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Two universal laws for plastic flows and the consistent thermodynamic dislocation theory

机译:两个普遍定律的塑性流量和一致的热力学错位理论

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This paper verifies two laws for plastic flows of face-centered cubic crystals that deform at constant strain rates and fixed ambient temperatures. The first law relates steady-state flow stress to ambient temperature and strain rate. The second law requires an increase of configurational entropy towards a maximum reached in the steady state. The large scale least squares analysis is provided which allows the physics-based parameters of thermodynamic dislocation theory to be identified in accordance with these laws. (C) 2020 Elsevier Ltd. All rights reserved.
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