Water distributing and collecting device

By using a moving clamping mechanism and a leveling mechanism to install the manifold horizontally, the leakage problem caused by tilting during installation is solved, and the stability and reliability of the connection are improved.

CN224214845UActive Publication Date: 2026-05-08ZHEJIANG GREEN GUIDE ENVIRONMENTAL TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
ZHEJIANG GREEN GUIDE ENVIRONMENTAL TECHNOLOGY CO LTD
Filing Date
2025-03-28
Publication Date
2026-05-08

AI Technical Summary

Technical Problem

Existing manifolds are prone to leaks during installation due to tilting, which can cause the connection between the pipe and the manifold to loosen.

Method used

The system employs a moving clamping mechanism and a leveling mechanism, using T-shaped slide rails and a semi-circular ring structure to clamp and position the main pipe and branch pipes, ensuring horizontal installation, reducing connection bends, and improving stability and reliability.

Benefits of technology

It achieves horizontal positioning of main and branch pipes, reduces connection bends, improves the connection stability between the manifold and the pipeline, and avoids leakage.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN224214845U_ABST
    Figure CN224214845U_ABST
Patent Text Reader

Abstract

The utility model discloses a water distributing and collecting device which comprises a main pipe body, and branch pipe bodies are symmetrically distributed on the two sides of the main pipe body. The device further comprises a movable clamping mechanism and a leveling mechanism, the leveling mechanism is fixed to the mounting plate, two T-shaped sliding rails are arranged on the mounting plate in parallel, the movable clamping mechanism moves along the T-shaped sliding rails, and the leveling mechanism is used for clamping the main pipe body, driving the main pipe body and the branch pipe body to rotate to be horizontal and then fixing the main pipe body and the branch pipe body through the movable clamping mechanism. And horizontal installation of the sub-catchment device is realized. According to the utility model, the main pipe body and the branch pipe body can be clamped and positioned, so that the main pipe body and the branch pipe body are kept horizontal, the bending during the connection of the sub-catchment device and the pipeline can be reduced, the stability and the reliability of the connection are improved, and the leakage is avoided.
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Description

Technical Field

[0001] This utility model relates to a water manifold. Background Technology

[0002] A manifold is a device used to direct water flow to different outlets. It is commonly used in pump or piping systems to control and distribute water flow to different pipes or devices. Manifolds can distribute water flow in different directions according to needs, meeting diverse requirements and applications. They effectively manage and control water flow, making water resource utilization more efficient and flexible.

[0003] In existing water manifold technology, if the installation is tilted, the connection between the pipe and the water manifold may become loose due to bending, which can easily lead to leakage. Utility Model Content

[0004] The purpose of this utility model is to provide a technical solution for a water manifold that addresses the shortcomings of existing technologies. It can not only clamp and position the main pipe and branch pipes to keep them horizontal, but also reduce bending when the water manifold is connected to the pipeline, improve the stability and reliability of the connection, and prevent leakage.

[0005] To solve the above-mentioned technical problems, the present invention adopts the following technical solution:

[0006] A water distribution manifold, including

[0007] A main pipe body, with branch pipe bodies symmetrically distributed on both sides of the main pipe body;

[0008] Its features are:

[0009] It also includes a movable clamping mechanism and a leveling mechanism. The leveling mechanism is fixed to the mounting plate, which has two parallel T-shaped slide rails. The movable clamping mechanism moves along the T-shaped slide rails. The leveling mechanism is used to clamp the main pipe body and drive the main pipe body and branch pipe body to rotate to a horizontal position. Then, it is fixed by the movable clamping mechanism to achieve the horizontal installation of the manifold. Through the design of the above structure, not only can the main pipe body and branch pipe body be clamped and positioned to keep them horizontal, but also the bending when the manifold is connected to the pipeline can be reduced, improving the stability and reliability of the connection and preventing leakage.

[0010] Furthermore, the movable clamping mechanism includes a first supporting semicircular ring, a first pressing semicircular ring, and a movable component. The first supporting semicircular ring is connected to the T-shaped slide rail via the movable component. The first pressing semicircular ring is detachably connected to the first supporting semicircular ring. The first pressing semicircular ring and the first supporting semicircular ring cooperate to form a ring structure for clamping the main pipe body. The movable component can move horizontally along the T-shaped slide rail, thereby driving the first supporting semicircular ring to move horizontally, meeting the clamping requirements of main pipe bodies of different lengths. The cooperation between the first pressing semicircular ring and the first supporting semicircular ring can improve the clamping stability and reliability of the main pipe body, prevent tilting during the installation of the manifold, and improve the installation effect.

[0011] Furthermore, the moving component includes a slider, a first fixed post, and a connecting block. The slider is connected to the first supporting semi-circular ring via the first fixed post. Adjacent sliders are fixedly connected via the connecting block. The slider is provided with a T-shaped groove that matches a T-shaped slide rail. The first fixed post improves the connection strength and stability between the slider and the first supporting semi-circular ring. The side of the slider is provided with a threaded hole. By passing a fastening screw through the threaded hole, a fixed connection between the slider and the T-shaped slide rail can be achieved, thereby improving the stability and reliability of the moving component installation.

[0012] Furthermore, the first supporting semicircular ring and the first pressing semicircular ring are symmetrically provided with first ear plates on both sides, and the two adjacent first ear plates are connected by first fasteners. The first fasteners can improve the connection stability between the first ear plates, thereby improving the connection stability between the first pressing semicircular ring and the first supporting semicircular ring.

[0013] Furthermore, support pads are provided on the inner surfaces of both the first supporting semicircular ring and the first pressing semicircular ring, which can protect the main pipe body.

[0014] Furthermore, the leveling mechanism includes a second supporting semicircular ring, a second pressing semicircular ring, a rotating component, and a limiting component. The second supporting semicircular ring is connected to the mounting plate via a second fixed post. The second pressing semicircular ring is detachably connected to the second supporting semicircular ring. Both the second supporting semicircular ring and the second pressing semicircular ring are symmetrically provided with second ear plates. Two adjacent second ear plates are connected by second fasteners. The rotating component is rotatably connected to the second supporting semicircular ring and the second pressing semicircular ring. The limiting component is provided on the second ear plates on both sides of the second pressing semicircular ring and connected to the rotating component. The second fasteners can improve the connection strength and stability between the second pressing semicircular ring and the second supporting semicircular ring. The rotating component can drive the main pipe to rotate, thereby adjusting the position of the branch pipe to be horizontal. Then, the limiting component can be used to fix it, making the adjustment convenient and quick.

[0015] Furthermore, the rotating assembly includes two rotating rings arranged parallel to each other, a guide post, and a handrail. The inner surfaces of the second supporting semicircular ring and the second pressing semicircular ring are provided with guide grooves, which penetrate the outer surface of the second pressing semicircular ring. The handrail is connected to the rotating rings through the guide post. Pushing the handrail can drive the rotating rings to rotate along the guide groove through the guide post, which in turn can drive the main pipe to rotate until the branch pipe remains horizontal.

[0016] Furthermore, the inner surface of the rotating ring is provided with an adhesive layer, which can improve the connection stability with the main pipe body.

[0017] Furthermore, the limiting component includes an arc-shaped frame, a connecting rod, and a fastening nut. Two arc-shaped frames are distributed in parallel between the two second ear plates on the second clamping semicircular ring. The arc-shaped frame is provided with an arc-shaped groove. The connecting rod passes horizontally through the two guide posts and the arc-shaped groove. Both ends of the connecting rod are provided with external threads, which are connected to the external threads by the fastening nut to realize the fixed connection between the connecting rod and the arc-shaped frame. When the connecting rod moves along the arc-shaped groove to the required position, tightening the fastening nut can realize the fixed installation of the rotating component. The arc-shaped frame can ensure that the connecting rod moves in the circumferential direction, which is convenient for the angle adjustment of the branch pipe body.

[0018] This utility model, by adopting the above-mentioned technical solution, has the following beneficial effects:

[0019] 1. This utility model can not only clamp and position the main pipe and branch pipe to keep them horizontal, but also reduce the bending when connecting the manifold to the pipeline, improve the stability and reliability of the connection, and avoid leakage.

[0020] 2. The movable component can move horizontally along the T-shaped slide rail, thereby driving the first supporting semi-circular ring to move horizontally, meeting the clamping requirements of main pipes of different lengths. The first pressing semi-circular ring and the first supporting semi-circular ring are connected in cooperation, which can improve the clamping stability and reliability of the main pipe, avoid tilting during the installation of the manifold, and improve the installation effect.

[0021] 3. The second fastener can improve the connection strength and stability between the second clamping semi-circular ring and the second supporting semi-circular ring. The rotating component can drive the main pipe to rotate, thereby adjusting the position of the branch pipe to be horizontal, and then fixing it with the limiting component. The adjustment is convenient and quick. Attached image description:

[0022] The present invention will be further described below with reference to the accompanying drawings:

[0023] Figure 1 This is a rendering of a water distribution device according to the present invention;

[0024] Figure 2This is a schematic diagram showing the connection between the movable clamping mechanism, the leveling mechanism, and the mounting plate in this utility model;

[0025] Figure 3 This is a schematic diagram of the leveling mechanism in this utility model.

[0026] In the diagram: 1-Main pipe body; 2-Branch pipe body; 3-Mounting plate; 4-Moving clamping mechanism; 5-Leveling mechanism; 6-T-shaped slide rail; 7-First supporting semi-circular ring; 8-First pressing semi-circular ring; 9-Support pad; 10-First ear plate; 11-First fastener; 12-Slider; 13-Connecting block; 15-First fixing column; 16-Second supporting semi-circular ring; 17-Second pressing semi-circular ring; 18-Second fixing column; 19-Second ear plate; 20-Second fastener; 21-Guide groove; 22-Rotating ring; 23-Guide column; 24-Handrail; 25-Connecting rod; 26-Fastening nut; 27-Arc-shaped frame; 28-Arc-shaped groove. Detailed Implementation

[0027] It should be noted that, unless otherwise specified, the embodiments and features described in this application can be combined with each other. The present invention will now be described in detail with reference to the accompanying drawings and embodiments.

[0028] To enable those skilled in the art to better understand the present invention, the technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort should fall within the protection scope of the present invention.

[0029] It should be noted that the terms "first," "second," etc., in the specification, claims, and accompanying drawings of this utility model are used to distinguish similar objects and are not necessarily used to describe a specific order or sequence. Furthermore, the terms "comprising" and "having," and any variations thereof, are intended to cover non-exclusive inclusion.

[0030] like Figures 1 to 3 As shown, this utility model provides a water distribution device, which includes a main pipe body 1 and branch pipe bodies 2, with branch pipe bodies 2 symmetrically distributed on both sides of the main pipe body 1.

[0031] The water manifold also includes a movable clamping mechanism 4 and a leveling mechanism 5. The leveling mechanism 5 is fixed to the mounting plate 3 and includes a second supporting semi-circular ring 16, a second pressing semi-circular ring 17, a rotating assembly, and a limiting assembly. The second supporting semi-circular ring 16 is connected to the mounting plate 3 via a second fixing post 18. The second pressing semi-circular ring 17 is detachably connected to the second supporting semi-circular ring 16. Both the second supporting semi-circular ring 16 and the second pressing semi-circular ring 17 are symmetrically provided with second ear plates 19. Two adjacent second ear plates 19 are connected by second fasteners 20. The rotating assembly is rotatably connected to the second supporting semi-circular ring 16 and the second pressing semi-circular ring 17. The limiting assembly is provided on the second ear plates 19 on both sides of the second pressing semi-circular ring 17 and connected to the rotating assembly. The second fastener 20 can improve the connection strength and stability between the second pressing semi-circular ring 17 and the second supporting semi-circular ring 16. The rotating assembly can drive the main pipe body 1 to rotate, thereby adjusting the position of the branch pipe body 2 to be horizontal, and then fixing it through the limiting assembly. The adjustment is convenient and quick. The second fastener 20 may include bolts and nuts.

[0032] The rotating assembly includes two parallel rotating rings 22, a guide post 23, and a handrail 24. The inner surfaces of the second supporting semicircular ring 16 and the second pressing semicircular ring 17 are provided with guide grooves 21, which penetrate the outer surface of the second pressing semicircular ring 17. The handrail 24 is connected to the rotating rings 22 through the guide post 23. Pushing the handrail 24 can drive the rotating rings 22 to rotate along the guide grooves 21 through the guide post 23, which in turn can drive the main pipe body 1 to rotate until the branch pipe body 2 remains horizontal.

[0033] The inner surface of the rotating ring 22 is provided with an adhesive layer, which can improve the connection stability between it and the main pipe body 1.

[0034] The limiting component includes an arc-shaped frame 27, a connecting rod 25, and a fastening nut 26. Two arc-shaped frames 27 are distributed in parallel between two second ear plates 19 on the second clamping semi-circular ring 17. The arc-shaped frame 27 is provided with an arc-shaped groove 28. The connecting rod 25 passes horizontally through two guide posts 23 and the arc-shaped groove 28. Both ends of the connecting rod 25 are provided with external threads, which are connected to the external threads by the fastening nut 26 to realize the fixed connection between the connecting rod 25 and the arc-shaped frame 27. When the connecting rod 25 moves along the arc-shaped groove 28 to the required position, tightening the fastening nut 26 can realize the fixed installation of the rotating component. The arc-shaped frame 27 can ensure that the connecting rod 25 moves in the circumferential direction, which is convenient for the angle adjustment of the branch pipe body 2.

[0035] The mounting plate 3 has two parallel T-shaped slide rails 6. The movable clamping mechanism 4 moves along the T-shaped slide rails 6. The movable clamping mechanism 4 includes a first supporting semi-circular ring 7, a first pressing semi-circular ring 8, and a moving component. The first supporting semi-circular ring 7 is connected to the T-shaped slide rail 6 through the moving component. The first pressing semi-circular ring 8 is detachably connected to the first supporting semi-circular ring 7. The first pressing semi-circular ring 8 and the first supporting semi-circular ring 7 cooperate to form a ring structure for clamping the main pipe body 1. The moving component can move horizontally along the T-shaped slide rail 6, thereby driving the first supporting semi-circular ring 7 to move horizontally, meeting the clamping requirements of main pipe bodies 1 of different lengths. The cooperation between the first pressing semi-circular ring 8 and the first supporting semi-circular ring 7 can improve the clamping stability and reliability of the main pipe body 1, avoid tilting during the installation of the manifold, and improve the installation effect.

[0036] The movable component includes a slider 12, a first fixed post 15, and a connecting block 13. The slider 12 is connected to the first supporting semi-circular ring 7 via the first fixed post 15. Adjacent sliders 12 are fixedly connected via the connecting block 13. The slider 12 is provided with a T-shaped groove that matches the T-shaped slide rail 6. The first fixed post 15 improves the connection strength and stability between the slider 12 and the first supporting semi-circular ring 7. The side of the slider 12 is provided with a threaded hole. By passing a fastening screw through the threaded hole, the fixed connection between the slider 12 and the T-shaped slide rail 6 can be achieved, thereby improving the stability and reliability of the movable component installation.

[0037] The first supporting semicircular ring 7 and the first pressing semicircular ring 8 are symmetrically provided with first ear plates 10 on both sides. The two adjacent first ear plates 10 are connected by a first fastener 11. The first fastener 11 can improve the connection stability between the first ear plates 10, and thus improve the connection stability between the first pressing semicircular ring 8 and the first supporting semicircular ring 7. The first fastener 11 may include bolts and nuts.

[0038] Both the inner surfaces of the first supporting semicircular ring 7 and the first pressing semicircular ring 8 are provided with support pads 9, which can protect the main pipe body 1.

[0039] The leveling mechanism 5 is used to clamp the main pipe body 1 and drive the main pipe body 1 and branch pipe body 2 to rotate to the horizontal. Then, it is fixed by the moving clamping mechanism 4 to realize the horizontal installation of the manifold. Through the design of the above structure, not only can the main pipe body 1 and branch pipe body 2 be clamped and positioned to keep the main pipe body 1 and branch pipe body 2 horizontal, but it can also reduce the bending when the manifold is connected to the pipeline, improve the stability and reliability of the connection, and avoid leakage.

[0040] In actual use, the mounting plate 3 is first fixedly installed in the required position. Then, the position of the moving clamping mechanism 4 is adjusted according to the length of the main pipe 1. One end of the main pipe 1 is inserted into the rotating ring 22 of the leveling mechanism 5 and fixed to the main pipe 1 through the adhesive layer. The other end of the main pipe 1 is placed horizontally in the first supporting semi-circular ring 7. The handrail 24 is pushed, and the main pipe 1 is rotated through the rotating ring 22 until the branch pipe 2 is in a horizontal position. Then, the rotating component is fixed by the limiting component. Finally, the first pressing semi-circular ring 8 is fixedly connected to the first supporting semi-circular ring 7 until the main pipe 1 is clamped and fixed.

[0041] The above are merely specific embodiments of this utility model, but the technical features of this utility model are not limited thereto. Any simple changes, equivalent substitutions, or modifications made based on this utility model to achieve essentially the same technical effect are all covered within the protection scope of this utility model.

Claims

1. A water distribution manifold, comprising: A main pipe body, with branch pipe bodies symmetrically distributed on both sides of the main pipe body; Its features are: It also includes a movable clamping mechanism and a leveling mechanism. The leveling mechanism is fixed to the mounting plate, and the mounting plate is provided with two T-shaped slide rails in parallel. The movable clamping mechanism moves along the T-shaped slide rails. The leveling mechanism is used to clamp the main pipe body and drive the main pipe body and the branch pipe body to rotate to the horizontal. Then, it is fixed by the movable clamping mechanism to realize the horizontal installation of the water distribution manifold.

2. A water distribution device according to claim 1, characterized in that: The movable clamping mechanism includes a first supporting semicircular ring, a first pressing semicircular ring, and a moving component. The first supporting semicircular ring is connected to the T-shaped slide rail through the moving component. The first pressing semicircular ring is detachably connected to the first supporting semicircular ring. The first pressing semicircular ring and the first supporting semicircular ring cooperate to form a ring structure for clamping the main pipe body.

3. A water distribution manifold according to claim 2, characterized in that: The moving component includes a slider, a first fixed post, and a connecting block. The slider is connected to the first supporting semi-circular ring through the first fixed post. Adjacent sliders are fixedly connected through the connecting block. The slider is provided with a T-shaped groove, which matches the T-shaped slide rail.

4. A water distribution manifold according to claim 2, characterized in that: The first supporting semicircular ring and the first pressing semicircular ring are symmetrically provided with first ear plates on both sides, and the two adjacent first ear plates are connected by a first fastener.

5. A water distribution device according to claim 2, characterized in that: Both the first supporting semicircular ring and the first pressing semicircular ring have support pads on their inner surfaces.

6. A water distribution manifold according to claim 1, characterized in that: The leveling mechanism includes a second supporting semicircular ring, a second pressing semicircular ring, a rotating component, and a limiting component. The second supporting semicircular ring is connected to the mounting plate via a second fixed post. The second pressing semicircular ring is detachably connected to the second supporting semicircular ring. Both the second supporting semicircular ring and the second pressing semicircular ring are symmetrically provided with second ear plates. Two adjacent second ear plates are connected by a second fastener. The rotating component is rotatably connected to the second supporting semicircular ring and the second pressing semicircular ring. The limiting component is provided on the second ear plates on both sides of the second pressing semicircular ring and connected to the rotating component.

7. A water distribution manifold according to claim 6, characterized in that: The rotating assembly includes two rotating rings arranged parallel to each other, a guide post, and a handrail. The inner surfaces of the second supporting semicircular ring and the second pressing semicircular ring are provided with guide grooves, which penetrate the outer surface of the second pressing semicircular ring. The handrail is connected to the rotating rings through the guide post.

8. A water distribution manifold according to claim 7, characterized in that: The inner surface of the rotating ring is provided with an adhesive layer.

9. A water distribution manifold according to claim 7, characterized in that: The limiting component includes an arc-shaped frame, a connecting rod, and a fastening nut. The two arc-shaped frames are distributed in parallel between the two second ear plates on the second pressing semicircular ring. The arc-shaped frame is provided with an arc-shaped groove. The connecting rod passes horizontally through the two guide posts and the arc-shaped groove. Both ends of the connecting rod are provided with external threads, and the fastening nut is connected to the external threads to realize the fixed connection between the connecting rod and the arc-shaped frame.