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首页> 外文期刊>Metallurgical and Materials Transactions A >High-Speed Synchrotron X-ray Imaging Studies of the Ultrasound Shockwave and Enhanced Flow during Metal Solidification Processes
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High-Speed Synchrotron X-ray Imaging Studies of the Ultrasound Shockwave and Enhanced Flow during Metal Solidification Processes

机译:金属凝固过程中超声冲击波和增强流动的高速同步X射线成像研究

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摘要

The highly dynamic behavior of ultrasonic bubble implosion in liquid metal, the multiphase liquid metal flow containing bubbles and particles, and the interaction between ultrasonic waves and semisolid phases during solidification of metal were studied in situ using the complementary ultrafast and high-speed synchrotron X-ray imaging facilities housed, respectively, at the Advanced Photon Source, Argonne National Laboratory, US, and Diamond Light Source, UK. Real-time ultrafast X-ray imaging of 135,780 frames per second revealed that ultrasonic bubble implosion in a liquid Bi-8 wt pctZn alloy can occur in a single wave period (30 kHz), and the effective region affected by the shockwave at implosion was 3.5 times the original bubble diameter. Furthermore, ultrasound bubbles in liquid metal move faster than the primary particles, and the velocity of bubbles is 70 ~ 100 pct higher than that of the primary particles present in the same locations close to the sonotrode. Ultrasound waves can very effectively create a strong swirling flow in a semisolid melt in less than one second. The energetic flow can detach solid particles from the liquid–solid interface and redistribute them back into the bulk liquid very effectively.
机译:使用互补的超快和高速同步加速器X-原位研究了液态金属中超声波气泡爆裂,含有气泡和颗粒的多相液态金属流以及金属凝固过程中超声波与半固相之间的相互作用的高动态行为。射线成像设备分别位于美国阿贡国家实验室的高级光子源和英国的钻石光源中。每秒135,780帧的实时超快X射线成像显示,液态Bi-8wt pctZn合金中的超声气泡内爆可在单个波周期(30 kHz)内发生,内爆冲击波影响的有效区域为原始气泡直径的3.5倍。此外,液态金属中的超声波气泡运动速度比初级粒子快,并且气泡的速度比在靠近超声波发生器的相同位置存在的初级粒子的速度高70〜100 pct。超声波可以在不到一秒钟的时间内非常有效地在半固态熔体中产生强大的涡流。高能流可以使固体颗粒从液-固界面分离,并非常有效地将其重新分配回大块液体中。

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