What are the characteristics of yarn made by mixing ordinary polyester cotton fiber and stainless steel fiber?
The yarn made by mixing stainless steel fibers with ordinary fibers (such as cotton, polyester, acrylic, etc.) combines the advantages of both through composite technology and has new characteristics:
1. Conductivity and anti-static properties
The high conductivity of stainless steel fibers can quickly dissipate static electricity, and when blended with ordinary fibers, the conductivity is stable and long-lasting.
2. High temperature resistance and corrosion resistance
Stainless steel fibers have a melting point of over 1400 ℃ and are resistant to acid and alkali corrosion. Yarn blended with aramid fibers can be used for high-temperature resistant composite materials.
3. High strength and flexibility
The tensile strength of stainless steel fibers is high, and stainless steel blended yarn not only maintains the strength of metal fibers, but also has the flexibility and wowability of ordinary fibers, making it suitable for knitting, weaving and other processes.
4. Electromagnetic shielding function
Stainless steel fibers can block electromagnetic wave radiation, and fabrics made of blended yarns (such as protective curtains and radiation resistant clothing for pregnant women) can effectively shield electromagnetic interference above 30dB.
Anti-static clothing is made of anti-static fabrics.Using ordinary sewing thread to sew anti-static workwear may reduce the cost of anti-static clothing, but it may also lead to the inability of anti-static clothing to conduct electricity, thereby reducing its anti-static function. The correct approach is to use anti-static sewing thread, as this type of sewing thread contains conductive fibers that can connect various parts of the clothing together, thereby exerting the anti-static function of the clothing.
Conductive fabrics are made from a combination of materials that allow for electrical conductivity. These materials include metals such as silver fiber stainless steel fiber, as well as conductive polymers and carbon-based materials. These fabrics are used in a wide range of applications and are an important component of modern technology.
