Internal-State Variable Modeling of Plastic Flow

Author:

Mecking H.1,Beaudoin A.2

Affiliation:

1. Material Science and Technology, T U Hamburg-Harburg, Germany

2. University of Illinois at Urbana-Champaign

Abstract

Abstract This article focuses on the analyzing and modeling of stress-strain behavior of polycrystals of pure face-centered cubic (fcc) metals in the range of temperatures and strain rates where diffusion is not important. It presents a phenomenological description of stress-strain behavior and provides information on the physical background, alternative interpretations, and directions of research. The quantitative description of strain hardening of fcc polycrystals is provided. The article also discusses the modeling of stress-strain behavior in body-centered cubic metals, hexagonal metals, stage IV work hardening, and the various classes of single-phase alloys.

Publisher

ASM International

Reference76 articles.

1. Size of Dislocation;Peierls;Phys. Soc.—Proc.,1940

2. Dislocations in a Simple Cubic Lattice;Nabarro;Proceedings of the Physical Society,1947

3. Fifty-Year Study of the Peierls-Nabarro Stress;Nabarro;Mater. Sci. Eng. A,1997

4. Hardening and Softening in Selected Magnesium Alloys;Lukac;Mater. Sci. Eng. A,2007

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