Steel pipe bundling structure

The binding assembly, consisting of a positioning seat and a screw clamp, solves the problem of resource waste in steel pipe binding, realizes a convenient binding and unbinding process, and improves the reliability and applicability of the steel pipe binding structure.

CN223658487UActive Publication Date: 2025-12-12FOSHAN NANHAI HONG STEEL METAL PROD CO LTD
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Patent Information

Application Number
CN202423079843.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-13
Publication Date
2025-12-12
Estimated Expiration
2034-12-13

AI Technical Summary

Technical Problem

The existing method of binding steel pipes involves cutting the steel strips to remove the binding, which results in serious waste of resources and makes it difficult to reuse them.

Method used

The strapping assembly consists of a positioning seat and a screw clamp. By tightening or loosening the screw clamp, the steel strip can be locked or unlocked, thus preventing the steel strip from being cut.

Benefits of technology

It enables convenient bundling and unbundling, reduces resource waste, improves the reliability and applicability of the bundling structure, and supports secondary use.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of steel pipe packing, in particular to a steel pipe bundling structure which comprises a plurality of steel pipes and a plurality of steel belts, the steel pipes are arranged in a bundling mode to form a steel pipe bundle, the steel belts are wound on the steel pipe bundle, and the steel pipe bundling structure is characterized in that a bundling assembly capable of connecting the two ends of each steel belt is arranged between the two ends of the steel belt; the bundling assembly comprises a positioning seat and a rotary clamping piece, one end of the steel belt is fixedly connected with the positioning seat, the rotary clamping piece is rotatably arranged on the positioning seat, and the other end of the steel belt is jointly clamped by the rotary clamping piece and the positioning seat in a rotary mode. The bundling assembly adopted by the utility model not only can play a very good bundling effect, but also can conveniently remove bundling, and the bundling assembly can not be damaged in the bundling removal process, so that the bundling assembly can be conveniently used for the second time, resource waste can be effectively reduced, and further, excessive resource consumption can be avoided; the steel pipe bundling structure has very high reliability and applicability.
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Description

Technical Field

[0001] This utility model relates to the field of steel pipe packaging technology, and in particular to a steel pipe bundling structure. Background Technology

[0002] Currently, in the process of bundling steel pipes, most methods involve binding several pipes together with steel straps. The current method uses steel sleeves to clamp the ends of the steel straps, thus binding the pipes together. While this achieves a good binding effect, the current method relies on the contraction and deformation of the steel sleeves to clamp the ends, making it difficult to directly release the clamps. Consequently, the current method of unbundling the pipes mostly involves cutting the steel straps, which is difficult to reuse and leads to resource waste. Furthermore, since a bundle of pipes contains several steel straps, this results in excessive resource consumption. Therefore, it is essential to design a steel pipe binding structure to solve the above-mentioned technical problems. Utility Model Content

[0003] The purpose of this utility model is to solve the above-mentioned problems and shortcomings, and to provide a steel pipe binding structure. The binding components used in this steel pipe binding structure can not only achieve a very good binding effect, but also easily unbind the binding. Moreover, the unbinding process will not cause damage to the binding components, thus facilitating the reuse of the binding components. This can effectively reduce resource waste and avoid excessive resource consumption. This steel pipe binding structure has very high reliability and applicability.

[0004] The technical solution of this utility model is implemented as follows:

[0005] A steel pipe bundling structure includes several steel pipes and several steel strips. The steel pipes are bundled together to form a steel pipe bundle, and the steel strips are wrapped around the steel pipe bundle. The characteristic is that a bundling assembly is provided between the two ends of each steel strip to connect the two ends together. The bundling assembly includes a positioning seat and a screw clamp. One end of the steel strip is fixedly connected to the positioning seat, and the screw clamp is rotatably mounted on the positioning seat. The other end of the steel strip is screwed together by the screw clamp and the positioning seat.

[0006] Preferably, the positioning seat has a clamping hole, the screw clamp is a screw, the screw clamp is screwed onto the positioning seat, and the threaded end of the screw clamp passes through the clamping hole, the other end of the steel strip is placed in the clamping hole, and the other end of the steel strip is clamped by the end face of the screw clamp and the wall of the clamping hole.

[0007] Preferably, the clamping hole is opened through the positioning seat, and the positioning seat is provided with a winding shaft. The other end of the steel strip passes through the clamping hole, is wound around the winding shaft, and then passes back into the clamping hole and is clamped by the screw clamp.

[0008] Preferably, the two parts of the steel strip in the clamping hole are stacked and clamped together by the screw clamp.

[0009] Preferably, the positioning seat has a relief groove, the winding shaft is arranged in the relief groove, and the two ends of the winding shaft are respectively connected to the two opposite groove walls of the relief groove, and one opening of the clamping hole is connected to the relief groove.

[0010] Preferably, the mounting shaft is a steel rod welded and fixed to the positioning seat.

[0011] Preferably, the outer surface of the winding shaft is a textured anti-slip surface.

[0012] Preferably, the positioning seat is a steel positioning seat, and a limiting groove is formed on the bottom surface of the positioning seat. One end of the steel strip is placed in the limiting groove and welded and fixed.

[0013] The beneficial effects of this utility model are as follows: In this steel pipe binding structure, the two ends of the steel strip are connected together by a binding assembly including a positioning seat and a screw clamp. This allows the steel strip to be locked or unlocked by tightening or loosening the screw clamp, eliminating the need to cut the steel strip to release the steel pipe. Such a binding assembly not only provides excellent binding effect but also facilitates easy unbinding without damaging the binding assembly, thus enabling its reuse. This effectively reduces resource waste and avoids excessive resource consumption. Therefore, this steel pipe binding structure possesses high reliability and applicability. Attached Figure Description

[0014] Figure 1 This is a schematic diagram of the steel pipe binding structure in this utility model.

[0015] Figure 2 This utility model Figure 1 A magnified structural diagram of part A in the middle.

[0016] Figure 3 This is a structural schematic diagram of the steel strip and binding assembly in the assembled state of this utility model.

[0017] Figure 4 This is a cross-sectional view of the binding component in this utility model.

[0018] Figure 5 This is a top view of the bundling assembly in this utility model.

[0019] Figure 6 This is a structural diagram of the steel pipes stacked in this utility model. Detailed Implementation

[0020] like Figure 1 and Figure 2 As shown, the steel pipe bundling structure of this utility model includes several steel pipes 1 and several steel strips 2. The steel pipes 1 are bundled together to form a steel pipe bundle 10, and the steel strips 2 are wrapped around the steel pipe bundle 10. To achieve the purpose of this utility model, a bundling assembly 3 is provided between the two ends of each steel strip 2 to connect the two ends together. The bundling assembly 3 includes a positioning seat 31 and a screw clamp 32. One end of the steel strip 2 is fixedly connected to the positioning seat 31, and the screw clamp 32 is rotatably set on the positioning seat 31. The other end of the steel strip 2 is screwed together by the screw clamp 32 and the positioning seat 31.

[0021] In this steel pipe bundling structure, the two ends of the steel strip 2 are connected together by a bundling assembly 3, which includes a positioning seat 31 and a screw clamp 32. The steel strip 2 can be locked or unlocked by tightening or loosening the screw clamp 32, without needing to cut the steel strip 2 to release the constraint on the steel pipe 1. This bundling assembly 3 not only provides excellent bundling effect but also allows for easy unbundling without damaging the assembly, thus facilitating reuse and reducing resource waste. Therefore, this steel pipe bundling structure possesses high reliability and applicability.

[0022] like Figure 6 As shown, the steel pipe bundle 10 is hexagonal in shape. When stacking the steel pipe bundle 10, the adjacent steel pipe bundles 10 are separated by square wooden strips 100, and the binding component 3 is positioned on the side of the steel pipe bundle 10. This avoids the binding component 3 from affecting the stacking of the steel pipe bundle 10 and ensures that the stacking of the steel pipe bundle 10 is very stable and safe.

[0023] like Figures 1 to 4 As shown, the positioning seat 31 has a clamping hole 311. The screw clamp 32 is a screw that is screwed onto the positioning seat 31, with its threaded end inserted into the clamping hole 311. The other end of the steel strip 2 is placed in the clamping hole 311, and is clamped by the end face of the screw clamp 32 and the wall of the clamping hole 311. The clamping hole 311 can accurately limit the other end of the steel strip 2, allowing the screw clamp 32 to clamp the steel strip 2 more conveniently and accurately, thereby helping to further improve the reliability and applicability of the steel pipe binding structure.

[0024] like Figures 1 to 5As shown, the clamping hole 311 is opened through the positioning seat 31. The positioning seat 31 is provided with a winding shaft 33. The other end of the steel strip 2 passes through the clamping hole 311, is wound around the winding shaft 33, and then re-enters the clamping hole 311 and is clamped by the screw clamp 32. This can further strengthen the clamping and positioning effect of the binding assembly 3 on the steel strip 2, thereby helping to further improve the restraining effect of the steel strip 2 on the steel pipe bundle 10. This can make the binding tightness and strength better, which can further reduce the probability of the steel pipe bundle 10 loosening and collapsing. In turn, it can greatly improve the stability and safety of steel pipe stacking, which can greatly reduce the occurrence of safety accidents. This can help to further improve the reliability and applicability of the steel pipe binding structure.

[0025] like Figure 2 As shown, the two parts of the steel strip 2 in the clamping hole 311 are stacked and clamped together by the screw clamp 32. This makes the clamping action of the binding assembly 3 on the steel strip 2 more stable and reliable, thereby helping to further improve the reliability of the steel pipe binding structure.

[0026] like Figure 1 , Figure 2 , Figure 4 and Figure 5 As shown, the positioning seat 31 has a clearance groove 312, and the winding shaft 33 is arranged in the clearance groove 312, with both ends of the winding shaft 33 respectively connected to the two opposite groove walls of the clearance groove 312. One opening of the clamping hole 311 is connected to the clearance groove 312. This not only helps to improve the stability and reliability of the installation and positioning of the winding shaft 33, but also allows the clamping hole 311 to guide the end of the steel strip 2 into the clearance groove 312, thereby improving the convenience of winding the steel strip 2 onto the winding shaft 33.

[0027] The winding shaft 33 is a steel rod welded and fixed to the positioning seat 31. This gives the winding shaft 33 high structural strength and durability, thereby enabling the winding shaft 33 to have a more stable and reliable limiting function.

[0028] The outer surface of the winding shaft 33 is a textured anti-slip surface (not shown in the figure). This enhances the friction between the steel strip 2 and the winding shaft 33, thereby enabling the end of the steel strip 2 to be more stably and reliably restrained, which in turn helps to further improve the reliability of the binding assembly 3.

[0029] like Figures 2 to 4As shown, the positioning seat 31 is a steel positioning seat, and a limiting groove 313 is formed on the bottom surface of the positioning seat 31. One end of the steel strip 2 is placed in the limiting groove 313 and welded and fixed. The limiting groove 313 can not only accurately position the connection position between one end of the steel strip 2 and the positioning seat 31, but also play an accurate limiting role in the welding process. Furthermore, by arranging more solder 20 in the limiting groove 313, the connection between the steel strip 2 and the positioning seat 31 can be strengthened, thereby facilitating the manufacture of a more reliable binding assembly 3.

Claims

1. A steel pipe bundling structure comprising a plurality of steel pipes (1), a plurality of steel belts (2), each of the steel pipes (1) being arranged in a bundle to form a steel pipe bundle (10), and each of the steel belts (2) being wound around the steel pipe bundle (10), characterized in that: Two ends of each steel band (2) are provided with a binding assembly (3) capable of connecting the two ends together; the binding assembly (3) comprises a positioning seat (31) and a screw clamp (32), one end of the steel band (2) is fixedly connected with the positioning seat (31), the screw clamp (32) is rotatably arranged on the positioning seat (31), and the other end of the steel band (2) is clamped by the screw clamp (32) and the positioning seat (31) together.

2. The steel pipe bundling structure according to claim 1, characterized by: A clamping hole (311) is formed in the positioning seat (31), the screw clamp (32) is a screw, the screw clamp (32) is screwed on the positioning seat (31), and the threaded end of the screw clamp (32) is arranged in the clamping hole (311), the other end of the steel band (2) is arranged in the clamping hole (311), and the other end of the steel band (2) is clamped by the end face of the screw clamp (32) and the hole wall of the clamping hole (311).

3. The steel pipe bundling structure according to claim 2, characterized by: The clamping hole (311) is formed through the positioning seat (31), the positioning seat (31) is provided with a winding shaft (33), the other end of the steel band (2) is wound on the winding shaft (33) after passing through the clamping hole (311), and then re-enters the clamping hole (311) and is clamped by the screw clamp (32).

4. The steel pipe bundling structure according to claim 3, characterized by: The two parts of the steel band (2) in the clamping hole (311) are arranged in layers and are clamped by the screw clamp (32) together.

5. The steel pipe bundling structure according to claim 3, characterized by: A let-in groove (312) is formed in the positioning seat (31), the winding shaft (33) is arranged in the let-in groove (312), and the two ends of the winding shaft (33) are respectively connected with the two opposite groove walls of the let-in groove (312), and the hole opening of the clamping hole (311) is connected with the let-in groove (312) in a butt joint manner.

6. The steel pipe bundling structure according to claim 3, characterized by: The winding shaft (33) is a steel rod welded on the positioning seat (31).

7. Steel pipe binding structure according to any one of claims 3 to 6, characterized in that: The outer surface of the winding shaft (33) is a netted anti-skid surface.

8. The steel pipe bundling structure according to claim 1, characterized by: The positioning seat (31) is a steel positioning seat, a limiting groove (313) is formed in the bottom surface of the positioning seat (31), and one end of the steel band (2) is arranged in the limiting groove (313) and is welded and fixed.