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Full-Field Strain Measurement and Numerical Analysis of a Microalloyed Steel Subjected to Deformation with Strain Path Change

机译:具有应变路径变形的微合金钢的全场应变测量和数值分析

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摘要

This study presents an effective technique for taking advantage of the full-field measurement method of Digital Image Correlation (DIC) for the assessment of the strain distribution during the metal forming process when the strain path change was performed. The applied methodology is based on the combination of a numerical simulation for the stress calculation and full-field surface strain measurement in a forward/reverse three-point bending test. In the numerical part, the Chaboche model and dislocation density-based model were selected and verified in terms of the prediction of a softening/hardening effect occurring during strain reversal. The Chaboche model parameters identification procedure, on the basis of a cyclic torsion test, combined with inverse analysis, was also described. The results of the study showed the advantages and disadvantages of both of the analyzed work hardening models. The obtained results were analyzed in the light of the deformation inhomogeneity and reorganization of the dislocation structure during the cyclic deformation test.
机译:该研究提出了一种有效的技术,用于利用数字图像相关(DIC)的全场测量方法,用于在进行应变路径变化时金属形成过程中的应变分布的评估。所应用的方法基于对正向/反向三点弯曲试验中应力计算和全场表面应变测量的数值模拟的组合。在数值部分中,选择并验证基于Chaboche模型和位错的模型,并在应变反转期间发生软化/硬化效果的预测方面进行了验证。还描述了Chaboche模型参数识别程序,基于循环扭转试验,结合反向分析。该研究的结果表明,两种分析的工作硬化模型的优缺点。鉴于在环状变形试验期间,根据变形的不均匀性和重组来分析所得结果。

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