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Investigation of Electromagnetic and Mechanical Stirring Sequence Effects on Production of Magnesium Matrix Nanocomposite

机译:镁基质纳米复合材料生产电磁与机械搅拌序列效应的研究

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摘要

In this article, mechanical and electromagnetic stirring methods were employed in different sequences during the stir casting process in order to fabricate metal matrix nanocomposite. Sequence of stirring methods can affect particle distribution and porosity of the composite and consequently alter microstructural and mechanical properties. To investigate the stirring effects, AZ31B/1.5 vol% nano-Al2O3 composites were produced using different stirring processes. Next, the as-cast billets were hot-extruded at 350 degrees C using 20:1 extrusion ratio. The results showed that the sequence of the mechanical and electromagnetic stirring methods have considerable effects on porosity, grain size, microhardness, tensile properties, and high cycle fatigue behavior of the composites. The best mechanical and microstructural properties were obtained by the mechanical stirring method followed by the electromagnetic stirring. The samples produced by this method exhibited 44.7% decrease in grain size, 40.8% increase in hardness, 12.3% enhancement in ultimate tensile strength, and 16.5% improvement in maximum elongation, compared to the monolithic AZ31B sample. Additionally, the endurance limit of the composite enhanced about 21% in high cycle fatigue regime. On the other hand, nanocomposite fabricated by mechanical stirring method showed the poorest behavior under cyclic loading.
机译:在本文中,在搅拌铸造过程中,在不同序列中使用机械和电磁搅拌方法,以制造金属基质纳米复合材料。搅拌方法的序列可以影响复合材料的颗粒分布和孔隙率,从而改变微观结构和机械性能。为了研究搅拌效果,使用不同的搅拌方法生产AZ31B / 1.5 Vol%纳米Al 2 O 3复合材料。接下来,使用20:1挤出比在350℃下热挤出铸坯。结果表明,机械和电磁搅拌方法的序列对复合材料的孔隙率,粒度,微硬度,拉伸性能和高循环疲劳行为具有相当大的影响。通过机械搅拌方法随后进行电磁搅拌而获得最佳的机械和微观结构性能。通过该方法产生的样品表现出44.7%的粒度降低,硬度增加40.8%,增强的最终拉伸强度增强12.3%,与单片AZ31B样品相比,最大伸长率提高了16.5%。另外,复合材料的耐久极限在高循环疲劳方案中提高了约21%。另一方面,通过机械搅拌方法制造的纳米复合材料显示了循环载荷下最贫困的行为。

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