Nylon fabric with high resilience
By introducing structural improvements such as elastic strips, fillers, and breathable holes into nylon fabrics, the shortcomings of nylon fabrics in terms of elasticity recovery and protective performance have been solved, and the high resilience, strength, and thermal insulation effects have been improved.
Patent Information
- Application Number
- CN202520423258.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-12
- Publication Date
- 2026-01-23
- Estimated Expiration
- 2035-03-12
AI Technical Summary
Existing nylon fabrics are inadequate in terms of elasticity recovery, especially in terms of thermal insulation and protective performance, which need to be improved.
It adopts a nylon base layer reinforcement layer, including elastic strips and fillers, and the outer layer has breathable holes and hydrophobic strips. The elasticity and resilience are enhanced by nylon covering spandex. At the same time, an antibacterial layer and a cotton lining are added to improve strength and protective effect.
It improves the elasticity and resilience of the fabric, enhances its insulation and protective properties, and increases its overall strength and water resistance.
Smart Images

Figure CN223821233U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of nylon fabric technology, and in particular to a nylon fabric with high resilience. Background Technology
[0002] Nylon materials have high strength, high toughness and wear resistance. Due to its high processability, it is widely used in various fields, especially as a raw material for textiles and engineering plastics. Fabrics made of nylon fabric have good elasticity and high strength, and are very popular.
[0003] For example, Chinese utility model patent document, publication number CN221022706U, discloses a double-layer nylon composite fabric, relating to the field of nylon composite fabric technology. This double-layer nylon composite fabric includes a first nylon composite fabric, a second nylon composite fabric, the second nylon composite fabric being located below and sewn together with the first nylon composite fabric, and a protective layer assembly located between the first and second nylon composite fabrics. The protective layer assembly includes a moisture-absorbing and antibacterial layer, an odor-removing layer, an antistatic layer, a corrosion-resistant layer, and a UV-resistant layer. The moisture-absorbing and antibacterial layer is sewn onto the second nylon composite fabric; the odor-removing layer is sewn onto the moisture-absorbing and antibacterial layer; the antistatic layer is sewn onto the odor-removing layer; the corrosion-resistant layer is sewn onto the antistatic layer; and the UV-resistant layer is sewn onto the corrosion-resistant layer. The UV-resistant layer is made of polylactic acid fiber. This device provides protection for the user and has good performance.
[0004] However, as people's demands for quality of life increase, their requirements for fabric performance are also increasing. Existing fabrics are multifunctional and limited in scope, unable to meet people's special needs. The fabrics mentioned in the document can provide good protection, but they are still lacking in elasticity recovery, especially in terms of thermal insulation and protective performance. Utility Model Content
[0005] To overcome the technical defects of the existing technology, this utility model provides a nylon fabric with high resilience, which can further improve the elasticity and recovery of the fabric, while also increasing the strength of the fabric and enhancing the insulation and protection effects.
[0006] The technical solution adopted by this utility model is as follows: It includes a nylon base fabric layer, which mainly reflects the basic properties of nylon fabric and plays a leading role in the overall fabric structure. A reinforcing layer is provided on the nylon base fabric layer to improve the overall strength of the fabric. The reinforcing layer includes elastic strips connected by connecting yarns. Filler is provided next to the elastic strips to enhance insulation. A cotton lining is provided on the reinforcing layer to seal the reinforcing layer. An antibacterial layer is provided on the cotton lining. An outer layer is provided on the antibacterial layer, which directly contacts the external environment. The outer layer has ventilation holes to facilitate gas flow and moisture removal.
[0007] Preferably, in order to further enhance the waterproof capability of the outer layer, the outer layer is provided with a hydrophobic strip layer, which can isolate water. The hydrophobic strip layer is distributed between the vent holes, and the hydrophobic strip layer between the vent holes is cross-shaped or straight.
[0008] Preferably, in order to improve the resilience of the fabric, the nylon base layer is woven with a rib knit, and the yarn composition is 86% nylon covered with 14% spandex.
[0009] Preferably, in order to make the outer layer more comfortable to the touch, the outer layer is a polyester fabric layer, and the polyester yarn used has a yarn count of 80, and the antibacterial layer is made of antibacterial yarn woven from bamboo fiber.
[0010] Preferably, in order to improve the stability of the connecting yarn, the connecting yarn is made of nylon. The connecting yarn is connected to the elastic strip by winding, and the connecting yarn forms a diamond structure. The overlapping points on the connecting yarn structure are nodes. Antistatic metal wires are wound on the connecting yarn to consume static electricity generated by friction of the fabric. The elastic strip is provided with a fixing part to restrict the connecting yarn.
[0011] Preferably, in order to improve the elasticity and strength of the fabric, the elastic strip is a near-circular elastic component formed by curling a strip, and the fixing part is a groove formed on the outer wall of the elastic strip.
[0012] Preferably, in order to improve the elasticity and strength of the fabric, the elastic strips are joined end to end to form a circular elastic component, and the fixing part is a connecting column connected between the elastic strips.
[0013] Preferably, in order to improve the elasticity and strength of the fabric, the elastic strip is a regularly deformed wavy strip, a pair of the wavy strips are symmetrically attached, and the fixing part is the contact part of a pair of the wavy strips.
[0014] The beneficial effects of this utility model are: this utility model can further improve the elasticity and resilience of the fabric, using nylon to cover spandex to enhance the elasticity and resilience of the fabric, while the reinforcing layer can improve the strength of the fabric, the elastic strip can enhance the protective effect, and the thermal insulation effect can be enhanced by using fillings with good thermal insulation effect. Attached Figure Description
[0015] Figure 1 This is a schematic diagram of the external structure of this utility model.
[0016] Figure 2 for Figure 1 A magnified structural diagram of point A in the middle.
[0017] Figure 3 This is a schematic diagram of the cross-shaped hydrophobic strip layer of this utility model.
[0018] Figure 4 This is a schematic diagram of the near-circular elastic component structure of the elastic element of this utility model.
[0019] Figure 5 This utility model Figure 4 Enlarged structural diagram of the elastic element.
[0020] Figure 6 This is a schematic diagram of the structure of the circular elastic component of this utility model.
[0021] Figure 7 This is a schematic diagram of the wavy shape of the elastic element of this utility model.
[0022] Explanation of reference numerals in the attached figures: 1. Nylon base fabric layer; 2. Reinforcing layer; 201. Elastic strip; 202. Connecting yarn; 203. Fixing part; 3. Cotton lining layer; 4. Antibacterial layer; 5. Outer layer; 501. Breathable hole; 502. Hydrophobic strip layer. Detailed Implementation
[0023] The present invention will be further described below with reference to the accompanying drawings:
[0024] like Figure 1-7 As shown Example 1
[0025] This embodiment provides a nylon fabric with high resilience, including a nylon base layer 1. The nylon base layer 1 mainly embodies the basic properties of nylon fabric and plays a leading role in the overall fabric. A reinforcing layer 2 is provided on the nylon base layer 1. The function of the reinforcing layer 2 is to improve the overall strength performance of the fabric. The reinforcing layer 2 includes elastic strips 201, which are connected by connecting yarns 202. Filler is provided next to the elastic strips 201 to enhance the isolation effect. A cotton lining layer 3 is provided on the reinforcing layer 2 to seal the reinforcing layer 2. An antibacterial layer 4 is provided on the cotton lining layer 3. An outer layer 5 is provided on the antibacterial layer 4. The outer layer 5 is in direct contact with the external environment and has ventilation holes 501 to facilitate gas flow and moisture removal.
[0026] The outer layer 5 is provided with a hydrophobic strip layer 502, which can isolate water. The hydrophobic strip layer 502 is distributed between the vent holes 501, and the hydrophobic strip layer 502 between the vent holes 501 is cross-shaped, which can further enhance the waterproof ability of the outer layer 5.
[0027] The nylon base layer 1 is woven with a rib knit, and the yarn composition is 86% nylon covered with 14% spandex, which can improve the elasticity of the fabric.
[0028] The outer layer 5 is made of polyester fabric with a yarn count of 80. The antibacterial layer 4 is made of antibacterial yarn woven from bamboo fiber, which makes the outer layer 5 more comfortable to the touch.
[0029] The connecting yarn 202 is made of nylon and is connected to the elastic strip 201 by winding. The connecting yarns 202 form a diamond structure, and the overlapping points on the structure of the connecting yarns 202 are nodes. Antistatic metal wires are wound on the connecting yarns 202 to consume the static electricity generated by the fabric due to friction. The elastic strip 201 is provided with a fixing part 203 to restrict the connecting yarns 202, which can improve the stability of the connecting yarns 202.
[0030] The elastic strip 201 is a near-circular elastic component formed by curling a strip, and the fixing part 203 is a groove opened on the outer wall of the elastic strip 201, which can improve the elasticity and strength of the fabric.
[0031] In use, this fabric utilizes the resilience of nylon to dominate its overall performance, while the outer layer 5 is in direct contact with the external environment. The outer layer 5 has ventilation holes 501, which facilitate gas flow and moisture removal. The use of nylon-coated spandex enhances the fabric's elasticity and resilience. Meanwhile, the reinforcing layer 2 improves the fabric's strength, and the elastic strip 201 enhances the protective effect. Furthermore, the use of thermally insulating fillers further enhances the thermal insulation effect. When the fabric is subjected to external force, the connecting yarns 202 are supported by the elastic strip 201, thereby enhancing the overall strength of the fabric. Example 2
[0032] This embodiment provides a nylon fabric with high resilience, including a nylon base layer 1. The nylon base layer 1 mainly embodies the basic properties of nylon fabric and plays a leading role in the overall fabric. A reinforcing layer 2 is provided on the nylon base layer 1. The function of the reinforcing layer 2 is to improve the overall strength performance of the fabric. The reinforcing layer 2 includes elastic strips 201, which are connected by connecting yarns 202. Filler is provided next to the elastic strips 201 to enhance the isolation effect. A cotton lining layer 3 is provided on the reinforcing layer 2 to seal the reinforcing layer 2. An antibacterial layer 4 is provided on the cotton lining layer 3. An outer layer 5 is provided on the antibacterial layer 4. The outer layer 5 is in direct contact with the external environment and has ventilation holes 501 to facilitate gas flow and moisture removal.
[0033] The outer layer 5 is provided with a hydrophobic strip layer 502, which can isolate water. The hydrophobic strip layer 502 is distributed between the vent holes 501, and the hydrophobic strip layer 502 between the vent holes 501 is straight, which can further enhance the waterproof ability of the outer layer 5.
[0034] The nylon base layer 1 is woven with a rib knit, and the yarn composition is 86% nylon covered with 14% spandex, which can improve the elasticity of the fabric.
[0035] The outer layer 5 is made of polyester fabric with a yarn count of 80. The antibacterial layer 4 is made of antibacterial yarn woven from bamboo fiber, which makes the outer layer 5 more comfortable to the touch.
[0036] The connecting yarn 202 is made of nylon and is connected to the elastic strip 201 by winding. The connecting yarns 202 form a diamond structure, and the overlapping points on the structure of the connecting yarns 202 are nodes. Antistatic metal wires are wound on the connecting yarns 202 to consume the static electricity generated by the fabric due to friction. The elastic strip 201 is provided with a fixing part 203 to restrict the connecting yarns 202, which can improve the stability of the connecting yarns 202.
[0037] The elastic strips 201 are joined end to end to form a circular elastic component, and the fixing part 203 is a connecting column connected between the elastic strips 201, which can improve the elasticity and strength of the fabric.
[0038] In this embodiment, the elastic strips 201 connected end to end can further enhance the structural strength of the elastic strips 201, and the relatively narrow connecting column can better prevent the connecting yarns 202 from shifting position. Example 3
[0039] This embodiment provides a nylon fabric with high resilience, including a nylon base layer 1. The nylon base layer 1 mainly embodies the basic properties of nylon fabric and plays a leading role in the overall fabric. A reinforcing layer 2 is provided on the nylon base layer 1. The function of the reinforcing layer 2 is to improve the overall strength performance of the fabric. The reinforcing layer 2 includes elastic strips 201, which are connected by connecting yarns 202. Filler is provided next to the elastic strips 201 to enhance the isolation effect. A cotton lining layer 3 is provided on the reinforcing layer 2 to seal the reinforcing layer 2. An antibacterial layer 4 is provided on the cotton lining layer 3. An outer layer 5 is provided on the antibacterial layer 4. The outer layer 5 is in direct contact with the external environment and has ventilation holes 501 to facilitate gas flow and moisture removal.
[0040] The outer layer 5 is provided with a hydrophobic strip layer 502, which can isolate water. The hydrophobic strip layer 502 is distributed between the vent holes 501, and the hydrophobic strip layer 502 between the vent holes 501 is cross-shaped, which can further enhance the waterproof ability of the outer layer 5.
[0041] The nylon base layer 1 is woven with a rib knit, and the yarn composition is 86% nylon covered with 14% spandex, which can improve the elasticity of the fabric.
[0042] The outer layer 5 is made of polyester fabric with a yarn count of 80. The antibacterial layer 4 is made of antibacterial yarn woven from bamboo fiber, which makes the outer layer 5 more comfortable to the touch.
[0043] The connecting yarn 202 is made of nylon and is connected to the elastic strip 201 by winding. The connecting yarns 202 form a diamond structure, and the overlapping points on the structure of the connecting yarns 202 are nodes. Antistatic metal wires are wound on the connecting yarns 202 to consume the static electricity generated by the fabric due to friction. The elastic strip 201 is provided with a fixing part 203 to restrict the connecting yarns 202, which can improve the stability of the connecting yarns 202.
[0044] The elastic strip 201 is a regularly deformed wavy strip, with a pair of wavy strips symmetrically attached. The fixing part 203 is the contact part of the pair of wavy strips, which can improve the elasticity and strength of the fabric.
[0045] In this embodiment, an integrated wave strip is used, which reduces the use of separate parts in the structure and reduces the number of operation steps during production and assembly. The connecting yarn 202 can fix an adjacent pair of elastic strips 201, making the structure more stable.
[0046] The foregoing has shown and described the basic principles, main features, and advantages of this invention. Those skilled in the art should understand that this invention is not limited to the above embodiments. The embodiments and descriptions in the specification are merely illustrative of the principles of this invention. Various changes and modifications may be made to this invention without departing from its spirit and scope. All such changes and modifications fall within the scope of this invention as defined by the appended claims and their equivalents.
Claims
1. A nylon fabric with high resilience, comprising a nylon base layer (1), characterized in that: The nylon base fabric layer (1) is provided with a reinforcing layer (2), the reinforcing layer (2) includes elastic strips (201), the elastic strips (201) are connected by connecting yarns (202), the elastic strips (201) are provided with filler, the reinforcing layer (2) is provided with a cotton lining layer (3), the cotton lining layer (3) is provided with an antibacterial layer (4), the antibacterial layer (4) is provided with an outer layer (5), and the outer layer (5) is provided with a breathable hole (501).
2. The nylon fabric with high resilience according to claim 1, characterized in that: The outer layer (5) is provided with a hydrophobic strip layer (502), which is distributed between the air vents (501), and the hydrophobic strip layer (502) between the air vents (501) is cross-shaped or straight.
3. The nylon fabric with high resilience according to claim 1, characterized in that: The nylon base fabric layer (1) is woven with a rib knit, and the yarn composition is 86% nylon covered with 14% spandex.
4. The nylon fabric with high resilience according to claim 1, characterized in that: The outer layer (5) is a polyester fabric layer, and the polyester yarn used has a yarn count of 80. The antibacterial layer (4) is made of antibacterial yarn woven from bamboo fiber.
5. The nylon fabric with high resilience according to claim 1, characterized in that: The connecting yarn (202) is made of nylon. The connecting yarn (202) is connected to the elastic strip (201) by winding. The connecting yarn (202) forms a diamond structure. The overlapping points on the structure of the connecting yarn (202) are nodes. Antistatic metal wire is wound on the connecting yarn (202). The elastic strip (201) is provided with a fixing part (203) to restrict the connecting yarn (202).
6. The nylon fabric with high resilience according to claim 5, characterized in that: The elastic strip (201) is a near-circular elastic component formed by curling a strip, and the fixing part (203) is a groove formed on the outer wall of the elastic strip (201).
7. The nylon fabric with high resilience according to claim 5, characterized in that: The elastic strips (201) are joined end to end to form a circular elastic component, and the fixing part (203) is a connecting column connected between the elastic strips (201).
8. The nylon fabric with high resilience according to claim 5, characterized in that: The elastic strip (201) is a regularly deformed wavy strip, and a pair of the wavy strips are symmetrically fitted together. The fixing part (203) is the contact part of a pair of the wavy strips.
Citation Information
Patent Citations
Double-layer nylon composite fabric
CN221022706U