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Investigation on Eigenfrequency of a Cylindrical Shell Resonator under Resonator-Top Trimming Methods

机译:共振器顶部微调法研究圆柱壳共振器的固有频率

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摘要

The eigenfrequency of a resonator plays a significant role in the operation of a cylindrical shell vibrating gyroscope, and trimming is aimed at eliminating the frequency split that is the difference of eigenfrequency between two work modes. In this paper, the effects on eigenfrequency under resonator-top trimming methods that trim the top of the resonator wall are investigated by simulation and experiments. Simulation results show that the eigenfrequency of the trimmed mode increases in the holes-trimming method, whereas it decreases in the grooves-trimming method. At the same time, the untrimmed modes decrease in both holes-trimming and grooves-trimming methods. Moreover, grooves-trimming is more efficient than holes-trimming, which indicates that grooves-trimming can be a primary trimming method, and holes-trimming can be a precision trimming method. The rigidity condition after grooves-trimming is also studied to explain the variation of eigenfrequency. A femtosecond laser is employed in the resonator trimming experiment by the precise ablation of the material. Experimental results are in agreement with the simulation results.
机译:谐振器的本征频率在圆柱壳振动陀螺仪的操作中起着重要作用,微调的目的是消除作为两种工作模式之间本征频率之差的频率分裂。本文通过仿真和实验研究了在对谐振腔壁顶部进行修整的谐振腔顶部修整方法下对本征频率的影响。仿真结果表明,微调模式的特征频率在微调方法中增加,而在微调方法中降低。同时,在孔修整和凹槽修整方法中,未修整模式都会减少。而且,凹槽修整比孔修整更有效,这表明凹槽修整可以是主要的修整方法,而孔修整可以是精确的修整方法。还研究了切槽后的刚度条件,以解释特征频率的变化。飞秒激光通过材料的精确烧蚀在谐振器修整实验中使用。实验结果与仿真结果吻合。

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