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首页> 外文期刊>Journal of Materials Science >Defect depth profiling after sphere indentation and blasting in aluminum and aluminum alloy detected by positron annihilation
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Defect depth profiling after sphere indentation and blasting in aluminum and aluminum alloy detected by positron annihilation

机译:用正电子an没法检测铝和铝合金中的球形压痕和爆破后的缺陷深度轮廓

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摘要

The paper presents the experimental results of positron annihilation measurements of the subsurface zones in aluminum and aluminum alloy exposed to the indentation of the small steel ball or blasting by the silicon carbide particles. The measurements of the Doppler broadening of the annihilation line and positron lifetime (PL) enabled the depth profile of open volume defects induced by indentation and blasting processes to be obtained. The coincidence of the von Mises criterion for yield with the onset of the increase of the defect concentration at certain depth was detected. It was established that the defects created in the pure aluminum and the aluminum alloy detected by positrons are different. However, the kinds of induced defects do not change with depth. The PL measurements indicate the presence of vacancy clusters in samples exposed to blasting. The vacancy clusters created in the aluminum alloy are larger than in the pure aluminum.
机译:本文介绍了在暴露于小钢球压痕或碳化硅颗粒爆破的铝和铝合金表面区域正电子an没测量的实验结果。对the灭线的多普勒展宽和正电子寿命(PL)的测量使得能够获得由压痕和喷砂过程引起的开孔缺陷的深度分布。在一定深度处,发现了冯·米塞斯(von Mises)屈服准则与缺陷浓度增加的开始之间的一致性。已经确定,在纯铝和正电子检测到的铝合金中产生的缺陷是不同的。但是,诱发缺陷的种类不会随深度而变化。 PL测量表明暴露于爆破的样品中存在空位簇。铝合金中产生的空位簇比纯铝中大。

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  • 来源
    《Journal of Materials Science》 |2003年第18期|3755-3763|共9页
  • 作者

    Ewa Dryzek;

  • 作者单位

    H. Niewodniczański Institute of Nuclear Physics;

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  • 正文语种 eng
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