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A comparison of time-scales governing the interaction and growth of hydrogen bubbles with a solidifying front

机译:比较具有凝固前沿的氢气泡相互作用和生长的时标

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Elongated hydrogen porosity appears in aluminum based cast components and can lead to crack initiation. In this study, a comparison between the growth rates of hydrogen bubbles and the solidifying front during the process of engulfment is presented. Extending upon a previously developed order estimate for the ratio of growth rates of the two interfaces, it is found that dimensionless grouping leads to two distinct time scales that correspond to solidification and hydrogen diffusion. The analysis proves the hypothesized thought-experiment and explains the mechanism of hydrogen bubble elongation. The scaling prediction is also validated with available experimental studies, and shows that the rate of elongation varies directly with the pore radii and inversely with the cooling rates.
机译:铝基铸件中出现氢孔隙率增加,并可能导致裂纹萌生。在这项研究中,提出了在吞噬过程中氢气泡的增长率和凝固前沿之间的比较。在对两个界面的增长率之比的先前开发的阶数估计的基础上,发现无因次分组导致对应于凝固和氢扩散的两个不同的时间尺度。分析证明了假设的思想实验,并解释了氢气泡伸长的机理。结垢预测还通过可用的实验研究得到了验证,结果表明,伸长率直接随孔隙半径而变化,而随冷却速率成反比。

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