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Thermally activated precipitation at deformation-induced defects in Fe-Cu and Fe-Cu-B-N alloys studied by positron annihilation spectroscopy

机译:用正电子an没光谱研究Fe-Cu和Fe-Cu-B-N合金中形变缺陷的热活化沉淀

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摘要

We have investigated the influence of deformation-induced defects on the isothermal precipitation at 550?°C in as-quenched (solute-supersaturated) and annealed (solute-depleted) Fe-Cu and Fe-Cu-B-N alloys by positron annihilation spectroscopy and hardness tests. Using the coincidence Doppler broadening technique, the evolution of local environment at the positron annihilation sites (open-volume defects, Cu precipitates, and matrix) was monitored as a function of the aging time. For all samples, plastic deformation causes a pronounced change in S and W parameters signaling the formation of open-volume defects. For the as-quenched samples, aging results in a sharp decrease in the amount of open-volume defects combined with the rise of a strong copper signature, which can be attributed to preferential copper precipitation at the open-volume defects introduced by plastic deformation. In contrast, the open-volume defects of the annealed samples can only be reduced partially. Both the hardness tests and the positron annihilation spectroscopy indicate that the addition of B and N to the Fe-Cu alloy causes a significant acceleration of the precipitation in the as-quenched alloys.
机译:我们用正电子an没光谱法研究了变形诱导缺陷对550°C淬火(溶质-过饱和)和退火(溶质耗尽)的Fe-Cu和Fe-Cu-BN合金中等温析出的影响。硬度测试。使用同时多普勒展宽技术,监测了正电子sites没部位(开孔缺陷,Cu析出物和基体)的局部环境随时效时间的变化。对于所有样品,塑性变形都会导致S和W参数发生明显变化,从而表明形成了大体积缺陷。对于淬火后的样品,时效会导致开孔缺陷数量的急剧减少以及强铜特征的增加,这可以归因于塑性变形引入的开孔缺陷处的优先铜析出。相反,退火样品的开孔缺陷只能部分减少。硬度测试和正电子an没光谱法均表明,向Fe-Cu合金中添加B和N会显着加速淬火后合金中的析出。

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