Neutron-diffraction measurement of the evolution of strain for non-uniform plastic deformation

被引:0
|
作者
R.B. Rogge
P.R. Dawson
D. Boyce
机构
[1] National Research Council,
[2] Chalk River Laboratories,undefined
[3] Chalk River,undefined
[4] ON K0J 1J0,undefined
[5] Canada,undefined
[6] Cornell University,undefined
[7] Sibley School of Mechanical and Aerospace Engineering,undefined
[8] Ithaca,undefined
[9] NY 14853,undefined
[10] USA,undefined
来源
Applied Physics A | 2002年 / 74卷
关键词
PACS: 61.12.-q; 62.20.Fe; 81.70.Bt;
D O I
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学科分类号
摘要
Neutrons are particularly adept for the validation of modeling predictions of stress and strain. In recent years, there has been a significant effort to model the evolution of both the macroscopic stresses and the intergranular stress during plastic deformation. These have had broad implications with regard to understanding the evolution of residual stress and to diffraction-based measurements of strain. Generally the modeling and associated measurements have been performed for simple uniaxial tension, leaving questions with regard to plastic deformation under multi-axial stress and non-uniform stress. Extensive measurements of the strain profile across a plastic hinge for each of a series of loading and unloading cycles to progressively higher degrees of plastic deformation are presented. These measurements are used to assess multiple-length-scale finite-element modeling (FEM) of the plastic hinge, in which the elements will range in size from single crystallites (as used in successful simulations of uniaxial tension) to macroscopic elements (as typically used in FEM simulations).
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页码:s1725 / s1727
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