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Fundamentals of Interface Phenomena in Advanced Bulk Nanoscale Materials

机译:先进的块状纳米材料中界面现象的基础

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The review is devoted to a study of interface phenomena influencing advanced properties of nanoscale materials processed by means of severe plastic deformation, high-energy ball milling and their combinations. Interface phenomena include processes of interface defect structure relaxation from a highly nonequilibrium state to an equilibrium condition, grain boundary phase transformations and enhanced grain boundary and triple junction diffusivity. On the basis of an experimental investigation, a theoretical description of the key interfacial phenomena controlling the functional properties of advanced bulk nanoscale materials has been conducted. An interface defect structure investigation has been performed by TEM, high-resolution x-ray diffraction, atomic simulation and modeling. The problem of a transition from highly non-equilibrium state to an equilibrium one, which seems to be responsible for low thermostability of nanoscale materials, was studied. Also enhanced grain boundary diffusivity is addressed. Structure recovery and dislocation emission from grain boundaries in nanocrystalline materials have been investigated by analytical methods and modeling.
机译:这篇综述专门研究了界面现象,该界面现象通过严重的塑性变形,高能球磨及其组合影响了纳米材料的先进性能。界面现象包括界面缺陷结构从高度非平衡态到平衡状态的弛豫过程,晶界相变以及增强的晶界和三键扩散系数。在实验研究的基础上,对控制高级块状纳米级材料功能特性的关键界面现象进行了理论描述。已经通过TEM,高分辨率X射线衍射,原子模拟和建模进行了界面缺陷结构研究。研究了从高度非平衡态到平衡态的转变问题,这似乎是纳米级材料热稳定性低的原因。还解决了增强的晶界扩散性。通过分析方法和模型研究了纳米晶材料中晶界的结构恢复和位错发射。

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