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Texture evolution and operative mechanisms during large-strain deformation of nanocrystalline nickel

机译:纳米晶镍大应变变形过程中的织构演变及作用机理

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摘要

The large-strain deformation of nanocrystalline nickel was investigated at room temperature and cryogenic (liquid N2) temperature. Deformation mechanisms ranging from grain boundary sliding to slip, operate due to a wide distribution of grain sizes. These mechanisms leave their finger print in the deformation texture evolution during rolling of nanocrystalline nickel. The occurrence and severance of different mechanisms is understood by a thorough characterization of the deformed samples using X-ray diffraction, X-ray texture measurements, electron back-scattered diffraction and transmission electron microscopy. Crystal plasticity-based viscoplastic self-consistent simulations were used to further substantiate the experimental observations. Thus, a comprehensive understanding of deformation behavior of nanocrystalline nickel, which is characterized by simultaneous operation of dislocation-dominated and grain boundary-mediated mechanisms, has been developed.
机译:研究了室温和低温(液态N 2 )下纳米晶镍的大应变变形。从晶粒边界滑动到滑移的变形机制由于晶粒尺寸的广泛分布而起作用。这些机制在纳米晶镍轧制过程中的变形纹理演变过程中留下了指纹。通过使用X射线衍射,X射线织构测量,电子背散射衍射和透射电子显微镜对变形样品进行全面表征,可以了解不同机理的发生和切断。基于晶体可塑性的粘塑性自洽模拟被用来进一步证实实验结果。因此,已经发展了对纳米晶镍的变形行为的全面理解,其特征是位错主导的和晶界介导的机理的同时运行。

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  • 来源
    《Philosophical Magazine》 |2011年第5期|p.798-817|共20页
  • 作者

    N.P. Guraoa Satyam Suwasa*;

  • 作者单位

    a Department of Materials Engineering, Indian Institute of Science, Bangalore-560012, India;

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