Constitutive Equations

Author:

Ghosh Amit1

Affiliation:

1. University of Michigan

Abstract

Abstract The constitutive relations for metalworking include elements of behavior at ambient temperature as well as high-temperature response. This article presents equations for strain hardening and strain-rate-sensitive flow, with alternate sections on empirically determined properties, followed by the models of constitutive behavior. It provides a discussion on creep mechanisms involving dislocation and diffusional flow, such as the Nabarro-Herring creep and the Coble creep. The equations for the several creep rates are also presented. Research on the mechanism of the superplastic flow in fine-grain metals has encompassed many ideas, such as the diffusional creep, dislocation creep with diffusional accommodation at grain boundaries, and concepts of grain-mantle deformation. The article concludes with information on the kinetics of superplastic deformation processes, including low stress behavior, concurrent grain growth, and high stress behavior.

Publisher

ASM International

Reference52 articles.

1. Laws for Work-Hardening and Low Temperature Creep;Kocks;J. Eng. Mater. Tech. (Trans. ASME),1976

2. Large Strain Multidirectional Deformation of 1100 Aluminum at 300 K;Armstrong;J. Mech. Phys. Solids,1982

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