Micromechanics modeling and validation of thermal-mechanical damage in DER353 epoxy/borosilicate glass composite subject to high strain rate deformation

Author:

Li Zhiye,Ghosh Somnath

Funder

Center for Materials in Extreme Dynamic Environments

Publisher

Elsevier BV

Subject

Mechanical Engineering,Mechanics of Materials,Ocean Engineering,Safety, Risk, Reliability and Quality,Aerospace Engineering,Automotive Engineering,Civil and Structural Engineering

Reference22 articles.

1. Micromechanical modeling and characterization of damage evolution in glass fiber epoxy matrix composites;Li;Mech Mater,2016

2. The static and high strain rate behavior of a commingled e-glass/polypropylene woven fabric composite;Brown;Compos Sci Technol,2010

3. Characterization of s-glass epoxy composite interface under various rates of loading;Tamrakar,2018

4. Progressive damage and failure response of hybrid 3D textile composites subjected to flexural loading, part II: mechanics based multiscale computational modeling of progressive damage and failure;Zhang;Int J Solid Struct,2015

5. Stier, B., Bednarcyk, B.A., Simon, J.W. and Reese, S., 2015. Investigation of micro-scale architectural effects on damage of composites.

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