Investigation of impact resistance performance of carbon fiber reinforced polypropylene composites with different lamination to applicate fender parts

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WEB OF SCIENCE

34
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SCOPUS

40

초록

Thermoplastic composites are rapidly emerging as alternative materials for auto parts owing to recyclability as well as excellent stiffness- and strength-to weight ratios. In this study, an optimal stacking sequence using twillweave carbon fiber-reinforced polypropylene (CF/PP) prepregs and random fiber-reinforced polypropylene (RFP) sheets were investigated for the fabrication of an automobile fender. The lamination consisting of CF/PP only incurred imperfect resin impregnation. RFP insertion between CF/PP layers improved the resin impregnation. The hybrid stacking sequence not only reduced internal void contents but also increased the flexural and impact strength of the composite laminate. Using the optimal stacking sequence, a real-scale composite fender was fabricated and impact tests were performed. The test results were compared with the ones from an existing steel fender. In case of the steel fender, permanent deformation was observed even in one attempt, while no visible damage was found from the composite fender even after five consecutive impact tests.

키워드

Fender; Polypropylene; Thermoplastic composite; Commingled yarn; Impact property; EPOXY COMPOSITES; BEHAVIOR; FAILURE; DAMAGE; DCPD
제목
Investigation of impact resistance performance of carbon fiber reinforced polypropylene composites with different lamination to applicate fender parts
저자
Kwon, Dong-Jun; Kim, Neul-Sae-Rom; Jang, Yeong-Jin; Yang, Seong-Baek; Yeum, Jeong-Hyun; Jung, Ji-Hoon; Nam, Sang Yong; Park, Young-Bin; Ji, Wooseok
DOI
10.1016/j.compositesb.2021.108767
발행일
2021-06
유형
Article
저널명
Composites Part B: Engineering
권
215