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Dedicated Finite Elements for Electrode Thin Films on Quartz Resonators

机译:石英谐振器上电极薄膜的专用有限元

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The accuracy of the finite element analysis for thickness shear quartz resonators is a function of the mesh resolution; the finer the mesh resolution, the more accurate the finite element solution. A certain minimum number of elements are required in each direction for the solution to converge. This places a high demand on memory for computation, and often the available memory is insufficient. Typically the thickness of the electrode films is very small compared with the thickness of the resonator itself; as a result, electrode elements have very poor aspect ratios, and this is detrimental to the accuracy of the result. In this paper, we propose special methods to model the electrodes at the crystal interface of an AT cut crystal. This reduces the overall problem size and eliminates electrode elements having poor aspect ratios. First, experimental data are presented to demonstrate the effects of electrode film boundary conditions on the frequency-temperature curves of an AT cut plate. Finite element analysis is performed on a mesh representing the resonator, and the results are compared for testing the accuracy of the analysis itself and thus validating the results of analysis. Approximations such as lumping and Guyan reduction are then used to model the electrode thin films at the electrode interface and their results are studied. In addition, a new approximation called merging is proposed to model electrodes at the electrode interface.
机译:厚度剪切石英谐振器的有限元分析精度是网格分辨率的函数。网格分辨率越精细,有限元解决方案越准确。在每个方向上都需要一定数量的最小元素,以使解收敛。这对计算的存储器提出了很高的要求,并且通常可用存储器不足。通常,电极膜的厚度与谐振器本身的厚度相比非常小。结果,电极元件的长径比非常差,这不利于结果的准确性。在本文中,我们提出了一种特殊的方法来对AT切割晶体的晶体界面处的电极建模。这减小了总的问题尺寸并且消除了具有不良长宽比的电极元件。首先,提供实验数据以证明电极膜边界条件对AT切割板的频率-温度曲线的影响。在代表谐振器的网格上进行有限元分析,然后比较结果以测试分析本身的准确性,从而验证分析结果。然后使用诸如集总和Guyan还原之类的近似值对电极界面处的电极薄膜进行建模,并研究其结果。此外,提出了一种新的近似方法,称为合并,以对电极界面处的电极进行建模。

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