Determination of electromechanical coupling coefficients in transducer materials with high mechanical losses

D. H. Turnbull, M. Sherar, F. Foster
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引用次数: 26

Abstract

An important problem in transducer design is the accurate determination of electromechanical coupling coefficients for piezoelectric materials. The authors report on novel methods for determining both k/sub t/ the thickness mode coefficient, and k/sub 31/, an important parameter for transducer arrays. The coupling coefficients are computed near piezoelectric resonances using Krimholtz-Leedom-Matthaei (KLM) equivalent circuit models. These models have been modified to account for the mechanical losses of the material through an effective attenuation coefficient which can be estimated independently of the coupling coefficient. This measurement theory is applied to three different transducer materials: PVDF (polyvinylidene fluoride), PZT5A and a PZT (lead zinc titanate)/epoxy composite.<>
高机械损耗换能器材料机电耦合系数的测定
压电材料机电耦合系数的准确确定是换能器设计中的一个重要问题。作者报告了确定k/sub - t/厚度模态系数和k/sub - 31/的新方法,k/sub - 31/是传感器阵列的一个重要参数。利用KLM等效电路模型计算了压电谐振附近的耦合系数。这些模型经过修改,通过有效衰减系数来考虑材料的机械损失,该衰减系数可以独立于耦合系数进行估计。这种测量理论适用于三种不同的换能器材料:PVDF(聚偏氟乙烯),PZT5A和PZT(钛酸铅锌)/环氧复合材料
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