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Experimental Investigation of Raster Tool Path Strategy for Friction Stir Processing of Magnesium Alloy

机译:镁合金摩擦搅拌加工光栅工具路径策略的实验研究

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Friction stir processing is an emerging method for refining the grain structure of the metals. Single pass friction stir processing of magnesium alloys has been reported in the literature, and very few works address the multi-pass friction stir processing. However, most of the studies are limited to a very small region and do not show the properties of complete processed blank. In the present work, a raster tool path strategy is adopted to modify the microstracture of the as-cast magnesium alloy. The tool rotation direction and tool shoulder overlap are varied to process the magnesium samples. The microstructural evolution of the processed samples is investigated. Experimental observations show that raster scan parameters significantly affect the microstructural variation within each sample and across the samples. Based on the findings, a raster tool path strategy is proposed for grain refinement without any defect in the processed region.
机译:摩擦搅拌加工是一种用于精制金属晶粒结构的新出现方法。在文献中报道了单通摩擦搅拌加工镁合金,并且很少有效地解决了多通摩擦搅拌加工。然而,大多数研究仅限于非常小的区域,并且不显示完整的处理空白的性质。在本作工作中,采用光栅工具路径策略来改变铸造镁合金的微动画。改变工具旋转方向和刀具肩部重叠以处理镁样品。研究了加工样品的微观结构演化。实验观察结果表明,光栅扫描参数显着影响每个样品内的微观结构变化和整个样品。基于调查结果,提出了一种用于晶粒细化的光栅工具路径策略,而没有处理区域的缺陷。

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