首页> 外文会议>Shock Compression of Condensed Matter―2001 >LARGE-SCALE MOLECULAR DYNAMICS SIMULATIONS OF SHOCK WAVES IN LAVES CRYSTALS AND ICOSAHEDRAL QUASICRYSTALS
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LARGE-SCALE MOLECULAR DYNAMICS SIMULATIONS OF SHOCK WAVES IN LAVES CRYSTALS AND ICOSAHEDRAL QUASICRYSTALS

机译:熔体晶体和二十面体准晶体中冲击波的大规模分子动力学模拟

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Quasicrystals and ordinary crystals both possess long-range translational order. But quasicrystals are aperiodic since their symmetry is non-crystallographic. The aim of this project is to study the behavior of shock waves in periodic and aperiodic structures and to compare the results. The expectation is that new types of defects are generated in the aperiodic materials. The materials studied are two models of (AlCu)Li quasicrystals and the C15 Laves phase, a low-order approximant of the quasicrystals. An elastic wave is found in the simulations up to a piston velocity of about u_p < 0.25 c_J. Between 0.5 < U_p/C_J < 0.5 the slope of elastic wave velocity slows down, and a new plastic wave is observed. Extended defect are generated, but no simple two-dimensional walls. The defect bands have finite width and a disordered structure. If the crystal is quenched a polycrystalline phase is obtained. For the quasicrystal the transformation is more complex since ring processes occur in the elastic regime already. Starting at about u_p < 0.5 c_J a single plastic shock wave is observed. In this range all structures are destroyed completely.
机译:准晶体和普通晶体均具有远距离平移顺序。但是准晶体是非周期性的,因为它们的对称性是非晶体学的。该项目的目的是研究周期和非周期性结构中冲击波的行为并比较结果。期望在非周期性材料中产生新类型的缺陷。研究的材料是(AlCu)Li准晶体和C15 Laves相(准晶体的低阶近似)的两个模型。在模拟中发现了一个弹性波,直到活塞速度约为u_p <0.25 c_J。在0.5

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