Rope adjustment loop

The rope adjustment loop addresses anti-slip issues in existing buckles by using offset rib portions on the inner channel wall to repeatedly bend and frictionally secure ropes, enhancing stability.

FR3152712B3Active Publication Date: 2025-10-03DURAFLEX HONG KONG
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Patent Information

Application Number
FR2024009585
Authority / Receiving Office
FR · FR
Patent Type
Utility models
Current Assignee / Owner
Priority Date
2023-09-13
Filing Date
2024-09-10
Publication Date
2025-10-03
Estimated Expiration
2034-09-10

AI Technical Summary

Technical Problem

Existing rope adjustment buckles struggle to provide effective anti-slip functionality on smooth or large-diameter ropes, leading to sliding and loosening issues.

Method used

A rope adjustment loop design featuring opposing support ribs with Z-shaped rib bodies, a connecting rib, and a stop plate, along with offset rib portions on the inner channel wall, creating repeated bending and enhanced friction to prevent slippage.

Benefits of technology

The design effectively prevents rope slippage through repeated bending and increased friction, ensuring secure retention of ropes with varying diameters and surface textures.

✦ Generated by Eureka AI based on patent content.

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Abstract

A rope adjustment buckle comprises two support ribs (110) arranged opposite each other, and a connecting rib (120) connected between the two support ribs (110), in which a rope (200) can be wound on the connecting rib. The rope adjustment buckle also comprises a stopper plate (130) connected between the two support ribs (110); a channel (140) for the passage of the rope (200) is defined by the two support ribs (110) and the stopper plate (130); and a plurality of rib parts (141) are formed on the inner wall of the channel (140) in an offset manner. The rope adjustment buckle provided by the present utility model is novel in design and highly practical. Figure for abstract: Figure 3
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Description

Title of the invention: Rope adjustment buckle Technical field

[0001] The present utility model relates to the field of buckles, in particular a rope adjustment buckle. Context

[0002] For existing rope adjustment buckles, a relatively narrow channel is generally provided therein, through which a rope can pass, and the rope is clamped by the frictional force of the wall surfaces on both sides of the channel so as to prevent the rope from slipping.

[0003] However, when the surface of the rope is relatively smooth or the diameter of the rope is relatively large (i.e., the compressible deformation is relatively large), existing rope adjustment buckles often have difficulty in effectively achieving the anti-slip effect on the rope, and the rope also tends to slide slowly and loosen. Summary

[0004] The purpose of the present utility model is to provide a rope adjustment loop taking into account the above technical problems.

[0005] The technical solution of the present utility model for solving the technical problem is as follows:

[0006] The present utility model relates to a rope adjustment loop, comprising two supporting ribs arranged opposite each other, and a connecting rib connected between the two supporting ribs, where a rope can be wound on the connecting rib;

[0007] the rope adjustment loop also comprises a stop plate connected between the two support ribs; a channel for the passage of the rope is defined by the two support ribs and the stop plate; and

[0008] a plurality of rib portions are formed on the inner wall of the channel in an offset manner.

[0009] According to the rope adjustment buckle provided by the present utility model, each of the support ribs comprises a Z-shaped rib body and a flat plate portion formed by extending over the Z-shaped rib body;

[0010] the flat plate portions of the two support ribs are arranged opposite each other; the connecting rib is connected between the flat plate portions of the two support ribs; the stop plate is also connected between the flat plate portions of the two support ribs;

[0011] the plurality of rib portions are divided into two groups, where one group of rib portions is formed on the flat plate portion of one support rib, and the other group of rib portions is formed on the flat plate portion of the other support rib; and

[0012] the two groups of rib parts are arranged in an offset manner.

[0013] According to the rope adjustment buckle provided by the present utility model, the rope adjustment buckle also comprises a connecting rod connected between the Z-shaped rib bodies of the two supporting ribs, where a flexible band can be wound on the connecting rod.

[0014] According to the rope adjustment buckle provided by the present utility model, the rope adjustment buckle also comprises a pressure connection member connected between the Z-shaped rib bodies of the two support ribs for pressing the flexible band.

[0015] According to the rope adjustment buckle provided by the present utility model, the rib portions are tooth-shaped and the two groups of rib portions are engaged with each other.

[0016] According to the rope adjustment buckle provided by the present utility model, the plurality of rib portions are formed on the inner wall of the existing channel in a staggered manner, so that the rope extending in the channel is repeatedly bent, and the rope cannot slip due to the friction of the plurality of rib portions. The rope adjustment buckle provided by the present utility model is novel in design and very practical. Brief description of the drawings

[0017] The present utility model will be described in more detail below with reference to the accompanying drawings and embodiments. In the figures:

[0018] [Fig-1] shows a diagram of the structure of a rope adjustment loop provided by a preferred embodiment of the present utility model;

[0019] [Fig.2] shows a diagram of the structure of the illustrated string adjustment loop on [Fig.l] in another direction; and

[0020] [Fig.3] shows a diagram of the structure of the illustrated string adjustment loop on [Fig.l] in yet another direction. Detailed description

[0021] The technical problem to be solved by the present utility model is that: for existing rope adjustment buckles, when the surface of a rope is relatively smooth or the diameter of the rope is relatively large (i.e., the compressible deformation is relatively large), the existing rope adjustment buckles often have difficulty in effectively achieving the anti-slip effect on the rope, and the rope also tends to slide slowly and loosen. The technical idea proposed by the present utility model to solve the technical problem is as follows: a plurality of rib parts are formed on the inner wall of the existing channel in a staggered manner, so that a rope extending in the channel is bent repeatedly, and the rope cannot slide due to the friction of the plurality of rib parts.

[0022] In order to make the technical purpose, technical solutions and technical effect of the present utility model clearer and thus to facilitate the understanding and implementation of the present utility model by those skilled in the art, the present utility model will be described in more detail below with reference to the attached drawings and specific embodiments.

[0023] As illustrated in [Fig.l] to [Fig.3], [Fig.l] shows a schematic diagram of the structure of a rope adjustment loop provided by a preferred embodiment of the present utility model; [Fig.2] shows a schematic diagram of the structure of the rope adjustment loop illustrated in [Fig.l] in another direction; and [Fig.3] shows a schematic diagram of the structure of the rope adjustment loop illustrated in [Fig.l] in yet another direction. More specifically, the rope adjustment loop comprises two support ribs 110 arranged opposite each other, and a connecting rib 120 connected between the two support ribs 110, where a rope 200 can be wound on the connecting rib;

[0024] the rope adjustment loop also comprises a stop plate 130 connected between the two support ribs 110; a channel 140 for the passage of the rope 200 is defined by the two support ribs 110 and the stop plate 130; and

[0025] a plurality of rib portions 141 are formed on the inner wall of the channel 140 in an offset manner.

[0026] The above technical solution is a basic solution, in which the plurality of rib portions 141 are formed on the inner wall of the channel 140 in a staggered manner, so that the cable 200 extending in the channel 140 is repeatedly bent, and the cable cannot slide due to the friction of the plurality of rib portions 141.

[0027] Furthermore, in this embodiment, each of the support ribs 110 comprises a Z-shaped rib body 111 and a flat plate portion 112 formed by extending over the Z-shaped rib body 111;

[0028] the flat plate portions 112 of the two support ribs 110 are arranged opposite each other; the connecting rib 120 is connected between the flat plate portions 112 of the two support ribs 110; the stop plate 130 is also connected between the flat plate portions 112 of the two support ribs 110;

[0029] the plurality of rib portions 141 are divided into two groups, where one group of rib portions 141 is formed on the flat plate portion 112 of one support rib 110, and the other group of rib portions 141 is formed on the flat plate portion 112 of the other support rib 110; and

[0030] the two groups of rib portions 141 are arranged in an offset manner.

[0031] The staggered arrangement and mutual cooperation of the two groups of rib portions 141 can cause the channel 140 to bend repeatedly and smoothly, thereby increasing the anti-slip friction force on the rope. More specifically, in this embodiment, the rib portions 141 are tooth-shaped, and the two groups of rib portions 141 are engaged with each other.

[0032] Furthermore, the rope adjustment buckle also comprises a connecting rod 150 connected between the Z-shaped rib bodies 111 of the two supporting ribs 110, where a flexible band 300 can be wound on the connecting rod. In this way, the rope adjustment buckle achieves the technical effect of connecting the rope 200 and the flexible band 300 together via the connecting rod 150 and the connecting rib 120. The flexible band 300 may be a woven belt or ribbon, or even a rope.

[0033] Furthermore, as illustrated in [Fig. 3], the rope adjustment buckle further comprises a pressing connection member 160 connected between the Z-shaped rib bodies 111 of the two support ribs 110 to press the flexible band 300. Here, a belt loop is defined by the Z-shaped rib bodies 111 of the two support ribs 110, the pressing connection member 160 and the connecting rod 150. When the flexible band 300 is straightened, the pressing connection member 160 bends the flexible band 300 by pressing the flexible band 300, which increases the anti-slip friction force on the flexible band 300.

[0034] As illustrated in [Fig.3], during use, one end of the rope 200 extends into the channel 140, is then wound around the connecting rib 120, and then passes back through the channel 140; at the same time, one end of the flexible band 300 passes through the portion between the pressure connecting member 160 and the connecting rod 150, is then wound around the connecting rod 150, and then passes back. In this way, the technical effect of connecting the rope 200 and the flexible band 300 together is achieved through the rope adjustment buckle. When the rope 200 extends into the channel 140, the two groups of rib portions 141 on the inner wall of the channel 140 are arranged in a staggered manner and cooperate with each other to repeatedly bend the rope 200 several times, thereby achieving an anti-slip effect on the rope 200.

[0035] It should be understood that, for those skilled in the art, improvements or variations may be made in accordance with the above description, and all such improvements and variations will fall within the scope of protection as defined in the appended claims of this utility model.

Claims

Claims

1. A rope adjustment buckle, comprising two support ribs (110) arranged opposite each other, and a connecting rib (120) connected between the two support ribs (110), in which a rope (200) can be wound on the connecting rib; the rope adjustment buckle also comprising a stopper plate (130) connected between the two support ribs (110); a channel (140) for the passage of the rope (200) being defined by the two support ribs (110) and the stopper plate (130); and a plurality of rib parts (141) being formed on the inner wall of the channel (140) in an offset manner.

2. The rope adjustment buckle according to claim 1, wherein each of the support ribs (110) comprises a Z-shaped rib body (111) and a flat plate portion (112) formed by extending over the Z-shaped rib body (111); the flat plate portions (112) of the two support ribs (110) are arranged opposite each other; the connecting rib (120) is connected between the flat plate portions (112) of the two support ribs (110); the stopper plate (130) is also connected between the flat plate portions (112) of the two support ribs (110); the plurality of rib portions (141) are divided into two groups, wherein one group of rib portions (141) is formed on the flat plate portion (112) of one support rib (110), and the other group of rib portions (141) is formed on the flat plate portion (112) of the other support rib (110);and the two groups of rib parts (141) are arranged in an offset manner.;

3. A rope adjustment buckle according to claim 2, wherein the rope adjustment buckle also comprises a connecting rod (150) connected between the Z-shaped rib bodies (111) of the two support ribs (110), in which a flexible band (300) can be wound on the connecting rod.

4. A rope adjustment buckle according to claim 3, wherein the rope adjustment buckle also comprises a pressure connection member (160) connected between the shaped rib bodies 7 of Z (111) of the two support ribs (110) for pressing the flexible strip (300).

5. A rope adjustment buckle according to claim 2, wherein the rib portions (141) are tooth-shaped, and the two groups of rib portions (141) are engaged with each other.