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Synchrotron quantification of ultrasound cavitation and bubble dynamics in Al-10Cu melts.

机译:Al-10Cu熔体中超声空化和气泡动力学的同步加速器定量。

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摘要

Knowledge of the kinetics of gas bubble formation and evolution under cavitation conditions in molten alloys is important for the control casting defects such as porosity and dissolved hydrogen. Using in situ synchrotron X-ray radiography, we studied the dynamic behaviour of ultrasonic cavitation gas bubbles in a molten Al-10wt%Cu alloy. The size distribution, average radius and growth rate of cavitation gas bubbles were quantified under an acoustic intensity of 800W/cm(2) and a maximum acoustic pressure of 4.5MPa (45atm). Bubbles exhibited a log-normal size distribution with an average radius of 15.3±0.5μm. Under applied sonication conditions the growth rate of bubble radius, R(t), followed a power law with a form of R(t)=αt(β), and α=0.0021 andβ=0.89. The observed tendencies were discussed in relation to bubble growth mechanisms of Al alloy melts.
机译:了解在空化条件下熔融合金中气泡形成和逸出的动力学对于控制铸件缺陷(例如孔隙率和溶解氢)非常重要。使用原位同步加速器X射线照相技术,我们研究了Al-10wt%Cu熔融合金中超声空化气泡的动力学行为。在800W / cm(2)的声强和4.5MPa(45atm)的最大声压下,对空化气泡的尺寸分布,平均半径和增长率进行了定量。气泡呈现出对数正态尺寸分布,平均半径为15.3±0.5μm。在施加的超声条件下,气泡半径的增长率R(t)遵循幂律,形式为R(t)=αt(β),α= 0.0021和β= 0.89。讨论了与铝合金熔体的气泡生长机理有关的观察趋势。

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