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Crystallization of Lennard-Jones liquids under dynamic compression: Heterogeneous and homogeneous nucleation

机译:Lennard-Jones液体在动态压缩下的结晶:异质和均匀成核

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We investigate crystallization of Lennard-Jones liquids on substrates under dynamic compression with large-scale molecular dynamics simulations. The substrates examined include single crystals and bicrystals with different crystallographic orientations, and the loading paths include shock and quasi-isentropic loading. Microstructure is characterized with simulated x-ray diffraction and orientation mapping. For shock loading, only heterogeneous nucleation occurs at the simulation scales. Quasi-isentropic loading induces less heating and larger supercooling; as a result, heterogeneous nucleation occurs at low loading strengths, and both heterogeneous and homogeneous nucleation occur at high loading strengths, despite the crystalline substrates. Crystallization depends on the substrate structure (crystal orientation and grain boundary) and loading characteristics. Deformation may induce grain structure change (e.g., reorientation and twinning) of substrates and affect subsequent crystallization. Crystallization rate is anisotropic, inversely proportional to the cosine of the dihedral angle between the substrate plane and a main {111} growth plane. Published by AIP Publishing.
机译:我们调查与大规模的分子动力学模拟动态压缩下基板的Lennard - 琼斯液体结晶。审查了的基材包括单晶和双晶具有不同结晶取向,并且加载路径包括冲击和准等熵加载。显微组织的特征在于具有模拟X射线衍射和取向映射。对于冲击负荷,只有异相成核发生在模拟尺度。准等熵负荷诱导较少加热,以及较大的过冷;其结果是,非均相成核发生在低负载的优势,并且,无论是多相和均相成核发生在高负荷强度,尽管结晶基材。结晶取决于衬底结构(晶体取向和晶粒边界)和负载特性。变形可能引起基板的晶粒结构改变(例如,调整和孪晶),并影响随后的结晶。结晶速率是各向异性的,反比于基板平面和主{111}生长平面之间的两面角的余弦。通过AIP发布发布。

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