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Predicting the Adaptation of Biomimetic Auxetic Materials to Mechanical Impact

delete2026-01-01
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PRE
AI
S
Shil'ko, S. V. *
C
Chernous, D. A.
DOI:10.1134/S0025654425605257delete
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Abstract

Abstract

En 中文
To descript biomimetic material behavior under localized damage, two novel parameters which characterizing the damage-induced volume change coefficient and the stress concentration coefficient were introduced. A computational methodology was developed to determine these parameters for both isotropic materials and in-plane cross-ply composites. The effect of Poisson's ratio nu of the materials under consideration on the change in the volume of localized damage and stress concentration under various deformation conditions was investigated. At uniaxial stress state the relative reduction in damage volume under compression of an isotropic auxetic material with nu < 0 is significantly (twofold or more) greater than that of a material having nu > 0. For the cross-ply composite, a range of reinforcement angle variation was identified that is preferable based on the criteria of damage volume and stress concentration parameters.
Keywords:
biomimetics
auxetic material
cross-ply composite
localized damage
stress concentration
three-phase micromechanical model

Journal

M
Mechanics of Solids
IF:
0.9
Papers:
162
Citations:
1.1K

Organization

N
national academy of sciences of belarus (nasb)
Scholars:
2.4K
Papers: 1.8K
Citations: 3
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