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On the theory of bubble coarsening in metals

机译:论金属粗化的泡沫理论

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摘要

A comprehensive analysis of simulation results obtained recently by the authors in modeling of gas bubble evolution driven by the Ostwald ripening process in irradiated metals has been carried out. Relevant experimental data characterized by a relatively small mean bubble radius measured in a range of about 1-5 nm in stainless steel specimens containing 100 appm He and annealed at 1023 K have also been used in this study. A comparison of both the experimental and simulation data with analytical estimations predicted by the original theory at the late stage of bubble coarsening was considered unsatisfactory. To overcome this inconsistency, a new approach has been applied assuming that bubbles evolve at significantly different rates at either earlier or later stages of the process. Despite the difference of the rates in these cases, a complete similarity of corresponding asymptotic bubble size distributions has been detected. Experimentally observable time dependences of bubble density and mean bubble radius agree well with the recent modeling and our present analysis results. This indicates that Ostwald ripening provides a reasonable explanation for bubble evolution during annealing. Unlike the conventional interpretation of bubble coarsening, growing bubbles attain chemical equilibrium with interstitial gas emitted by shrinking bubbles. It is this assumption which allows for getting the asymptotic bubble size distribution function similar to that given by the classical theory of Ostwald ripening. (C) 2019 Elsevier B.V. All rights reserved.
机译:已经进行了由作者获得的仿真结果的综合分析,该结果在辐照金属中的Ostwald成熟过程驱动的气泡进化中的建模中。在本研究中也使用了在含有100APM的不锈钢样本中测量的相对较小的平均泡沫半径,其特征在于含有100APM的不锈钢样本的相对较小的平均气泡半径,并在1023K下退火。在泡沫粗化晚期的原始理论预测的具有分析估计的实验和模拟数据的比较被认为是不令人满意的。为了克服这种不一致,假设气泡在过程的早期或更高阶段的速率下以显着不同的速率在显着不同的速率下,已经应用了一种新方法。尽管在这些情况下的速率差异,但已经检测到相应的渐近泡沫尺寸分布的完整相似性。实验可观察到的气泡密度和平均泡沫半径的时间依赖性与最近的建模和我们目前的分析结果吻合良好。这表明OSTWALD成熟提供了退火期间气泡演变的合理解释。与传统对泡沫粗化的解释不同,生长气泡达到化学平衡,其通过缩小气泡排放的间质气体。本假设允许获得渐近气泡尺寸分布函数与由Ostwald成熟的经典理论给出的渐近气泡尺寸分布函数。 (c)2019 Elsevier B.v.保留所有权利。

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