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Influence of Two-Stage Stir Casting Process on Mechanical Characterization and Wear Behavior of AA2014-ZrO 2 Nano-composites

机译:两阶段搅拌铸造过程对AA2014-ZRO <下标> 2 纳米复合材料的力学表征和磨损行为的影响

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摘要

In the current research work synthesis, characterization, mechanical and wear behavior of 2, 4 and 6?wt% of nano-ZrO~(2)particulate-reinforced AA2014 alloy composites have been investigated. The matrix phase of AA2014 alloy containing nano-ZrO~(2)particulates composites was geared up by two-stage melt stir system. After the preparation, the organized composites were studied by SEM and EDS for analyzing the microstructures and chemical elements. Further, mechanical characterization and wear studies of as-cast AA2014 alloy and AA2014-nano-ZrO~(2)composites were studied. From the investigation, it was observed that the tensile behavior of composites was enhanced due to addition of nano-sized ZrO~(2)particles in the AA2014 alloy matrix. In nano-ZrO~(2)-reinforced composites, the percentage elongation decreased. Further, the wear loss increased with respect to the load for all the prepared materials. To study the fractography and different wear mechanisms for various test conditions of different compositions, tensile fractured surfaces and the worn surfaces were observed by SEM.
机译:在目前的研究工作合成中,研究了2,4和6·WT%的纳米ZrO〜(2)颗粒增强AA2014合金复合材料的表征,机械和磨损行为。含纳米ZrO〜(2)颗粒复合材料的AA2014合金的基质相通过两阶段熔体搅拌系统。制备后,通过SEM和EDS进行组织复合材料,用于分析微观结构和化学元素。此外,研究了铸造AA2014合金的机械表征和磨损研究和AA2014- ZrO〜(2)复合材料。从调查中,观察到,由于在AA2014合金基质中加入纳米大小ZrO〜(2)颗粒,复合材料的拉伸行为提高。在纳米ZrO〜(2) - 重新凝结复合材料中,伸长率下降。此外,相对于所有制备材料的负荷增加,磨损损失增加。为了研究不同组合物的各种试验条件的Fractography和不同的磨损机制,通过SEM观察拉伸裂缝表面和磨损的表面。

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