Influence of non-uniform fiber arrangement on microscopic stress and failure initiation in thermally and transversely loaded CF/epoxy laminated composites

  • Hobbiebrunken, Thomas
  • Hojo, Masaki
  • Jin, Kyo Kook
  • Ha, Sung Kyu
Citations

WEB OF SCIENCE

21
Citations

SCOPUS

25

초록

The influence of spatial fiber distribution on microscopic stress state and therefore the initiation of transverse cracking in CF/epoxy laminated composites is investigated. Models for finite element analysis (FEA) were generated containing 225 fibers in an irregular arrangement. First, the distribution of maximum interfacial stresses in the models containing fibers in an irregular arrangement is compared with those in a regular arrangement. The results show regular models do not represent the actual distribution of maximum interfacial stresses and therefore can not be used in failure analysis. Second, the irregular FE-models are used to calculate the interfacial stresses at the onset of failure observed by an in situ bending experiment in our previous work. The load that caused failure to a micro- and macroscopic scale calculation is applied. The results of the microscopic calculation provide detailed characteristics of the microscopic stress distribution at the onset of failure.

키워드

LaminateInterfaceTransverse crackingFinite element analysis (FEA)RESIDUAL MICROSTRESS GENERATIONEPOXY-RESIN COMPOSITESSTRENGTHARRAYS
제목
Influence of non-uniform fiber arrangement on microscopic stress and failure initiation in thermally and transversely loaded CF/epoxy laminated composites
저자
Hobbiebrunken, ThomasHojo, MasakiJin, Kyo KookHa, Sung Kyu
DOI
10.1016/j.compscitech.2008.07.006
발행일
2008-12
유형
Article
저널명
Composites Science and Technology
68
15-16
페이지
3107 ~ 3113