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Determination of the PIC700 Ceramic’s Complex Piezo-Dielectric and Elastic Matrices from Manageable Aspect Ratio Resonators

机译:从可扫描的纵横比谐振器确定PIC700陶瓷复合压电介质和弹性矩阵

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摘要

Achieving good piezoelectric properties, such as the widely reported d33 charge coefficient, is a good starting point in establishing the potential applicability of piezoceramics. However, piezoceramics are only completely characterized by consistent piezoelectric-elastic-dielectric material coefficient matrices in complex form, i.e., including all losses. These matrices, which define the various alternative forms of the constitutive equations of piezoelectricity, are required for reliable virtual prototyping in the design of new devices. To meet this need, ten precise and accurate piezoelectric dielectric and elastic coefficients of the material, including all losses, must be determined for each alternative. Due to the difficulties arising from the coupling of modes when using the resonance method, this complete set of parameters is scarcely reported. Bi0.5Na0.5TiO3-based solid solutions are already commercially available in Europe and Japan. Here, we report a case study of the determination of these sets of material coefficients (diα, giα, eiα and hiα; sE,Dαβ and cE,Dαβ; εTik and εSik; and βTik and βSik), including all losses, of the commercial PIC700 eco-piezoceramic. Plate, disk, and cylinder ceramic resonators of a manageable aspect ratio were used to obtain all the material coefficients. The validation procedure of the matrices is also given by FEA modeling of the considered resonators.
机译:实现良好的压电性能,例如广泛报道的D33电荷系数,是建立压电陶瓷的潜在适用性的良好起点。然而,压电陶瓷仅通过复合形式的一致压电弹性介电材料系数矩阵完全表征,即包括所有损失。这些矩阵,其定义压电性的组成方程的各个替代形式,是在新设备的设计中可靠的虚拟原型设计。为了满足这种需求,必须确定每种替代方案的10个精确和精确的压电电介质和包括所有损耗的材料的弹性系数。由于模式耦合所产生的困难,在使用共振方法时,几乎没有报道这种完整的参数。 Bi0.5na0.5tio3的固体解决方案已经在欧洲和日本商业上可用。在这里,我们报告了对这些材料系数(DIα,Giα,Eiα和Hiα的测定的情况研究; SE,Dαβ和Ce,Dαβ;εtik和εsik;和βtik和βSik),包括所有损失,包括商业PIC700生态压电陶瓷。可管理宽高比的板,盘和圆柱陶瓷谐振器用于获得所有材料系数。 COMED谐振器的FEA建模还给出了矩阵的验证过程。

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