Siphon drainage pipeline suspension fixing device

By designing suspended stable components and drainage shock absorbing devices on the drainage pipes of the siphon roof rainwater drainage system, the problem of vibration and pressure fluctuation when the rainwater is not filled is solved, the stability and service life of the system are improved, and maintenance costs are reduced.

CN222847509UActive Publication Date: 2025-05-09SHANGHAI JIELIU YUSHUI TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202421907258.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-07
Publication Date
2025-05-09
Estimated Expiration
2034-08-07

AI Technical Summary

Technical Problem

In a siphon roof rainwater drainage system, when the rainwater pipe is not filled with water, the system cannot effectively form a siphon phenomenon, resulting in violent vibration and pressure fluctuations in the pipeline system, affecting the service life of the building structure.

Method used

A siphon drainage pipe suspension fixing device is designed, including a drainage pipe body, a suspension stabilization assembly and a drainage shock absorber. The suspension stability assembly increases the overall rigidity of the pipeline system by setting a stable square pipe and a fixed pipe card on the top of the drainage pipe body; the drainage shock absorber device reduces the impact of the vertical drop of rainwater on the drainage pipe body by setting a base, shock absorber and shock absorber hydraulic spring rod at the horizontal end of the drainage pipe body.

Benefits of technology

Improves the stability of the drainage pipe system, prevents strong vibration and suspension instability from causing damage to the wall, extends the service life of the drainage system, and reduces maintenance costs and potential risks.

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Abstract

The utility model relates to the technical field of drainage devices, in particular to a siphon drainage pipeline suspension fixing device which comprises a drainage pipe body, a suspension stabilizing assembly located on the drainage pipe body and a drainage damping device located at the horizontal end of the drainage pipe body. The drainage damping device comprises a base, a damping seat and a placing seat for placing the drainage pipe body, the damping seat comprises a top plate, damping limiting vertical plates are arranged at the bottom, close to the edges of the outer walls of the two sides, of the top plate, the outer walls of the damping limiting vertical plates abut against the inner wall of the base, and damping hydraulic spring rods are evenly connected to the lower portion of the top plate in the base; the stable square pipe parallel to the drainage pipe body is arranged at the top of the drainage pipe body, so that connection stability is enhanced, the overall rigidity of a pipeline system is improved, and therefore the stability of the pipeline system is improved, the drainage damping device is arranged at the horizontal end of the drainage pipe body, and impact force caused by vertical falling of rainwater to the drainage pipe body during drainage is reduced; and possible damage to a building structure due to vibration is reduced.
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Description

Technical Field

[0001] The utility model relates to the technical field of drainage devices, in particular to a siphon drainage pipeline suspension fixing device. Background Art

[0002] At present, there are two main types of rain gutters used in buildings. One is the gravity-type rain gutters, which are traditional rain gutters that rely on the gravity of rainwater to drain rainwater. The other is the roof siphon rain gutters, which are new rain gutters that are used in conjunction with a siphon drainage system. When the amount of rainwater is small, it relies on the gravity of rainwater to drain like a gravity-type rain gutters. When the rainwater accumulates to a certain amount, the siphon effect is used to continuously pump the rainwater, which speeds up the drainage of rainwater.

[0003] Driven by the new roof rainwater drainage system, the traditional gravity rainwater gutters have been gradually replaced, and more and more new buildings are using roof siphon rainwater drainage systems. The siphon rainwater system uses the Bernoulli equation to calculate the pressure in the drainage pipe. By changing the diameter of the pipes and accessories, the pressure in the drainage pipe changes to form a full pipe flow, which is siphon drainage.

[0004] In a siphonic roof rainwater drainage system, when the rainwater pipe is not full of water, the system may not be able to effectively form a siphon phenomenon. During the discharge of the mixed flow of air and rainwater, the pipe system will vibrate violently, and even cause pressure fluctuations in the pipe and unstable water flow conditions. The existing suspended fixed screw rods and suspension cards have poor stability, which will affect and reduce the service life of the building structure and may even lead to damage to the entire system. Utility Model Content

[0005] The purpose of the utility model is to provide a siphon drainage pipe suspension fixing device to solve the problems raised in the above background technology.

[0006] In order to achieve the above purpose, the utility model provides the following technical solutions:

[0007] A siphon drainage pipe suspension and fixing device comprises a drainage pipe body, a suspension and stabilizing component located on the drainage pipe body and a drainage shock-absorbing device located at the horizontal end of the drainage pipe body, the drainage shock-absorbing device comprises a base, a shock-absorbing seat and a placement seat for placing the drainage pipe body, the base is arranged in a U-shaped structure, the shock-absorbing seat is located inside the base, the shock-absorbing seat comprises a top plate, a shock-absorbing limit vertical plate is arranged at the bottom of the edges of the outer walls on both sides of the top plate, the shock-absorbing limit vertical plate is located inside the base, the outer wall of the shock-absorbing limit vertical plate abuts against the inner wall of the base, and shock-absorbing hydraulic spring rods are evenly connected and arranged below the top plate inside the base, the top of the shock-absorbing hydraulic spring rod is connected to the top plate, and the bottom of the shock-absorbing hydraulic spring rod is connected to the bottom inner wall of the base;

[0008] The placement seat is located on the top of the top plate, and the placement seat is arranged in an arc-shaped structure with an internal depression, and the bottom of the drainage pipe body is located in the placement seat.

[0009] As a preferred solution of the utility model, the suspension and stabilization component includes a stabilizing square tube horizontally located on the top of the drainage pipe body, and fixed pipe clamps are evenly arranged on the stabilizing square tube. The fixed pipe clamps are in an inverted U-shaped structure and are buckled on the stabilizing square tube. The top of the fixed pipe clamp is integrally connected with a suspension rod, and the top of each suspension rod is connected with a suspension fixing plate connected to the top wall, and the bottom of the fixed pipe clamp is fixedly connected with an anchoring official clamp.

[0010] As a preferred solution of the utility model, the outer walls on both sides of the base are connected to the fixed pipe clamps at the horizontal ends of the drainage pipe body through vertical rods.

[0011] As a preferred solution of the utility model, a shock-absorbing sponge pad is pasted on the inner wall of the placement seat, and the shock-absorbing sponge pad is detachable.

[0012] As a preferred solution of the utility model, the top plate is located on the top of the base, and the bottom is movably abutted against the top of the base.

[0013] As a preferred solution of the utility model, through holes are provided at the top corners around the top plate, and the base located at the bottom of each through hole is provided with a through groove corresponding to its displacement, and each through hole is equipped with an insertion rod, which extends through the through hole and is located inside the through groove of the base.

[0014] Compared with the prior art, the beneficial effects of the utility model are:

[0015] In view of the problems raised in the background technology, the present application arranges a stable square pipe parallel to the top of the drainage pipe body to strengthen the stability of the connection, increase the overall rigidity of the pipeline system, thereby improving its stability, preventing the drainage pipe body from vibrating strongly due to pressure fluctuations in the pipeline and unstable water flow during drainage work, and reducing the problem of the drainage pipe body causing damage to the wall due to unstable suspension caused by the swing of the drainage pipe body;

[0016] By arranging a drainage shock-absorbing device at the horizontal end of the drainage pipe body, the drainage shock-absorbing device can reduce the impact force of rainwater falling vertically on the drainage pipe body during drainage, effectively reducing the vibration of the drainage pipe body caused by rainwater falling vertically, which helps to protect the pipe connection parts and reduce the risk of wear and leakage caused by vibration. It not only improves the overall stability of the drainage pipe system, but also reduces the damage to the building structure caused by vibration, ensuring the long-term stable operation of the drainage system, while reducing maintenance costs and potential risks. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 It is the overall side view of the utility model;

[0018] Figure 2 This is the axonometric diagram of the integral drainage and shock absorbing device of the utility model;

[0019] Figure 3 This is a schematic diagram of the structure of the shock-absorbing seat of the utility model;

[0020] Figure 4 This is a side view of the overall suspension stabilization component of the utility model;

[0021] Figure 5 It is a schematic diagram of a stable square tube of the utility model.

[0022] In the figure: 1. Drain pipe body; 2. Suspension and stabilization component; 21. Stabilizing square pipe; 22. Fixing pipe clamp; 23. Suspension rod; 24. Suspension fixing plate; 25. Anchoring official clamp; 3. Drainage shock absorbing device; 31. Base; 32. Shock absorbing seat; 321. Top plate; 3211. Through hole; 322. Shock absorbing limit plate; 323. Shock absorbing hydraulic spring rod; 33. Placement seat. DETAILED DESCRIPTION

[0023] The technical solutions in the embodiments of the present invention will be described clearly and completely below in conjunction with the embodiments of the present invention.

[0024] Example

[0025] See also Figure 1-5The utility model provides a technical solution: a siphon drainage pipe suspension fixing device, comprising a drainage pipe body 1, a suspension stabilizing component 2 located on the drainage pipe body 1 and a drainage shock-absorbing device 3 located at the horizontal end of the drainage pipe body 1, the drainage shock-absorbing device 3 comprising a base 31, a shock-absorbing seat 32 and a placement seat 33 for placing the drainage pipe body 1, the base 31 is arranged in a U-shaped structure, the shock-absorbing seat 32 is located inside the base 31, the shock-absorbing seat 32 comprises a top plate 321, a shock-absorbing limit plate 322 is arranged at the bottom of the outer wall edges on both sides of the top plate 321, the shock-absorbing limit plate 322 is located inside the base 31, the outer wall of the shock-absorbing limit plate 322 abuts against the inner wall of the base 31, and a shock-absorbing hydraulic spring rod 323 is evenly connected and arranged below the top plate 321 inside the base 31, and the top of the shock-absorbing hydraulic spring rod 323 The top of the top plate 321 is connected to the top plate 321, and the bottom of the shock-absorbing hydraulic spring rod 323 is connected to the inner wall of the bottom of the base 31; the placement seat 33 is located at the top of the top plate 321, and the placement seat 33 is an arc-shaped structure with an internal depression, and the bottom of the drain pipe body 1 is located in the placement seat 33; a shock-absorbing sponge pad is pasted on the inner wall of the placement seat 33, and the shock-absorbing sponge pad is detachable; the top plate 321 is located at the top of the base 31, and the bottom is movably abutted against the top of the base 31; through holes 3211 are opened at the top corners of the top plate 321, and the base 31 at the bottom of each through hole 3211 is opened with a through groove corresponding to its displacement, and each through hole 3211 is internally provided with a plug rod, which extends through the through hole 3211 and is located inside the through groove of the base 31; the outer walls on both sides of the base 31 are connected to the fixed pipe clamp 22 at the horizontal end of the drain pipe body 1 through vertical rods.

[0026] It should be noted that, in this embodiment, by arranging the drainage shock absorbing device 3 at the horizontal end of the drainage pipe body 1, the drainage shock absorbing device 3 reduces the impact force of rainwater falling vertically on the drainage pipe body 1 during drainage, effectively reduces the vibration of the drainage pipe body 1 caused by rainwater falling vertically, helps to protect the pipe connection parts, reduces the risk of wear and leakage caused by vibration, not only improves the overall stability of the drainage pipe system, but also reduces the damage to the building structure caused by vibration, ensures the long-term stable operation of the drainage system, and reduces the maintenance cost and potential risks;

[0027] Furthermore, the drainage shock-absorbing device 3 includes a base 31, a shock-absorbing seat 32 and a placement seat 33 for placing the drainage pipe body 1. The outer wall of the shock-absorbing limit plate 322 abuts against the inner wall of the base 31, and the bottom of the shock-absorbing limit plate 322 movably abuts against the inner wall of the bottom of the base 31. When drainage is being carried out, when rainwater falls vertically and causes an impact on the drainage pipe body 1, the drainage pipe body 1 moves downward and displaces. The displacement of the drainage pipe body 1 squeezes the top plate 321 and drives the shock-absorbing limit plate 322 to move downward. At this time, the shock-absorbing hydraulic spring rod 323 at the bottom of the top plate 321 performs shock absorption, effectively reducing the impact on the drainage pipe body 1 and the suspension stabilization component 2, and ensuring the long-term stable operation of the system.

[0028] Furthermore, through holes 3211 are provided at the top corners of the top plate 321, and the base 31 at the bottom of each through hole 3211 is provided with a through slot corresponding to the displacement thereof, and a plug rod is built inside each through hole 3211, and the plug rod extends through the through hole 3211 and is located inside the through slot of the base 31, so as to ensure that the drainage pipe body 1 maintains downward movement displacement when receiving an impact, and prevents lateral displacement;

[0029] Furthermore, a shock-absorbing sponge pad is pasted on the inner wall of the placement seat 33, and the shock-absorbing sponge pad abuts against the outer wall below the drain pipe body 1 to protect the drain pipe body 1 and prevent the drain pipe body 1 from moving downward and displacing when rainwater falls vertically and causes damage to the pipe connection.

[0030] See also Figure 1 , 4 5. The suspension stabilization component 2 includes a stabilizing square tube 21 horizontally located on the top of the drainage pipe body 1, and fixed pipe clamps 22 are evenly arranged on the stabilizing square tube 21. The fixed pipe clamps 22 are inverted U-shaped structures and are buckled on the stabilizing square tube 21. The top of the fixed pipe clamps 22 is integrally connected with a suspension rod 23, and the top of each suspension rod 23 is connected with a suspension fixing plate 24 connected to the top wall, and the bottom of the fixed pipe clamps 22 is fixedly connected with an anchoring official clamp 25.

[0031] It should be noted that, in this embodiment, by arranging a stable square tube 21 parallel to the top of the drain pipe body 1 to strengthen the stability of the connection, the overall rigidity of the pipeline system is increased, thereby improving its stability, preventing the drain pipe body 1 from vibrating strongly due to pressure fluctuations in the pipeline and unstable water flow during drainage work, and reducing the problem of the drain pipe body 1 causing damage to the wall due to unstable suspension caused by swinging.

[0032] Furthermore, during installation, the stable square tube 21 is placed parallel to the drain pipe body 1, the fixed pipe clamp 22 is clamped with the stable square tube 21 and fastened with screws, the suspension fixing plate 24 is fixed to the top of the wall by expansion screws, the anchoring official clamp 25 at the bottom of the fixed pipe clamp 22 is fixed to the drain pipe body 1, and the drainage shock absorbing device 3 is placed at the end of the drain pipe body 1. At this time, it is ensured that the bottom of the drain pipe body 1 is in contact with the shock absorbing sponge pad on the placement seat 33, and the vertical poles on the outer walls on both sides of the base 31 are connected to the fixed pipe clamp 22 at the horizontal end of the drain pipe body 1. The present application strengthens the stability of the connection by arranging a stable square tube 21 parallel to it at the top of the drain pipe body 1, thereby increasing the overall rigidity of the pipeline system, thereby improving its stability and preventing the drain pipe body 1 from being damaged. The problem of strong vibration of the drainage pipe body 1 caused by pressure fluctuations in the pipeline and unstable water flow state during drainage work is solved, and the problem of damage to the wall caused by unstable suspension due to swinging of the drainage pipe body 1 is reduced; by arranging a drainage shock absorbing device 3 at the horizontal end of the drainage pipe body 1, the drainage shock absorbing device 3 is used to reduce the impact force of vertically falling rainwater on the drainage pipe body 1 during drainage, and the vibration of the drainage pipe body 1 caused by vertically falling rainwater is effectively reduced, which helps to protect the pipeline connection parts and reduce the wear and leakage risks caused by vibration. It not only improves the overall stability of the drainage pipe system, but also reduces the damage to the building structure caused by vibration, ensures the long-term stable operation of the drainage system, and reduces maintenance costs and potential risks.

[0033] The utility model workflow:

[0034] When in use and during installation, the stable square tube 21 is placed parallel to the drain pipe body 1, the fixed pipe clamp 22 is clamped with the stable square tube 21 and fastened with screws, the suspended fixing plate 24 is fixed to the top of the wall by expansion screws, the anchoring official clamp 25 at the bottom of the fixed pipe clamp 22 is fixed to the drain pipe body 1, and the drainage shock absorbing device 3 is placed at the end of the drain pipe body 1. At this time, it is ensured that the bottom of the drain pipe body 1 is in contact with the shock absorbing sponge pad on the placement seat 33, and the vertical poles on the outer walls on both sides of the base 31 are connected to the fixed pipe clamp 22 at the horizontal end of the drain pipe body 1 to complete the installation.

[0035] Although the embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions and variations may be made to the embodiments without departing from the principles and spirit of the present invention, and that the scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A siphon drainage pipe suspension and fixing device, comprising a drainage pipe body (1), a suspension and fixing assembly (2) located on the drainage pipe body (1), and a drainage shock absorbing device (3) located at the horizontal end of the drainage pipe body (1), characterized in that: The drainage shock-absorbing device (3) comprises a base (31), a shock-absorbing seat (32) and a placement seat (33) for placing the drainage pipe body (1); the base (31) is arranged in a U-shaped structure; the shock-absorbing seat (32) is located inside the base (31); the shock-absorbing seat (32) comprises a top plate (321); shock-absorbing limit vertical plates (322) are arranged at the bottom of the edges of the outer walls on both sides of the top plate (321); the shock-absorbing limit vertical plates (322) are arranged at the bottom ... The plate (322) is located inside the base (31), the outer wall of the shock-absorbing limit vertical plate (322) is in contact with the inner wall of the base (31), and a shock-absorbing hydraulic spring rod (323) is evenly connected and arranged below the top plate (321) inside the base (31), the top of the shock-absorbing hydraulic spring rod (323) is connected to the top plate (321), and the bottom of the shock-absorbing hydraulic spring rod (323) is connected to the inner wall of the bottom of the base (31); The placement seat (33) is located on the top of the top plate (321), and the placement seat (33) is arranged in an arc-shaped structure with an internal depression, and the bottom of the drainage pipe body (1) is located in the placement seat (33).

2. A siphon drainage pipe suspension and fixing device according to claim 1, characterized in that: The suspension stabilization component (2) comprises a stabilizing square tube (21) horizontally located at the top of the drainage pipe body (1), fixed pipe clamps (22) are evenly arranged on the stabilizing square tube (21), the fixed pipe clamps (22) are buckled on the stabilizing square tube (21) in an inverted U-shaped structure, the top of the fixed pipe clamp (22) is integrally connected to a suspension rod (23), the top of each suspension rod (23) is connected to a suspension fixing plate (24) connected to the top wall, and the bottom of the fixed pipe clamp (22) is fixedly connected to an anchoring official clamp (25).

3. A siphon drainage pipe suspension and fixing device according to claim 1, characterized in that: The outer walls on both sides of the base (31) are connected to the fixed pipe clamps (22) at the horizontal ends of the drainage pipe body (1) via vertical rods.

4. A siphon drainage pipe suspension and fixing device according to claim 1, characterized in that: A shock-absorbing sponge pad is pasted on the inner wall of the placement seat (33), and the shock-absorbing sponge pad is detachable.

5. The siphon drainage pipe suspension and fixing device according to claim 1, characterized in that: The top plate (321) is located on the top of the base (31), and the bottom is movably abutted against the top of the base (31).

6. A siphon drainage pipe suspension and fixing device according to claim 5, characterized in that: Through holes (3211) are provided at the top corners of the top plate (321) on all sides, and the base (31) located at the bottom of each through hole (3211) is provided with a through groove corresponding to the displacement thereof, and each through hole (3211) is provided with an insertion rod, which passes through the through hole (3211) and extends to the inside of the through groove of the base (31).