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首页> 外文期刊>Materials Science and Engineering >Heterogeneous Coarsening Of Pb Phase And The Effect Of Cu Addition On It In A Nanophase Composite Of Al-10 Wt%pb Alloy Prepared By Mechanical Alloying
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Heterogeneous Coarsening Of Pb Phase And The Effect Of Cu Addition On It In A Nanophase Composite Of Al-10 Wt%pb Alloy Prepared By Mechanical Alloying

机译:机械合金化制备的Al-10 Wt%pb合金纳米相复合物中Pb的异相粗化和Cu对其的影响

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摘要

A nanophase composite of Al-10 wt%Pb alloy was prepared by mechanical alloying. The coarsening behavior of Pb phase in the composite during heating process was investigated by X-ray diffraction, scanning electron microscopy, transmission electron microscopy, and nanoindentation test. The present work shows that the Pb phase grew substantially and had two different size distributions when the heating temperature was above 823 K. The different size distributions of Pb phase were owing to different grain size ranges of Al matrix in different regions, which led to the different growth rates of the Pb phase in those regions. It has been proposed that the different size ranges of Al grain appeared upon heating were originated from a statistical size distribution of Al grains in the as-milled powder. With the addition of a small amount of Cu, the heterogeneous growth of Pb phase can be suppressed, and the coarsening of Pb phase shows two distinct rates. This indicates that the coarsening is mainly governed by grain boundary diffusion and lattice diffusion of Al matrix in the initial stage and the later one, respectively.
机译:通过机械合金化制备了Al-10 wt%Pb合金的纳米相复合材料。通过X射线衍射,扫描电子显微镜,透射电子显微镜和纳米压痕试验研究了复合材料中Pb相在加热过程中的粗化行为。目前的工作表明,当加热温度高于823 K时,Pb相大量增长,并具有两种不同的尺寸分布。Pb相的不同尺寸分布是由于Al基体在不同区域的晶粒尺寸范围不同而导致的。在那些地区,铅相的增长率不同。已经提出,加热时出现的Al晶粒的不同尺寸范围源自研磨后的粉末中Al晶粒的统计尺寸分布。通过添加少量的Cu,可以抑制Pb相的异质生长,并且Pb相的粗化表现出两个不同的速率。这表明,粗化主要由初始阶段和后期的Al基体的晶界扩散和晶格扩散决定。

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