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Structure and Deformation Characteristics in Magnesium Alloy ZK51A Reinforced with AIN Nanoparticles

机译:用AIN纳米粒子加固镁合金ZK51a中的结构和变形特性

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The aim of this work was to study the influence of nanoparticles of aluminum nitride on the structure and mechanical properties of magnesium alloy. We examine the resulting magnesium alloys. The experiment consisted in the introduction into the melt of magnesium aluminum nitride powder in an amount of 0.75 and 1.5%. Introduction of nanoparticles into the molten metal was carried out by external vibration exposure. Studies were carried out of aluminum nitride powder, comprising X-ray diffraction analysis to study the morphology using electron microscopy. Introduction of nanoparticles in the alloy increases the pore volume space from 5 to 15% and increased average pore size from 8 to 30 μm. It was shown that the presence of the nanoparticles in an amount of 1.5% increases the alloy properties by more than 30% compared with the reference (non-particulate) alloy. We were obtained diagrams such as stress - strain. It was also carried out studies of the structure and X-ray analysis of the alloys obtained.
机译:这项工作的目的是研究氮化铝纳米颗粒对镁合金结构和力学性能的影响。我们检查所得镁合金。该实验组成,在氮化镁氧化铝粉末的熔体中的含量为0.75和1.5%。通过外部振动暴露进行纳米颗粒进入熔融金属。采用氮化铝粉末进行研究,包括X射线衍射分析,以研究使用电子显微镜的形态学。在合金中引入纳米颗粒增加到孔隙体积空间为5-15%,并且增加了8至30μm的平均孔径。结果表明,与参考(非颗粒)合金相比,纳米颗粒的存在量为1.5%增加了30%以上的合金特性。我们获得了压力 - 应变的图。还进行了对所得合金的结构和X射线分析的研究。

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