Oxidation pond photo-thermal geomembrane laminating device
By designing an automated oxidation pool photothermal geomembrane coating device, the automatic unfolding and winding of the earth membrane is achieved by using motor drives and limiting components, solving the problem of inconvenient operation of traditional devices and improving practicality and stability.
Patent Information
- Application Number
- CN202421509026.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-28
- Publication Date
- 2025-05-16
- Estimated Expiration
- 2034-06-28
AI Technical Summary
The traditional oxidation pool photothermal geomembrane coating device is inconvenient when it needs to be put away, and multiple operators need to operate it at the same time, which makes it time-consuming and laborious to collect and organize, and affects its practicality.
An oxidation pool photothermal geomembrane coating device is designed, using a motor to drive the winding roller and moving wheel, and the automatic expansion and winding of the earth film is achieved through the slide rail and the support plate, and the limiting component and the slot locking mechanism are used to ensure the stable fixation of the film.
The automatic deployment and winding of earth-moving membranes is realized, the number and time of operators are reduced, and the practicality and stability of the oxidation pool photothermal geomembrane coating device is improved.
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Figure CN222877380U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of geomembrane covering, in particular to a photothermal geomembrane covering device for an oxidation pond. Background Art
[0002] Oxidation pond photothermal refers to the use of light and heat to carry out a certain chemical process or reaction in the oxidation pond. Oxidation ponds usually refer to facilities used to treat wastewater, sewage or other chemical wastes. In these oxidation ponds, light energy and heat energy are used to promote chemical reactions or degradation processes in the waste treatment process. The use of geomembrane covering can provide insulation effect for the waste in the oxidation pond to a certain extent, helping to maintain higher temperature conditions, thereby promoting waste treatment reactions.
[0003] During the use of the traditional oxidation pond photothermal geomembrane covering device, the prior art only relies on multiple operators to manually cover the geomembrane on the oxidation pond, which is inconvenient when it needs to be rolled up. Multiple operators are required to operate at the same time to roll up the geomembrane, which is time-consuming and labor-intensive, affecting the practicability of the oxidation pond photothermal geomembrane covering. Utility Model Content
[0004] In order to make up for the above shortcomings, the utility model provides an oxidation pond photothermal geomembrane covering device, which aims to improve the problem that it is inconvenient to fold up the geomembrane, and multiple operators are required to operate at the same time to roll up the geomembrane, which is time-consuming and labor-intensive, affecting the practicality of the oxidation pond photothermal geomembrane covering.
[0005] In order to achieve the above-mentioned purpose, the utility model adopts the following technical scheme: an oxidation pond photothermal geomembrane covering device, comprising an oxidation pond body, one side of the oxidation pond body is fixedly connected to a motor 1, an output end of the motor 1 is fixedly connected to a winding roller, the top of the oxidation pond body is fixedly connected to a fixed block, one side of the fixed block is fixedly connected to a slide rail, one side of the slide rail is provided with a support plate, the top of the support plate is fixedly connected to a motor 2, the top of the motor 2 is fixedly connected to a moving wheel, the outer wall of the moving wheel is attached to the outer wall of the slide rail, a limiting assembly is provided at the bottom of the support plate, one side of the oxidation pond body is rotatably connected to a limiting roller, the top of the oxidation pond body is fixedly connected to a support block, a slide groove is opened inside the support block, one side of the support block is fixedly connected to a guide plate, the bottom of the support plate is fixedly connected to a cross bar, both sides of the cross bar are fixedly connected to a limiting block 1, and the outer wall of the limiting block 1 is slidably connected to the inside of the slide groove.
[0006] As a further description of the above technical solution:
[0007] The limiting assembly includes a fixed column and a limiting wheel, wherein the limiting wheel is internally rotatably connected to the outer wall of the fixed column, one end of the fixed column is fixedly connected to the bottom of the support plate, and the outer wall of the limiting wheel is attached to the outer wall of the slide rail.
[0008] As a further description of the above technical solution:
[0009] A connecting pin is fixedly connected to one side of the cross bar, a mounting block is fixedly connected to the top of the oxidation tank body, and a limiting groove is arranged inside the connecting pin.
[0010] As a further description of the above technical solution:
[0011] A positioning groove is provided inside the installation block, a clamping groove is provided inside the installation block, and the outer wall of the connecting pin is slidably connected inside the positioning groove.
[0012] As a further description of the above technical solution:
[0013] The connection pin is fixedly connected with a limit column inside, the limit column outer wall is slidably connected with a limit ring, the limit ring outer wall is rotatably connected with a connecting rod, and one end of the connecting rod is rotatably connected with a clamping block.
[0014] As a further description of the above technical solution:
[0015] The outer wall of the card block is embedded in the card slot.
[0016] As a further description of the above technical solution:
[0017] The outer wall of the limiting ring is fixedly connected to the second limiting block, and the outer wall of the second limiting block is slidably connected to the inside of the limiting groove.
[0018] As a further description of the above technical solution:
[0019] A spring is sleeved on the outer wall of the limiting column, one end of the spring is fixedly connected to one end of the limiting ring, and the other end of the spring is fixedly connected to the inside of the connecting pin.
[0020] The utility model has the following beneficial effects:
[0021] In the utility model, firstly, the moving wheel is driven to rotate by the second output end of the motor, and the moving wheel drives the support plate to move on the slide rail. The bottom of the support plate drives the earth film on the winding roller to slide in the support block through the cross bar to cover the oxidation pond body. The first output end of the motor drives the winding roller to rotate to roll up the earth film, thereby achieving the effect of automatic unfolding and rolling up, solving the problem that it is inconvenient when it needs to be rolled up, and multiple operators are required to operate at the same time to roll up the geomembrane, which is time-consuming and labor-intensive, affecting the practicability of the photothermal geomembrane covering of the oxidation pond, thereby improving the practicability of the photothermal geomembrane covering of the oxidation pond.
[0022] The utility model discloses that after the earthwork membrane is covered, heavy objects need to be placed around to fix the earthwork membrane, so as to prevent the earthwork membrane from being lifted up by the wind and affecting the stability of the geomembrane covering device, thereby improving the stability of the geomembrane covering device. BRIEF DESCRIPTION OF THE DRAWINGS
[0023] Figure 1 A three-dimensional diagram of a photothermal geomembrane covering device for an oxidation pond proposed by the utility model;
[0024] Figure 2 This is a schematic diagram of the crossbar structure of a photothermal geomembrane covering device for an oxidation pond proposed by the utility model;
[0025] Figure 3 This is a schematic diagram of the guide plate structure of a photothermal geomembrane covering device for an oxidation pond proposed by the utility model;
[0026] Figure 4 This is a schematic diagram of the limiting ring structure of a photothermal geomembrane covering device for an oxidation pond proposed by the utility model.
[0027] Legend:
[0028] 1. Oxidation tank body; 2. Motor 1; 3. Winding roller; 4. Fixed block; 5. Slide rail; 6. Support plate; 7. Motor 2; 8. Moving wheel; 9. Fixed column; 10. Limiting wheel; 11. Cross bar; 12. Limiting block 1; 13. Support block; 14. Guide plate; 15. Slide; 16. Limiting roller; 17. Connecting pin; 18. Mounting block; 19. Positioning slot; 20. Clamping slot; 21. Limiting slot; 22. Limiting column; 23. Limiting ring; 24. Connecting rod; 25. Limiting block 2; 26. Clamping block; 27. Spring. DETAILED DESCRIPTION
[0029] The following will be combined with the drawings in the embodiments of the utility model to clearly and completely describe the technical solutions in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all of the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the utility model.
[0030] Reference Figure 1-3, the utility model provides an embodiment: an oxidation pond photothermal geomembrane covering device, including an oxidation pond body 1, a motor 2 is fixedly connected to one side of the oxidation pond body 1, a winding roller 3 is fixedly connected to the output end of the motor 2, a fixed block 4 is fixedly connected to the top of the oxidation pond body 1, a slide rail 5 is fixedly connected to one side of the fixed block 4, a support plate 6 is arranged on one side of the slide rail 5, a motor 2 7 is fixedly connected to the top of the support plate 6, a moving wheel 8 is fixedly connected to the top of the motor 2 7, the outer wall of the moving wheel 8 is attached to the outer wall of the slide rail 5, a limiting component is arranged at the bottom of the support plate 6, a limiting roller 16 is rotatably connected to one side of the oxidation pond body 1, a support block 13 is fixedly connected to the top of the oxidation pond body 1, a slide groove 15 is opened inside the support block 13, a guide plate 14 is fixedly connected to one side of the support block 13, a cross bar 11 is fixedly connected to the bottom of the support plate 6, both sides of the cross bar 11 are fixedly connected to the limiting block 12, and the outer wall of the limiting block 12 is slidably connected to the inside of the slide groove 15;
[0031] Specifically, when coating is required, the output end of motor 2 7 drives the moving wheel 8 to rotate, and the moving wheel 8 is tightly fitted on the outer wall of the slide rail 5, thereby driving the support plate 6 to move. When the support plate 6 moves, the earthwork film is limited and moved inside the support block 13 through the connection of the cross bar 11, and the oxidation pond body 1 is coated. When the earthwork film needs to be rolled up, the output end of motor 1 2 drives the winding roller 3 to rotate, and the rotation of the winding roller 3 drives the earthwork film and the cross bar 11 to retract together, so that the earthwork film is rolled up on the winding roller 3. In this process, the precise control of motor 2 7 and motor 1 2 ensures the smooth progress of coating and winding. The cooperation of components such as the slide rail 5, the support plate 6, the cross bar 11 and the support block 13 enables the earthwork film to be moved and limited accurately and stably, providing strong support for the coating of the oxidation pond body and the winding of the earthwork film.
[0032] Reference Figure 2 The limiting assembly includes a fixed column 9 and a limiting wheel 10, the limiting wheel 10 is internally rotatably connected to the outer wall of the fixed column 9, one end of the fixed column 9 is fixedly connected to the bottom of the support plate 6, and the outer wall of the limiting wheel 10 is attached to the outer wall of the slide rail 5;
[0033] Specifically, the support plate 6 is connected to the limiting wheel 10 via the fixing column 9. This design enables the limiting wheel 10 to fit tightly onto the outer wall of the slide rail 5, thereby providing an effective limiting effect.
[0034] Reference Figure 4A connecting pin 17 is fixedly connected to one side of the cross bar 11, and a mounting block 18 is fixedly connected to the top of the oxidation tank body 1. A limiting groove 21 is provided inside the connecting pin 17, a positioning groove 19 is provided inside the mounting block 18, and a card slot 20 is provided inside the mounting block 18. The outer wall of the connecting pin 17 is slidably connected to the inside of the positioning groove 19. A limiting column 22 is fixedly connected to the inside of the connecting pin 17, and the outer wall of the limiting column 22 is slidably connected to the limiting ring 23. The outer wall of the limiting ring 23 is rotatably connected to a connecting rod 24, and a card block 26 is rotatably connected to one end of the connecting rod 24. The outer wall of the card block 26 is embedded in the card slot 20. The outer wall of the limiting ring 23 is fixedly connected to a limiting block 25, and the outer wall of the limiting block 25 is slidably connected to the inside of the limiting groove 21. A spring 27 is sleeved on the outer wall of the limiting column 22, and one end of the spring 27 is fixedly connected to one end of the limiting ring 23, and the other end of the spring 27 is fixedly connected to the inside of the connecting pin 17;
[0035] Specifically, the coating is connected by sliding the connecting pin 17 on the cross bar 11 into the positioning groove 19 on the mounting block 18, and the block 26 in the connecting pin 17 is embedded in the slot 20 for locking. This design enables the output end of the motor 27 to firmly fix the earthwork membrane in a non-rotating state. The block 26 is connected to the limit ring 23 through the connecting rod 24, and the limit ring 23 is limited by the limit column 22 inside the connecting pin 17. In addition, the limit ring 23 is further limited by sliding in the limit groove 21 through the limit block 25. This multiple limiting design ensures that the block 26 is not easy to slide out when embedded in the slot 20. At the same time, this design also introduces the tension of the spring 27 for support. The tension of the spring 27 can provide a stable supporting force for the block 26, further enhancing the locking effect of the block 26 in the slot 20. Even in harsh working environments, this design can ensure the stable fixation of the earthwork membrane and avoid the problem of the block 26 sliding out due to vibration or other factors.
[0036] Working principle: When the oxidation pond photothermal geomembrane covering device is needed, first one side of the cross bar 11 is fixed to the earthwork film on the winding roller 3, and then when covering is needed, the output end of the motor 2 7 drives the moving wheel 8 to rotate, and the moving wheel 8 is attached to the outer wall of the slide rail 5 to drive the support plate 6 to move. When the support plate 6 moves, the earthwork film is driven by the cross bar 11 to move within the support block 13 and cover the oxidation pond body 1. The two sides of the cross bar 11 are limited and slid inside the slide groove 15 in the support block 13 through the limit block 12, and then the covering slides into the positioning groove 19 on the mounting block 18 through the connecting pin 17 on the cross bar 11 for connection. The block 26 in 17 is embedded in the slot 20 for locking, so that the earthwork film can be fixed when the output end of the motor 27 is not rotating. The block 26 is connected to the limit ring 23 through the connecting rod 24, and the limit ring 23 is limited inside the connecting pin 17 through the limit column 22. The limit ring 23 is further limited by sliding in the limit groove 21 through the limit block 25, and then supported by the tension of the spring 27, so that the block 26 is not easy to slide out when embedded in the slot 20. When the earthwork film needs to be rolled up, the output end of the motor 2 drives the winding roller 3 to rotate, and the winding roller 3 drives the earthwork film and the cross bar 11 to retract, so that the earthwork film is rolled up on the winding roller 3.
[0037] Finally, it should be noted that the above is only a preferred embodiment of the present invention and is not intended to limit the present invention. Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art can still modify the technical solutions described in the aforementioned embodiments or make equivalent substitutions for some of the technical features therein. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention should be included in the protection scope of the present invention.
Claims
1. An oxidation pond solar thermal geomembrane covering device, comprising an oxidation pond body (1), characterized in that: A motor 1 (2) is fixedly connected to one side of the oxidation pond body (1), a winding roller (3) is fixedly connected to the output end of the motor 1 (2), a fixed block (4) is fixedly connected to the top of the oxidation pond body (1), a slide rail (5) is fixedly connected to one side of the fixed block (4), a support plate (6) is provided on one side of the slide rail (5), a motor 2 (7) is fixedly connected to the top of the support plate (6), a moving wheel (8) is fixedly connected to the top of the motor 2 (7), an outer wall of the moving wheel (8) is attached to the outer wall of the slide rail (5), and the support plate (6) A limit assembly is provided at the bottom, one side of the oxidation pool body (1) is rotatably connected to a limit roller (16), the top of the oxidation pool body (1) is fixedly connected to a support block (13), a slide groove (15) is provided inside the support block (13), one side of the support block (13) is fixedly connected to a guide plate (14), the bottom of the support plate (6) is fixedly connected to a cross bar (11), both sides of the cross bar (11) are fixedly connected to a limit block 1 (12), and the outer wall of the limit block 1 (12) is slidably connected inside the slide groove (15).
2. The oxidation pond photothermal geomembrane covering device according to claim 1 is characterized in that: The limiting assembly comprises a fixed column (9) and a limiting wheel (10); the limiting wheel (10) is internally rotatably connected to the outer wall of the fixed column (9); one end of the fixed column (9) is fixedly connected to the bottom of the support plate (6); and the outer wall of the limiting wheel (10) is in contact with the outer wall of the slide rail (5).
3. The oxidation pond photothermal geomembrane covering device according to claim 1 is characterized in that: A connecting pin (17) is fixedly connected to one side of the crossbar (11), a mounting block (18) is fixedly connected to the top of the oxidation tank body (1), and a limiting groove (21) is provided inside the connecting pin (17).
4. The oxidation pond photothermal geomembrane covering device according to claim 3 is characterized in that: A positioning groove (19) is provided inside the mounting block (18), a clamping groove (20) is provided inside the mounting block (18), and the outer wall of the connecting pin (17) is slidably connected inside the positioning groove (19).
5. The oxidation pond photothermal geomembrane covering device according to claim 3 is characterized in that: The connection pin (17) is fixedly connected to a limit column (22) inside, the limit column (22) is slidably connected to an outer wall of a limit ring (23), the limit ring (23) is rotatably connected to an outer wall of a connecting rod (24), and one end of the connecting rod (24) is rotatably connected to a clamping block (26).
6. The oxidation pond photothermal geomembrane covering device according to claim 5 is characterized in that: The outer wall of the clamping block (26) is embedded in the clamping groove (20).
7. The oxidation pond photothermal geomembrane covering device according to claim 5 is characterized in that: The outer wall of the limiting ring (23) is fixedly connected to the second limiting block (25), and the outer wall of the second limiting block (25) is slidably connected to the inside of the limiting groove (21).
8. The photothermal geomembrane covering device for an oxidation pond according to claim 5, characterized in that: A spring (27) is sleeved on the outer wall of the limiting column (22), one end of the spring (27) is fixedly connected to one end of the limiting ring (23), and the other end of the spring (27) is fixedly connected to the inside of the connecting pin (17).