item no.:
PA6-NA-LCFPayment:
Discussedproduct origin:
ChinaColor:
Natural color or Customizedshipping port:
XiamenLead Time:
2-10 working daysPolyamide 6 Profile
Production Process of LCF
1. Through the physical and chemical treatment of the original carbon fiber, it removes impurities, improves surface activity, and provides the mechanical properties and durability of pre-soaked materials.
2. Add resin, additives, etc., form a unique formula. Improve flowability, hardness, temperature stability.
3. The pre-treated carbon fiber is placed on the machine, and the resin is evenly covered on its surface.
4. Use the machine to solidify the material, and the fiber and resin are both sufficiently bonded.
5. According to the requirements of the product, cutting particles.
What are the advantages and applications of Polyamide 6?
Nylon 6 fibers are tough, possessing high tensile strength, elasticity, and luster. The fibers can absorb up to 2.4% of water, although this lowers tensile strength. The glass transition temperature of nylon 6 is 47 °C. Nylon 6 is generally white as a synthetic fiber but can be dyed in a solution bath before production for different color results. The tenacity of nylon 6 is 6–8.5 gf/D with a density of 1.14 g/cm3. Its melting point is 215 °C and can protect heat up to 150 °C on average.
The applications of nylon 6 include construction material in many industries, including the automotive industry, electronic and electrotechnical industry, aircraft industry, clothing industry, and medicine.
The advantages of nylon 6 are that its fibers are wrinkleproof and highly resistant to abrasion and chemicals such as acids and alkalis.
Long fiber reinforced thermoplastics are an excellent option to consider for metal replacement at a fraction of the weight.
About Xiamen LFT
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Xiamen LFT has capabilities to provide assistance to you throughout an entire product launch - through product discussion, performance analysis, composite selection, composite pellet production, after-sales tracking. In addition, we provide guidance on injection molding techniques