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An experimental/analytical comparison of three-dimensional deformations at the tip of a crack in a plastically deforming plate - II: Material characterization and finite element analysis

机译:塑性变形板中裂纹尖端的三维变形的实验/分析比较-II:材料表征和有限元分析

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This paper is the second of three devoted to a detailed study of the three-dimensional deformation at the tip of a notch in a ductile steel plate loaded in three-point bending. A finite element model has been constructed preparatory for a comparison with the experimental data in the subsequent paper; the geometry and material properties have been carefully matched to the experiment described in a preceding paper. The experiments to provide the complete description of the relevant material behavior are presented, followed by the details of the numerical model and some sample results. Young's modulus and the yield behavior are evaluated. Because any error in Poisson's ratio induces an error of the same order of magnitude in the three-dimensional elastic displacement field, this quantity is also measured with moire interferometry to within +/-1 percent. Also, besides matching the material properties and geometry of the numerical model to the three-point-bend experiment, the development of (tunneling) fracture within the interior of the specimen is determined; these measurements are incorporated into the numerical model by releasing appropriate nodes.* [References: 34]
机译:本文是三篇论文中的第二篇,专门研究在三点弯曲载荷下的球墨铸铁的缺口尖端处的三维变形。已经准备了一个有限元模型,用于与后续论文中的实验数据进行比较。几何形状和材料属性已与上一篇论文中描述的实验精心匹配。提出了提供有关材料行为的完整描述的实验,然后是数值模型的细节和一些样本结果。评估杨氏模量和屈服行为。由于泊松比的任何误差都会在三维弹性位移场中引起相同数量级的误差,因此使用莫尔干涉测量法也可以将该误差测量到+/- 1%以内。此外,除了将材料特性和数值模型的几何形状与三点弯曲实验相匹配之外,还确定了试样内部(隧道)裂缝的发展;通过释放适当的节点,将这些度量合并到数值模型中。* [参考文献:34]

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