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Evaluations of failure initiation criteria for predicting damages of composite structures under crushing loading

The crushing behaviors of thin-walled composite structures subjected to quasi-static axial loading are comparatively evaluated using four different failure initiation criteria. Both available crushing tests of composite corrugated plate and square tube are used to validate the stiffness degradation-...

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Published in:Journal of reinforced plastics and composites 2018-11, Vol.37 (21), p.1279-1303
Main Authors: Jiang, Hongyong, Ren, Yiru, Liu, Zhihui, Zhang, Songjun, Wang, Xiaoqing
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Language:English
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cited_by cdi_FETCH-LOGICAL-c281t-baf8719a5f96a6d5dfbd7e238dc51406a6b238915fbeb57252a7024d469cc30d3
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container_end_page 1303
container_issue 21
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container_title Journal of reinforced plastics and composites
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creator Jiang, Hongyong
Ren, Yiru
Liu, Zhihui
Zhang, Songjun
Wang, Xiaoqing
description The crushing behaviors of thin-walled composite structures subjected to quasi-static axial loading are comparatively evaluated using four different failure initiation criteria. Both available crushing tests of composite corrugated plate and square tube are used to validate the stiffness degradation-based damage model with the Maximum-stress criterion. Comparatively, Hashin, Maximum-stress, Stress-based Linde, and Modified criteria are respectively implemented in the damage model to predict crush behaviors of corrugated plate and square tube. To develop failure criteria, effects of shear coefficients and exponents in the Modified and Maximum-stress criteria on damage mechanisms of corrugated plate are discussed. Results show that numerical predictions successfully capture both of experimental failure modes and load–displacement responses. The Modified criterion and particularly Maximum-stress criterion are found to be more appropriate for present crush models of corrugated plate and square tube. When increasing the failure index, the crushing load is decreased, which also causes premature material failure. The shear coefficient and exponents have dramatic influence on the crushing load. Overall, an insight into the quantitative relation of failure initiation is obtained.
doi_str_mv 10.1177/0731684418783847
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title Evaluations of failure initiation criteria for predicting damages of composite structures under crushing loading
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