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Geometry and grain size effects on the fracture behavior of sheet metal in micro-scale plastic deformation

机译:几何形状和晶粒尺寸对金属板在微观塑性变形中断裂行为的影响

摘要

The demand on micro-parts is significantly increasing in the last decade due to the trend of product miniaturization. When the part size is scaled down to micro-scale, the billet material consists of only a few grains and the material properties and deformation behaviors are quite different from the conventional ones in macro-scale. The size effect phenomena occur in micro-scale plastic deformation or micro-forming and there are still many unknown phenomena related to size effect, including geometry and grain size effects. It is thus critical to investigate the size effect on deformation behavior, especially for the fracture behavior in micro-scale plastic deformation. In this research, tensile test was conducted with annealed pure copper foils with different thicknesses and grain sizes to study the size effects on fracture behavior. It is found that flow stress, fracture stress and strain, and the number of micro-voids on the fracture surface decrease with the decreasing ratio of specimen size to grain size. Based on the experimental results, dislocation density based models which consider the interactive effect of specimen and grain sizes on fracture stress and strain are developed and their accuracies are further verified and validated with the experimental results obtained from this research and prior arts.
机译:由于产品小型化的趋势,过去十年来对微型零件的需求显着增加。当零件尺寸按比例缩小到微米级时,坯料仅包含少量晶粒,并且材料性能和变形行为在宏观上与传统的完全不同。尺寸效应现象发生在微观塑性变形或微成形中,仍然存在许多与尺寸效应有关的未知现象,包括几何形状和晶粒尺寸效应。因此,研究尺寸对变形行为的影响至关重要,尤其是对于微观塑性变形中的断裂行为。在这项研究中,对具有不同厚度和晶粒尺寸的退火纯铜箔进行了拉伸试验,以研究尺寸对断裂行为的影响。发现随着样品尺寸与晶粒尺寸比的减小,流动应力,断裂应力和应变以及断裂表面上的微孔数量减少。基于实验结果,建立了基于位错密度的模型,该模型考虑了试样和晶粒尺寸对断裂应力和应变的相互作用,并利用本研究和现有技术获得的实验结果进一步验证了它们的准确性。

著录项

  • 作者

    Fu MW; Chan WL;

  • 作者单位
  • 年度 2011
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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