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Spatially resolved strain measurements in Mo-alloy micropillars by differential aperture x-ray microscopy

机译:通过微分孔径x射线显微镜测量钼合金微柱中的空间分辨应变

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摘要

Spatially resolved strain distributions in the NiAl matrix and the ~ 550-1000 nm Mo fibers of a NiAl-Mo eutectic were investigated by microbeam x-ray diffraction. Position sensitive d-spacings for the individual phases were obtained from spatially resolved and energy-resolved Laue patterns. For embedded Mo fibers, the measured elastic strain is consistent with the predicted thermal mismatch strain between the NiAl and Mo phases. However, when the NiAl matrix is etched back to expose Mo micropillars, the d-spacing increases to that of unconstrained Mo, indicating release of the compressive residual strain in the Mo fibers.
机译:通过微束X射线衍射研究了NiAl-Mo共晶NiAl基体和〜550-1000 nm Mo纤维中的空间分辨应变分布。从空间分辨和能量分辨Laue模式获得各个相的位置敏感d间隔。对于包埋的Mo纤维,测得的弹性应变与NiAl和Mo相之间的预计热失配应变一致。但是,当回蚀NiAl基体以暴露Mo微柱时,d间距增加到不受约束的Mo的d间距,这表明Mo纤维中压缩残余应变的释放。

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