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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Full solution, for crystal class 3m, of the Holland-EerNisse complex material-constant theory of lossy piezoelectrics for harmonic time dependence
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Full solution, for crystal class 3m, of the Holland-EerNisse complex material-constant theory of lossy piezoelectrics for harmonic time dependence

机译:对于谐波时间相关的有损耗压电的Holland-EerNisse复合材料常数理论,对于3m晶体,具有完整的解决方案

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A complex material-constant theory of lossy piezoelectrics is fully solved for crystal class 3 m for harmonic time dependence of the fields and stresses. A new demonstration that the theory''s eigen coupling factor equation applies to the lossy alternating current (AC) case also is given. The solution presented for crystal class 3 m provides a complete orthonormal set of eigenvectors and eigenvalues for the eigen coupling factor problem, and it also provides a complete orthonormal set of eigenvectors and eigenvalues for the eigen loss tangent problem, for this crystal class. It is shown that two positive coupling factors are sufficient to express an arbitrary 3 m crystal state. Despite the complex nature of the material constants, the Holland-EerNisse theory produces fully real expressions for the coupling factors. The loss tangent eigenvalues also are fully real and positive. The loss eigenstates are important because driving a crystal in a loss eigenstate tends to minimize the impact of material losses. Given also is a set of loss inequalities for crystal class 3 m. The loss inequalities of crystal class 6 mm are recovered from these when d22 and sE 4 both vanish.
机译:对于3 m晶体,由于场和应力的谐波时间依赖性,完全解决了有损耗压电材料的复杂材料常数理论。还给出了该理论的本征耦合因子方程式适用于有损交流电(AC)情况的新例证。针对3m类晶体提出的解决方案为该晶体类提供了一个完整的特征向量和特征值的正交向量集和特征值,也为该特征类的特征损耗正切问题提供了一个完整的特征向量和特征值正交集合。结果表明,两个正耦合因子足以表示任意3 m晶态。尽管材料常数具有复杂的性质,但是Holland-EerNisse理论还是为耦合因子提供了完全真实的表达式。损耗角正切特征值也完全是实数和正数。损耗本征态很重要,因为在损耗本征态下驱动晶体趋于使材料损耗的影响最小化。还给出了3m级晶体的一组损耗不等式。当d22和sE 4都消失时,可以从中恢复6mm晶体的损耗不均。

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