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Surface Hardening of Aluminium Alloy with Addition of Zinc Particles by Friction Stir Processing

机译:铝合金表面硬化通过摩擦搅拌加工加入锌颗粒

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Mechanical alloying can be carried out by a method known as friction stir processing, whereby solid Zn particles in a solution are distributed onto an aluminium alloy plate. The aim of this study was to determine the effects of a volume of Zn particles on the mechanical and physical properties of aluminium 1xxx alloy that had been subjected to friction stir processing. The specimens were plates composed of 1xxx series aluminium. A groove, measuring 12 mm in diameter, was pierced to various depths, and the Zn particles in these containers were then subjected to friction stir processing using a pin-less tool with a diameter of 15 mm. The results showed that the highest hardness was found in the uppermost layer of the workpiece, and this gradually decreased with thickness. An increase in the amount of Zn particles caused an increase in material hardness. The highest hardness of 87.1 HV in the friction stir-processed AA1100 was obtained at the highest volume of Zn compared to the hardness of 44.5 HV, which was obtained for the specimen without the addition of Zn.
机译:机械合金化可以通过称为摩擦搅拌加工的方法进行,由此溶液中的固体Zn颗粒分布在铝合金板上。本研究的目的是确定Zn颗粒体积对已经进行摩擦搅拌加工的铝1xxx合金的机械和物理性质的影响。标本由1xxx系列铝构成板。将12mm的凹槽刺穿到各种深度,然后使用直径为15mm的销的工具对这些容器中的Zn颗粒进行摩擦搅拌加工。结果表明,在工件的最上层中发现了最高硬度,并且这种情况下逐渐减小厚度。 Zn颗粒量的增加导致材料硬度增加。与44.5HV的硬度相比,在最高体积的Zn的最高体积下获得87.1HV的最高硬度,与44.5HV的硬度相比,该试样在不添加Zn的情况下获得。

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