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首页> 外文期刊>Physical review. B, Condensed Matter And Materials Physics >Shock waves in materials with Dzugutov-potential interactions
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Shock waves in materials with Dzugutov-potential interactions

机译:具有Dzugutov势相互作用的材料中的冲击波

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摘要

The influence of shock waves on the bcc ground state, the metastable σ phase, and quasicrystal structures of the Dzugutov potential [Phys. Rev. A 46, R2984 (1992)] has been studied by molecular dynamics. In general, a phase transition is observed to the well-known high-pressure fcc- or hep-phase. The details of the phase transition and the perfection of the created phases depend on the orientation of the shock wave propagation direction with respect to the symmetry axes. The results are in good qualitative agreement with recent simulations with embedded atom method potentials designed specifically for iron. For the quasicrystal we observed flips, a new plasticity mode predicted for these structures. Furthermore we will report the results for an amorphous structure supplied with the same potential. No crystallization takes place in this case, indicating that it is easier to shift atomic layers collectively than to order the atoms one by one.
机译:冲击波对Dzugutov势的bcc基态,亚稳态σ相和准晶体结构的影响[Phys。 Rev.A 46,R2984(1992)]已经通过分子动力学进行了研究。通常,观察到到众所周知的高压fcc相或庚相的相变。相变的细节和所创建相的完善性取决于冲击波传播方向相对于对称轴的方向。该结果与专门针对铁设计的嵌入式原子方法势的最新仿真结果在质量上吻合。对于准晶体,我们观察到了翻转,为这些结构预测了一种新的可塑性模式。此外,我们将报告具有相同电位的非晶结构的结果。在这种情况下,没有结晶发生,这表明集体移动原子层比逐个排列原子更容易。

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