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Nano-Refinement, Nano-Consolidation: Different Fabrication Routes of Nano-Crystalline Aluminium Alloys

机译:纳米精炼,纳米固结:纳米晶铝合金的不同制造途径

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The aim of the present work was to compare microstructures and mechanical properties of nano-Al alloys fabricated by two different methods: (i) SPD induced grain refinement, (ii) plastic consolidation of nano-powders or nano-crystalline ribbons. SPD grain refinement has been implemented by hydrostatic extrusion, HE. The ribbons were rapidly solidified using a melt spinning methods. Plastic consolidation of powder and ribbons was conducted by warm extrusion. The results of the studies show that by applying various fabrication routes for a given chemical composition, diverse nano-structures can be obtained, which differ in terms of grain size and shape, grain boundary character and dislocation density. As a result, the alloys also differ significantly in the mechanical properties. The findings are discussed in terms of the possibilities for optimizing properties of the bulk-nano-metals.
机译:本工作的目的是比较通过两种不同方法制造的纳米铝合金的微观结构和力学性能:(i)SPD诱导的晶粒细化,(ii)纳米粉末或纳米晶带的塑性固结。 SPD晶粒细化已通过静液压挤出HE进行。使用熔融纺丝方法将带快速固化。粉末和色带的塑料固结通过热挤压进行。研究结果表明,通过对给定的化学成分采用各种制造途径,可以获得多种纳米结构,这些纳米结构的晶粒尺寸和形状,晶界特征和位错密度各不相同。结果,合金的机械性能也明显不同。讨论的结果讨论了优化体纳米金属性能的可能性。

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