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Morphological and structural studies on Al reinforced by Al2O3 via mechanical alloying

机译:机械合金化Al2O3增强Al的形貌和结构研究

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In the present work, aluminum matrix composite (Al-Al2O3) was produced using mechanical alloying in a planetary ball mill. Aluminum granular in size (1-3 mm) with high amount of alumina particles (x(50) = 7.6 lm) were milled up to 500 minutes in a planetary ball mill to indicate the effect of hard particles on the alloying acceleration. The results revealed that high amount of alumina particles promoted the work hardening and decreased the time of mechanical alloying. Further, the particle size analysis indicated that prolonging the milling time caused the particle size to drop from an initial value of 1-3 mm to about 10 lm during the milling. The X-ray diffraction results demonstrated a continuous decrease in crystallite size in Al phase from 350 to 60 nm. Hardness tests illustrated that hardness increased as a function of milling time. The results verified that the produced composites have a homogeneous distribution of alumina particles in the aluminum matrix. The results showed that the aluminum matrix composite can be produced from the granular Al (mm in size) with micron sized Al2O3 by mechanical alloying process. (C) 2014 The Society of Powder Technology Japan. Published by Elsevier B.V. and The Society of Powder Technology Japan. All rights reserved.
机译:在目前的工作中,在行星式球磨机中使用机械合金化生产了铝基复合材料(Al-Al2O3)。在行星式球磨机中将大小为1-3毫米的氧化铝颗粒(x(50)= 7.6 lm)的铝研磨至500分钟,以表明硬颗粒对合金化加速度的影响。结果表明,大量的氧化铝颗粒可促进加工硬化并减少机械合金化的时间。此外,粒度分析表明,延长研磨时间导致在研磨过程中粒度从1-3mm的初始值下降至约10lm。 X射线衍射结果表明Al相中的微晶尺寸从350nm连续减小至60nm。硬度测试表明,硬度随研磨时间的增加而增加。结果证实了所生产的复合材料在铝基质中具有氧化铝颗粒的均匀分布。结果表明,铝基复合材料可以通过机械合金化工艺从具有微米级Al2O3的颗粒状Al(毫米)制备。 (C)2014日本粉末技术学会。由Elsevier B.V.和日本粉末技术学会出版。版权所有。

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