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Effect of Microstructure on the Mechanical Properties of Magnesium Composites Containing Dispersed Alumina Particles Prepared Using an MM/SPS Process

机译:微观结构对采用MM / SPS工艺制备的含分散氧化铝颗粒的镁复合材料力学性能的影响

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Magnesium composites containing 0-20 vol% Al_2O_3 particles were produced via mechanical milling (MM) followed by spark plasma sintering (SPS), and the effect of the microstructure on their mechanical properties was investigated. Microstructural observation of the MM powders and SPS compacts was achieved using scanning electron microscopy (SEM), X-ray diffraction (XRD), and transmission electron microscopy (TEM)/energy dispersive X-ray spectroscopy (EDS). The mechanical properties of the MM powders and SPS compacts were evaluated on the basis of the results of the Vickers hardness test. SEM micrographs indicated that Al_2O_3 fine particles were dispersed in the Mg composites with 10 and 20 vol% Al_2O_3. The hardness values for the MM powder and the SPS compact containing 10 vol% Al_2O_3 were nearly the same owing to their similar microstractures. However, the hardness of the SPS compact was higher than that of the MM powder for the Mg composite with 20 vol% Al_2O_3. TEM/EDS and XRD analyses revealed that the needle-like Mg_(17)Al_(12) and equiaxed nano MgO particles formed in the Mg matrix with 20 vol% Al_2O_3 during the SPS process. The increase in hardness of the SPS compact compared to that of the MM powder is attributed to strengthening resulting from the formation of the Mg_(17)Al_(12) and MgO phases.
机译:通过机械研磨(MM),然后进行火花等离子体烧结(SPS),制备了含0-20 vol%Al_2O_3颗粒的镁复合材料,并研究了微结构对其力学性能的影响。使用扫描电子显微镜(SEM),X射线衍射(XRD)和透射电子显微镜(TEM)/能量色散X射线光谱(EDS)对MM粉末和SPS压块进行微观结构观察。基于维氏硬度测试的结果评估了MM粉和SPS压块的机械性能。 SEM显微照片表明,Al_2O_3细颗粒分散在含有10%和20%(体积)Al_2O_3的Mg复合材料中。 MM粉末和含有10%(体积)Al_2O_3的SPS压块的硬度值由于其相似的微观结构而几乎相同。然而,对于具有20vol%的Al_2O_3的Mg复合材料,SPS压块的硬度高于MM粉末的硬度。 TEM / EDS和XRD分析表明,在SPS过程中,以20vol%的Al_2O_3在Mg基体中形成针状Mg_(17)Al_(12)和等轴纳米MgO颗粒。与MM粉末相比,SPS压块的硬度增加归因于Mg_(17)Al_(12)和MgO相的形成而增强。

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