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Calculating the hydrophone response of piezoceramic-rod/piezopolymer-matrix composites

机译:计算压电陶瓷棒/压电聚合物-基质复合材料的水听器响应

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A simple physical model of rod composite piezoelectrics is extended to the case where both the polymer matrix and the ceramic rods are piezoelectric. This model incorporates the physical picture that strains and electric field are equal in both materials along the direction of the rods, while the stresses are equal in the plane perpendicular to the rods. If one switches to a coordinate system in which strain and electric field along the rods and the stresses in the perpendicular plane are the independent coordinates, the material properties of the composite are a simple volume fraction weighted average over the constituents' properties. The hydrophone figure of merit is presented for a PZT5-rod/PVDF-matrix composite. The bulk of the piezoelectric response is provided by the piezoceramic; the anisotropic elastic properties of PVDF make it particularly suitable for the composite; and the fact that the piezoelectric constants of PZT and PVDF differ in sign would cause the two phases to act against each other if they were poled by the same bias field.
机译:棒状复合压电材料的简单物理模型扩展到聚合物基体和陶瓷棒均为压电材料的情况。该模型结合了物理图像,即沿杆的方向,两种材料中的应变和电场均相等,而在垂直于杆的平面中,应力均相等。如果切换到一个坐标系,其中沿杆的应变和电场以及垂直平面中的应力是独立的坐标,则复合材料的材料特性将是成分特性的简单体积分数加权平均值。呈现了PZT5杆/ PVDF矩阵复合材料的水听器品质因数。压电响应的大部分是由压电陶瓷提供的。 PVDF的各向异性弹性使它特别适合于复合材料;并且PZT和PVDF的压电常数符号不同的事实将导致两相在相同的偏置磁场作用下彼此相反。

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