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Finite element analysis on 1-3 piezocomposite rings for ultrasonic transducer applications

机译:用于超声换能器的1-3个压电复合材料环的有限元分析

摘要

In this study, a commercial finite element code (FEM), ANSYS, is used to study the behaviors of 1-3 lead zirconate titante (PZT)/epoxy composite rings. The composite rings are fabricated by a dice-and-fill technique with an epoxy width of 80μm. By using different number of cuts per direction (cpd), the composites with PZT volume fraction (φ) from 0.88 to 0.93 could be obtained. It is found that the lateral characteristics (radial modes) of a PZT ring can be reduced significantly by using a 1-3 composite ring. Three-dimensional finite element models are built to understand and study the vibration characteristics of the composite rings. Good agreements are found between experimental results and FEM simulations. Results from this study can be used to optimize the number of cpd of the composite rings for practical transducer applications.
机译:在这项研究中,商业有限元代码(FEM)ANSYS用于研究1-3锆钛酸铅(PZT)/环氧复合环的行为。复合材料环通过切块和填充技术制造,环氧宽度为80μm。通过在每个方向上使用不同数量的切口(cpd),可以获得PZT体积分数(φ)为0.88至0.93的复合材料。发现通过使用1-3个复合环可以显着降低PZT环的横向特性(径向模式)。建立三维有限元模型来理解和研究复合材料环的振动特性。在实验结果和有限元模拟之间找到了很好的协议。这项研究的结果可用于优化实际换能器应用中复合环的cpd数量。

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