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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Theoretical study on the static performance of piezoelectric ceramic-polymer composites with 2-2 connectivity
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Theoretical study on the static performance of piezoelectric ceramic-polymer composites with 2-2 connectivity

机译:2-2连通性的压电陶瓷-聚合物复合材料静态性能的理论研究

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摘要

The static equilibrium conditions have been derived for piezoelectric-ceramic-polymer composite structures. Rigorous solutions are obtained for a 2-2 composite of lamellar configuration. Under a uniaxial stress or an electric field the strain profile becomes inhomogeneous due to different elastic stiffness of the two components (hard piezoelectric ceramics and soft polymer). The stress transfer between the two components is identified as due to an additional shear stress produced at the ceramic-polymer interface, and the amplification factor is defined for the enhancement of the response of the active piezoelectric ceramic resulting from this stress transfer. It is shown that this enhancement effect not only depends on the volume percentage of the active component but also on the aspect ratio of the two components.
机译:已经推导了压电-陶瓷-聚合物复合结构的静态平衡条件。对于层状结构的2-2复合材料,获得了严格的解决方案。在单轴应力或电场下,由于两个组件(硬压电陶瓷和软聚合物)的不同弹性刚度,应变曲线变得不均匀。可以确定这两个组件之间的应力传递是由于在陶瓷-聚合物界面处产生的附加剪切应力引起的,放大系数的定义是为了增强由该应力传递引起的有源压电陶瓷的响应。结果表明,这种增强效果不仅取决于活性成分的体积百分比,还取决于两种成分的纵横比。

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