Lug type braid of leno weave

The interwoven design of the side ear ropes, webbing warp and weft, and reinforcing ribs solves the problems of complex and loose webbing weaving, achieving efficient production and stable connection, making it suitable for applications such as parachute straps.

CN223397868UActive Publication Date: 2025-09-30XIAMEN QIUTE NEW MATERIAL CO LTD
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Patent Information

Application Number
CN202422653891.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-31
Publication Date
2025-09-30
Estimated Expiration
2034-10-31

AI Technical Summary

Technical Problem

The existing webbing weaving method is complex, requires a lot of manual labor, is time-consuming and labor-intensive, and is costly. It is also prone to loosening and falling apart, affecting safety in use.

Method used

The interwoven design of edge ear ropes, webbing warp, webbing weft, reinforcement wire and edge ribs, combined with one-piece weaving technology, forms a mesh structure to enhance edge stability and tensile strength.

Benefits of technology

It simplifies the weaving process, reduces labor costs, improves production efficiency, and enhances the stability and durability of the webbing, making it suitable for scenarios such as parachute straps.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of braids, and discloses a leno weave lug type braid. The utility model discloses a woven tape which comprises side ear ropes, woven tape warps, woven tape wefts, reinforcing threads and side reinforcing ribs, the woven tape warps and the woven tape wefts are interwoven to form a net-shaped woven tape layer, cavities are formed in the two opposite edges of the woven tape layer, the side reinforcing ribs are arranged in the cavities, the side reinforcing ribs are wrapped by the woven tape layer of the woven tape warps and the woven tape wefts, and the side ear ropes are arranged on the woven tape warps and the woven tape wefts. The edge ear rope is arranged at the edge of the braid layer, and the edge ear rope is connected to the edge of the braid layer through the reinforcing line. The braid can effectively liberate manual participation, reduce the cost, improve the production efficiency and the like; the edge ear ropes are directly woven and fused into the braid, stable connection of the edge ear ropes can be achieved, usability and durability of the edge ear rope braid are enhanced, the symmetrically-arranged edge ear ropes can conveniently and stably suspend and tie objects and the like, and the edge reinforcing ribs enhance the edge stability of the braid and also enhance the tensile strength and the like of the braid.
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Description

Technical Field

[0001] The utility model relates to the technical field of webbings, in particular to a leno weave ear-hanging webbing. Background Art

[0002] Ribbons come in all shapes and sizes, and are widely used in various aspects of life, playing an important role in our daily lives. People use ribbons for pulling or hanging heavy objects, but most ribbons on the market are flat, just bare ropes. Hanging objects on these ropes can easily cause them to shift or slip. Sometimes, people hand-sew auxiliary ropes onto flat ribbons. Flat ribbons are woven first, and then the auxiliary ropes are sewn onto the woven ribbon using a needle and thread. This process increases the number of steps and labor costs, while reducing production time. The sewn joints are also prone to loosening and damage, significantly affecting their usability and safety. Furthermore, in the ear-loop design of most traditional ear-loop ribbons, the yarns (warp or weft) of the same system are arranged parallel to each other. During strenuous exercise or large movements, the ribbons can become loose due to compression or stretching, causing the product to fall off or shift, reducing its lifespan.

[0003] Therefore, in response to the above problems, research and development of webbing technology is carried out. Utility Model Content

[0004] The purpose of the present invention is to solve the problems that the existing weaving method of the webbing is complicated, relatively more manual participation, time-consuming, labor-consuming and costly, and the webbing is prone to loosening and scattering, affecting use and safety hazards; through the rational design of the webbing, the side ear ropes, webbing warp, webbing weft, reinforcement wire and side ribs are adopted, and the weaving of the webbing twisted wire, webbing ground wire and webbing auxiliary wire is interwoven, and then combined with the one-piece weaving technology, it can effectively liberate manual participation, reduce costs, and improve production efficiency; the side ear ropes are directly woven into the webbing to achieve a stable connection of the side ear ropes, enhance the usability and durability of the side ear rope webbing, the symmetrically arranged side ear ropes can facilitate the stable suspension of objects, etc. The side ribs enhance the edge stability of the webbing and also enhance the tensile strength of the webbing, etc. The side ear ropes can be widely used in the parachute straps on parachutes to facilitate the pulling of ropes, etc.

[0005] The technical solutions of the present utility model are as follows:

[0006] A leno weave ear-hanging webbing comprises: an ear rope, webbing warp, webbing weft, a reinforcing thread and an edge reinforcement rib; the webbing warp and webbing weft are interwoven to form a mesh webbing layer; cavities are provided at two opposite edges of the webbing layer; the edge reinforcement ribs are disposed in the cavities; the edge reinforcement ribs are covered by the webbing layer of the webbing warp and weft; the ear rope is provided at the edge of the webbing layer; the ear rope is connected to the edge of the webbing layer via the reinforcing thread.

[0007] Furthermore, the reinforcement wire includes a webbing strand, a webbing ground wire and a webbing auxiliary wire, the webbing strand, the webbing ground wire and the webbing auxiliary wire are interwoven into a mesh reinforcement wire, and the webbing strand, the webbing ground wire and the webbing auxiliary wire are interconnected with the webbing layer, and the webbing strand, the webbing ground wire and the webbing auxiliary wire cover the edge reinforcement.

[0008] Furthermore, the webbing twisted wires and webbing ground wires are arranged colinearly with the webbing warp wires.

[0009] Furthermore, the webbing wefts and the webbing auxiliary lines are arranged collinearly.

[0010] Furthermore, the side ear rope is a concave-convex wave-shaped side ear rope, the convex part of the side ear rope is used to hang objects, and the concave part of the side ear rope is connected to the edge of the webbing layer through the reinforcement line.

[0011] Furthermore, two side ear ropes are selected, and the side ear ropes are arranged at two edges of the webbing layer.

[0012] Furthermore, the earring rope is selected from fiber rope, hemp rope or cotton rope.

[0013] Furthermore, the edge reinforcement bars are selected from plastic edge reinforcement bars or metal edge reinforcement bars.

[0014] Furthermore, the side ear ropes are symmetrically arranged at two edges of the webbing layer.

[0015] Furthermore, the edge reinforcement is arranged along the direction of the webbing warp.

[0016] Furthermore, the weft threads of the webbing are interwoven with the warp threads of the webbing and are wound around the edge reinforcements.

[0017] Furthermore, the webbing layer and the reinforcement wire are all integrally woven.

[0018] Furthermore, the side ear ropes, webbing layer, side ribs and reinforcement wires are integrally formed and woven.

[0019] Furthermore, the webbing twisted wire and the webbing ground wire wrap around the webbing auxiliary wire.

[0020] Furthermore, the weft threads of the webbing are arranged on a single plane, and the single plane refers to a plane parallel to the straightened warp threads of the webbing.

[0021] Furthermore, the webbing warp threads are woven in the form of a "standing wave", and the webbing weft threads are arranged in the wave antinode cavity of the "standing wave".

[0022] Furthermore, the ribbon twisted wires and the ribbon ground wires are woven in the form of a "standing wave", and a ribbon auxiliary wire is provided in the anti-wave cavity of the "standing wave".

[0023] Furthermore, the webbing warp threads, webbing ground threads, webbing weft threads and reinforcing threads are all made of one or more materials selected from chemical fibers, carbon fibers and cotton threads.

[0024] Beneficial effects

[0025] The utility model adopts the rational design of the webbing, adopts the side ear ropes, webbing warp, webbing weft, reinforcement wire and side ribs, and combines the weaving of the webbing twisted wire, webbing ground wire and webbing auxiliary wire, and then combines the one-piece weaving technology, which can effectively relieve the labor participation, reduce costs, and improve production efficiency. The side ear ropes are directly woven into the webbing to achieve a firm connection of the side ear ropes, enhance the usability and durability of the side ear rope webbing, and the symmetrically arranged side ear ropes can facilitate the stable suspension of objects, etc. The side ribs enhance the edge stability of the webbing and also enhance the tensile strength of the webbing, etc. The side ear ropes can be widely used in the parachute straps on parachutes to facilitate the pulling of ropes, etc. BRIEF DESCRIPTION OF THE DRAWINGS

[0026] Figure 1 The utility model is a structural schematic diagram of a leno weave ear-hanging webbing.

[0027] Figure 2 The utility model is a schematic diagram of the partial planar structure of a leno weave ear-hanging webbing.

[0028] Figure 3 The utility model is a partial structural schematic diagram of a leno weave ear-hanging ribbon.

[0029] Figure 4 The utility model is a schematic diagram of the partial structure of the reinforcing wire of the leno weave ear-hanging webbing.

[0030] Figure numbers: 01, side ear rope; 02, side reinforcement; 03, first webbing warp; 04, second webbing warp; 05, reinforcement line; 06, webbing weft; 07, webbing twisted wire; 08, webbing ground wire. DETAILED DESCRIPTION

[0031] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0032] See Figures 1-4 As shown, the utility model provides a leno weave ear-hanging webbing, which includes: an ear rope 01, a webbing warp, a webbing weft 06, a reinforcing thread 05 and an edge reinforcement 02. The ear rope 01 is made of fiber rope, hemp rope or cotton rope; the edge reinforcement 02 is made of plastic edge reinforcement; the webbing warp, webbing ground wire 08, webbing weft 06 and reinforcing thread 05 are all made of one or more materials selected from chemical fiber, carbon fiber and cotton thread;

[0033] The webbing warp and webbing weft 06 are interwoven to form a mesh webbing layer. A cavity is provided at the two opposite edges of the webbing layer. Edge reinforcement ribs 02 are placed in the cavity. The edge reinforcement ribs 02 are covered by the webbing layer of the webbing warp and webbing weft 06. Edge ear ropes 01 are provided at the edges of the webbing layer. The edge ear ropes 01 are connected to the edges of the webbing layer through reinforcement wires 05.

[0034] The reinforcing wire 05 includes a webbing strand 07, a webbing ground wire 08 and a webbing auxiliary wire, the webbing strand 07, the webbing ground wire 08 and the webbing auxiliary wire are interwoven into a mesh-shaped reinforcing wire 05, and the webbing strand 07, the webbing ground wire 08 and the webbing auxiliary wire are interconnected with the webbing layer, and the webbing strand 07, the webbing ground wire 08 and the webbing auxiliary wire cover the edge reinforcement 02;

[0035] The webbing strands 07 and the webbing ground wires 08 are arranged in a collinear pattern with the webbing warps; the webbing wefts 06 and the webbing auxiliary wires are arranged in a collinear pattern;

[0036] The side ear ropes 01 are of concave-convex wave shape. The convex part of the side ear ropes 01 is used to hang objects, and the concave part of the side ear ropes 01 is connected to the edge of the webbing layer through the reinforcing wire 05. Two side ear ropes 01 are selected, and the side ear ropes 01 are arranged at the two edges of the webbing layer. The side ear ropes 01 are symmetrically arranged at the two edges of the webbing layer. The side reinforcement 02 is arranged along the direction of the webbing warp.

[0037] The weft yarn 06 is interwoven with the warp yarn and wound around the edge reinforcement 02; the webbing layer and the reinforcement yarn 05 are integrally woven;

[0038] Among them, the side ear rope 01, the webbing layer, the side reinforcement 02 and the reinforcement line 05 are woven into one piece; the webbing twisted wire 07 and the webbing ground wire 08 wrap the webbing auxiliary wire.

[0039] The weft threads 06 of the webbing are arranged on a single plane, which refers to a plane parallel to the straightened webbing warp threads.

[0040] Among them, two webbing warps are selected, namely the first webbing warp 03 and the second webbing warp 04. The webbing warps are woven in the form of "standing waves", and the webbing weft 06 is arranged in the wave cavity of the "standing wave".

[0041] The ribbon strands 07 and the ribbon ground wires 08 are woven in the form of a "standing wave", and a ribbon auxiliary wire is provided in the wave cavity of the "standing wave".

[0042] The specific implementation principle of this utility model patent is as follows: the webbing is produced through a twisting device: weaving a leno weave requires the combined use of ordinary heald frames and special heald frames, and a metal twisting heald consisting of two base healds and one half heald; the weaving method: the twisted warp and ground warp are respectively threaded into two rows of ordinary healds, and the weaving method can be divided into right-threading and left-threading methods; the shed type: it can be divided into ordinary shed, open shed and twisted shed, and the twisted shed is a shed type unique to leno weave; and the weaving process: ensure that the movement of the twisted wire and the ground wire is different, and the difference in shrinkage between the two should be minimized. The leno weave webbing adopts a twisting process, which makes the warp and weft of the fabric twisted with each other, and the structure is compact and strong. The interwoven structure of warp and weft is stable and not prone to slippage. This weaving structure not only improves the strength of the webbing, but also forms many small pores on the surface of the webbing, increasing the breathability of the webbing.

[0043] Although the 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 variations may be made to these embodiments without departing from the principles and spirit of the present invention, and the scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A leno weave ear-hanging ribbon, characterized in that: The gauze-woven ear-hanging webbing includes: an ear rope, a webbing warp, a webbing weft, a reinforcement line and an edge reinforcement rib. The webbing warp and webbing weft are interwoven to form a mesh webbing layer. A cavity is provided at the two opposite edges of the webbing layer. The edge reinforcement rib is placed in the cavity. The edge reinforcement rib is covered by the webbing layer of the webbing warp and webbing weft. The ear rope is provided at the edge of the webbing layer and is connected to the edge of the webbing layer through the reinforcement line.

2. The leno weave ear-hanging ribbon according to claim 1, characterized in that: The side ear rope is a concave-convex wave-shaped side ear rope, the convex part of the side ear rope is used to hang objects, and the concave part of the side ear rope is connected to the edge of the webbing layer through the reinforcement line.

3. The leno weave ear-hanging ribbon according to claim 2, characterized in that: Two side ear ropes are selected, and the side ear ropes are arranged at two edges of the webbing layer.

4. The leno weave ear-hanging ribbon according to claim 1, characterized in that: The earring ropes are made of fiber rope, hemp rope or cotton rope.

5. The leno weave ear-hanging ribbon according to claim 1, characterized in that: The edge reinforcements are plastic edge reinforcements or metal edge reinforcements.

6. The leno weave ear-hanging ribbon according to claim 3, characterized in that: The side ear ropes are symmetrically arranged at the two edges of the ribbon layer.

7. The leno weave ear-hanging ribbon according to claim 5, characterized in that: The edge reinforcement is arranged along the direction of the webbing warp.

8. The leno weave ear-hanging ribbon according to claim 7, characterized in that: The weft threads of the webbing are interwoven with the warp threads of the webbing and wound around the edge reinforcements.

9. The leno weave ear-hanging ribbon according to claim 1, characterized in that: The webbing layer and the reinforcement line are all integrally woven.

10. The leno weave ear-hanging ribbon according to claim 9, characterized in that: The side ear ropes, webbing layer, side ribs and reinforcement lines are integrally formed and woven.