Nylon Graphene Fabric
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Nylon Graphene Fabric

Product Name:Nylon Graphene Fabric
Composition:100% Nylon
Product NO.:KMF-240167
Width:145CM
Wight:77GSM
MOQ:1M
Sample:A4 free sample
Color:At buyer's request
Customized:Available
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Description

Technical Parameters

Products Description

Nylon graphene fabric is a high-quality fabric made of graphene and nylon fibers. It is a revolutionary product designed to meet the needs of modern fabric users. This fabric is suitable for a variety of applications, including sportswear, outdoor apparel and interior upholstery.

 

Products Composition
Product Name: Nylon Graphene Fabric
Composition: 100% Nylon
Product NO.: KMF-240167
Width: 145CM
Wight: 77GSM
MOQ: 1M
Sample: A4 free sample
Color: At buyer's request
Customized: Available

 

Product Features

 

 

Woven four-way stretch fabric
- Durable and long-lasting material
- Highly breathable and moisture wicking
- Antibacterial and anti-odor
- Light weight and comfortable to wear
- anti-UV
- High tensile strength

Nylon Graphene Fabric
 
Products Applications

- Sportswear: Nylon graphene fabric has the characteristics of stretchability, moisture wicking, and breathability, and is suitable for making sportswear. It's perfect for sports like running, cycling, and yoga.
- Outdoor clothing: This fabric is UV resistant, breathable and durable, making it ideal for outdoor clothing such as jackets. It is also suitable for making camping gear, backpacks and tents.
- Interior decoration: Nylon graphene fabric can be used to make lounge chairs, sofas and other furniture. Its moisture-wicking, antibacterial, and anti-odor properties make it suitable for high-use furniture.
- Medical clothing: This fabric has antibacterial, anti-odor, moisture-wicking properties and can be used to make medical clothing.

Nylon Graphene Fabric

 

Test Results

 

1.Evaluation for antibacterial activity

GB/T 20944.2-2007 Absorption method

  1. GB/T 12490-1990[2],Washing Program A1M , line dry after 5 washing cycles.

  2.  

Klcbsiella pneumonia                              Klcbsiella pneumonia              Pass

 

(ATCC 4352) >99                                     (ATCC 4352) ≥ 99

Staphylococcus aureus                           Staphylococcus aureus

(ATCC 6538) >99                                     (ATCC 6538) ≥ 99

Percentage of bacterial inhibition          Percentage of bacterial inhibition

(8099) >99                                               (8099) >99

 

2. Far-infrared performance

 

Far infrared emissivity                             Far infrared emissivity            Pass

      0.93                                                              ≥ 0.88

Far infrared radiation temperature rise    Far infrared radiation temperature rise

       1.4                                                                  ≥ 1.4

Graphene is a new material in which carbon atoms connected by sp² hybridization are closely packed into a single-layer two-dimensional honeycomb lattice structure. Graphene has excellent optical, electrical, and mechanical properties, and has important application prospects in materials science, micro-nano processing, energy, biomedicine, and drug delivery. It is considered a revolutionary material in the future. The physicists Andre Gaim and Konstantin Novoselov of the University of Manchester in the United Kingdom successfully separated graphene from graphite using the micromechanical exfoliation method, and therefore jointly won the 2010 Nobel Prize in Physics. The common powder production methods of graphene are mechanical peeling method, redox method, SiC epitaxial growth method, and the thin film production method is chemical vapor deposition (CVD)

 

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