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A Novel Turning-Induced-Deformation Based Technique to Process Magnesium Alloys

机译:一种新型转动诱导的变形技术,用于加工镁合金

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摘要

A magnesium alloy was fabricated through the consolidation of chips accumulated during the turning process, followed by cold compaction and hot extrusion. A variation in the depths of cut was done during turning to understand the effect of deformation imparted during primary processing on the mechanical properties of an AZ91 alloy (Mg−9 wt.% Al−1 wt.% Zn−0.3 wt.% Mn). The results revealed a significant improvement in compressive strengths (up to 75%) with increased depth of cut, without compromising ductility through the development of fine-grained structures and prior plastic strain induction. This approach resulted in superior materials vis-a-vis conventional deformation techniques and promotes cost and energy efficiency through recycling industrial metal swarf, which is a significant environmental and economic concern.
机译:通过在转弯过程中积聚的芯片固结,然后进行冷压缩和热挤出来制造镁合金。在转弯期间,切割深度的变化,以了解在AZ91合金的机械性质(Mg-9重量%Al-1重量%Al-1wt.%Zn-0.3重量%Mn)的初步处理期间赋予初级处理赋予的变形效果。结果表明,压缩强度(高达75%)的显着改善,随着切割深度增加,而不会通过开发细粒结构和现有的塑性应变诱导来损害延展性。这种方法导致了常规材料的优异材料,通过回收工业金属糖粉来促进成本和能源效率,这是一个重要的环境和经济问题。

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