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January 14, 2026Mathematics and Mechanics of SolidsOpen Access

Finite strain elastoplastic behavior of uniform bodies based on micropolar theory

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Authors

MJMohammadjavad Javadi

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Overview

Novel mathematical framework models elastoplastic deformations in uniform bodies, suggesting new material insights.

Key Points

  • The aim is to create a mathematical framework for understanding elastoplastic behavior using micropolar theory.
  • Develop a mathematical model based on micropolar theory for finite deformations.
  • Create balance equations from an invariance principle under general observer transformations.
  • Express plastic evolution laws as first-order differential equations for material transplants.
  • Demonstrated the ability to model large strains and finite rotations.
  • Identified micropolar Mandel stress tensors as key factors in local material rearrangement.
  • Maintained compliance with micropolar material symmetries and the second law of thermodynamics.

Cite This Study

Mohammadjavad Javadi (2026) studied this question.

synapsesocial.com/papers/6967193f87ba607552bb93bahttps://doi.org/10.1177/10812865251409148
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