Riverway garbage intercepting and conveying device
Patent Information
- Application Number
- CN202522075653.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-26
- Publication Date
- 2026-08-18
- Estimated Expiration
- 2035-09-26
AI Technical Summary
[0003]针对上述情况,为克服现有技术的缺陷,本实用新型提供一种河道垃圾拦截输送装置,有效的解决了现有垃圾拦截装置不便于对垃圾进行转移至岸边的问题
(1)、在工作中,通过设置由若干浮筒、钢绳和拦截网构成的第一拦截段和第二拦截段,能够实现对河道内垃圾进行拦截,避免河道内的垃圾随着水流持续向下流流动,通过设置吊绳和配重球,能够实现配重作用,实现对拦截网进行辅助加固;
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Figure CN224647586U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of river garbage interception technology, specifically a river garbage interception and conveying device. Background Technology
[0002] River garbage needs to be intercepted to prevent it from flowing downstream with the water. The commonly used interception method is to install pontoons in the river and a barrier net below the pontoons to intercept the garbage. However, when cleaning up the garbage, workers need to sail to the garbage accumulation point, manually transfer the garbage to the boat, and then use the boat to transfer the garbage to the shore. The operation is cumbersome and requires multiple trips to transfer the garbage, which is inefficient. Therefore, this application proposes a river garbage interception and transportation device. Utility Model Content
[0003] In order to overcome the shortcomings of the existing technology, this utility model provides a river garbage interception and transportation device, which effectively solves the problem that existing garbage interception devices are not convenient for transferring garbage to the riverbank.
[0004] To achieve the above objectives, the present invention provides the following technical solution: a river garbage interception and conveying device, comprising a first interception section, a second interception section, a first traction component, and a second traction component, wherein the first traction component and the second traction component are respectively installed on both banks of the river, one end of the first interception section is connected to the first traction component, the other end of the first interception section is connected to the second interception section, and the end of the second interception section away from the first interception section is connected to the second traction component; Both the first and second interception sections consist of several buoys, steel cables, and interception nets. The buoys float on the water surface and are connected in series by steel cables, while the interception nets are connected to the bottom of the buoys. The first traction assembly consists of a traction post one and a traction steel rope one. One end of the traction steel rope one is tied to the first interception section, and the other end of the traction steel rope one is connected to the traction post one. The second traction assembly consists of a traction post two, a traction steel rope two, a traction steel rope three, and a traction steel rope four. One end of the traction steel rope two is tied to one end of the second interception section. One end of the traction steel rope three is tied between the first and second interception sections. One end of the traction steel rope four is tied to the other ends of the traction steel rope two and the traction steel rope three. The end of the traction steel rope four closest to the traction steel rope two and the traction steel rope three is connected to the traction post one, and the other end of the traction steel rope four crosses the river surface and is connected to the traction post one.
[0005] Preferably, a plurality of suspension ropes are fixedly installed at the bottom of both the first and second interception sections. The suspension ropes are S-shaped and run through the interception net, and a counterweight ball is fixedly installed at the bottom of the suspension ropes.
[0006] Preferably, a concrete pouring seat is provided on the traction column one, and a connecting ring one and a connecting ring two are welded to the side of the traction column one. One end of the traction steel rope one is tied to the connecting ring one, and one end of the traction steel rope four is tied to the connecting ring two.
[0007] Preferably, the traction column 2 is provided with a concrete pouring seat 2, and a connecting ring 3 and a connecting ring 4 are welded to the side of the traction column 2. The traction steel rope 4 is tied to the connecting ring 3 and the connecting ring 4.
[0008] Compared with the prior art, the beneficial effects of this utility model are: (1) In the work, by setting up the first and second interception sections consisting of several pontoons, steel ropes and interception nets, it is possible to intercept garbage in the river channel and prevent the garbage in the river channel from flowing downstream with the water flow. By setting up hanging ropes and counterweight balls, the counterweight effect can be achieved to assist in the reinforcement of the interception net. (2) By setting up a first traction assembly consisting of a traction column one and a traction steel rope one, and a second traction assembly consisting of a traction column two, a traction steel rope two, a traction steel rope three and a traction steel rope four, the first interception section and the second interception section can be traction supported. At the same time, the first interception section and the second interception section can be pulled by tools such as cars and loaders, so that the first interception section and the second interception section can move the garbage to the shore, thereby improving the convenience of garbage cleaning. Attached Figure Description
[0009] The accompanying drawings are provided to further understand the present invention and form part of the specification. They are used together with the embodiments of the present invention to explain the present invention and do not constitute a limitation thereof.
[0010] In the attached diagram: Figure 1 This is a schematic diagram of the structure of the river garbage interception and conveying device of this utility model; Figure 2 This is a partial structural diagram of the first interception segment of this utility model; Figure 3 This is a schematic diagram of the structure of the first traction component of this utility model; Figure 4 This is a schematic diagram of the structure of the second traction component of this utility model; In the diagram: 1. First interception section; 2. Second interception section; 3. First traction assembly; 4. Second traction assembly; 5. Float; 6. Steel rope; 7. Interception net; 8. Traction post one; 9. Traction steel rope one; 10. Traction post two; 11. Traction steel rope two; 12. Traction steel rope three; 13. Traction steel rope four; 14. Lifting rope; 15. Counterweight ball; 16. Concrete pouring seat one; 17. Connecting ring one; 18. Connecting ring two; 19. Concrete pouring seat two; 20. Connecting ring three; 21. Connecting ring four. Detailed Implementation
[0011] 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. All other embodiments obtained by those skilled in the art based on the embodiments of the present utility model without creative effort are within the protection scope of the present utility model.
[0012] Depend on Figures 1 to 4 The present invention discloses a river garbage interception and conveying device, comprising a first interception section 1, a second interception section 2, a first traction component 3, and a second traction component 4. The first traction component 3 and the second traction component 4 are respectively installed on both banks of the river. One end of the first interception section 1 is connected to the first traction component 3, and the other end of the first interception section 1 is connected to the second interception section 2. The end of the second interception section 2 away from the first interception section 1 is connected to the second traction component 4. Both the first interception section 1 and the second interception section 2 are composed of several floats 5, steel ropes 6, and interception nets 7. The floats 5 float on the water surface and are connected in series by steel ropes 6. The interception nets 7 are connected to the bottom end of the floats 5. Several suspension ropes 14 are fixedly installed at the bottom end of both the first interception section 1 and the second interception section 2. The suspension ropes 14 are S-shaped and pass through the interception nets 7. A counterweight ball 15 is fixedly installed at the bottom end of the suspension ropes 14. The first traction component 3 and the second traction component 4 are installed on both banks of the river, which can pull the first interception section 1 and the second interception section 2. The steel cable 6 connects the floats 5 in series. The floats 5 float on the water surface, which can intercept garbage on the one hand, and support the interception net 7 on the other hand. The interception net 7 can further intercept garbage. The first traction assembly 3 consists of a traction post 8 and a traction steel rope 9. One end of the traction steel rope 9 is tied to the first interception section 1, and the other end of the traction steel rope 9 is connected to the traction post 8. The second traction assembly 4 consists of a traction post 2 10, a traction steel rope 2 11, a traction steel rope 3 12, and a traction steel rope 4 13. One end of the traction steel rope 2 11 is tied to one end of the second interception section 2. One end of the traction steel rope 3 12 is tied between the first interception section 1 and the second interception section 2. One end of the traction steel rope 4 13 is tied to the other ends of the traction steel rope 2 11 and the traction steel rope 3 12. The end of the traction steel rope 4 13 closest to the traction steel rope 2 11 and the traction steel rope 3 12 is connected to the traction post 8. The other end of the traction steel rope 4 13 crosses the river surface and is connected to the traction post 8. When a large amount of garbage accumulates, first disconnect the towing steel cable 413 from the towing post 18, and connect one end of the towing steel cable 413 to a truck tow hook or other mobile tool. Then disconnect the other end of the towing steel cable 413 from the towing post 210. The truck slowly pulls the towing steel cable 413, which pulls the towing steel cables 211 and 312. The towing steel cables 211 and 312 slowly pull the first interception section 1 and the second interception section 2, causing the first interception section 1 and the second interception section 2 to move the garbage slowly on the water surface to the bank near the first towing component 3, so that the staff can clean up the garbage on the bank. After the garbage is cleaned up, the staff can use a boat to pull the towing steel cable 413 back to the opposite bank and connect it to the towing post 210. A concrete pouring seat 16 is provided on the traction column 18. A connecting ring 17 and a connecting ring 28 are welded to the side of the traction column 18. One end of the traction steel rope 19 is tied to the connecting ring 17. One end of the traction steel rope 413 is tied to the connecting ring 28. A concrete pouring seat 29 is provided on the traction column 20. A connecting ring 320 and a connecting ring 421 are welded to the side of the traction column 20. The traction steel rope 413 is tied to the connecting ring 320 and the connecting ring 421. Concrete casting base 16 and concrete casting base 29 can respectively reinforce traction column 18 and traction column 20, improving stability. Connecting ring 17 and connecting ring 28 can be respectively tied to traction steel rope 19 and traction steel rope 413. Connecting ring 320 and connecting ring 421 can be tied to traction steel rope 413. When tying, traction steel rope 413 is folded in half and then tied to connecting ring 320 and connecting ring 421, so that after traction steel rope 413 is untied, it can be directly separated from connecting ring 320 and connecting ring 421. The height of connecting ring 421 and connecting ring 218 is greater than the height of connecting ring 320 and connecting ring 17, which can realize the elevation setting of traction steel rope 413 and avoid traction steel rope 413 contacting the water surface.
[0013] In operation, by setting up a first and second interception section consisting of several pontoons, steel cables, and interception nets, garbage in the river can be intercepted, preventing it from flowing downstream with the water. The use of suspending ropes and counterweights provides additional reinforcement to the interception net. A first traction assembly consisting of a traction post and a traction steel cable, and a second traction assembly consisting of a traction post, a traction steel cable, a traction steel cable, and a traction steel cable, provide traction support for the first and second interception sections. Furthermore, trucks and loaders can be used to pull the first and second interception sections, moving the garbage to the riverbank and improving the ease of garbage cleanup.
Claims
1. A river waste interception and conveying device, comprising a first interception section (1), a second interception section (2), a first traction assembly (3), and a second traction assembly (4), characterized in that: The first traction component (3) and the second traction component (4) are respectively installed on both banks of the river. One end of the first interception section (1) is connected to the first traction component (3), and the other end of the first interception section (1) is connected to the second interception section (2). The end of the second interception section (2) away from the first interception section (1) is connected to the second traction component (4). The first interception section (1) and the second interception section (2) are both composed of several buoys (5), steel ropes (6) and interception nets (7). The buoys (5) float on the water surface and are connected in series by steel ropes (6). The interception nets (7) are connected to the bottom of the buoys (5). The first traction assembly (3) consists of a traction post (8) and a traction steel rope (9). One end of the traction steel rope (9) is tied to the first interception section (1), and the other end of the traction steel rope (9) is connected to the traction post (8). The second traction assembly (4) consists of a traction post (10), a traction steel rope (11), a traction steel rope (12), and a traction steel rope (13). One end of the traction steel rope (11) is tied to one end of the second interception section (2). One end of the traction steel rope (12) is tied between the first interception section (1) and the second interception section (2). One end of the traction steel rope (13) is tied to the other ends of the traction steel rope (11) and the traction steel rope (12). The end of the traction steel rope (13) close to the traction steel rope (11) and the traction steel rope (12) is connected to the traction post (8), and the other end of the traction steel rope (13) crosses the river surface and is connected to the traction post (8).
2. The river waste interception and conveying device according to claim 1, characterized in that: Several suspension ropes (14) are fixedly installed at the bottom of the first interception section (1) and the second interception section (2). The suspension ropes (14) are S-shaped and pass through the interception net (7). A counterweight ball (15) is fixedly installed at the bottom of the suspension ropes (14).
3. The river waste interception and conveying device according to claim 1, characterized in that: A concrete pouring seat (16) is provided on the traction column (8). A connecting ring (17) and a connecting ring (2) are welded to the side of the traction column (8). One end of the traction steel rope (9) is tied to the connecting ring (17), and one end of the traction steel rope (4) is tied to the connecting ring (2) (18).
4. The river waste interception and conveying device according to claim 1, characterized in that: The traction column 2 (10) is provided with a concrete pouring seat 2 (19), and the traction column 2 (10) is welded with a connecting ring 3 (20) and a connecting ring 4 (21). The traction steel rope 4 (13) is tied to the connecting ring 3 (20) and the connecting ring 4 (21).