首页> 外文期刊>Transactions of the Indian Institute of Metals >Effect of Input Power and Temperature on the Cavitation Intensity During the Ultrasonic Treatment of Molten Aluminium
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Effect of Input Power and Temperature on the Cavitation Intensity During the Ultrasonic Treatment of Molten Aluminium

机译:超声处理熔融铝时输入功率和温度对空化强度的影响

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摘要

Experimental results of ultrasonic processing of liquid aluminium with a 5 kW magnetostrictive transducer and a 20 mm titanium sonotrode excited at 17 kHz are reported in this study. A unique high-temperature cavitometer sensor, placed at various locations in the liquid melt, measured cavitation activity at various acoustic power levels and different temperature ranges. The highest cavitation intensity in the liquid bulk is achieved below the surface of the sonotrode, at the lowest temperature and with an applied power of 3.5 kW. This two-fold mechanism is related to (a) acoustic shielding and (b) the tendency of liquid aluminium to release hydrogen when the temperature drops, thus promoting multiple cavitation events. Understanding these mechanisms in liquid metals can result in a major breakthrough for the optimization of ultrasound applications to liquid metal processing.
机译:本研究报告了用5 kW磁致伸缩换能器和20 mm钛超声焊极在17 kHz激发下对液态铝进行超声处理的实验结果。独特的高温空化仪传感器放置在熔体中的各个位置,可在各种声功率水平和不同温度范围内测量空化活动。在超声波发生器的表面以下,最低的温度和3.5 kW的施加功率下,可实现液团中最高的空化强度。这种双重机制与(a)隔音和(b)温度下降时液态铝释放氢的趋势有关,从而促进了多种空化现象。了解液态金属中的这些机制可以为优化超声在液态金属加工中的应用带来重大突破。

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