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JOURNALS // Dal'nevostochnyi Matematicheskii Zhurnal // Archive

Dal'nevost. Mat. Zh., 2022 Volume 22, Number 1, Pages 119–124 (Mi dvmg475)

This article is cited in 1 paper

Micromechanical model of high-energy materials to the curing

K. A. Chekhonin

Computer Centre of Far Eastern Branch RAS, Khabarovsk

Abstract: During curing process of elastomeric composites residual stresses inevitably develop and play fn important role in the final mechanical properties of composites. This work at a better understanding the effects of macro-level factors, including temperature, degree of cure variation and mechanical stains on micro-scale stresses with modification the Model Arruda-Boyce, and a Representative Volume Element to predict technology stresses in matrix.

Key words: elastomeric composites, technology stresses, Finite element analysis, Arruda-Boyce micromechanical model, Multi-scale modeling.

UDC: 539.3

MSC: 74A50

Received: 27.05.2022

DOI: 10.47910/FEMJ202212



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© Steklov Math. Inst. of RAS, 2024