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Experimental characterization of meso-scale deformation mechanisms and the RVE size in plastically deformed carbon steel

机译:中间尺度变形机制的实验表征及塑性变形碳钢中的寿命尺寸

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摘要

The local deformation response of low carbon steel subjected to uniaxial tensile loading is investigated, and the local strain field at sub-grain scale is obtained using high-spatial-resolution digital image correlation. The implemented digital image correlation method enables the observation and study of inhomogeneous deformation response at microstructural levels. Detailed local deformation mechanisms including mesoscopic slip bands are captured. Furthermore, the local information is used for the determination of representative volume element size in polycrystalline low carbon steel. To obtain the representative volume element size, we proposed and successfully implemented a strain variation method. Further, the influence of global strain on the local deformation mechanisms and representative volume element size is discussed. The challenges associated with the local strain measurement using digital image correlation are also discussed.
机译:研究了对单轴拉伸载荷进行的低碳钢的局部变形响应,并且使用高空间分辨率的数字图像相关来获得亚粒度的局部应变场。 实施的数字图像相关方法使得能够在微观结构水平下观察和研究非均匀变形响应。 捕获包括介镜滑动带的详细局部变形机制。 此外,本地信息用于确定多晶低碳钢中的代表性体积元素尺寸。 为了获得代表体积元素大小,我们提出并成功地实施了应变变化方法。 此外,讨论了全局应变对局部变形机制和代表性体积大小的影响。 还讨论了与使用数字图像相关性的局部应变测量相关的挑战。

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