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Effects of specimen geometry and base material on the mechanical behavior of focused-ion-beam-fabricated metallic-glass micropillars

机译:试样几何形状和基础材料对聚焦离子束制备的金属玻璃微柱力学性能的影响

摘要

An investigation of the focused-ion-beam-based microcompression experiments was conducted using metallic-glass micropillars. The results displayed an apparent geometry dependence of the measured pillar's Young's modulus if the formula in the literature was used for the analysis of the experimental data. However, if the effects of the base material and pillar geometry were taken into account with the aid of finite-element simulations, it was shown that the microcompression experiments can reach a resolution similar to that of the nanoindentation tests in the measurement of the material's mechanical properties, and therefore provide an alternative to the nanoindentation experiment in applications that require the characterization of local mechanical properties in multi-structured/multi-phased material systems.
机译:使用金属玻璃微柱对基于聚焦离子束的微压缩实验进行了研究。如果使用文献中的公式来分析实验数据,则结果显示出所测立柱的杨氏模量的明显几何依赖性。但是,如果借助有限元模拟考虑了基础材料和支柱几何形状的影响,则表明在材料机械性能的测量中,微压缩实验可以达到与纳米压痕测试相似的分辨率。特性,因此在需要表征多结构/多相材料系统中局部机械性能的应用中提供了纳米压痕实验的替代方法。

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