Effect of interphase parameters on elastic modulus prediction for cellulose nanocrystal fiber reinforced polymer composite

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초록

In this study, the effective elastic modulus (E-c) of a cellulose nanocrystal fiber reinforced polymer composite was evaluated using the Mori-Tanaka and finite element (FE) model. The FE model was generated using a representative volume element with a periodic boundary condition. The mass fractions of the fiber in the composites (MFf) were set to 1, 2, and 3 wt.%. Elastic modulus values for interphase were input and were either uniform or exhibited a gradient. The E-c for the uniform interphase region increased significantly with MFf, but was relatively low for interphase regions exhibiting a gradient. The results show that interphase parameters must be considered carefully when predicting E-c using the FE model.

키워드

Representative Volume Element (RVE)Fiber CompositeFinite Element (FE)FINITE-ELEMENTMORI-TANAKANANOCOMPOSITESBEHAVIOR
제목
Effect of interphase parameters on elastic modulus prediction for cellulose nanocrystal fiber reinforced polymer composite
저자
Lim, Joong YeonKim, Han-WoolPark, Min-Wook
DOI
10.1515/secm-2020-0024
발행일
2020-01
유형
Article
저널명
Science and Engineering of Composite Materials
27
1
페이지
226 ~ 235