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An analysis of nonlinear vibrations of coupled thickness-shear and flexural modes of quartz crystal plates with the homotopy analysis method

机译:同质分析法分析石英晶体板厚度-剪切和弯曲模式耦合的非线性振动

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We investigated the nonlinear vibrations of the coupled thickness-shear and flexural modes of quartz crystal plates with the nonlinear Mindlin plate equations, taking into consideration the kinematic and material nonlinearities. The nonlinear Mindlin plate equations for strongly coupled thickness- shear and flexural modes have been established by following Mindlin with the nonlinear constitutive relations and approximation procedures. Based on the long thickness-shear wave approximation and aided by corresponding linear solutions, the nonlinear equation of thickness-shear vibrations of quartz crystal plate has been solved by the combination of the Galerkin and homotopy analysis methods. The amplitudefrequency relation we obtained showed that the nonlinear frequency of thickness-shear vibrations depends on the vibration amplitude, thickness, and length of plate, which is significantly different from the linear case. Numerical results from this study also indicated that neither kinematic nor material nonlinearities are the main factors in frequency shifts and performance fluctuation of the quartz crystal resonators we have observed. These efforts will result in applicable solution techniques for further studies of nonlinear effects of quartz plates under bias fields for the precise analysis and design of quartz crystal resonators.
机译:我们考虑了运动学和材料非线性,利用非线性Mindlin板方程研究了石英晶体板厚度-剪切和弯曲模式耦合的非线性振动。通过遵循非线性本构关系和近似程序,建立了非线性耦合的厚度剪切和弯曲模态的Mindlin板方程。基于长的厚度-剪切波近似,并借助相应的线性解,结合Galerkin和同伦分析方法,求解了石英晶体板厚度-剪切振动的非线性方程。我们得到的振幅频率关系表明,厚度-剪切振动的非线性频率取决于板的振动幅度,厚度和长度,这与线性情况有很大的不同。这项研究的数值结果还表明,运动非线性和材料非线性都不是我们观察到的石英晶体谐振器的频移和性能波动的主要因素。这些努力将产生适用的解决方案技术,以进一步研究在偏置场下石英板的非线性效应,以精确分析和设计石英晶体谐振器。

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