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首页> 外文期刊>International Journal of Plasticity >Crystallographic orientation and size dependence of tension-compression asymmetry in molybdenum nano-pillars
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Crystallographic orientation and size dependence of tension-compression asymmetry in molybdenum nano-pillars

机译:钼纳米柱的拉伸压缩不对称性的晶体学取向和尺寸依赖性

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摘要

Uniaxial tension and compression experiments on [0 0 1] and [0 1 1] oriented molybdenum nano-pillars exhibit tension-compression asymmetry, a difference in attained stresses in compression vs. tension, which is found to depend on crystallographic orientation and sample size. We find that (1) flow stresses become higher at smaller diameters in both orientations and both loading directions, (2) compressive flow stresses are higher than tensile ones in [0 0 1] orientation, and visa versa in [0 1 1] orientation, and (3) this tension-compression asymmetry is in itself size dependent. We attribute these phenomena to the dependence of twinning vs. antitwinning deformation on loading direction, to the non-planarity of screw dislocation cores in Mo crystals, and to the possibly lesser role of screw dislocations in governing nano-scale plasticity compared with bulk Mo.
机译:[0 0 1]和[0 1 1]取向的钼纳米柱上的单轴拉伸和压缩实验显示出拉伸-压缩不对称性,压缩应力与拉伸应力之间的差异,这取决于晶体取向和样品尺寸。我们发现(1)在两个方向和两个加载方向上,较小直径的流应力都变大;(2)在[0 0 1]方向上的压缩流应力比拉伸流应力大,而在[0 1 1]方向上的流应力反之亦然(3)这种拉压不对称本身就取决于大小。我们将这些现象归因于孪晶与反孪晶变形对加载方向的依赖性,归因于Mo晶体中螺旋位错核的非平面性以及归因于螺钉位错在控制纳米尺度可塑性方面的作用可能要低于块状Mo。

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