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Full-Field Strain Rate Measurement by White-Light Speckle Image Correlation

机译:白光散斑图像相关测量全场应变率

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This paper explains a numerical procedure to process sequences of digital images and to return a full-field evaluation of the strain rate. The processing procedure is based on a nonlinear least squares fitting performed globally, on the whole image, and simultaneously on several images. The use of a highly optimised code allows the analysis of long sequences in a few minutes. The results of calculations are presented as movies built by blending the colour maps of the measured strain field with the specimen pictures used in the correlation procedure. Our application is focused on studying the plastic behaviour of metals and, in particular, on highlighting any transient phenomena that might occur during yielding and strain-hardening phases on thin sheets used in the manufacture of sheet metals. A typical example for such phenomena is the Portevin-Le Chatelier effect, a repetitive yielding of alloys during plastic deformation.
机译:本文介绍了一种数字过程,用于处理数字图像序列并返回应变率的全场评估。该处理过程基于全局,整个图像以及同时在多个图像上执行的非线性最小二乘拟合。使用高度优化的代码可以在几分钟内分析长序列。计算结果以电影形式呈现,该电影通过将测得的应变场的颜色图与相关过程中使用的样本图片混合在一起而构建。我们的应用专注于研究金属的塑性行为,尤其是强调在钣金制造中使用的薄板的屈服和应变硬化阶段可能发生的任何瞬态现象。这种现象的典型例子是Portevin-Le Chatelier效应,即塑性变形过程中合金的重复屈服。

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