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Effect of different types of nano-size oxide particulates on microstructural and mechanical properties of elemental Mg

机译:不同类型的纳米氧化物颗粒对元素镁微结构和力学性能的影响

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In the present study, magnesium based composites were fabricated with three different types of 1.1 volume percent nanosize oxide particulate reinforcements (i.e., Al2O3, Y2O3 and ZrO2) using blend-press-sinter methodology avoiding ball milling. Microstructural characterization of the materials revealed reasonably uniform distribution of nano-reinforcement, significant grain refinement and the presence of minimal porosity. Mechanical properties characterization revealed that the incorporation of nano-sized oxide particulates as reinforcement led to a simultaneous increase in hardness, 0.2% yield strength, UTS and ductility of pure magnesium. The results further revealed that the 0.2% yield strength, UTS and ductility combination of the magnesium containing nano-size Al2O3 remained higher when compared to high strength magnesium alloy AZ91 reinforced with much higher amount of micron size SiC particulates. An attempt is made in the present study to correlate the effect of different types of nano-sized oxide particulates on the microstructural and mechanical properties of magnesium. (c) 2006 Springer Science + Business Media, Inc.
机译:在本研究中,使用共混-加压-烧结方法避免了球磨,使用三种不同类型的1.1体积百分比的纳米级氧化物颗粒增强剂(即Al2O3,Y2O3和ZrO2)制造了镁基复合材料。材料的微观结构表征表明,纳米增强材料分布合理,晶粒细化显着且孔隙率极低。力学性能表征表明,纳米氧化物颗粒作为增强材料的加入导致纯镁的硬度,0.2%屈服强度,UTS和延展性同时提高。结果还表明,与用大量微米级SiC颗粒增强的高强度镁合金AZ91相比,含镁纳米级Al2O3的0.2%屈服强度,UTS和延展性组合仍然更高。在本研究中,人们试图将不同类型的纳米级氧化物颗粒对镁的微观结构和力学性能的影响联系起来。 (c)2006年Springer Science + Business Media,Inc.

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