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首页> 外文期刊>Transactions of the Indian Institute of Metals >Numerical Prediction of Effect of Oxide Characteristics on Heterogeneous Nucleation of Bubbles in Aluminium Foaming
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Numerical Prediction of Effect of Oxide Characteristics on Heterogeneous Nucleation of Bubbles in Aluminium Foaming

机译:铝泡沫中氧化物特性对气泡异相成核作用影响的数值预测

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摘要

Effects of oxide wettability, oxide surface cavities and cavity surface area-to-volume ratio on heter ogeneous nucleation of bubbles in hydrogen supersaturated liquid aluminium foam precursor were studied. Increase in cavity surface area-to-volume ratio, oxide contact angle and cavity sharpness led to increase in cavity nucleation rate of bubbles. Oxides with lower contact angles required sharper cavities for nucleation to occur. A characteristic cavity angle exists for given oxide contact angle to make bubble nucleation feasible. A suitable combination of oxide contact angle and cavity angle were selected to estimate heterogeneous nucleation rates for different cavity surface areas and combined with bubble growth analysis to arrive at final bubble size distribution. The mean bubble size predicted numerically compared favourably with experi mental observation on cell size of the foam.
机译:研究了氢过饱和液态铝泡沫泡沫前驱体中氧化物的润湿性,氧化物的表面空腔和空腔的表面积体积比对气泡异质成核的影响。腔体表面积/体积比,氧化物接触角和腔体清晰度的增加导致气泡的腔体成核速率增加。具有较低接触角的氧化物需要更尖锐的空穴才能成核。对于给定的氧化物接触角,存在特征腔角以使气泡成核可行。选择合适的氧化物接触角和腔角的组合来估计不同腔表面积的异质成核速率,并与气泡生长分析相结合以获得最终气泡尺寸分布。在数值上预测的平均气泡尺寸与对泡沫孔尺寸的实验观察相比具有优势。

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