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Conductive non-woven fabrics have attracted much attention due to their unique conductivity and wide range of applications. However, the bonding force between conductive fibers and matrix fibers is one of the key factors affecting the performance of conductive non-woven fabrics. This article will explore how to improve the bonding strength between conductive fibers and matrix fibers in conductive non-woven fabrics, with a focus on the performance of Advanced Institute (Shenzhen) Technology Co., LtdYanbo brand conductive non-woven fabricTechnological innovation and practical application in this area.
Conductive non-woven fabric is composed of conductive fibers and matrix fibers. Conductive fibers are responsible for providing conductivity, while matrix fibers provide structural support. The bonding force between the two directly affects the overall performance and durability of conductive non-woven fabrics. If the bonding force is insufficient, it may lead to the detachment of conductive fibers, a decrease in conductivity, and even product failure.
Advanced Institute (Shenzhen) Technology Co., LtdHas profound technological accumulation and innovative strength in the field of conductive non-woven fabrics. The research platinum brand conductive non-woven fabric adopts multiple advanced technologies, effectively improving the bonding strength between conductive fibers and matrix fibers:
In practical applications,Yanbo brand conductive non-woven fabricExhibiting outstanding performance. For example, in the electromagnetic shielding application of electronic devices, the research platinum brand conductive non-woven fabric not only provides excellent conductivity, but also ensures long-term stability and reliability due to its excellent bonding force. Compared with similar products in the market, the conductive fiber shedding rate of Yanbo brand conductive non-woven fabric has been reduced by about 50%, and the service life has been extended by about 30%.
Improving the adhesion between conductive fibers and matrix fibers in conductive non-woven fabrics is the key to enhancing their overall performance and durability. By pretreatment, selection of high-performance binders, optimization of spinning processes, and post-treatment strengthening, the binding strength can be significantly improved. The research platinum brand conductive non-woven fabric of Advanced Institute (Shenzhen) Technology Co., Ltd. adopts multiple advanced technologies to achieve a tight combination of conductive fibers and matrix fibers, providing strong support for the application of conductive non-woven fabric.
The above data is for reference only, and specific performance may vary due to production processes and product specifications.
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