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A discrete dislocation plasticity analysis of a single-crystal semi-infinite medium indented by a rigid surface exhibiting multi-scale roughness

机译:具有多尺度粗糙度的刚性表面压痕的单晶半无限介质的离散位错塑性分析

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摘要

Discrete dislocation plasticity was used to analyse plane-strain indentation of a single-crystal elastic-plastic semi-infinite medium by a rigid surface exhibiting multi-scale roughness, characterised by self-affine (fractal) behaviour. Constitutive rules of dislocation emission, glide and annihilation were used to model short-range dislocation interactions. Dislocation multiplication and the development of subsurface shear stresses due to asperity microcontacts forming between a single-crystal medium and a rough surface were examined in terms of surface roughness and topography (fractal) parameters, slip-plane direction and spacing, dislocation source density, and contact load (surface interference). The effect of multi-scale interactions between asperity microcontacts on plasticity is elucidated in light of results showing the evolution of dislocation structures. Numerical solutions yield insight into plastic flow of crystalline materials in normal contact with surfaces exhibiting multi-scale roughness.
机译:离散位错可塑性用于分析具有多尺度粗糙度,具有自仿射(分形)行为特征的刚性表面的单晶弹塑性半无限介质的平面应变压痕。位错发射,滑行和an没的本构规则用于模拟短程位错相互作用。根据表面粗糙度和形貌(分形)参数,滑移面方向和间距,位错源密度和位错,研究了由于单晶介质和粗糙表面之间形成的粗糙微接触而引起的位错倍增和地下剪切应力的发展。接触负载(表面干扰)。根据显示位错结构演变的结果,阐明了粗糙微接触之间的多尺度相互作用对可塑性的影响。数值解可以深入了解与多尺度粗糙度表面正常接触的晶体材料的塑性流动。

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  • 来源
    《Philosophical Magazine》 |2012年第24期|p.2984-3005|共22页
  • 作者

    X. Yina K. Komvopoulosa*;

  • 作者单位

    a Department of Mechanical Engineering, University of California, Berkeley, CA 94720, USA;

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  • 正文语种 eng
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