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Sensitivity of Contactless Ultrasound Processing to Variations of the Free Surface of the Melt with Induction Heating

机译:非接触超声处理对熔体自由表面变化的敏感性,感应加热

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Contactless ultrasound treatment can be useful for high-temperature or reactive alloys in the liquid state, where contact with an immersed vibrating probe is undesirable. The alternating component of the Lorentz force can generate sound pressure levels leading to cavitation of gas bubbles in the melt, through acoustic resonance. Resonance is a function of the speed of sound in the liquid, the shape of the volume containing it and surrounding boundary conditions. Induction forces applied to a crucible lead to bulk stirring and in general deform the free surface, whose precise shape may influence the resonance conditions. This effect is inves-tigated here by multi-physics computer modelling. Calculated results for aluminium melts are compared with experimental data and conclusions are drawn as to the sensitivity to process parameters and the reliability of this type of ultrasound metal processing.
机译:非接触式超声处理可用于液态的高温或反应合金,其中与浸入的振动探针接触是不希望的。洛伦兹力的交替组件可以通过声谐振产生导致气泡空气的声压水平,导致熔体中的气泡。共振是液体中声音速度的函数,其体积的形状含有它和周围的边界条件。施加到坩埚铅的感应力以体积搅拌,通常变形,其精确形状可以影响共振条件。通过多物理计算机建模,此效果在此引发。计算铝熔体的结果与实验数据进行比较,并将结论绘制到处理参数的灵敏度和这种类型的超声金属加工的可靠性。

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