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Structural optimization research on hemispherical resonator gyro based on finite element analysis

机译:基于有限元分析的半球形谐振器陀螺结构优化研究

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Hemispherical shell resonator is the key component of hemispherical resonator gyro (HRG). The finite element model of the resonator of HRG is established based on the dynamic equation with ANSYS. The natural frequency and correlative vibration mode of resonator is calculated by the proposed model. On the theoretical analysis, the influence law of structural parameters on the vibration characteristic is obtained. The structural optimization model is established to guide the structural optimization of parameters. Theoretical and simulative results show that the optimization model can be applied to conduct the optimal structure design of resonator. It provides the theoretical basis and parametric reference for the design of hemispherical shell resonator.
机译:半球壳谐振器是半球谐振器陀螺(HRG)的关键组件。基于ANSYS动力学方程,建立了HRG谐振器的有限元模型。通过该模型计算出谐振器的固有频率和相关振动模式。通过理论分析,得出结构参数对振动特性的影响规律。建立结构优化模型以指导参数的结构优化。理论和仿真结果表明,该优化模型可用于进行谐振器的优化结构设计。它为半球形壳谐振器的设计提供了理论基础和参数参考。

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