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Investigating the influence of the constituent materials on the performance of periodic piezoelectric composite arrays

机译:研究组成材料对周期性压电复合材料阵列性能的影响

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摘要

This paper describes a theoretical investigation into the influence of the constituent materials on periodic composite array transducer performance. A finite element (FE) model, configured in PZFlex, is used to analyze the performance of a wedge coupled array transducer operating into a steel component. Here, the improvements offered by new single crystal piezoelectric materials are compared to standard PZT‐based configurations. In addition, new passive polymer materials, possessing low longitudinal loss and high shear loss, are evaluated for their potential to significantly reduce inter‐element mechanical cross talk. The FE results illustrate the potential for the next generation of array transducers incorporating these new materials and this is highlighted in the A‐scan predictions from simulated defects.
机译:本文描述了有关组成材料对周期复合阵列换能器性能影响的理论研究。在PZFlex中配置的有限元(FE)模型用于分析在钢部件中工作的楔形耦合阵列换能器的性能。在这里,将新型单晶压电材料提供的改进与基于PZT的标准配置进行了比较。此外,对具有低纵向损耗和高剪切损耗的新型无源聚合物材料进行了评估,以显着降低元素间机械串扰的潜力。有限元结果说明了整合了这些新材料的下一代阵列换能器的潜力,这在模拟缺陷的A扫描预测中得到了强调。

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