Lock edge anti-falling woven tape

By installing a reinforced locking edge of nylon material on the outside of the webbing body, the problem of easy wear and deformation of the webbing edge is solved, and the stability and durability of the webbing under the action of external forces is improved.

CN223014093UActive Publication Date: 2025-06-24JIANGSU GOLDEN AUTUMN CORD CO LTD
View PDF 1 Cites 0 Cited by

Patent Information

Application Number
CN202422254253.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-14
Publication Date
2025-06-24
Estimated Expiration
2034-09-14

AI Technical Summary

Technical Problem

The edges of the webbing are prone to wear due to frequent friction or pulling, and may deform or break under external forces, affecting the overall durability of the webbing.

Method used

A locking edge prevention webbing is designed. By providing a reinforced locking edge on the outside of the webbing body, a more stable structure is formed by using a suture structure of the first connecting edge and the second connecting edge to prevent the webbing from deformation or displacement due to external forces. The reinforced locking material is nylon, which has good corrosion resistance and cold and heat resistance.

Benefits of technology

By strengthening the locking design, the webbing can maintain its original shape and size when withstand external forces such as tension and friction, improving the overall stability and durability of the webbing and preventing wear and tearing.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223014093U_ABST
    Figure CN223014093U_ABST
Patent Text Reader

Abstract

The utility model discloses an edge-locked anti-drop braid, which relates to the technical field of braids and comprises a braid body, the braid body comprises a base layer and a functional layer, the functional layer is arranged on the outer side of the base layer, a reinforced lockstitch is arranged on the outer side of the braid body and comprises a first connecting edge and a second connecting edge, the first connecting edge is sewn with the braid body in an overturning manner, and the second connecting edge is sewn with the braid body in an overturning manner. A clamping shell is installed at one end of the braid body, a clamping block is installed at the end, away from the clamping shell, of the braid body, the clamping block is connected with the clamping shell in a clamped mode, installation grooves are symmetrically formed in the two ends of the braid body, and reflective strips are fixed into the installation grooves. By the adoption of the structure, deformation or displacement of the braid caused by external force in the using process is effectively prevented, it can be guaranteed that the braid keeps the original shape and size when bearing external force such as pulling force and friction force, and therefore the overall stability of the braid is improved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The utility model belongs to the technical field of webbings, and particularly relates to an edge-locked and anti-detachment webbing. Background Art

[0002] A webbing, as a common textile, is a narrow fabric or tubular fabric made of various yarns. It has a wide variety of types and is widely used in multiple fields such as clothing, shoe materials, luggage, industry, agriculture, military supplies, transportation, etc. Among them, the edge-locked and anti-detachment webbing is a specially designed webbing that combines the basic characteristics of the webbing and an additional edge-locking process to improve the durability of the webbing and prevent detachment.

[0003] The flame-retardant composite webbing with the publication number "CN219820863U" belongs to the technical field of webbings, and includes a first connection layer and a second connection layer connected to each other. A first barrier layer is fixedly connected to the first connection layer, and a second barrier layer is fixedly connected to the second connection layer. The first barrier layer and the second barrier layer are connected to each other, and a receiving cavity is formed by combining the first barrier layer and the second barrier layer. Flame-retardant particles are filled in the receiving cavity. The flame-retardant composite webbing of the utility model enhances the flame-retardant effect of the webbing and prolongs the service life of the flame-retardant effect of the webbing.

[0004] Although the above-mentioned utility model enhances the flame-retardant effect of the webbing and prolongs the service life of the flame-retardant effect of the webbing, the edge part of the webbing is more likely to be worn due to frequent friction or pulling, and is also prone to deformation or fracture when subjected to external forces, thus affecting the overall durability of the webbing. Summary of the Utility Model

[0005] Aiming at the problems mentioned in the background art, the purpose of the utility model is to provide an edge-locked and anti-detachment webbing to solve the problem that the edge part of the webbing is more likely to be worn due to frequent friction or pulling, and is also prone to deformation or fracture when subjected to external forces, thus affecting the overall durability of the webbing.

[0006] The above technical purpose of the utility model is achieved through the following technical solutions:

[0007] An edge-locked and anti-detachment webbing includes a webbing body, and is characterized in that: the webbing body includes a matrix layer and a functional layer, the functional layer is arranged outside the matrix layer, a reinforced edge-locking is arranged outside the webbing body, the reinforced edge-locking is composed of a first connection edge and a second connection edge, the first connection edge is reversely stitched to the webbing body, the second connection edges are symmetrically stitched at both ends of the webbing body, and the two ends of the first connection edge are stitched to the second connection edge. Through the reinforced edge-locking arranged outside the webbing body, a reinforced edge-locking is formed outside the webbing body by stitching. Through the stitching in the horizontal and vertical directions of the first connection edge and the second connection edge, a more stable structure can be formed, effectively preventing the webbing from deforming or displacing due to external forces during use.

[0008] As a preferred technical solution, the edge reinforcement material is nylon, and the edge reinforcements are evenly distributed. The nylon edge reinforcements can effectively resist the influence of external forces such as friction and pulling, reducing the risk of wear and tear. Moreover, the nylon material also has good corrosion resistance and cold and heat resistance. In harsh environments, the nylon edge reinforcements can still maintain their good performance and are not easily affected by corrosion or deformation.

[0009] As a preferred technical solution, the base layer includes a main layer and a reinforcement layer. The two ends of the main layer are fixedly connected to the reinforcement layer. The main layer is made of a polyester layer, and the reinforcement layer is made of a Kevlar fiber layer. By setting the main layer, the webbing body can bear greater tensile force and weight, ensuring that the webbing body is not easily broken or damaged during use. By setting the reinforcement layer, the load-bearing capacity and tensile strength of the webbing body can be significantly increased, enabling the webbing body to better adapt to high-load working environments.

[0010] As a preferred technical solution, the functional layer includes a wear-resistant layer, an anti-slip layer, and a moisture-absorbing layer. The anti-slip layer is fixedly connected to the outside of the wear-resistant layer, and the wear-resistant layer is coated on the outside of the anti-slip layer. The moisture-absorbing layer is made of a hemp cellulosic fiber layer, the anti-slip layer is made of a latex silk layer, and the wear-resistant layer is a polytetrafluoroethylene layer. By setting the wear-resistant layer, it can resist friction, wear, and tearing during daily use. By setting the anti-slip layer, it can increase the friction between the webbing body and the contact surface. By setting the moisture-absorbing layer, it can absorb and disperse the moisture on the surface of the webbing body, keeping the webbing body dry and comfortable.

[0011] As a preferred technical solution, mounting grooves are symmetrically provided at both ends of the webbing body, and reflective strips are fixed inside the mounting grooves. By setting the reflective strips, the webbing body with the reflective strips can be easily identified from a distance, greatly improving the night visibility of the user.

[0012] As a preferred technical solution, a buckle housing is installed at one end of the webbing body, and a buckle is installed at the end of the webbing body away from the buckle housing. The buckle is snap-connected to the buckle housing. By setting the buckle and the buckle housing, the two ends of the webbing body can be tightly locked. Even in dynamic or high-load situations, it can effectively prevent the accidental detachment or loosening of the webbing body, enhancing the stability of the connection of the webbing body and ensuring the safety of use.

[0013] In summary, the main beneficial effects of the present utility model are as follows:

[0014] In the present utility model, through the strengthened edge binding provided on the outer side of the webbing body, the strengthened edge binding is formed on the outer side of the webbing body by sewing. Through the sewing in the horizontal and vertical directions of the first connecting edge and the second connecting edge, and the strengthened edge binding made of nylon material has good corrosion resistance and cold and heat resistance. In a harsh environment, the strengthened edge binding made of nylon material can still maintain its good performance, is not easily affected by corrosion or deformation, can form a more stable structure, effectively prevent the webbing from deforming or displacing due to external forces during use, and can ensure that the webbing maintains its original shape and size when bearing external forces such as tensile force and frictional force, thereby improving the overall stability of the webbing. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1 is a three-dimensional structural schematic diagram of the present utility model;

[0016] Figure 2 is the Figure 1 enlarged view of part A of the present utility model;

[0017] Figure 3 is a three-dimensional sectional structural schematic diagram of the base layer of the present utility model;

[0018] Figure 4 is a three-dimensional sectional structural schematic diagram of the functional layer of the present utility model.

[0019] Reference numerals: 1, webbing body; 101, base layer; 1011, main body layer; 1012, strengthening layer; 102, functional layer; 1021, wear-resistant layer; 1022, anti-slip layer; 1023, moisture-absorbing layer; 2, cartridge case; 3, latch; 4, mounting groove; 5, reflective strip; 6, strengthened edge binding; 601, first connecting edge; 602, second connecting edge. DETAILED DESCRIPTION OF THE EMBODIMENTS Embodiment

[0020] Referring to Figures 1 to 4 , a webbing with anti-slip and anti-disconnection function in this embodiment includes a webbing body 1. The webbing body 1 includes a base layer 101 and a functional layer 102. The functional layer 102 is provided on the outer side of the base layer 101. A strengthened edge binding 6 is provided on the outer side of the webbing body 1. The strengthened edge binding 6 is composed of a first connecting edge 601 and a second connecting edge 602. The first connecting edge 601 is sewn reversely with the webbing body 1, and the second connecting edge 602 is sewn between the first connecting edges 601. Through the strengthened edge binding 6 provided on the outer side of the webbing body 1, the strengthened edge binding 6 is formed on the outer side of the webbing body 1 by sewing. Through the sewing in the horizontal and vertical directions of the first connecting edge 601 and the second connecting edge 602, a more stable structure can be formed, effectively preventing the webbing from deforming or displacing due to external forces during use.

[0021] Referring toFigure 2 , the reinforcing edge 6 is made of nylon and is evenly distributed. Using nylon as the material of the reinforcing edge 6 can significantly improve the durability of the webbing. The nylon-reinforced edge 6 can effectively resist external forces such as friction and pulling, reducing the risk of wear and tear. Moreover, the nylon material also has good corrosion resistance and cold and heat resistance. In harsh environments, the nylon-reinforced edge 6 can still maintain its good performance and is not easily affected by corrosion or deformation.

[0022] Reference Figure 3 , the base layer 101 includes a main body layer 1011 and a reinforcing layer 1012. The two ends of the main body layer 1011 are fixedly connected to the reinforcing layer 1012. The main body layer 1011 is made of a polyester layer, and the reinforcing layer 1012 is made of a Kevlar fiber layer. By setting the main body layer 1011, the webbing body 1 can bear greater tensile force and weight, ensuring that the webbing body 1 is not easily broken or damaged during use. Moreover, the polyester main body layer 1011 has good dimensional stability and is not easily deformed under environmental changes such as temperature and humidity. By setting the reinforcing layer 1012, the load-bearing capacity and tensile strength of the webbing body 1 can be significantly increased, enabling the webbing body 1 to better adapt to high-load working environments. Moreover, the Kevlar fiber layer has extremely high strength and modulus, which helps to reduce the overall weight of the webbing. At the same time, its wear resistance and cut resistance are very excellent, and it can effectively resist the cutting and wear of sharp objects, so that the reinforcing layer 1012 can better protect the main body layer 1011 from damage when the webbing is subjected to external impact or friction.

[0023] Reference Figure 4, the functional layer 102 includes a wear-resistant layer 1021, an anti-slip layer 1022, and a moisture-absorbing layer 1023. The anti-slip layer 1022 is fixedly connected to the outside of the wear-resistant layer 1021, and the wear-resistant layer 1021 is coated on the outside of the anti-slip layer 1022. The moisture-absorbing layer 1023 is made of a malsec fiber layer, the anti-slip layer 1022 is made of a latex silk layer, and the wear-resistant layer 1021 is a polytetrafluoroethylene layer. By providing the wear-resistant layer 1021, it can resist friction, wear, and tearing during daily use. Moreover, the wear-resistant layer 1021 made of polytetrafluoroethylene has good stability, including strong acids, strong alkalis, and organic solvents, etc., enabling the webbing body 1 to maintain stable performance in harsh chemical environments, thus significantly extending the service life of the webbing body 1. By providing the anti-slip layer 1022, it can increase the friction between the webbing body 1 and the contact surface, preventing accidental injuries caused by sliding during use. Moreover, the anti-slip layer 1022 made of latex silk has excellent elasticity, enabling the anti-slip layer 1022 to quickly return to its original shape when subjected to external forces and maintaining a stable anti-slip effect. By providing the moisture-absorbing layer 1023, it can absorb and disperse the moisture on the surface of the webbing body 1, keeping the webbing body 1 dry and comfortable. Moreover, the moisture-absorbing layer 1023 made of malsec fiber has natural antibacterial properties, which can inhibit the growth of bacteria and molds and keep the webbing body 1 clean and hygienic.

[0024] Reference Figure 2 , mounting grooves 4 are symmetrically provided at both ends of the webbing body 1, and a reflective strip 5 is fixed inside the mounting grooves 4. By providing the reflective strip 5, the webbing body 1 with the reflective strip 5 attached or worn can be easily recognized from a distance, greatly improving the night visibility of the user. The reflective strip 5 not only improves night visibility but also plays an important warning and reminder role. When light shines on the reflective strip 5, the strong reflection generated can quickly attract people's attention, achieving a warning and reminder effect, thus effectively avoiding accidents.

[0025] Reference Figure 1 , a buckle housing 2 is installed at one end of the webbing body 1, and a buckle 3 is installed at the end of the webbing body 1 away from the buckle housing 2. The buckle 3 is snap-connected to the buckle housing 2. By providing the buckle 3 and the buckle housing 2, the two ends of the webbing body 1 can be tightly locked. Even in dynamic or high-load situations, it can effectively prevent the accidental detachment or loosening of the webbing body 1, enhancing the stability of the connection of the webbing body 1 and ensuring the safety of use.

[0026] Principle and advantages of use: The reinforced lock edge 6 is arranged on the outside of the webbing body 1 and is formed by sewing on the outside of the webbing body 1. A more stable structure can be formed by sewing the first connecting edge 601 and the second connecting edge 602 in the horizontal and vertical directions. The reinforced lock edge 6 made of nylon can effectively resist the influence of external forces such as friction and pulling, reduce the risk of wear and tear, and the nylon material also has good corrosion resistance and cold and heat resistance. In harsh environments, the reinforced lock edge 6 made of nylon can still maintain its good performance and is not easily affected by corrosion or deformation. It can effectively prevent the webbing from being deformed or displaced due to external forces during use, and can ensure that the webbing maintains its original shape and size when subjected to external forces such as tension and friction, thereby improving the overall stability of the webbing.

Claims

1. A lock-edge anti-slip webbing, comprising a webbing body (1), characterized in that: The webbing body (1) comprises a base layer (101) and a functional layer (102); the functional layer (102) is arranged on the outer side of the base layer (101); a reinforcing lock edge (6) is arranged on the outer side of the webbing body (1); the reinforcing lock edge (6) comprises a first connecting edge (601) and a second connecting edge (602); the first connecting edge (601) and the webbing body (1) are turned over and sewn; the second connecting edges (602) are symmetrically sewn at both ends of the webbing body (1); and the two ends of the first connecting edge (601) and the second connecting edge (602) are sewn to each other.

2. The edge-locking anti-slip webbing according to claim 1, characterized in that: The reinforced locking edges (6) are made of nylon, and the reinforced locking edges (6) are distributed at equal intervals.

3. The edge-locking anti-slip webbing according to claim 1, characterized in that: The base layer (101) comprises a main body layer (1011) and a reinforcement layer (1012); the reinforcement layers (1012) are fixedly connected at both ends of the main body layer (1011); the main body layer (1011) is made of a polyester layer, and the reinforcement layer (1012) is made of a Kevlar fiber layer.

4. The edge-locking anti-slip webbing according to claim 1, characterized in that: The functional layer (102) comprises a wear-resistant layer (1021), an anti-skid layer (1022) and a moisture absorption layer (1023); the anti-skid layer (1022) is fixedly connected to the outside of the wear-resistant layer (1021); and the wear-resistant layer (1021) is coated on the outside of the anti-skid layer (1022).

5. The edge-locking anti-slip webbing according to claim 4, characterized in that: The moisture absorption layer (1023) is made of a jute fiber layer, the anti-slip layer (1022) is made of a latex silk layer, and the wear-resistant layer (1021) is a polytetrafluoroethylene layer.

6. The edge-locking anti-slip webbing according to claim 1, characterized in that: Mounting grooves (4) are symmetrically provided at both ends of the ribbon body (1), and reflective strips (5) are fixed inside the mounting grooves (4).

7. The edge-locking anti-slip webbing according to claim 1, characterized in that: A housing (2) is mounted on one end of the webbing body (1), and a clamping block (3) is mounted on the end of the webbing body (1) away from the housing (2), wherein the clamping block (3) is clamped to the housing (2).

Citation Information

Patent Citations

  • Flame-retardant composite braid

    CN219820863U