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- W2890872316 abstract "Abstract Supported by life cycle assessment, plant fiber reinforced composites (PFRCs) have been acknowledged environmentally superior to man-made glass and carbon fibers reinforced composites (GFRCs and CFRCs). Endowed with an intrinsic multi-scale cell wall and lumen structure, plant fibers are expected to yield better energy absorption performances in their reinforced composites. In this research, the energy absorption properties: dielectric , thermal and acoustic properties, of PFRCs were evaluated via vector network analyzer, dielectric spectrometer, steady-state hot plate and acoustic impedance tube. It was demonstrated that PFRCs were beneficial for multi-functional applications, possessing lower dielectric constant and dielectric loss, lower thermal conductivity and higher sound absorption coefficient in comparison with man-made equivalents (carbon fiber and glass fiber reinforced composites). More specifically, the physiochemical structures of plant fibers (lumen, cell wall and crystalline structure) were correlated to analyze these energy absorption behaviors of PFRCs." @default.
- W2890872316 created "2018-09-27" @default.
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- W2890872316 date "2018-12-01" @default.
- W2890872316 modified "2023-09-24" @default.
- W2890872316 title "Effect of physiochemical structure on energy absorption properties of plant fibers reinforced composites: Dielectric, thermal insulation, and sound absorption properties" @default.
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- W2890872316 doi "https://doi.org/10.1016/j.coco.2018.09.006" @default.
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