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Design optimization and experimental study of acoustic transducer in Near Field Acoustic Levitation

机译:近场声学悬浮近场声换能器的设计优化与实验研究

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Acoustic transducers with large radiation surface are commonly used in non-contact levitation and transportation systems. Traditional modeling can not predict its dynamic performance precisely. There is not enough documented information on design and optimization. A coupled 3D model has been built in this work. Modal and harmonic analysis has been performed to investigate mechanical and electrical behaviors. Identical experimental conditions were simulated by finite element method modeling to investigate size effect and optimize the transducer. Experiment has been set up to validate the model. The good agreement between the simulated and experimental results shows that the model in design procedure provides an optimal tool to construct an acoustic transducer used in Near Field Acoustic Levitation.
机译:具有大辐射表面的声学传感器通常用于非接触式悬浮和运输系统。传统建模不能准确地预测其动态性能。有关设计和优化的记录信息还没有足够的信息。在这项工作中建立了耦合的3D模型。已经进行了模态和谐波分析来研究机械和电能行为。通过有限元方法建模模拟相同的实验条件,以研究尺寸效应并优化换能器。实验已经设置为验证模型。模拟和实验结果之间的良好一致表明,设计程序中的模型提供了最佳工具,用于构建用于近场声学悬浮的声学换能器。

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