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Analytical model of a giant magnetostrictive resonance transducer

机译:巨磁致伸缩共振换能器的解析模型

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Resonance transducers have been widely developed and studied, as they can be profitably used in many application such as liquid atomizing and sonar technology. The active element of these devices can be a giant magnetostrictive material (GMM) that is known to have significant energy density and good performance at high frequencies. The paper introduces an analytical model of GMM transducers to describe their dynamics in different working conditions and to predict any change in their performance. The knowledge of the transducer behavior, especially in operating conditions different from the ideal ones, is helpful in the design and fabrication of highly efficient devices. This transducer is design to properly work in its second mode of vibration and its working frequency is around 8000 Hz. Most interesting parameters of the device, such as quality factor, bandwidth and output strain are obtained from theoretical analysis.
机译:共振换能器已经得到广泛的开发和研究,因为它们可以在许多应用中获利,例如液体雾化和声纳技术。这些设备的有源元件可以是巨大的磁致伸缩材料(GMM),已知该材料具有很高的能量密度和在高频下的良好性能。本文介绍了GMM换能器的分析模型,以描述其在不同工作条件下的动态并预测其性能的任何变化。换能器性能的知识,特别是在与理想条件不同的工作条件下的知识,对于设计和制造高效设备很有帮助。该换能器设计为在第二振动模式下正常工作,其工作频率约为8000 Hz。该器件最有趣的参数,例如品质因数,带宽和输出应变,是从理论分析中获得的。

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