Influence of elasticity modulus on the natural frequency in hemispherical resonator

Z. Xu, G. Yi, H. Fang, Y. Cao, L. Hu, G. Zhang
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引用次数: 4

Abstract

For any Coriolis vibratory gyroscopes, symmetrically perfect resonator is their core component. In order to analyze the influence of non-uniform elasticity modulus on the natural frequency in resonator, the finite element model of hemispherical resonator is established by using finite element analysis software (ANSYS). The second-order natural frequency of ideal resonator and resonator with elastic modulus non-uniform is analyzed. The relationship between elasticity modulus and natural frequency is established. The first fourth harmonics of elasticity modulus along the circumferential direction in resonator are mainly investigated that dominates mainly the amplitude of uneven elasticity modulus. The influence of the first fourth harmonic of non-uniform elastic modulus on the natural frequency is deeply analyzed, which will cause the natural frequency difference. The influence of the first four harmonics on the frequency difference is almost the same, which will bring approximately equal frequency difference. In order to reduce the influence of elasticity modulus non-uniform on the precision and performance of the HRG, the relative values of first fourth harmonics of elasticity modulus should be less than 1×10−7, which provides a theoretical basis for the manufacturing design and error analysis of resonator.
弹性模量对半球形谐振器固有频率的影响
对称完美谐振器是任何科里奥利振动陀螺仪的核心部件。为了分析非均匀弹性模量对谐振腔固有频率的影响,利用有限元分析软件ANSYS建立了半球形谐振腔的有限元模型。分析了理想谐振腔和弹性模量不均匀谐振腔的二阶固有频率。建立了弹性模量与固有频率的关系。主要研究了谐振腔内弹性模量沿周向的前四次谐波,它主要支配不均匀弹性模量的振幅。深入分析了非均匀弹性模量的一、四次谐波对固有频率的影响。前四次谐波对频差的影响几乎相同,会带来近似相等的频差。为了减小弹性模量不均匀对谐振器精度和性能的影响,弹性模量的一、四次谐波相对值应小于1×10−7,为谐振器的制造设计和误差分析提供理论依据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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