Novel detachable aeration pipe clamp

By improving the structural design of the aeration pipe clamp and adopting a combination of fastening rings and locking blocks/slots, the problems of corrosion, complex installation, and difficult replacement of the aeration pipe clamp have been solved, achieving convenient installation and cost reduction.

CN224279969UActive Publication Date: 2026-05-26FUJIAN KEHENG NEW MATERIAL CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
FUJIAN KEHENG NEW MATERIAL CO LTD
Filing Date
2025-05-26
Publication Date
2026-05-26

AI Technical Summary

Technical Problem

Existing aeration pipe clamps are prone to corrosion and damage, are cumbersome to install, time-consuming and labor-intensive, and difficult to replace, resulting in poor stability and economy.

Method used

The design incorporates a first fastening ring, a second fastening ring, a disassembly clamp, a first locking block, a second locking block, a first locking groove, a second locking groove, a first stop block, a first clearance groove, a second stop block, a second clearance groove, and an aeration port, enabling convenient installation and replacement of partial components.

Benefits of technology

It achieves convenient installation, saves time and effort, ensures stable installation and reduces costs, and improves the stability and economy of aeration pipe clamps.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of aeration pipe clamps, and discloses a novel detachable aeration pipe clamp which comprises a first fastening ring, a second fastening ring, a detachable clamp body, a first clamping block, a second clamping block, a first clamping groove, a second clamping groove, a first check block, a first receding groove, a second check block, a second receding groove and an aeration opening. The first fastening ring and the second fastening ring are used for stably connecting the two ends of the detachable clamp body to an external pipe, and the aeration opening is formed in the detachable clamp body; the detachable clamp body comprises an upper clamping pipe body and a lower clamping pipe body, and the upper clamping pipe body and the lower clamping pipe body are stably connected to an external pipe in a sleeving mode through a first fastening ring and a second fastening ring. A first fastening ring, a second fastening ring, a detachable clamping body, a first clamping block, a second clamping block, a first clamping groove, a second clamping groove, a first stop block, a first receding groove, a second stop block, a second receding groove and an aeration opening are adopted, so that convenient installation is achieved, local parts can be replaced, time and labor are saved, installation is stable, and cost is reduced.
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Description

Technical Field

[0001] This utility model relates to the field of aeration pipe clamp technology, specifically to a novel detachable aeration pipe clamp. Background Technology

[0002] Aeration pipe clamps, as key components in wastewater treatment and industrial production, are devices specifically designed to clamp aeration pipes. This device secures the aeration pipes in water, significantly improving aeration efficiency and effectively saving energy consumption. Commercially available aeration pipe clamps typically use screws and nuts to secure them to the pipe. These screws and nuts are made of metal, which can corrode and break down over time in water, affecting the stable use of the aeration pipe clamp. Furthermore, existing aeration pipe clamps are cumbersome to install, time-consuming, and prone to installation errors, affecting their subsequent normal use. Replacing aeration pipe clamps is also difficult and complex, requiring complete removal and replacement with new ones, resulting in material waste.

[0003] Therefore, further design is needed for the existing aeration clamp technology. Utility Model Content

[0004] The purpose of this invention is to overcome the problems of easy corrosion and damage of metal connections, cumbersome installation, time and labor consumption, easy deviation, and difficulty in replacement in existing aeration pipe clamp technology. By rationally designing the aeration pipe clamp technology, using a first fastening ring, a second fastening ring, a disassembly clamp body, a first locking block, a second locking block, a first locking groove, a second locking groove, a first stop block, a first clearance groove, a second stop block, a second clearance groove, and an aeration port, it can achieve convenient installation, replacement of partial components, time and labor saving, stable installation, and reduced costs.

[0005] The specific technical solution of this utility model is as follows:

[0006] A novel detachable aeration pipe clamp includes: a first fastening ring, a second fastening ring, a disassembly clamp body, a first locking block, a second locking block, a first locking groove, a second locking groove, a first stop block, a first clearance groove, a second stop block, a second clearance groove, and an aeration port. The disassembly clamp body is used to fit onto an external pipe. The first and second fastening rings are used to securely connect both ends of the disassembly clamp body to the external pipe. The aeration port is disposed on the disassembly clamp body.

[0007] The disassembly clamp includes an upper clamping tube and a lower clamping tube, which are securely fitted onto the outer tube by the first fastening ring and the second fastening ring.

[0008] The first end of the disassembly clamp is equipped with the first locking block and the first stop block. The first fastening ring is provided with the first locking groove and the first clearance groove. The first clearance groove is used to allow the passage of the first locking block. The first locking groove is used to engage the first locking block. The first fastening ring is located between the first locking block and the first stop block. The first locking block, the first locking groove and the first stop block cooperate with each other and are used to stabilize the first fastening ring.

[0009] The second end of the disassembly clamp is equipped with the second locking block and the second stop block. The second fastening ring is provided with the second locking groove and the second clearance groove. The second clearance groove is used to allow the passage of the second locking block. The second locking groove is used to engage the second locking block. The second fastening ring is located between the second locking block and the second stop block. The cooperation of the second locking block, the second locking groove and the second stop block is used to stabilize the second fastening ring.

[0010] Furthermore, the first fastening ring, the second fastening ring, and the disassembly clamp are all circular.

[0011] Furthermore, both the upper clamping tube and the lower clamping tube are selected as semi-circular tubes.

[0012] Furthermore, the aeration port is provided with a membrane, and the membrane is provided with air vents.

[0013] Furthermore, the vent is located at the center of the diaphragm.

[0014] Furthermore, the diaphragm is selected as a diaphragm that is thicker at the edges and thinner in the middle.

[0015] Furthermore, the diaphragm is made of rubber or plastic.

[0016] Furthermore, the diaphragm is arranged in a circular shape.

[0017] Furthermore, anti-slip protrusions are provided on the outer surfaces of both the first and second fastening rings.

[0018] Furthermore, the first fastening ring and the anti-slip protrusion are integrally formed.

[0019] Furthermore, the second fastening ring and the anti-slip protrusion are integrally formed.

[0020] Furthermore, the number of the first card block is the same as the number of the first card slot and the first clearance slot, and the number of the second card block is the same as the number of the second card slot and the second clearance slot.

[0021] Furthermore, the first fastening ring, the first retaining groove, and the first clearance groove are symmetrically arranged corresponding to the second fastening ring, the second retaining groove, and the second clearance groove.

[0022] Furthermore, the first fastening ring, the first retaining groove, and the first clearance groove are integrally formed.

[0023] Furthermore, the first fastening ring, the first slot, the anti-slip protrusion, and the first clearance groove are integrally formed.

[0024] Furthermore, the second fastening ring, the second retaining groove, and the second clearance groove are integrally formed.

[0025] Furthermore, the second fastening ring, the second slot, the anti-slip protrusion, and the second clearance groove are integrally formed.

[0026] Furthermore, the first fastening ring, the first slot, the anti-slip protrusion, and the first clearance groove are made of ABS (acrylonitrile-butadiene-styrene plastic); the second fastening ring, the second slot, the anti-slip protrusion, and the second clearance groove are made of ABS.

[0027] Furthermore, the aeration port and the disassembly clamp are integrally formed.

[0028] Furthermore, the upper clamping tube is provided with an aeration port.

[0029] Furthermore, the aeration port is located at the center of the upper clamping tube.

[0030] Furthermore, upper clamping sealing rings are provided on both ends of the inner wall of the upper clamping tube, and lower clamping sealing rings are provided on both ends of the inner wall of the lower clamping tube. The upper clamping sealing rings and lower clamping sealing rings cooperate with each other and are used to seal the gap between the disassembly clamp and the external tube.

[0031] Furthermore, the inner wall of the lower clamping tube is provided with clamping protrusions; the clamping protrusions are used to insert into the positioning holes on the outer tube, thereby realizing the alignment operation of the aeration port.

[0032] Furthermore, the clamping protrusion is located at the center of the lower clamping tube.

[0033] Furthermore, the upper clamping tube, aeration port, first clamping block, first stop block, second clamping block, upper clamping sealing ring, and second stop block are all made of PP (polypropylene).

[0034] Furthermore, the upper clamping tube body, aeration port, first clamping block, first stop block, second clamping block, upper clamping sealing ring and second stop block are integrally formed.

[0035] Furthermore, the lower clamping tube body, clamping protrusion, first clamping block, first stop block, second clamping block, lower clamping sealing ring, and second stop block are all made of PP (polypropylene).

[0036] Furthermore, the lower clamping tube body, clamping protrusion, first clamping block, first stop block, second clamping block, lower clamping sealing ring, and second stop block are integrally formed.

[0037] Furthermore, the upper clamping tube body, the first clamping block, the first stop block, the second clamping block, the upper clamping sealing ring, and the second stop block are arranged symmetrically with respect to the center line of the aeration port.

[0038] Furthermore, the lower clamping tube body, the first clamping block, the first stop block, the second clamping block, the lower clamping sealing ring, and the second stop block are arranged symmetrically around the center line of the clamping protrusion.

[0039] Beneficial effects

[0040] This utility model, through a rational design of aeration pipe clamp technology, employs a first fastening ring, a second fastening ring, a disassembly clamp, a first locking block, a second locking block, a first locking groove, a second locking groove, a first stop block, a first clearance groove, a second stop block, a second clearance groove, and an aeration port. This design enables convenient installation, allows for the replacement of partial components, saves time and labor, ensures stable installation, and reduces costs. The symmetrical design simplifies the production process and reduces production costs. Attached Figure Description

[0041] Figure 1 This is a schematic diagram of the structure of a novel detachable aeration pipe clamp according to the present invention.

[0042] Figure 2 This is an exploded structural diagram of a novel detachable aeration pipe clamp according to the present invention.

[0043] Reference numerals: 01, First fastening ring; 011, First clearance groove; 012, First slot; 02, Anti-slip protrusion; 03, Diaphragm; 04, Aeration port; 05, Inner wall of fastening ring; 06, First clamping block; 071, Upper clamping tube body; 08, Second stop block; 072, Aeration tube; 073, Lower clamping tube body; 074, Clamping protrusion; 075, Upper clamping sealing ring; 076, Lower clamping sealing ring. Detailed Implementation

[0044] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0045] See Figures 1-2As shown, this utility model provides a novel detachable aeration pipe clamp, which includes: a first fastening ring 01, a second fastening ring, a disassembly clamp body, a first locking block 06, a second locking block, a first locking groove 012, a second locking groove, a first stop block, a first clearance groove 011, a second stop block 08, a second clearance groove, and an aeration port 04. The disassembly clamp body is used to fit onto an external pipe, and the first fastening ring 01 and the second fastening ring are used to securely connect the two ends of the disassembly clamp body to the external pipe. The aeration port 04 is provided on the disassembly clamp body.

[0046] The disassembly clamp includes an upper clamping tube body 071 and a lower clamping tube body 073, which are securely fitted onto the outer tube by a first fastening ring 01 and a second fastening ring.

[0047] The first end of the disassembly clamp is equipped with a first locking block 06 and a first stop block. The first fastening ring 01 is provided with a first locking groove 012 and a first clearance groove 011. The first clearance groove 011 is used to allow the passage of the first locking block 06, and the first locking groove 012 is used to engage the first locking block 06. The first fastening ring 01 is located between the first locking block 06 and the first stop block. The cooperation of the first locking block 06, the first locking groove 012 and the first stop block is used to stabilize the first fastening ring 01.

[0048] The second end of the disassembly clamp is equipped with a second locking block and a second stop block 08. The second fastening ring is provided with a second locking groove and a second clearance groove. The second clearance groove is used to allow the passage of the second locking block, and the second locking groove is used to engage the second locking block. The second fastening ring is located between the second locking block and the second stop block 08. The cooperation of the second locking block, the second locking groove and the second stop block 08 is used to stabilize the second fastening ring.

[0049] The first fastening ring 01 and the second fastening ring are identically configured and both have an inner wall 05. The inner wall 05 of the fastening ring is provided with a first slot 012, a second slot, a first clearance slot 011 and a second clearance slot, respectively.

[0050] The first fastening ring 01, the second fastening ring, and the disassembly clamp are all circular; the upper clamping tube body 071 and the lower clamping tube body 073 are both semi-circular tube bodies.

[0051] The aeration pipe 072 is provided at the aeration port 04, and a membrane 03 is provided on the aeration port 04. The membrane 03 is provided with a vent hole. The vent hole is located at the center of the membrane 03. The membrane 03 is selected to be thick at the edges and thin in the middle. The membrane 03 is made of rubber and is circular.

[0052] The first fastening ring 01 and the second fastening ring are both provided with anti-slip protrusions 02 on their outer surfaces; the first fastening ring 01 and the anti-slip protrusions 02 are integrally formed; the second fastening ring and the anti-slip protrusions 02 are integrally formed.

[0053] The number of first locking blocks 06 is the same as the number of first locking slots 012 and first clearance slots 011, and the number of second locking blocks is the same as the number of second locking slots and second clearance slots; the first fastening rings 01, first locking slots 012 and first clearance slots 011 are symmetrically arranged with the second fastening rings, second locking slots and second clearance slots; the first fastening rings 01, first locking slots 012, anti-slip protrusions 02 and first clearance slots 011 are integrally formed; the second fastening rings, second locking slots, anti-slip protrusions 02 and second clearance slots are integrally formed.

[0054] The first fastening ring 01, the first slot 012, the anti-slip protrusion 02, and the first clearance groove 011 are made of ABS (acrylonitrile-butadiene-styrene plastic); the second fastening ring, the second slot, the anti-slip protrusion 02, and the second clearance groove are made of ABS; the aeration port 04 is integrally formed with the disassembly clamp; the upper clamping tube 071 is provided with the aeration port 04; the aeration port 04 is located at the center of the upper clamping tube 071;

[0055] The upper clamping tube body 071 has upper clamping sealing rings 075 on both ends of its inner wall, and the lower clamping tube body 073 has lower clamping sealing rings 076 on both ends of its inner wall. The upper clamping sealing rings 075 and lower clamping sealing rings 076 cooperate with each other and are used to seal the gap between the disassembly clamp and the external tube. The lower clamping tube body 073 has a clamping protrusion 074 on its inner wall. The clamping protrusion 074 is located at the center of the lower clamping tube body 073.

[0056] The upper clamping tube body 071, aeration port 04, first clamping block 06, first stop block, second clamping block, upper clamping sealing ring 075, and second stop block 08 are all made of PP (polypropylene); the upper clamping tube body 071, aeration port 04, first clamping block 06, first stop block, second clamping block, upper clamping sealing ring 075, and second stop block 08 are integrally formed; the lower clamping tube body 073, clamping protrusion 074, first clamping block 06, first stop block, second clamping block, lower clamping sealing ring 076, and second stop block 08 are all made of PP (polypropylene); the lower clamping tube body 073, clamping protrusion 074, first clamping block 06, first stop block, second clamping block, lower clamping sealing ring 076, and second stop block 08 are integrally formed.

[0057] The upper clamping tube body 071, the first clamping block 06, the first stop block, the second clamping block, the upper clamping sealing ring 075, and the second stop block 08 are symmetrically arranged with respect to the center line of the aeration port 04; the lower clamping tube body 073, the first clamping block 06, the first stop block, the second clamping block, the lower clamping sealing ring 076, and the second stop block 08 are symmetrically arranged with respect to the center line of the clamping protrusion 074.

[0058] The specific implementation method of this utility model is as follows: Assemble the aeration tube clamp and fit it onto the outer tube. The outer tube has a through hole and a positioning hole, which are arranged opposite to each other. Insert the clamp protrusion into the positioning hole, then align the aeration port and the diaphragm with the through hole, and then fasten the upper clamp tube body and the lower clamp tube body together. Move the first fastening ring through the first locking block to the first stop. Since it is made of plastic, there will be slight elastic deformation. Then rotate the first fastening ring so that the first locking block enters the first locking groove for a snap-fit ​​connection. The second fastening ring is snap-fitted in the same way as the first fastening ring, thus completing the installation of the aeration tube clamp.

[0059] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A new and improved detachable aeration pipe clamp characterized by, The aeration clamp includes: a first fastening ring, a second fastening ring, a disassembly clamp body, a first locking block, a second locking block, a first locking groove, a second locking groove, a first stop block, a first clearance groove, a second stop block, a second clearance groove, and an aeration port. The disassembly clamp body is used to be sleeved on the outer pipe. The first and second fastening rings are used to securely connect the two ends of the disassembly clamp body to the outer pipe. The aeration port is provided on the disassembly clamp body. The disassembly clamp includes an upper clamping tube and a lower clamping tube, which are securely fitted onto the outer tube by the first fastening ring and the second fastening ring. The first end of the disassembly clamp is equipped with the first locking block and the first stop block. The first fastening ring is provided with the first locking groove and the first clearance groove. The first clearance groove is used to allow the passage of the first locking block. The first locking groove is used to engage the first locking block. The first fastening ring is located between the first locking block and the first stop block. The first locking block, the first locking groove and the first stop block cooperate with each other and are used to stabilize the first fastening ring. The second end of the disassembly clamp is equipped with the second locking block and the second stop block. The second fastening ring is provided with the second locking groove and the second clearance groove. The second clearance groove is used to allow the passage of the second locking block. The second locking groove is used to engage the second locking block. The second fastening ring is located between the second locking block and the second stop block. The cooperation of the second locking block, the second locking groove and the second stop block is used to stabilize the second fastening ring.

2. A new detachable aerator pipe clamp according to claim 1, characterized in that, Both the upper and lower clamping tubes are semi-circular tubes.

3. A new detachable aerator pipe clamp according to claim 1, characterized in that, The aeration port is provided with a membrane, and the membrane is provided with air vents.

4. A novel detachable aeration pipe clamp according to claim 3, characterized in that, The diaphragm is selected to be thick at the edges and thin in the middle.

5. A novel detachable aeration pipe clamp according to claim 1, characterized in that, Both the first and second fastening rings have anti-slip protrusions on their outer surfaces.

6. A novel detachable aeration pipe clamp according to claim 1, characterized in that, The number of the first card block is the same as the number of the first card slot and the first clearance slot, and the number of the second card block is the same as the number of the second card slot and the second clearance slot.

7. A novel detachable aeration pipe clamp according to claim 6, characterized in that, The first fastening ring, the first retaining groove, and the first clearance groove are symmetrically arranged in relation to the second fastening ring, the second retaining groove, and the second clearance groove.

8. A novel detachable aeration pipe clamp according to claim 1, characterized in that, The first fastening ring, the first retaining groove, and the first clearance groove are integrally formed.

9. A novel detachable aeration pipe clamp according to claim 1, characterized in that, The second fastening ring, the second retaining groove, and the second clearance groove are integrally formed.

10. A novel detachable aeration pipe clamp according to claim 1, characterized in that, The aeration port and the disassembly clamp are integrally formed.