首页> 外文期刊>Metallurgical and Materials Transactions A >Diffusion of Zn in Nanostructured Aluminum Alloys Produced by Surface Mechanical Attrition Treatment
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Diffusion of Zn in Nanostructured Aluminum Alloys Produced by Surface Mechanical Attrition Treatment

机译:表面机械磨损处理产生的纳米结构铝合金中锌的扩散

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摘要

After surface nanocrystallization of pure Al and a cast Al-Si alloy through surface mechanical attrition treatment (SMAT), 200- to 300-μm-thick Zn coatings were deposited on the nanostructured surface using the clod spray technique. Subsequently, diffusion of Zn into the Al substrate was induced by postspray annealing treatment at various temperatures for different times. The diffusion kinetics of Zn in the nanostructured surface layers was studied in terms of the Zn concentration profile in the substrate by using scanning electron microscopy (SEM) and electron probe microscopy analysis (EPMA). Experimental results show that not only the diffusivity of Zn in the nanocrystalline grains is significantly increased compared with the diffusion in the coarse grained counterpart, but the temperature at which noticeable Zn diffusion in Al alloys occurs is also reduced from 573 K (300 °C) in coarse-grained Al alloys to 523 K (250 °C) in nanostructured alloys. In addition, because the nanocrystalline grains produced by SMAT in Al-Si alloys are much smaller than those in pure Al due to the effect of eutectic Si, the diffusion of Zn in the SMATed Al-Si alloy is much faster than that in the SMATed pure Al. It is believed that the high diffusivity of Zn in the nanocrystalline Al grains is attributed to the large fraction of grain boundaries that act as fast diffusion channel. The effect of thermal stability of the nanocrystalline grains on Zn diffusion in the SMATed Al alloys is also discussed.
机译:通过表面机械磨损处理(SMAT)对纯Al和铸造Al-Si合金进行表面纳米结晶后,使用凝块喷涂技术将200至300μm厚的Zn涂层沉积在纳米结构表面上。随后,通过在不同温度下进行不同时间的后喷雾退火处理来诱导Zn扩散到Al衬底中。通过使用扫描电子显微镜(SEM)和电子探针显微镜分析(EPMA),根据衬底中Zn的浓度分布,研究了Zn在纳米结构表面层中的扩散动力学。实验结果表明,与粗晶粒对应物中的扩散相比,不仅锌在纳米晶粒中的扩散率显着提高,而且铝合金中明显出现锌扩散的温度也从573 K(300°C)降低。在纳米晶粒合金中,粗晶粒铝合金中的碳含量达到523 K(250°C)。此外,由于共晶Si的作用,SMAT在Al-Si合金中产生的纳米晶粒比纯Al中的纳米晶粒小得多,因此Zn在SMATed的Al-Si合金中的扩散比在SMATed中的快得多。纯铝。据信,Zn在纳米晶体Al晶粒中的高扩散性归因于充当快速扩散通道的大部分晶界。还讨论了纳米晶粒的热稳定性对SMATed铝合金中Zn扩散的影响。

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  • 来源
    《Metallurgical and Materials Transactions A》 |2012年第7期|p.2378-2389|共12页
  • 作者单位

    Division of Materials, School of Mechanical and Mining Engineering, University of Queensland, St Lucia, Brisbane, QLD, 4072, Australia;

    Division of Materials, School of Mechanical and Mining Engineering, University of Queensland, St Lucia, Brisbane, QLD, 4072, Australia;

    Shenyang National Laboratory for Materials Science, Institute of Metal Research, Chinese Academy of Sciences, Shenyang, 110016, P.R. China;

    Division of Materials, School of Mechanical and Mining Engineering, University of Queensland, St Lucia, Brisbane, QLD, 4072, Australia;

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