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Synthesis of Nanocrystalline Al2O3 Reinforced Al Nanocomposites by High-Energy Mechanical Alloying: Microstructural Evolution and Mechanical Properties

机译:高能量机械合金化合成纳米晶体Al2O3增强Al纳米复合材料:微观结构演化与机械性能

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The scientific importance of nanocomposites is being increased due to their improved properties. In the current paper, the relationship between the reinforcement weight fraction and Tensile properties of Al/Al2O3 (with a reinforcement weight fraction of 0, 2.5, 5 and 10 wt%) synthesized by high energy ball milling is studied. Scanning electron microscopy analysis, X-ray diffraction analysis and transmission electron microscopy are used to characterize the produced powder. The results show that the addition of Alumina particles accelerates the milling process, leading to faster work hardening rate and fracture of the aluminum matrix. Moreover, Al crystallite size become refined during ball milling of Al powder in the presence of Al2O3 particles. Uniform distribution of nano-sized Al2O3 particles in the Al matrix could be achieved with increase in the reinforcement weight fraction. The microhardness of the composite increases with the increase of the reinforcement weight fraction and it reaches 94 HV at 10 wt% Al2O3 composite. The yield strength and ultimate strength of the composite are also increased by increasing the reinforcement weight fraction.
机译:由于其改善的性能,纳米复合材料的科学重要性增加。在目前的纸张中,研究了通过高能球磨合成的Al / Al 2 O 3的增强重量分数和抗拉性性能之间的关系。扫描电子显微镜分析,X射线衍射分析和透射电子显微镜用于表征产生的粉末。结果表明,加入氧化铝颗粒加速研磨过程,导致铝基质的更快的工作固化率和断裂。此外,在Al 2 O 3颗粒存在下,Al微晶尺寸在Al粉末的球磨期间改进。通过增加增强重量级分,可以实现Al基质中纳米型Al2O3颗粒的均匀分布。复合材料的微硬度随着增强重量馏分的增加而增加,并且它在10wt%Al 2 O 3复合材料中达到94HV。通过增加增强重量级分也增加了复合材料的屈服强度和极限强度。

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