论文标题

动态单轴压缩期间触觉和铜的滑动竞争和旋转抑制

Slip competition and rotation suppression in tantalum and copper during dynamic uniaxial compression

论文作者

Heighway, Patrick G., Wark, Justin S.

论文摘要

压缩时,金属标本通常会因塑性引起的旋转而对其晶体质地的变化。超快X射线衍射技术使得在纳秒时间尺度上动态压缩到在行星内部通常遇到的压力类型的目标中测量这种类型的旋转。轴和局部旋转的范围可以提供有关通过快速单轴压缩激活的可塑性机制组合的提示,从而提供了有关在极端载荷条件下可操作的基本脱位动力学的宝贵信息。我们提出了三个模型晶体中休克诱导的晶格旋转的大规模分子动力学模拟,这些模型晶体以前在动态压缩实验中表征了这些行为:沿其[101]方向震撼的tantalum,沿[001]或[111]沿铜震动。我们发现,在所有三种情况下,模拟预测的纹理变化与使用原位X射线衍射经过实验测量的变化一致。我们表明,虽然沿[101]沿[101]和沿[001]载的铜载的塔塔alum均显示出明显的旋转,这是由于不对称的多重滑动而导致的旋转,但沿[111]沿[111]的铜的方向通过竞争,对称,对称,等效的滑动系统而稳定在[111] [111]中。

When compressed, a metallic specimen will generally experience changes to its crystallographic texture due to plasticity-induced rotation. Ultrafast x-ray diffraction techniques make it possible to measure rotation of this kind in targets dynamically compressed over nanosecond timescales to the kind of pressures ordinarily encountered in planetary interiors. The axis and the extent of the local rotation can provide hints as to the combination of plasticity mechanisms activated by the rapid uniaxial compression, thus providing valuable information about the underlying dislocation kinetics operative during extreme loading conditions. We present large-scale molecular dynamics simulations of shock-induced lattice rotation in three model crystals whose behavior has previously been characterized in dynamic-compression experiments: tantalum shocked along its [101] direction, and copper shocked along either [001] or [111]. We find that, in all three cases, the texture changes predicted by the simulations are consistent with those measured experimentally using in situ x-ray diffraction. We show that while tantalum loaded along [101] and copper loaded along [001] both show pronounced rotation due to asymmetric multiple slip, the orientation of copper shocked along [111] is predicted to be stabilized by opposing rotations arising from competing, symmetrically equivalent slip systems.

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