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Vibration amplitude and induced temperature limitation of high power air-borne ultrasonic transducers

机译:大功率机载超声换能器的振幅和感生温度限制

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摘要

The acoustic impedances of matching layers, their internal loss and vibration amplitude are the most important and influential parameters in the performance of high power airborne ultrasonic transducers. In this paper, the optimum acoustic impedances of the transducer matching layers were determined by using a genetic algorithm, the powerful tool for optimizating domain. The analytical results showed that the vibration amplitude increases significantly for low acoustic impedance matching layers. This enhancement is maximum and approximately 200 times higher for the last matching layer where it has the same interface with the air than the vibration amplitude of the source, lead zirconate titanatepizo electric while transferring the 1 kWis desirable. This large amplitude increases both mechanical failure and temperature of the matching layers due to the internal loss of the matching layers. It has analytically shown that the temperature in last matching layer with having the maximum vibration amplitude is high enough to melt or burn the matching layers. To verify suggested approach, the effect of the amplitude of vibration on the induced temperature has been investigated experimentally. The experimental results displayed good agreement with the theoretical predictions.
机译:匹配层的声阻抗,其内部损耗和振动幅度是大功率机载超声换能器性能中最重要和影响最大的参数。在本文中,使用遗传算法(优化域的强大工具)确定了换能器匹配层的最佳声阻抗。分析结果表明,低声阻抗匹配层的振动幅度显着增加。这种增强是最大的,对于最后一个匹配层,其与空气的交界面要比源的振动幅度大,约为200倍,锆锆钛酸铅电传递1 kW时是理想的。由于匹配层的内部损耗,这种大幅度增加了匹配层的机械故障和温度。分析地表明,具有最大振动幅度的最后匹配层中的温度足够高,足以熔化或燃烧匹配层。为了验证建议的方法,已对振动幅度对感应温度的影响进行了实验研究。实验结果与理论预测吻合良好。

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