Quartz cylindrical resonators for mid-accuracy coriolis vibratory gyroscopes

B. Lunin, M. Basarab, Aleksei Chumankin, A. Yurin
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引用次数: 1

Abstract

Design and simple manufacturing technology of inexpensive quartz resonators for Coriolis vibratory gyroscopes (CVGs) of medium and low accuracy are proposed. The resonators are made from a piece of a commercially available fused quartz tube. The proposed technology makes it possible to produce such resonators without the use of precision machining, while the quality factor of such a resonator in the kilohertz frequency range reaches 1,000,000. Although this quality factor is much lower than that of precision quartz hemispherical resonators, it considerably exceeds the Q-factor of metal cylindrical resonators. In addition, the stability of the dissipative characteristics of the new resonators is also significantly increased. On the whole, this reduces the systematic drift of the device and its instability. These advantages of the new resonators allow us to significantly increase the accuracy of CVGs for inertial systems of medium and low accuracy without increasing their cost price. The report presents the designs and characteristics of such resonators, the methods of their balancing, as well as the possible constructive appearance of CVGs based on such resonators.
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用于中等精度科里奥利振动陀螺仪的石英圆柱谐振器
提出了用于中低精度科里奥利振动陀螺仪的廉价石英谐振器的设计和简单制造技术。谐振器是由一块市售的熔融石英管制成的。所提出的技术使这种谐振器不需要使用精密加工就可以生产出来,而这种谐振器在千赫频率范围内的质量因子达到1,000,000。虽然这一品质因子远低于精密石英半球形谐振器,但却大大超过了金属圆柱谐振器的q因子。此外,新型谐振器耗散特性的稳定性也显著提高。总的来说,这减少了器件的系统漂移和不稳定性。新谐振器的这些优点使我们能够在不增加成本价格的情况下显着提高中低精度惯性系统的cvg精度。本文介绍了这种谐振器的设计和特点,它们的平衡方法,以及基于这种谐振器的cvg可能的建设性外观。
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