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In Situ Investigation of Deformation Mechanisms in Magnesium-Based Metal Matrix Composites

机译:镁基金属基复合材料的形变机理原位研究

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摘要

We studied the effect of short fibers on the mechanical properties of a magnesium alloy. In particular, deformation mechanisms in a Mg-Al-Sr alloy reinforced with short alumina fibers were studied in situ using neutron diffraction and acoustic emission methods. The fibers' plane orientation with respect to the loading axis was found to be a key parameter, which influences the acting deformation processes, such as twinning or dislocation slip. Furthermore, the twinning activity was much more significant in samples with parallel fiber plane orientation, which was confirmed by both acoustic emission and electron backscattering diffraction results. Neutron diffraction was also used to assist in analyzing the acoustic emission and electron backscattering diffraction results. The simultaneous application of the two in situ methods, neutron diffraction and acoustic emission, was found to be beneficial for obtaining complementary datasets about the twinning and dislocation slip in the magnesium alloys and composites used in this study.
机译:我们研究了短纤维对镁合金力学性能的影响。特别地,使用中子衍射和声发射方法原位研究了用短氧化铝纤维增强的Mg-Al-Sr合金的变形机理。发现纤维相对于加载轴的平面取向是关键参数,其影响作用的变形过程,例如孪生或位错滑移。此外,在具有平行纤维平面取向的样品中,孪生活性更为显着,这由声发射和电子反向散射衍射结果证实。中子衍射还用于协助分析声发射和电子反向散射衍射结果。发现同时应用中子衍射和声发射这两种原位方法有利于获得有关本研究中使用的镁合金和复合材料中孪晶和位错滑移的补充数据集。

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