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Measurement of panar fault energies in Ni_3Ge-Fe_3Ge intermetallic alloys

机译:Ni_3Ge-Fe_3Ge金属间合金中的断层能的测量

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摘要

a combination of transmission electron microscopy (TEM) and image simulations has facilitated a highly quantitative measure of superdisolocation dissociations. The experimental observations have been corrected for images shifts within the framework of anisotropic elasticity by comparison with simulated images. This allows experimental quantification of planar fault energies, thus providing a benchmark for first principles the atomistic simulations and fundamental insight towards alloy modeling and design. Such measurements of superdislocation dissociations on the order of 1-15 nm have been receorded for the pseudobinary Ni_3Ge-=Fe_3Ge alloy system. These detailed measurements of fault widths obtained by weak-beam TEM observationsd of deformation structures will be presented and discussed as a function of alloy composition. The transition from anomalous to normal temperature dependence of yielding behavior in these alloys will also be discussed in terms of observed dislocation structures and planar fault energies calculated using the above measurements.
机译:透射电子显微镜(TEM)和图像模拟的结合促进了超位错解离的高度定量测量。通过与模拟图像比较,已对各向异性弹性框架内的图像偏移进行了实验观察的校正。这可以对平面断层能量进行实验量化,从而为基本原理(原子模拟和合金建模与设计的基本原理)提供基准。对于准二元Ni_3Ge- = Fe_3Ge合金系统,已经获得了1-15 nm数量级的超位错离解的测量结果。这些通过变形结构的弱束TEM观测得到的断层宽度的详细测量将作为合金成分的函数进行介绍和讨论。这些合金从屈服行为的异常到正常温度的转变也将根据观察到的位错结构和使用上述测量值计算出的平面断层能量进行讨论。

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