036] Furthermore, a dust sensor for detecting dust concentration is fixedly installed inside the control box 1.

[0037] The working principle of this utility model is as follows: When the dust sensor detects that the dust concentration exceeds the standard, the electric telescopic rod 3 retracts. Then, the electric telescopic rod 3 drives the T-shaped plate 5 to descend via the horizontal plate 4. Subsequently, the T-shaped plate 5 drives the clamping plate 17 to descend via the fixed shaft 22 until the lower end of the clamping plate 17 abuts against the straight groove plate 15. As the T-shaped plate 5 continues to descend, the lower ends of the two clamping plates 17 rotate outward under the pressure of the straight groove plate 15 until the lower ends of the clamping plates 17 disengage from the straight groove plate 15. At this time, the second spring 19 pushes the two lower ends closer together, thereby engaging the lower end face of the straight groove plate 15. After that, the electric telescopic rod 3 extends, and then the electric telescopic rod 3 drives the T-shaped plate 5 to rise via the horizontal plate 4. Subsequently, the T-shaped plate 5 drives the clamping plate 17 to rise via the fixed shaft 22. The process continues until the upper end of the clamping plate 17 abuts against the trapezoidal groove 16. As the T-shaped plate 5 continues to rise, the upper ends of the two clamping plates 17 approach each other under the constraint of the trapezoidal groove 16, thereby causing the lower ends of the two clamping plates 17 to move away from each other. Then, the lower ends of the clamping plates 17 release the straight groove plate 15, and then the return plate 9 slides downward under the action of gravity, and then compresses the first spring 12. After that, it oscillates continuously under the elastic action of the first spring 12. During this process, the dustproof net 10 slides continuously relative to the scraper 11, so that the scraper 11 continuously scrapes away the dust on the dustproof net 10. Then, the dust removed from the dustproof net 10 is sucked by the air pump 20 through the hose and then transported into the dust collection bag 21. The above steps are repeated continuously until the dust concentration meets the requirements.

[0038] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Any modifications, equivalent substitutions and improvements made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.

Claims

1. An integrated sewage treatment plant electrical control device, comprising a control box (1) and a heat dissipation groove (2), both sides of the control box (1) are provided with a heat dissipation groove (2), characterized in that, Two protective covers (6) are fixedly connected to the inner wall of the control box (1), and the protective covers (6) correspond to the heat dissipation grooves (2) one by one, a through groove (7) is formed in one end face of each protective cover (6), two symmetrically distributed baffles (8) are further fixedly connected to the inner wall of each protective cover (6), a plurality of uniformly distributed scrapers (11) are fixedly connected to the baffles (8), a return type plate (9) is slidably connected between the inner wall of one end face of the protective cover (6) and the baffle (8), a dust screen (10) is fixedly connected in the return type plate (9), the scraper (11) is used for scraping dust on the surface of the dust screen (10), a fixed column (14) is fixedly connected to the upper end of the return type plate (9), a straight groove plate (15) is fixedly connected to the upper end of the fixed column (14), a clamping assembly is arranged in cooperation with the straight groove plate (15), the clamping assembly is used for driving the straight groove plate (15) to rise to a certain height and then release, a plurality of uniformly distributed first springs (12) are fixedly arranged between the inner wall of the bottom end of the protective cover (6) and the outer wall of the bottom end of the return type plate (9), the return type plate (9) is driven to continuously reciprocate in a manner of cooperation of the first spring (12) and the clamping assembly, so that the dust on the dust screen (10) is loosened by vibration, and then is more easily removed by the scraper (11); a dust suction port (13) is formed in the bottom end of each protective cover (6), and a dust suction assembly is connected in cooperation with the dust suction port (13).

2. The electrical control device for an integrated sewage treatment plant according to claim 1, characterized in that The center line of the through groove (7) is collinear with the center line of the heat dissipation groove (2); the cross section of the scraper (11) is trapezoidal.

3. The electrical control device for an integrated sewage treatment plant according to claim 2, characterized in that The arc shapes on both sides of the straight groove plate (15) are concentric circles with the same radius.

4. The integrated sewage treatment plant electrical control device according to claim 3, characterized in that, The clamping assembly comprises a T-shaped plate (5), a trapezoidal groove (16), a clamping plate (17), a push rod (18), a second spring (19) and a fixed shaft (22); The T-shaped plate (5) is slidably connected to the protective cover (6), the two fixed shafts (22) are fixedly connected to the T-shaped plate (5) in a symmetrical manner, the clamping plate (17) is rotatably sleeved on the outer wall of the fixed shaft (22), and the clamping plate (17) abuts against the inner wall of the protective cover (6); the trapezoidal groove (16) is formed in the upper end of the protective cover (6), and the inner wall of the trapezoidal groove (16) is connected in cooperation with the upper end of the clamping plate (17); the push rod (18) is fixedly connected to the clamping plate (17), and the second spring (19) is fixedly sleeved on the two push rods (18).

5. The integrated sewage treatment plant electrical control device according to claim 4, characterized in that, The electric telescopic rod (3) is fixedly connected to the upper end of the control box (1), the driving end of the electric telescopic rod (3) is fixedly connected with the horizontal plate (4), and the two ends of the horizontal plate (4) are respectively fixedly connected with the T-shaped plate (5).

6. The integrated sewage treatment plant electrical control device according to claim 4, characterized in that, The position of the push rod (18) is higher than that of the fixed shaft (22).

7. The integrated sewage treatment plant electrical control device according to claim 1, characterized in that, The dust suction assembly comprises a gas pump (20) and a dust collecting bag (21); The gas pump (20) and the dust collecting bag (21) are fixedly connected to the side wall of the control box (1), the gas outlet of the gas pump (20) is communicated with the dust collecting bag (21), and the gas inlet of the gas pump (20) is fixedly connected with the dust suction port (13) through a pipe hose.