Finite element analysis of compression behavior of composite egg-box panel with non-orthogonal constitutive model

Citations

SCOPUS

4

초록

In the current study, thermoforming and compression analysis were carried out for the woven composite eggbox panel with the non-orthogonal constitutive material model, which is proposed by Xue et al (Composites: Part A 34 (2003) 183-193). The material model is implemented in commercial engineering software, LSDYNA, with user subroutine. Xue et al obtained the nonlinear Young's modulus and shear modulus from the experiment test, but the constant Young's modulus and shear modulus for fiber are used in this woven composite egg-panel compression analysis for the convenience. Directional properties in non-orthogonal coordinates are detected using the deformation gradient tensor and the material modulus matrix in local coordinate is updated at each time step. After the implemented non-orthogonal constitutive model was verified by performing bias extension test, the eggbox panel simulation was performed. The egg-box panel simulation is divided into two categories: thermoforming (draping) and crushing. For thermoforming process, the only die compression effect is considered and the temperature effect is ignored in this study. The finite element model for compression test can be obtained using the displacement result of thermoforming process. Isotropic transverse shear modulus is assumed for the compression simulation. The results from simulation are compared with the experimental tests and also compared with the result using the isotropic material model in order to help understanding the directional property. © 2009 SAE International.

키워드

Compression behavior; Compression tests; Constitutive materials; Deformation gradient tensors; Die compression; Directional properties; Engineering software; Experiment tests; Experimental test; Finite element analysis; Finite element models; Isotropic materials; Local coordinate; LS-DYNA; Material models; Modulus matrix; Non-orthogonal constitutive model; Non-orthogonal coordinates; Shear modulus; Temperature effects; Time step; Transverse shear; User subroutine; Woven composite; Young's Modulus; Composite materials; Compression testing; Computer simulation; Constitutive models; Elastic moduli; Elasticity; Fabrics; Shear strain; Subroutines; Thermoforming; Weaving; Finite element method; Composites; Compression Tests; Elasticity; Fabric; Finite Element Analysis; Hot Forming; Simulation; Weaving
제목
Finite element analysis of compression behavior of composite egg-box panel with non-orthogonal constitutive model
저자
Hahn, Y.; Chang, Seung Hwan; Cheon, S.S.
DOI
10.4271/2009-01-0603
발행일
2009-04
유형
Article
저널명
SAE International Journal of Materials and Manufacturing
권
2
호
1
페이지
352 ~ 357