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Investigation of the Uncertainty of DIC Under Heterogeneous Strain States with Numerical Tests

机译:用数值试验研究非均匀应变状态下DIC的不确定性

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In this research, numerical 2D digital image correlation (DIC) tests are carried out to assess the uncertainty of DIC under heterogeneous strain states. DIC is implemented to measure the deformation of the numerically deformed images with respect to the undeformed counterparts, which are taken from the real tensile specimens. The tensile specimens are made of three materials, that is, steel DC06, steel DX54D+Z and aluminium alloy Al6016 and cut into three different geometries, namely one standard design and two complex designs. The specimens are all painted manually with random speckle patterns. The original images are deformed by imposed displacement fields, which are obtained by simulating uni-axial tensile tests of the specimens with finite element analysis (FEA). In this way, the errors sourcing from the hardware of the image system are excluded. According to the geometries of the specimens, homogeneous and heterogeneous strain states are achieved by FEA. The optimum mesh sizes of the models are identified to minimise theirs influence on the imposed fields. The impacts of subset sizes, step sizes and strain window sizes are studied for an optimum correlation. Finally, the influence of the strain state is investigated. It is found that the DIC accuracy and precision decrease under highly heterogeneous strain states.
机译:在这项研究中,进行了数值二维数字图像相关性(DIC)测试,以评估非均质应变状态下DIC的不确定性。实施DIC来测量相对于未变形对应物的数字变形图像的变形,这些变形是从真实拉伸样本中获取的。拉伸试样由三种材料制成,即DC06钢,DX54D + Z钢和铝合金Al6016,并切成三种不同的几何形状,即一种标准设计和两种复杂设计。样品全部以随机的斑点图案手工涂漆。原始图像通过施加的位移场变形,该位移场是通过使用有限元分析(FEA)模拟试样的单轴拉伸试验获得的。以这种方式,排除了从图像系统的硬件产生的错误。根据样品的几何形状,通过有限元分析获得了均匀和不均匀的应变状态。确定模型的最佳网格尺寸,以最大程度地减小其对施加场的影响。研究了子集大小,步长大小和应变窗口大小的影响以获得最佳相关性。最后,研究了应变状态的影响。发现在高度异质应变状态下,DIC的精度和精度会降低。

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