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Study on electromechanical coupling model of piezoelectric ultrasonic transducer

机译:压电超声换能器机电耦合模型研究

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In this paper, an electromechanical coupling model of piezoelectric ultrasonic transducer is proposed. The structure of piezoelectric ultrasonic transducer is designed to be a sandwich type piezoelectric-metal composite beam with an exponential variable cross section working at second-order bending vibration mode. Then, the bending vibration model is solved by way of the Timoshenko beam theory. According to vibration model and electromechanical equivalent diagram, the effective electromechanical coupling factor of piezoelectric ultrasonic transducer is obtained. When overall size of the transducer remains unchanged, the influence of piezoelectric ceramics to effective electromechanical coupling factor is studied by changing the position of piezoelectric ceramics. The most reasonable transducer structure is got by optimizing the structure of transducer. By using FEA, the proposed analytical model is analysed and validated.
机译:本文提出了压电超声换能器的机电耦合模型。压电超声换能器的结构设计为具有指数可变横截面的夹层型压电金属复合梁,该梁在第二阶弯曲振动模式下工作。然后,通过Timoshenko梁理论求解弯曲振动模型。根据振动模型和机电等效图,得到压电超声换能器的有效机电耦合系数。当换能器的整体尺寸保持不变时,通过改变压电陶瓷的位置来研究压电陶瓷对有效机电耦合系数的影响。通过优化换能器的结构可以获得最合理的换能器结构。通过使用有限元分析,对提出的分析模型进行了分析和验证。

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