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Size effect on deformation behavior and ductile fracture in microforming of pure copper sheets considering free surface roughening

机译:考虑自由表面粗糙化的尺寸对纯铜板微成形中变形行为和延性断裂的影响

摘要

In meso/micro-scaled plastic deformation, material deformation and ductile fracture are quite different from those in macro-scale. The roughness of the free surfaces of workpiece increases with deformation and the decrease of grain number in the sample thickness direction, leading to the nonuniformity of specimen thickness. The so-called size effect and free surface roughening may in turn affect the deformation behavior, ductility and fracture morphology of the samples. To explore the coupled effect of workpiece geometry and grain size on material flow behavior in meso/micro-scaled plastic deformation, uniaxial tensile test of pure copper sheets with different thicknesses and comparable microstructure was performed. The experimental results reveal that the material flow stress, fracture stress and strain, and the number of microvoids on fracture surface are getting smaller with the decreasing ratio of specimen thickness to grain size. In addition, the modified Swift’s equation and the corrected uniform strain are closer to the experimental ones considering the thickness nonuniform coefficient induced by the free surface roughening. Furthermore, the observation of fracture morphologies confirms that the local deformation caused by the free surface roughening leads to strain localization and a decreased fracture strain when there are only a few grains involved in plastic deformation.
机译:在细观/微观塑性变形中,材料变形和韧性断裂与宏观尺度有很大不同。工件自由表面的粗糙度随着样品厚度方向的变形和晶粒数的减少而增加,从而导致样品厚度的不均匀性。所谓的尺寸效应和自由表面粗糙会反过来影响样品的变形行为,延展性和断裂形态。为了探究工件几何形状和晶粒尺寸对介观/微观塑性变形中材料流动行为的耦合影响,对不同厚度和可比较的微观结构的纯铜板进行了单轴拉伸试验。实验结果表明,随着试样厚度对晶粒尺寸的减小,材料的流动应力,断裂应力和应变以及断裂表面上的微孔数量逐渐减少。另外,考虑到自由表面粗糙化引起的厚度不均匀系数,修正的Swift方程和校正后的均匀应变更接近于实验方程。此外,观察到的断裂形态证实了,当仅有少量晶粒参与塑性变形时,由自由表面粗糙化引起的局部变形会导致应变局部化,并降低断裂应变。

著录项

  • 作者

    Meng B; Fu MW;

  • 作者单位
  • 年度 2015
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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