A New Uniaxial Tensile Model for Foam Metal/Epoxy Interpenetrated Phase Composites

Author:

Wang Xiaoxing1ORCID,Zhang Lixin2,Zhao Yu3,Li Huijian1

Affiliation:

1. School of Civil Engineering and Mechanics, Yanshan University, Qinhuangdao 066004, China

2. College of Urban Construction, Hebei Normal University of Science & Technology, Qinhuangdao 066004, China

3. China Water Conservancy and Hydropower Eleventh Engineering Bureau Co., Zhengzhou 450001, China

Abstract

Foam metal/epoxy interpenetrating phase composite is a new type of composite material with interpenetrating continuity in composition, which exhibits different intrinsic relationships under different stress states in tension and compression, and it is necessary to study the intrinsic relationships in the tensile state in depth. A mesoscopic damage-based tensile intrinsic model is developed, and the elasto-plastic tensile intrinsic equations of the representative volume element are derived based on small deformation theory and total strain theory, as well as the assumptions of equal stress and equal strain. The tensile strengths of nickel–iron foam/epoxy interpenetrated phase composites in three different sizes and their constituent phases were measured, and it was shown in the results that the composite of three-dimensional network interpenetration with high-strength foam metal and epoxy resin formed a weak surface inside the material, and did not significantly improve the tensile strength of the composites. The tensile instantonal equations and damage instantonal equations of nickel–iron foam/epoxy interpenetrated phase composites were predicted by the method of inversion, and the applicability and high accuracy of the tensile intrinsic model were verified in comparison with the measured results.

Funder

the Natural Science Foundation of Hebei Province

Publisher

MDPI AG

Subject

Polymers and Plastics,General Chemistry

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