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Optimized process parameters for fabricating metal particles reinforced 5083 Al composite by friction stir processing

机译:摩擦搅拌法制备金属颗粒增强5083 Al复合材料的工艺参数优化

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摘要

Metal matrix composites (MMCs) exhibit improved strength but suffer from low ductility. Metal particles reinforcement can be an alternative to retain the ductility in MMCs (Bauri and Yadav, 2010; Thakur and Gupta, 2007) . However, processing such composites by conventional routes is difficult. The data presented here relates to friction stir processing (FSP) that was used to process metal particles reinforced aluminum matrix composites. The data is the processing parameters, rotation and traverse speeds, which were optimized to incorporate Ni particles. A wide range of parameters covering tool rotation speeds from 1000 rpm to 1800 rpm and a range of traverse speeds from 6 mm/min to 24 mm/min were explored in order to get a defect free stir zone and uniform distribution of particles. The right combination of rotation and traverse speed was found from these experiments. Both as-received coarse particles (70 μm) and ball-milled finer particles (10 μm) were incorporated in the Al matrix using the optimized parameters.
机译:金属基复合材料(MMC)强度有所提高,但延展性较低。金属颗粒增强可以是保持MMC延展性的一种替代方法(Bauri和Yadav,2010; Thakur和Gupta,2007)。然而,通过常规途径加工这种复合材料是困难的。此处提供的数据涉及搅拌摩擦加工(FSP),该搅拌摩擦加工用于加工金属颗粒增强的铝基复合材料。数据是处理参数,旋转速度和移动速度,这些参数经过优化以包含Ni颗粒。为了获得无缺陷的搅拌区和均匀的颗粒分布,探索了范围广泛的参数,涵盖了从1000 rpm到1800 rpm的工具转速以及从6毫米/分钟到24毫米/分钟的移动速度范围。从这些实验中可以找到旋转速度和横向速度的正确组合。使用优化的参数将接收到的粗颗粒(70μm)和球磨细颗粒(10μm)都掺入Al基体中。

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