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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Assessing the influence of pillar aspect ratio on the behavior of 1-3 connectivity composite transducers
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Assessing the influence of pillar aspect ratio on the behavior of 1-3 connectivity composite transducers

机译:评估柱高宽比对1-3连接复合换能器性能的影响

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This paper describes a theoretical study, using finite element analysis, into the influence of the ceramic pillar aspect ratio on the behavior of 1-3 connectivity composite transducers. The main objective is to provide working design guidelines for the transducer engineer, with a view toward the cost-effective manufacture of thickness drive and hydrostatic devices. Modal and harmonic analyses are performed to ascertain the conditions under which the composite behaves as a homogenous material, under different values of volume fractions, passive filler material, pillar shape, and distribution. Consequently, a set of criteria is generated to determine analytically the range of aspect ratios for which the composite material behaves homogeneously in the thickness dimension. The influence of polymer loss on these criteria is discussed, along with effects of practical encapsulation and protective layers. Where possible, real data are provided to supplement theoretical predictions, with reasonable correlation between theory and experiment.
机译:本文介绍了使用有限元分析的理论研究,以研究陶瓷柱长宽比对1-3连接复合换能器性能的影响。主要目的是为换能器工程师提供可行的设计指南,以期实现具有成本效益的厚度驱动和静液压装置的制造。进行模态和谐波分析,以确定在不同的体积分数,无源填充材料,柱形和分布情况下,复合材料表现为均质材料的条件。因此,产生了一组标准来分析地确定纵横比的范围,对于该纵横比,复合材料在厚度尺寸上表现均匀。讨论了聚合物损失对这些标准的影响,以及实际封装和保护层的影响。在可能的情况下,提供真实数据以补充理论预测,并在理论和实验之间建立合理的关联。

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