Sustainable composite materials from renewable resources for automotive applications
Abstract
As part of an ongoing program on the development of biocomposites from renewable resources, eg cellulosic fibers and cellulosic plastics, to produce more eco-friendly/green automotive parts, this thesis deals with the development of a cellulose acetate (CA) biopolymer. Through plasticization, CA was found to be processable at 170–180 C, approximately 50 C below the melting point of neat CA. Eco-friendly green/biocomposites were fabricated from chopped hemp fiber and cellulose ester biodegradable plastic through two process engineering approaches: powder impregnation through compression molding (Process I) and extrusion followed by injection molding (Process II). Cellulose acetate plasticized with 30% citrate plasticizer proved to be a better matrix compared to polypropylene (PP) for hemp fiber reinforcements in terms of flexural and damping properties.
Keywords
Citation
Wibowo, A. C. (2004). Sustainable composite materials from renewable resources for automotive applications. Michigan State University.
