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The vibrational properties of the high power ultrasonic focused radiator with rodlike and tubular structures in a composite vibration

机译:棒状和管状结构大功率超声聚焦辐射器在复合振动中的振动特性

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In this paper, a high power ultrasonic (HPU) focused radiator composed of a sandwich longitudinal transducer, a metal rod with barbell structure and a long metal tube is investigated. The physical mechanism of the HPU focused radiator is due to intensive radial vibration of the long metal tube excited by the longitudinal vibration of the sandwich transducer and the metal rod. The electromechanical equivalent circuit for the composite vibration of the HPU focused radiator is derived, and the resonance frequency equations are obtained. The composite vibrational modes of the radiator are analyzed and the structure dimensions for the intense composite vibration of the radiator are optimized. The resonance frequency and the harmonic response curves as well as the vibrational displacement distribution are numerically simulated and experimentally measured. It has been shown that the analytical and numerical results are in good agreement with experimental data. The present radiator may be used in HPU applications, such as ultrasonic cleaning, ultrasonic extraction and ultrasonic sonochemistry.
机译:本文研究了一种由三明治纵向换能器,具有杠铃结构的金属棒和一根长金属管组成的高功率超声(HPU)聚焦辐射器。 HPU集中式散热器的物理机制是由于长金属管的强烈径向振动被夹芯换能器和金属杆的纵向振动所激发。推导了HPU聚焦散热器复合振动的机电等效电路,得到了共振频率方程。分析了散热器的复合振动模式,优化了散热器强烈复合振动的结构尺寸。数值模拟和实验测量了共振频率和谐波响应曲线以及振动位移分布。结果表明,分析和数值结果与实验数据吻合良好。本散热器可用于HPU应用中,例如超声清洗,超声提取和超声声化学。

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