Flame-retardant anti-static composite chinlon
By using structural wire and fire-resistant wire in nylon fabric and coated with phosphorus and nitrogen flame retardant coating, the problem of insufficient static electricity and flame retardant properties of nylon fabric at high temperatures is solved, and its flame retardant and anti-static properties are improved.
Patent Information
- Application Number
- CN202421702805.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-18
- Publication Date
- 2025-07-18
- Estimated Expiration
- 2034-07-18
AI Technical Summary
The existing nylon fabrics produce a lot of static electricity and have poor flame retardancy in high temperature environments, resulting in poor performance.
Structural wire and fire-proof wire are weaved to form a nylon composite textile layer, and phosphorus-nitrogen flame-retardant coating is installed on the outside of the fire-proof layer, combining wear-resistant and anti-static functional layers to improve flame retardancy and anti-static properties.
It significantly improves the flame retardant strength and antistatic properties of nylon fabrics, and improves the use effect in high temperature environments.
Smart Images

Figure CN223116003U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of nylon fabrics, and specifically relates to a flame-retardant and anti-static composite nylon. Background Technique
[0002] Nylon is a synthetic fiber with various excellent properties and is widely used in different fields. Its main characteristics include high strength, good wear resistance and elasticity, making it an ideal choice for manufacturing durable clothing and functional items. Nylon fabrics are light and soft, suitable for sports and outdoor activities, and can effectively resist tearing and abrasion. In addition, nylon fibers have excellent dyeing properties and can achieve bright and lasting color effects.
[0003] The existing nylon fabrics are generally formed by weaving multiple nylon filaments with each other. However, due to the relatively simple structure of the existing nylon filaments, a large amount of static electricity will be generated when the nylon fabrics are rubbed in a high-temperature environment, and the poor flame retardancy results in poor performance in specific environments. Summary of the Utility Model
[0004] The utility model provides a flame-retardant and anti-static composite nylon, which has the advantage of good flame retardancy, so as to solve the problems that the structure of the existing nylon filaments is relatively simple, resulting in a large amount of static electricity generated when the nylon fabrics are rubbed in a high-temperature environment, and the poor flame retardancy results in poor performance in specific environments.
[0005] To achieve the purpose of flame retardancy, the utility model provides the following technical scheme: a flame-retardant and anti-static composite nylon, including a nylon composite textile layer, the nylon composite textile layer is divided into structural filaments and fire-proof filaments, a fire-proof layer is arranged on the bottom surface of the nylon composite textile layer, a first fire-proof coating is arranged on the outer surface of the fire-proof layer, a wear-resistant functional layer is arranged on the bottom surface of the fire-proof layer, and an anti-static functional layer is arranged on the top surface of the nylon composite textile layer.
[0006] As a preferred technical scheme of the utility model, the structural filaments are made of nylon filament material, the fire-proof filaments are made of flame-retardant nylon filament material, and the structural filaments and the fire-proof filaments are woven with each other to form the nylon composite textile layer.
[0007] As a preferred technical scheme of the utility model, the fire-proof layer is made of polyester fabric material, the fire-proof layer and the nylon composite textile layer are sewn with each other, the first fire-proof coating is made of phosphorus-nitrogen flame-retardant coating material, and the first fire-proof coating is impregnated on the outer surface of the fire-proof layer.
[0008] As a preferred technical scheme of the utility model, the wear-resistant functional layer includes a contact layer, a second fire-proof coating is arranged on the outer surface of the contact layer, and the contact layer is arranged on the bottom surface of the nylon composite textile layer.
[0009] As a preferred technical solution of the present utility model, the contact layer is made of nylon fabric, the contact layer and the polyamide composite textile layer are stitched to each other, the second fireproof coating is a silicone flame retardant coating, and the second fireproof coating is impregnated on the outer surface of the contact layer.
[0010] As a preferred technical solution of the present utility model, the antistatic functional layer includes an antistatic layer, an antistatic coating is provided on the outer surface of the antistatic layer, and the antistatic layer is provided on the top surface of the polyamide composite textile layer.
[0011] As a preferred technical solution of the present utility model, the antistatic layer is made of polyester fiber fabric, the antistatic layer and the polyamide composite textile layer are stitched to each other, the antistatic coating is an antistatic agent coating, and the antistatic coating is impregnated on the outer surface of the antistatic layer.
[0012] Compared with the prior art, the present utility model provides a flame retardant and antistatic composite polyamide, which has the following beneficial effects:
[0013] For this flame retardant and antistatic composite polyamide, a first fireproof coating is provided on the outer surface of the fireproof layer. The first fireproof coating is impregnated on the outer surface of the polyamide fabric material with a phosphorus-nitrogen flame retardant coating. Through the mutual contact of the phosphorus-nitrogen flame retardant coating of the fireproof coating and the polyamide fabric, the flame retardant strength of the fireproof layer is integrally improved, thereby further improving the flame retardant performance of the fabric, thus making up for the defect that due to the relatively simple structure of the polyamide silk thread in the prior art, a large amount of static electricity will be generated when the polyamide fabric rubs in a high-temperature environment, and the poor flame retardancy results in poor performance in a specific environment. Brief Description of the Drawings
[0014] Figure 1 is a schematic diagram of the external structure of the present utility model;
[0015] Figure 2 is a schematic diagram of the internal structure of the present utility model;
[0016] Figure 3 is a schematic diagram of the cross-sectional structure of the present utility model;
[0017] Figure 4 is provided by the present utility model Figure 2 The enlarged schematic diagram of the structure of part A in.
[0018] In the figure: 1, polyamide composite textile layer; 2, structural silk thread; 3, fireproof silk thread; 4, fireproof layer; 5, first fireproof coating; 6, contact layer; 7, second fireproof coating; 8, antistatic layer; 9, antistatic coating. Detailed Description of the Preferred Embodiments
[0019] The following will clearly and completely describe the technical solutions in the embodiments of the present utility model in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present utility model without making creative efforts shall fall within the protection scope of the present utility model. Embodiment 1
[0020] Please refer to Figures 1-4 , the present utility model discloses a flame-retardant and antistatic composite polyamide fiber, which includes a polyamide composite textile layer 1. The polyamide composite textile layer 1 is divided into structural filaments 2 and fireproof filaments 3. A fireproof layer 4 is provided on the bottom surface of the polyamide composite textile layer 1. A first fireproof coating 5 is provided on the outer surface of the fireproof layer 4. A wear-resistant functional layer is provided on the bottom surface of the fireproof layer 4. An antistatic functional layer is provided on the top surface of the polyamide composite textile layer 1.
[0021] The structural filaments 2 are made of polyamide filaments, and the fireproof filaments 3 are made of flame-retardant nylon filaments. The structural filaments 2 and the fireproof filaments 3 are woven with each other to form the polyamide composite textile layer 1. The polyamide composite textile layer 1 is woven with polyamide filaments and flame-retardant nylon filaments. And the flame-retardant nylon filaments itself has a certain flame-retardant effect. Through the mutual weaving with the polyamide filaments, the structural strength and the flame-retardant effect of the polyamide composite textile layer 1 are improved as a whole.
[0022] The fireproof layer 4 is made of polyester fabric, and the fireproof layer 4 is sewn with the polyamide composite textile layer 1. The first fireproof coating 5 is made of phosphorus-nitrogen flame-retardant paint, and the first fireproof coating 5 is impregnated on the outer surface of the fireproof layer 4.
[0023] The wear-resistant functional layer includes a contact layer 6. A second fireproof coating 7 is provided on the outer surface of the contact layer 6. The contact layer 6 is provided on the bottom surface of the polyamide composite textile layer 1. An antistatic layer 8 and a contact layer 6 are respectively provided on the top and bottom surfaces of the polyamide composite textile layer 1. The two are respectively made of polyester fiber fabric and nylon fabric. Both materials have high strength, which can further improve the tensile performance of the fabric. And both the polyester fiber fabric and the nylon fabric have the advantages of good antistatic effect.
[0024] The contact layer 6 is made of nylon fabric, and the contact layer 6 is sewn with the polyamide composite textile layer 1. The second fireproof coating 7 is made of silicone flame-retardant paint, and the second fireproof coating 7 is impregnated on the outer surface of the contact layer 6.
[0025] The antistatic functional layer includes an antistatic layer 8. An antistatic coating 9 is provided on the outer surface of the antistatic layer 8. The antistatic layer 8 is provided on the top surface of the polyamide composite textile layer 1. An antistatic layer 8 and a contact layer 6 are respectively provided on the top and bottom surfaces of the polyamide composite textile layer 1. The two are made of polyester fiber fabric material and nylon fabric material respectively. Both materials have high strength, which can further improve the tensile performance of the fabric.
[0026] The antistatic layer 8 is made of polyester fiber fabric. The antistatic layer 8 and the polyamide composite textile layer 1 are sewn to each other. The antistatic coating 9 is an antistatic agent coating, and the antistatic coating 9 is impregnated on the outer surface of the antistatic layer 8.
[0027] The working principle and usage process of the present utility model: When the flame-retardant and antistatic composite polyamide is in use, since the polyamide composite textile layer 1 is woven from polyamide filaments and flame-retardant nylon filaments, and the flame-retardant nylon filaments themselves have a certain flame-retardant effect. By mutually weaving with the polyamide filaments, the structural strength and flame-retardant effect of the polyamide composite textile layer 1 are overall improved. And a fireproof layer 4 is installed on the bottom surface of the polyamide composite textile layer 1. The fireproof layer 4 is made of polyester fabric material, and the polyester fabric material itself has the advantage of good flame-retardant effect. And a first fireproof coating 5 is provided on the outer surface of the fireproof layer 4. The first fireproof coating 5 is impregnated on the outer surface of the nylon fabric material with a phosphorus-nitrogen flame-retardant coating. Through the mutual contact of the phosphorus-nitrogen flame-retardant coating of the fireproof coating and the nylon fabric, the flame-retardant strength of the fireproof layer 4 is overall improved, thereby further improving the flame-retardant performance of the fabric.
[0028] An antistatic layer 8 and a contact layer 6 are respectively provided on the top and bottom surfaces of the polyamide composite textile layer 1. The two are made of polyester fiber fabric material and nylon fabric material respectively. Both materials have high strength, which can further improve the tensile performance of the fabric. And both the polyester fiber fabric material and the nylon fabric material have the advantage of good antistatic effect, which can overall improve the antistatic performance of the fabric during use. And the antistatic coating 9 and the second fireproof coating 7 will further improve the flame-retardant property and antistatic effect of the fabric.
Claims
1. A flame-retardant and antistatic composite polyamide, comprising a polyamide composite textile layer (1), characterized in that: The nylon composite textile layer (1) is divided into structural filaments (2) and fireproof filaments (3). A fireproof layer (4) is provided on the bottom surface of the nylon composite textile layer (1). A first fireproof coating (5) is provided on the outer surface of the fireproof layer (4). A wear-resistant functional layer is provided on the bottom surface of the fireproof layer (4). An anti-static functional layer is provided on the top surface of the nylon composite textile layer (1).
2. A flame-retardant and antistatic composite polyamide according to claim 1, wherein: The structural filaments (2) are made of nylon filament material, and the fireproof filaments (3) are made of flame-retardant nylon filament material. The structural filaments (2) and the fireproof filaments (3) are woven with each other to form the nylon composite textile layer (1).
3. A flame-retardant and antistatic composite polyamide according to claim 1, characterized in that: The fireproof layer (4) is made of polyester fabric material. The fireproof layer (4) and the nylon composite textile layer (1) are stitched to each other. The first fireproof coating (5) is made of phosphonitrilic chloride flame retardant coating material, and the first fireproof coating (5) is impregnated on the outer surface of the fireproof layer (4).
4. A flame-retardant and antistatic composite polyamide according to claim 1, characterized in that: The wear-resistant functional layer includes a contact layer (6). A second fireproof coating (7) is provided on the outer surface of the contact layer (6). The contact layer (6) is provided on the bottom surface of the nylon composite textile layer (1).
5. A flame-retardant and antistatic composite polyamide according to claim 4, characterized in that: The contact layer (6) is made of nylon fabric material. The contact layer (6) and the nylon composite textile layer (1) are stitched to each other. The second fireproof coating (7) is made of silicone flame retardant coating, and the second fireproof coating (7) is impregnated on the outer surface of the contact layer (6).
6. A flame-retardant and antistatic composite polyamide according to claim 1, characterized in that: The anti-static functional layer includes an anti-static layer (8). An anti-static coating (9) is provided on the outer surface of the anti-static layer (8). The anti-static layer (8) is provided on the top surface of the nylon composite textile layer (1).
7. A flame-retardant and antistatic composite polyamide according to claim 6, wherein: The anti-static layer (8) is made of polyester fiber fabric. The anti-static layer (8) and the nylon composite textile layer (1) are stitched to each other. The anti-static coating (9) is made of antistatic agent coating material, and the anti-static coating (9) is impregnated on the outer surface of the anti-static layer (8).