On the saturation stress of deformed metals
Sylvain Queyreau (LSPM)

TL;DR
This paper investigates the saturation stress in fcc metals using a crystal plasticity model derived from dislocation dynamics, revealing its fundamental nature and providing predictive models for cyclic and monotonic loading responses.
Contribution
It introduces a unified framework linking dislocation-based mechanisms to saturation stress in single and polycrystals, with analytical models for prediction.
Findings
Saturation stress converges to monotonic saturation stress with increasing cycle plastic increment.
Mechanisms controlling saturation in single crystals are similar to those in large-grain polycrystals.
Proposed models can predict saturation stress under various loading conditions.
Abstract
Crystalline materials exhibit an hysteresis behaviour when deformed cyclically. The origins of this tension-compression asymmetry have been fully understood only recently as being caused by an asymmetry in the junction strength and a reduced mean free path of dislocations inherited from previous deformation stage. Here, we investigate the saturation stress in fcc single- and poly-crystals using a Crystal Plasticity framework derived from dislocation dynamics simulations. In the absence of plastic localization and damage mechanism, the single-crystal mechanical response eventually saturates. We show that the cyclic saturation stress converges asymptotically to the monotonic saturation stress as the cycle plastic increment increases, and this convergence can be observed for some experimental conditions. The analysis of the experimental literature suggests that the mechanisms controlling…
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Taxonomy
TopicsMicrostructure and mechanical properties · Microstructure and Mechanical Properties of Steels · Hydrogen embrittlement and corrosion behaviors in metals
