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Nanoscale waviness of low-angle grain boundaries

机译:低角度晶界的纳米波纹度

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Low-angle grain boundaries (LAGBs) are ubiquitous in natural and man-made materials and profoundly affect many of their mechanical, chemical, and electrical properties. The properties of LAGBs are understood in terms of their constituent dislocations that accommodate the small misorientations between grains. Discrete dislocations result in a heterogeneous local structure along the boundary. In this article, we report the lattice rotation across a LAGB in olivine (Mg(1.8)Fe(0.2)SiO(4)) measured at the nanometer scale by using quantitative high-resolution transmission electron microscopy. The analysis reveals a grain boundary that is corrugated. Elastic calculations show that this waviness is independent of the host material and thus a general feature of LAGBs. Based on our observations and analysis, we provide equations for the boundary position, local curvature, and the lattice rotation field for any LAGB. These results provide the basis for a reexamination of grain-boundary properties in materials such as high-temperature superconductors, nanocrystalline materials, and naturally deformed minerals.
机译:低角度晶界(LAGB)在天然和人造材料中无处不在,并深刻影响其许多机械,化学和电气性能。 LAGB的特性是根据其组成的位错来理解的,这些位错适应了晶粒之间的微小取向错误。离散位错沿边界导致异质局部结构。在本文中,我们报告了通过使用定量高分辨率透射电子显微镜在纳米尺度上测量的橄榄石中的LAGB(Mg(1.8)Fe(0.2)SiO(4))的晶格旋转。分析显示出波纹状的晶界。弹性计算表明,波纹度与主体材料无关,因此与LAGBs相同。根据我们的观察和分析,我们为任何LAGB提供了边界位置,局部曲率和晶格旋转场的方程式。这些结果为重新检验高温超导体,纳米晶体材料和自然变形矿物等材料中的晶界性质提供了基础。

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