Sewage treatment coil pipe structure

By designing a combined structure of mounting base, clamp, connecting cylinder, cylinder buckle and connecting groove, the problem of complex structure, difficult cleaning and maintenance of sewage treatment coils is solved, enabling quick disassembly and maintenance, improving heat transfer efficiency and water flow smoothness, and reducing maintenance costs.

CN223576141UActive Publication Date: 2025-11-21SHAANXI CHANGJIN MUNICIPAL ENVIRONMENTAL ENG CO LTD
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Patent Information

Application Number
CN202423093787.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-16
Publication Date
2025-11-21
Estimated Expiration
2034-12-16

AI Technical Summary

Technical Problem

Existing wastewater treatment coil structures affect heat transfer efficiency and water flow. They are complex, difficult to clean and maintain internally, and prone to clogging, increasing maintenance costs and workload.

Method used

The design incorporates a mounting base, clamps, connecting cylinders, cylinder buckles, and connecting grooves. The combination of these components enables quick disassembly and fixation of the coil assembly, ensuring stability and sealing. An internal filter plate and flow port are included to prevent clogging.

Benefits of technology

It enables quick disassembly and maintenance of the coil unit, reduces maintenance costs, improves heat transfer efficiency and water flow smoothness, reduces the risk of scaling and clogging, and extends service life.

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Abstract

The utility model relates to the field of sewage treatment, in particular to a sewage treatment coil pipe structure which comprises a mounting base, two groups of clamping plates, a coil pipe group, a connecting cylinder, a cylinder buckle and a connecting groove, the two groups of clamping plates for clamping and fixing a coil pipe are symmetrically and vertically mounted at the upper end of the mounting base, and the coil pipe group for sewage treatment is arranged between the clamping plates; the inner side of the clamping plate and the coil pipe set are coaxially provided with two sets of connecting cylinders used for fixing, the connecting positions of the outer side of the coil pipe set and the connecting cylinders are provided with connecting grooves used for being buckled with the connecting cylinders to facilitate dismounting, and the bottom ends of the connecting cylinders and the connecting grooves are connected with cylinder buckles in a buckled mode. According to the sewage treatment coil pipe structure disclosed by the utility model, the stability and the reliability of the coil pipe group are ensured through various fixing modes such as the clamping plates, the connecting cylinders, the connecting grooves and the cylinder buckles, the smooth flowing of fluid is ensured through the design of the circulating ports and the filter plates in the coil pipe group, and each part can be independently mounted and dismounted, so that the mounting and the maintenance become simpler and quicker.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the field of sewage treatment, especially sewage treatment coil structure. BACKGROUND

[0002] Sewage treatment refers to removing or converting pollutants in sewage into harmless substances through physical, chemical or biological methods to reach discharge or reuse standards, and is widely used in construction, agriculture, transportation, energy, petrochemical, environmental protection, urban landscape, medical treatment, catering and other fields, and is increasingly integrated into daily life.

[0003] The existing sewage treatment coil structure affects heat transfer efficiency and water flow, the coil structure is complex, internal cleaning and maintenance are difficult, maintenance cost and workload are increased, mineral matter and suspended matter in sewage are prone to form scale in the coil to block, making maintenance work more difficult, high-quality coil materials and complex manufacturing processes make initial investment higher, and long-term operation cost is also higher.

[0004] Therefore, in view of the above-mentioned existing sewage treatment coil structure, the heat transfer efficiency and water flow are affected, the coil structure is complex, the internal cleaning and maintenance are difficult, the maintenance cost and workload are increased, the scale is prone to form to block, and the maintenance work is more difficult, the sewage treatment coil structure can be designed, the coil group can be quickly disassembled through the design of the connecting barrel and the connecting groove, regular cleaning and maintenance are facilitated, the clamping plate, the connecting barrel and other fixing modes ensure the stability and reliability of the coil group, and the flow port and the filter plate in the coil group ensure smooth flow of fluid. SUMMARY

[0005] In order to overcome the problems of the existing sewage treatment coil structure, affecting heat transfer efficiency and water flow, complex coil structure, difficult internal cleaning and maintenance, increased maintenance cost and workload, and easy formation of scale to block, making maintenance work more difficult.

[0006] The technical scheme of the utility model is as follows: a sewage treatment coil structure comprises a mounting base, a clamping plate, a coil group, a connecting barrel, a barrel buckle and a connecting groove, two groups of clamping plates for clamping and fixing the coil are symmetrically and vertically installed on the upper end of the mounting base, the coil group for sewage treatment is arranged between the clamping plates, two groups of connecting barrels for fixation are coaxially arranged on the inner side of the clamping plate and the coil group, the connecting groove for buckling with the connecting barrel to facilitate disassembly is arranged at the connecting position between the outer side of the coil group and the connecting barrel, and the barrel buckle is connected with the connecting groove in a buckling mode.

[0007] Preferably, first, the mounting base is fixed in place, the coil group is placed between the two sets of clamping plates, and the coil group is aligned with the clamping plates, and a connecting groove is formed on the outer side of the coil group at the connecting position of the connecting cylinder, the cylinder buckle is screwed into the threaded groove in the connecting groove, and the coil group and the clamping plate are fixed to each other, and when maintenance or replacement of the coil group is required, the cylinder buckle is unscrewed, the connecting cylinder is separated from the connecting groove, and the coil group can be easily disassembled.

[0008] As a preferred, the clamping plate is fixedly connected with the mounting base, and a mounting plate is arranged between the clamping plate and the mounting base.

[0009] As a preferred, the two ends of the coil group are buckled and connected with two sets of mounting blocks, and a connecting pipe is fixedly connected between the mounting block and the coil group.

[0010] As a preferred, the connecting pipe is provided with a mounting sleeve on the side away from the mounting block, and a fixed frame fixedly connected with the coil group is buckled and mounted on the side of the mounting sleeve away from the connecting pipe.

[0011] As a preferred, a flange is annularly arranged on the side of the mounting block away from the connecting pipe, and three sets of connecting discs are annularly connected to the outer side of the flange.

[0012] As a preferred, a flow-through cavity is formed in the mounting block, a filter plate is arranged in the center of the flow-through cavity, and a sealing ring is arranged on the outer side of the filter plate.

[0013] As a preferred, a plurality of fixed screws are annularly arranged between the fixed frame and the mounting sleeve, and a flow-through opening is formed in the center of the coil group.

[0014] The beneficial effects of the present application are as follows: compared with the traditional sewage treatment coil structure, the present application provides a stable mounting base through the mounting base, ensures the stability of the entire coil structure, the clamping plate is arranged on the upper end of the mounting base and is arranged in a symmetrical and vertical manner, is used for clamping and fixing the coil group, the coil group is located between the two sets of clamping plates and is a main heat exchange component, is used for heat transfer, the connecting cylinder is arranged on the inner side of the clamping plate and is coaxial with the coil group, is used for fixing the coil group, the connecting groove is formed on the outer side of the coil group at the connecting position of the connecting cylinder, is used for buckling with the connecting cylinder, is convenient to disassemble, the cylinder buckle is arranged at the bottom end of the connecting cylinder and is buckled and connected with the connecting groove, and the fixation and sealing of the coil group are ensured. BRIEF DESCRIPTION OF DRAWINGS

[0015] Figure 1 The overall structure of the sewage treatment coil structure of the present application is shown;

[0016] Figure 2 The clamping plate structure of the sewage treatment coil structure of the present application is shown;

[0017] Figure 3 The coil group structure of the sewage treatment coil structure of the present application is shown;

[0018] Figure 4 The utility model discloses a sewage treatment coil structure mounting block structure schematic diagram is shown.

[0019] Mark explanation: 1, the installation base is installed the plate, 3, the clamping plate, 4, the installation cover, 5, the fixed screw, 6, the mounting block, 7, the coil group, 8, the connecting cylinder, 9, the cylinder buckle, 10, the connecting groove, 11, the thread groove, 12, the flow pass, 13, the connecting pipe, 14, the connecting disc, 15, the flange, 16, the filter plate, 17, the flow cavity, 18, the sealing ring, 19, the fixed frame. Specific embodiments

[0020] The utility model is further explained below in connection with the drawings and examples.

[0021] Please refer to Figure 1 - Figure 4 The utility model provides a kind of example: sewage treatment coil structure, including installation base 1, clamping plate 3, coil group 7, connecting cylinder 8, cylinder buckle 9 and connecting groove 10, two groups of clamping plate 3 for clamping coil and making it fixed are symmetrically vertically installed on installation base 1 upper end, coil group 7 for sewage treatment is equipped between clamping plate 3, two groups of connecting cylinder 8 for fixing are coaxially equipped in the inside of clamping plate 3 and coil group 7, connecting groove 10 for being buckled with connecting cylinder 8 is set in the outside of coil group 7 and connecting cylinder 8 junction, connecting cylinder 8 bottom end and connecting groove 10 buckle connection have cylinder buckle 9.

[0022] Please refer to Figure 1 - Figure 2 In the embodiment, installation plate 2 is fixedly connected between clamping plate 3 and installation base 1, thread groove 11 for being threadedly connected with cylinder buckle 9 is set on the surface of connecting groove 10, the connecting strength between clamping plate 3 and installation base 1 is increased by installation plate 2, so that the whole structure is more stable, vibration and loosening in the operation process are reduced, the installation of clamping plate 3 is more convenient by the use of installation plate 2, and installation time and labor intensity are reduced, the use of installation plate 2 can disperse stress, reduce the abrasion of the direct contact point of clamping plate 3 and installation base 1, prolong the service life of the whole system, two groups of mounting blocks 6 are buckled and connected at the both ends of coil group 7, connecting pipe 13 is fixedly connected between mounting block 6 and coil group 7, the fixed connection between mounting block 6 and coil group 7 ensures that the both ends of coil group 7 can be firmly fixed in system, vibration and loosening in the operation process are reduced, the buckle connection design between mounting block 6 and coil group 7 makes that coil group 7 can be quickly disassembled, and it is convenient to clean, check and maintain, connecting pipe 13 between mounting block 6 and coil group 7 can be designed with sealing ring 18 or other sealing measures, to ensure the sealing of connecting place, prevent leakage.

[0023] Please refer toFigure 2 Figure 3 In this embodiment, the connecting pipe 13 is installed with a mounting sleeve 4 away from one side of the mounting block 6, and the mounting sleeve 4 is installed with a fixed frame 19 fixedly connected with the coil pipe group 7 away from one side of the connecting pipe 13. The fixed connection between the mounting sleeve 4 and the fixed frame 19 can reduce the direct friction between the coil pipe group 7 and the support structure, prolong the service life of the coil pipe group 7, and the mounting sleeve 4 and the fixed frame 19 can be made of corrosion-resistant materials to further improve the durability of the system. The design of the mounting sleeve 4 and the fixed frame 19 makes the installation position of the coil pipe group 7 flexible, which can adapt to coil pipe groups 7 of different sizes and specifications. The design of the mounting sleeve 4 and the fixed frame 19 can be compatible with other system components, making it easy to integrate into different sewage treatment systems. The design of the mounting sleeve 4 and the fixed frame 19 can optimize the flow path of the fluid, ensuring uniform distribution of the fluid inside the coil, improving heat transfer efficiency. The mounting block 6 is annularly provided with a flange 15 away from one side of the connecting pipe 13. Three groups of connecting discs 14 are connected around the outside of the flange 15. The design of the flange 15 and the connecting disc 14 provides multi-point fixation, so that the coil pipe group 7 can be more firmly fixed in the system, reducing vibration and loosening during operation. A sealing ring 18 or other sealing measures can be designed between the flange 15 and the connecting disc 14 to ensure the sealing of the connection and prevent leakage. The design of the flange 15 and the connecting disc 14 can optimize the flow path of the fluid, ensuring uniform distribution of the fluid inside the coil, improving heat transfer efficiency.

[0024] Please refer to Figure 3 Figure 4 In this embodiment, a flow-through cavity 17 is formed in the mounting block 6, and a filter plate 16 is installed in the center of the flow-through cavity 17. The filter plate 16 is provided with a sealing ring 18 outside. The filter plate can effectively intercept large particles in the sewage, preventing these substances from entering the coil, reducing the risk of scaling and clogging. The presence of the filter plate 16 can protect the coil pipe group 7 from wear and tear caused by large particles, prolonging the service life of the coil. The sealing ring 18 outside the filter plate 16 can ensure the sealing between the filter plate 16 and the flow-through cavity 17, preventing sewage from leaking from the gap. The design of the filter plate 16 makes it easier to clean and replace the filter plate 16, reducing maintenance time and labor intensity. A plurality of fixing screws 5 are annularly installed between the fixed frame 19 and the mounting sleeve 4. A flow-through opening 12 is formed in the center of the coil pipe group 7. The design of the plurality of fixing screws 5 provides multi-point fixation, ensuring that the connection between the fixed frame 19 and the mounting sleeve 4 is more secure, reducing vibration and loosening during operation. The plurality of fixing screws 5 can ensure the tight connection between the fixed frame 19 and the mounting sleeve 4, preventing leakage. Combined with sealing measures such as sealing rings 18, the sealing effect can be further improved. The multi-point fixation of the fixing screws 5 can reduce the direct friction between the coil pipe group 7 and the support structure, prolonging the service life of the coil pipe group 7.

[0025] ​​In the work, first of all, the installation base 1 is fixed in the appropriate position, ensure its stability, in the installation base 1 upper end symmetry vertical installation two sets of clamping plate 3, the role of clamping plate 3 is to clamp and fixed coil group 7, coil group 7 is placed between two sets of clamping plate 3, ensure that the coil group 7 and clamping plate 3 alignment, inside clamping plate 3 and coil group 7 coaxial position installation two sets of connecting cylinder 8, connecting cylinder 8 bottom end of the cylinder buckle 9 and the outer side of the connecting groove 10 buckle 7 connection, ensure the fixation and sealing of coil group 7, sewage or heat medium through the inlet of coil group 7 into the coil inside, inlet connection through the flange 15 and connecting disc 14 to ensure the sealing, before entering the coil group 7, fluid through the filter plate 16 inside the installation block 6, filter plate 16 can intercept large particles, prevent these substances into the coil inside, need to maintain or replace coil group 7, just spin open fixed frame 19 and installation sleeve 4 between the fixed screw 5, make fixed frame 19 and installation sleeve 4 separate, spin open connecting cylinder 8 bottom end of the cylinder buckle 9, make connecting cylinder 8 and connecting groove 10 separate, can easily remove coil group 7.

[0026] Through the above steps, through the clamping plate 3, connecting cylinder 8, connecting groove 10 and cylinder buckle 9, etc. Various fixed way, ensure the stability and reliability of coil group 7, connecting using sealing ring 18 and flange 15, effectively prevent leakage, ensure the sealing of the system, each component can be installed and disassembled independently, so that the installation and maintenance become more simple and fast, if a component is damaged or needs to be upgraded, can be replaced alone, without the need to replace the entire system, reduce the maintenance cost, the flow through the port 12 and filter plate 16 inside the coil group 7 design to ensure the smooth flow of fluid, improve the heat exchange efficiency, multilayer sealing and fixed design reduces the risk of leakage, improve the safety of the system, has solved the existing sewage treatment coil structure, influence heat transfer efficiency and water flow, coil structure is complex, internal cleaning and maintenance is more difficult, increase the maintenance cost and workload, easy to form the scale and block, make the maintenance work more difficult problem.

Claims

1. A sewage treatment coil structure comprising a mounting base (1); characterized in that: Also include the clamping plate (3), coil group (7), connecting cylinder (8), cylinder buckle (9) and connecting groove (10), the installation base (1) upper end symmetry vertical installation has two groups for clamping coil fixed clamping plate (3), clamping plate (3) between the coil group (7) for sewage treatment is equipped with, clamping plate (3) inside and coil group (7) coaxial fixed two groups of connecting cylinder (8) are equipped with, coil group (7) outside and connecting cylinder (8) connecting place is equipped with connecting groove (10) for with connecting cylinder (8) buckle is convenient to remove, connecting cylinder (8) bottom end and connecting groove (10) buckle connection has cylinder buckle (9).

2. The sewage treatment coil structure according to claim 1, characterized in that: The clamping plate (3) and the installation base (1) are fixedly connected with the mounting plate (2), and the surface of the connecting groove (10) is provided with a threaded groove (11) which is threadedly connected with the cylinder buckle (9).

3. The sewage treatment coil structure according to claim 1, characterized in that: The coil group (7) is buckled and connected with two groups of mounting blocks (6), and the mounting blocks (6) and the coil group (7) are fixedly connected with the connecting pipe (13).

4. The sewage treatment coil structure according to claim 2, characterized in that: The connecting pipe (13) is installed with a mounting sleeve (4) away from the mounting block (6), and the mounting sleeve (4) is installed with a fixed frame (19) fixedly connected with the coil group (7) away from the connecting pipe (13).

5. The sewage treatment coil structure according to claim 3, characterized in that: The mounting block (6) is ring-shaped and provided with a flange (15) away from the connecting pipe (13), and the outer side of the flange (15) is surrounded by three groups of connecting discs (14).

6. The sewage treatment coil structure according to claim 3, characterized in that: The mounting block (6) is internally provided with a flow cavity (17), and the flow cavity (17) is internally provided with a filter plate (16), and the outer side of the filter plate (16) is provided with a sealing ring (18).

7. The sewage treatment coil structure according to claim 4, characterized in that: The fixed frame (19) and the mounting sleeve (4) are annularly installed with a plurality of fixed screws (5), and the inner center of the coil group (7) is provided with a flow port (12).