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Propagation of Power Ultrasound in Calcium Ferrite Melt

机译:电力超声在铁氧体熔体中的传播

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Ultrasonic vibration was introduced into calcium ferrite (CF) melt in order to develop a new sintering process. Based on the acoustic refraction and reflection principles, ultrasonic propagation between amplitude transformer and CF melt has been analyzed and discussed. In addition, numerical simulation of ultrasonic propagation in CF melt has also been carried out using finite element method. The distribution of acoustic pressure in CF melt were obtained, and the effects of ultrasonic power and frequency on acoustic pressure distribution were also investigated. The results show that increasing ultrasonic power promotes the acoustic pressure amplitude in the CF melt, while increasing frequency decrease the acoustic pressure amplitude. The acoustic pressure amplitude with the frequency closer to the resonant frequency may get the best cavitation effect because its average acoustic pressure is greater than those of others.
机译:将超声波振动引入铁素体(CF)熔体中以开发新的烧结过程。基于声折射和反射原理,分析并讨论了幅度变压器和CF熔体之间的超声波传播。此外,还使用有限元法进行CF熔体中超声波传播的数值模拟。获得了CF熔体中声压分布,还研究了超声波功率和频率对声压分布的影响。结果表明,增加超声波功率促进CF熔体中的声压幅度,同时增加频率降低声压幅度。由于其平均声压大于其他声压,具有更接近谐振频率的频率的声压幅度可能得到最佳的空化效果。

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