Method for braiding a rope

CN117587747BActive Publication Date: 2026-08-21CHINA WATER CONSERVANCY & HYDROPOWER NO 9 ENG BUREAU CO LTD
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Patent Information

Application Number
CN202311636438.4
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-12-01
Publication Date
2026-08-21
Estimated Expiration
2043-12-01

AI Technical Summary

Technical Problem

[0003]现有岸坡防护措施见中国专利公开号为CN111648305B,采用上模块和下模块间平行插接或十字插接构成防护层在岸坡上抵抗较急水流的冲刷,但是,多个上模块和下模块插接施工量大存在不利于快速施工的问题

Benefits of technology

[0021] The beneficial effects of this invention are as follows: the fabric is pressed tightly by the first rope surface and the second rope surface and bound through multiple binding members to form a protective soft raft. The protective soft raft is constructed as a whole at the gap in the bank slope to prevent erosion. The first rope surface faces the water erosion surface, which solves the problem that the large amount of construction work of multiple upper and lower modules is not conducive to rapid construction.

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Abstract

The application discloses a soft rope arrangement and weaving construction method, which comprises the following steps: a first rope surface and a second rope surface corresponding to the two sides of a cloth body are fixed by binding members to form a protective soft rope body, and the protective soft rope body is tightly arranged at a notch position of a bank slope to prevent scouring. The cloth body is compressed by the first rope surface and the second rope surface, and a plurality of binding members are penetrated to form a protective soft rope body. The protective soft rope body is integrally constructed at the notch position of the bank slope to prevent scouring. The first rope surface faces the water scouring surface, and the problem that a plurality of upper modules and lower modules are not conducive to rapid construction due to large plug-in construction quantity is solved.
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Description

Technical Field

[0001] This invention relates to a method for constructing flexible rope braiding systems, belonging to the technical field of water conservancy facilities. Background Technology

[0002] The river current is rapid at bends along the riverbank. This rapid flow at bend 91 can easily erode the riverbank, causing instability and creating breaches 93. Figure 7 As shown. Therefore, protective measures need to be added to the bank slope to resist the erosion of strong currents.

[0003] Existing bank slope protection measures, as seen in Chinese Patent Publication No. CN111648305B, employ parallel or cross-shaped interlocking of upper and lower modules to form a protective layer on the bank slope to resist the scouring of rapid water flow. However, the large amount of construction work involved in interlocking multiple upper and lower modules poses a problem that hinders rapid construction. Summary of the Invention

[0004] To solve the above-mentioned technical problems, the present invention provides a soft rope braiding construction method.

[0005] The present invention is achieved through the following technical solutions.

[0006] This invention provides a soft rope braiding construction method, comprising:

[0007] The first and second rope surfaces, distributed on both sides of the fabric, are bound together with tie-down pieces to form a protective soft raft that is then placed against the gap in the bank slope to prevent erosion.

[0008] The construction process is as follows: the longitudinal rope A and the transverse rope A are wound around the arranging column of the arranging frame, and the first rope surface formed by the cross-arranging of the longitudinal rope A and the transverse rope A is distributed on one side of the fabric. The longitudinal rope B and the transverse rope B are wound around the arranging column of the arranging frame, and the second rope surface formed by the cross-arranging of the longitudinal rope B and the transverse rope B is distributed on one side of the fabric.

[0009] The tool hook used in the construction of the soft rope weaving project inserts the end of the binding piece into the insertion hole in the hook section and then bends it. The worker holds the tool handle and uses the barb at the end of the hook section to pierce the fabric at the intersection of the longitudinal rope A and the transverse rope A. Then, the tool hook is wrapped around the fabric at the intersection of the longitudinal rope B and the transverse rope B and pierced again. The binding piece then binds and fixes the intersection of the longitudinal rope A and the transverse rope A, the fabric, and the intersection of the longitudinal rope B and the transverse rope B through the binding piece to form a protective soft raft. The protective soft raft is then placed tightly against the gap in the bank slope to prevent erosion.

[0010] The protective soft liner is composed of a fabric body and a first rope surface and a second rope surface correspondingly distributed on both sides of the fabric body, which are bound and fixed together by binding members.

[0011] The first rope surface is composed of longitudinal rope A and transverse rope A arranged in a crisscross pattern.

[0012] Both the longitudinal rope A and the transverse rope A are made of ethylene rope, and there are multiple longitudinal ropes A and transverse rope A.

[0013] The second rope surface is composed of longitudinal rope B and transverse rope B arranged in a crisscross pattern.

[0014] Both the longitudinal rope B and the transverse rope B are multiple, and both the longitudinal rope B and the transverse rope B are made of ethylene rope.

[0015] The fabric is composed of two layers of polypropylene fabric.

[0016] The binding element is multiple, and it passes through the intersection of the longitudinal rope A and the transverse rope A, the fabric body, and the intersection of the longitudinal rope B and the transverse rope B to bind and fix the three.

[0017] The binding element is an ethylene strip.

[0018] The tool hook for the soft rope weaving construction includes:

[0019] straight line segment;

[0020] The hook segment is fixed to the bottom of the straight segment, and the end of the hook segment has a spike-like tip. The hook segment, away from the spike, has an insertion hole for the end of the binding material to be inserted. It also includes a tool handle for the worker to grip. The straight segment is fixedly connected to the lower middle part of the tool handle.

[0021] The beneficial effects of this invention are as follows: the fabric is pressed tightly by the first rope surface and the second rope surface and bound through multiple binding members to form a protective soft raft. The protective soft raft is constructed as a whole at the gap in the bank slope to prevent erosion. The first rope surface faces the water erosion surface, which solves the problem that the large amount of construction work of multiple upper and lower modules is not conducive to rapid construction. Attached Figure Description

[0022] Figure 1 This is a schematic diagram of the construction structure of the protective flexible purlin of the present invention;

[0023] Figure 2 yes Figure 1 A magnified schematic diagram showing a portion of the binding components;

[0024] Figure 3 This is a schematic diagram showing the deformation and protrusion of the longitudinal rope A and transverse rope A on the fabric of the present invention;

[0025] Figure 4 This is a schematic diagram of the structure of the tool hook of the present invention;

[0026] Figure 5 This is a cross-sectional schematic diagram of the tool hook of the present invention;

[0027] Figure 6 This is a schematic diagram of the protective flexible shield of the present invention;

[0028] Figure 7 It is a schematic diagram showing the distribution of river channels, banks, and gaps;

[0029] In the diagram: 1-First rope face; 11-Longitudinal rope A; 12-Horizontal rope A; 2-Second rope face; 21-Longitudinal rope B; 22-Horizontal rope B; 3-Fabric body; 4-Binding piece; 5-Arching frame; 51-Arching post; 6-Tool hook; 61-Hook segment; 62-Insertion hole; 63-Tool handle; 64-Barb; 65-Straight section; 91-River channel; 92-Bank slope; 93-Gap. Detailed Implementation

[0030] The technical solution of the present invention is further described below, but the scope of protection is not limited to what is described.

[0031] like Figures 1 to 6 As shown.

[0032] This application discloses a protective flexible embankment construction structure. When in use, the protective flexible embankment is tightly attached to the gap 93 at the bank slope 92 to prevent erosion. The protective flexible embankment includes:

[0033] The first rope surface 1 is formed by vertically intersecting longitudinal ropes A11 and transverse ropes A12. Both longitudinal ropes A11 and transverse ropes A12 are made of ethylene ropes, and there are multiple longitudinal ropes A11 and transverse ropes A12.

[0034] The second rope surface 2 is formed by vertically intersecting longitudinal ropes B21 and transverse ropes B22. Both longitudinal ropes B21 and transverse ropes B22 are multiple. Both longitudinal ropes B21 and transverse ropes B22 are made of ethylene ropes. A fabric body 3 is installed between the second rope surface 2 and the first rope surface 1. The fabric body 3 is made of double-layer polypropylene fabric.

[0035] The intersection of the longitudinal rope A11 and the transverse rope A12 on the first rope surface 1 and the intersection of the longitudinal rope B21 and the transverse rope B22 on the second rope surface 2 are secured by binding members 4. The binding members 4 pass through the intersection of the longitudinal rope A11 and the transverse rope A12, the fabric 3, and the intersection of the longitudinal rope B21 and the transverse rope B22 to secure the three components. Figure 1 , Figure 6 The diagram only shows one binding element 4, but in actual production, there are multiple binding elements 4. Multiple binding elements 4 will be inserted through the intersection of the longitudinal rope A11 and the transverse rope A12, the fabric 3, and the intersection of the longitudinal rope B21 and the transverse rope B22 to bind and fix the three together; the binding element 4 is an ethylene strip.

[0036] The fabric body 3 is pressed tightly by the first rope surface 1 and the second rope surface 2 and bound together by multiple binding pieces 4 to form a protective soft raft. The entire protective soft raft is constructed at the gap 93 on the bank slope 92 for erosion protection. The first rope surface 1 faces the water erosion surface, solving the problem of large-scale construction work involving multiple upper and lower modules, which is not conducive to rapid construction. When the water erodes the fabric body 3, the eroding water impacts the first rope surface 1 and then the fabric body 3. The longitudinal rope A11 and transverse rope A12 of the first rope surface 1 deform and bulge, causing disturbance to the water body and reducing the kinetic energy of the erosion. Figure 3 As shown.

[0037] This application discloses a method for constructing soft rope braiding, comprising:

[0038] The first rope surface 1 and the second rope surface 2, which are distributed on both sides of the fabric body 3, are bound and fixed by the binding member 4 to form a protective soft raft body, which is then closely attached to the gap 93 position of the bank slope 92 for the construction process of erosion prevention.

[0039] The first rope surface 1, formed by the cross-weaving of the longitudinal rope A11 and the transverse rope A12, is distributed on one side of the fabric 3. The second rope surface 2, formed by the cross-weaving of the longitudinal rope A11 and the transverse rope A12, is distributed on one side of the fabric 3. The second rope surface 2, formed by the cross-weaving of the longitudinal rope B21 and the transverse rope B22, is distributed on one side of the fabric 3.

[0040] The tool hook 6, used in the construction of the soft rope weaving, inserts the end of the binding piece 4 into the insertion hole 62 in the hook section 61 and then bends it. The worker holds the tool handle 63 and uses the barb 64 at the end of the hook section 61 to pierce the cloth 3 at the intersection of the longitudinal rope A11 and the transverse rope A12. Then, the tool is wrapped around the intersection of the longitudinal rope B21 and the transverse rope B22 and pierced the cloth 3. The binding piece 4 binds and fixes the intersection of the longitudinal rope A11 and the transverse rope A12, the cloth 3, and the intersection of the longitudinal rope B21 and the transverse rope B22 through the binding piece 4 to form a protective soft raft. The protective soft raft is then placed tightly against the gap 93 of the bank slope 92 to prevent erosion.

[0041] The existing tool hook that can pierce the fabric 3 is disclosed in Chinese Patent Publication No. CN214575808U. Although the disclosed technology has a barb at the end of the hook that can pierce the fabric 3, the problem that the binding member 4 needs to be re-wound after the hole is formed after piercing the fabric 3 reduces the forming efficiency of the protective soft strip.

[0042] This application discloses a tool hook 6 for soft rope weaving construction, comprising:

[0043] The tool handle 63 is for workers to grip. A straight section 65 is vertically and integrally fixedly connected to the lower middle part of the tool handle 63. A curved hook section 61 is integrally fixedly connected to the bottom of the straight section 65. The end of the hook section 61 has a spike-like head 64. There is an insertion hole 62 in the hook section 61 away from the spike 64 for the end of the binding member 4 to extend into. The insertion hole 62 is a closed hole. The end of the binding member 4 is bent after extending into the insertion hole 62 to prevent it from springing back.

[0044] After the tool handle 63 pierces the fabric 3 through the straight section 65 with the barb 64 at the end of the hook section 61, the end of the binding piece 4, which is bent inside the insertion hole 62, is brought into the pierced area of ​​the fabric 3. This realizes that when the tool hook 6 pierces the fabric 3, it also brings the binding piece 4 through, which improves the forming efficiency of the protective soft fabric and solves the problem that the binding piece 4 needs to be re-wound through the hole formed after piercing the fabric 3.

Claims

1. A method for constructing flexible rope braiding systems, characterized in that, include: The first rope surface (1) and the second rope surface (2) distributed on both sides of the fabric body (3) are bound and fixed by the binding member (4) to form a protective soft raft body to be closely attached to the gap (93) of the bank slope (92) for anti-erosion construction process; The construction process is as follows: the longitudinal rope A (11) and the transverse rope A (12) are wound around the arranging column (51) of the arranging frame (5), the first rope surface (1) formed by the cross arrangement of the longitudinal rope A (11) and the transverse rope A (12) is distributed on one side of the fabric (3), the longitudinal rope B (21) and the transverse rope B (22) are wound around the arranging column (51) of the arranging frame (5), and the second rope surface (2) formed by the cross arrangement of the longitudinal rope B (21) and the transverse rope B (22) is distributed on one side of the fabric (3); The tool hook (6) used in the construction of the soft rope braiding project inserts the end of the binding piece (4) into the insertion hole (62) in the hook section (61) and then bends it. The worker holds the tool handle (63) and uses the barb (64) at the end of the hook section (61) to pierce the cloth (3) at the intersection of the longitudinal rope A (11) and the transverse rope A (12). Then, the worker wraps around the cloth (3) from the intersection of the longitudinal rope B (21) and the transverse rope B (22) and pierces it again. The binding piece (4) binds and fixes the intersection of the longitudinal rope A (11) and the transverse rope A (12), the cloth (3), and the intersection of the longitudinal rope B (21) and the transverse rope B (22) through the binding piece (4) to form a protective soft raft. Then, the protective soft raft is placed tightly against the gap (93) of the bank slope (92) to prevent erosion. The tool hook for the soft rope weaving construction includes: Straight line segment (65); Hook segment (61), hook segment (61) is fixed at the bottom of straight segment (65), hook segment (61) has a spike-like head (64) at the end, and the hook segment (61) away from the spike (64) has an insertion hole (62) for the end of the binding member (4) to be inserted. It also includes a tool handle (63) for the worker to grip, the straight segment (65) being fixedly connected to the lower middle part of the tool handle (63).

2. The soft rope braiding construction method as described in claim 1, characterized in that: The binding element (4) is multiple, and the binding element (4) passes through the intersection of the longitudinal rope A (11) and the transverse rope A (12), the fabric (3), and the intersection of the longitudinal rope B (21) and the transverse rope B (22) to bind and fix the three.

Citation Information

Patent Citations

  • A modular slope protection component, slope structure and its construction method

    CN111648305B

  • Binding hook not prone to falling off and capable of being used stably

    CN214575808U