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Study of Plastic Heterogeneity in a Low Carbon Steel Sheet by EBSD

机译:用EBSD研究低碳钢板塑性异质性

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The aim of this study is to analyze the development of plastic heterogeneity in low carbon steel sheets when they are subjected to different loading paths, typical of forming process operations. Nakajima type tests are performed and employed to determine the Forming Limit Curve. This study attempts to characterize, at polycrystalline level, the plastic heterogeneity and its gradients, enabling the definition of correlations between the dislocation structure, grain size and crystallographic orientations. Geometrically Necessary Dislocations (GND) is estimated by calculating the curvature tensor from the measured orientation field. The results are compared with the Kernel Average Misorientation factor (KAM), normally available in the TSL-OIM EBSD software. The Quantification of the distribution of disorientations in each grain is performed by evaluating the second-order central moment of crystal misorientations (Q tensor). Finally, the evaluation of the isotropic and anisotropic factors of the Q tensor and the distribution of the misorientation preferential axes allow characterizing the microstructure dependent on the applied loading, the grain size or the crystal orientation.
机译:本研究的目的是分析低碳钢板塑性异质性的发展,当它们经受不同的负载路径时,典型的形成过程操作。进行Nakajima型测试并采用以确定成形限制曲线。该研究试图在多晶水平,塑料异质性及其梯度上表征,使得脱位结构,晶粒尺寸和晶体取向之间的相关性定义。通过从测量的取向场计算曲率张量来估计几何必要的位错(GND)。将结果与内核平均错位因子(KAM)进行比较,通常在TSL-OIM EBSD软件中提供。通过评估晶体错位的二阶中心力矩(Q张量)来进行每种谷物中迷失引向的分布的定量。最后,评估Q张量的各向同性和各向异性因子的评估和无论优先轴的分布允许表征依赖于施加的负载,粒度或晶体取向的微观结构。

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