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Studies on the mechanism of the structural evolution in Cu-Al-Ni elemental powder mixture during high energy ball milling

机译:高能球磨过程中Cu-Al-Ni元素粉末混合物结构演变的机理研究

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摘要

The present work is focused on the understanding of the phase and microstructural evolution during mechanical alloying of 82Cu-14Al-4Ni powder mixture. Morphology and phase evolution in the milled powder at different stages of milling were studied and a physical modeling of the mechanical alloying has been proposed. It has been demonstrated that milling process mainly consisted of four stages, i.e., flattening and cold welding of powder particles to form a porous aggregate followed by its fragmentation, plastic deformation of small aggregates to form layered particles, severe plastic deformation of layered particles to form elongated flaky particles, and fragmentation of elongated particles into smaller size flaky powder particles. It was also found that the initial period of milling resulted in rapid grain refining, whereas alloying was accomplished during the later period of milling. TEM study of the 48 h milled powder revealed that the microstructure was equiaxed nanocrystalline in nature. It was found that the grains were either randomly distributed or arranged as banded type. A possible explanation for such a behavior has been presented.
机译:目前的工作集中在对82Cu-14Al-4Ni粉末混合物机械合金化过程中的相和微观组织演变的理解。研究了不同研磨阶段的研磨粉末的形貌和相演化,并提出了机械合金化的物理模型。已经证明,研磨过程主要包括四个阶段,即粉状颗粒的压扁和冷焊以形成多孔聚集体,然后破碎,小聚集体的塑性变形形成层状颗粒,层状颗粒的严重塑性变形形成。细长的薄片状颗粒,以及细长的颗粒破碎成较小尺寸的薄片状粉末颗粒。还发现,研磨的初始阶段导致晶粒的快速细化,而合金化则在研磨的后期阶段完成。对48 h研磨粉末的TEM研究表明,其微观结构本质上是等轴纳米晶。发现晶粒是随机分布的或排列成带状的。已经提出了这种行为的可能解释。

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