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Impact and shear properties of carbon fabric/poly-dicyclopentadiene composites manufactured by vacuum-assisted resin transfer molding
- Yoo, Hyeong Min;
- Kim, Moo Sun;
- Kim, Bum Soo;
- Kwon, Dong Jun;
- Choi, Sung Woong
WEB OF SCIENCE
13SCOPUS
14초록
Dicyclopentadiene (DCPD) resin has gained popularity owing to its fast curing time and ease of processing with a low viscosity in the monomer state. In the present study, the impact and shear properties of a carbon fiber (CF)/p-DCPD composite were investigated. The CF/p-DCPD composite was manufactured by vacuum-assisted resin transfer molding with CF as the reinforcement and p-DCPD as the resin with a maximum fiber volume fraction of 55 weight percent. Impact and shear properties of the CF/p-DCPD composite were evaluated and compared with those of a CF/Epoxy composite. The maximum shear stress and modulus of the CF/p-DCPD composite were lower than that of the CF/Epoxy composite. However, the CF/p-DCPD composite had higher toughness than that of the CF/Epoxy composite; this indicates that it is tougher and exhibits a more ductile load-displacement response with a lower modulus and larger failure deformation. The impact strength of the CF/p-DCPD composite was about three time that of the CF/Epoxy composite. The higher impact strength of the CF/p-DCPD composite is attributed to the resin characteristics: epoxy resin has a more brittle behavior, and hence, higher energy is required for crack propagation due to fracture.
키워드
- 제목
- Impact and shear properties of carbon fabric/poly-dicyclopentadiene composites manufactured by vacuum-assisted resin transfer molding
- 저자
- Yoo, Hyeong Min; Kim, Moo Sun; Kim, Bum Soo; Kwon, Dong Jun; Choi, Sung Woong
- 발행일
- 2019-01
- 유형
- Article
- 저널명
- E-Polymers
- 권
- 19
- 호
- 1
- 페이지
- 437 ~ 443