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Published in: Journal of Polymer Research 3/2024

01-03-2024 | Original Paper

Mechanical behavior and property evaluations of electromagnetic shielding/far infrared functional composite boards made of nano carbon-stainless steel knitted fabrics and far infrared polypropylene

Authors: Jia-Horng Lin, Chen-Hung Huang, Zhao-Wei Ke, Mei-Chen Lin, Ching-Wen Lou

Published in: Journal of Polymer Research | Issue 3/2024

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Abstract

This study introduces functional composite boards, combining nano carbon yarns, stainless steels, and far-infrared (FIR) polypropylene (PP). Stainless steel filaments are wrapped in nano carbon fibers to form yarns, which are then woven into knitted fabrics. These fabrics are laminated at various angles and combined with FIR powder and PP pellets to create functional slabs. These slabs are hot-pressed to form the composite boards. The boards are tested for various properties, leading to the identification of optimal parameters: 2.5 wt% FIR powder content and a lamination angle of 0°/45°/90°. The optimal boards demonstrate high tensile strength, impact resistance, bending capacity, EMI shielding, and FIR release. Thus, the boards with these parameters offer the best performance.

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Metadata
Title
Mechanical behavior and property evaluations of electromagnetic shielding/far infrared functional composite boards made of nano carbon-stainless steel knitted fabrics and far infrared polypropylene
Authors
Jia-Horng Lin
Chen-Hung Huang
Zhao-Wei Ke
Mei-Chen Lin
Ching-Wen Lou
Publication date
01-03-2024
Publisher
Springer Netherlands
Published in
Journal of Polymer Research / Issue 3/2024
Print ISSN: 1022-9760
Electronic ISSN: 1572-8935
DOI
https://doi.org/10.1007/s10965-024-03905-9

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