Zeng Libin, Tao Yunfeng, Pan Yao, Liu Jianping, Yang Kaiyong, Luo Hui
College of Advanced Interdisciplinary Studies, National University of Defense Technology, Changsha 410073, China.
Micromachines (Basel). 2021 Aug 30;12(9):1052. doi: 10.3390/mi12091052.
For the axisymmetric shell resonator gyroscopes, the quality factor (Q factor) of the resonator is one of the core parameters limiting their performances. Surface loss is one of the dominating losses, which is related to the subsurface damage (SSD) that is influenced by the grinding parameters. This paper experimentally studies the surface roughness and Q factor variation of six resonators ground by three different grinding speeds. The results suggest that the removal of the SSD cannot improve the Q factor continuously, and the variation of surface roughness is not the dominant reason to affect the Q factor. The measurement results indicate that an appropriate increase in the grinding speed can significantly improve the surface quality and Q factor. This study also demonstrates that a 20 million Q factor for fused silica cylindrical resonators is achievable using appropriate manufacturing processes combined with post-processing etching, which offers possibilities for developing high-precision and low-cost cylindrical resonator gyroscopes.
对于轴对称壳体谐振器陀螺仪,谐振器的品质因数(Q 因子)是限制其性能的核心参数之一。表面损耗是主要损耗之一,它与受磨削参数影响的亚表面损伤(SSD)有关。本文通过实验研究了三种不同磨削速度下磨削的六个谐振器的表面粗糙度和 Q 因子变化。结果表明,去除亚表面损伤并不能持续提高 Q 因子,表面粗糙度的变化也不是影响 Q 因子的主要原因。测量结果表明,适当提高磨削速度可以显著提高表面质量和 Q 因子。本研究还表明,采用适当的制造工艺结合后处理蚀刻,熔融石英圆柱谐振器可实现 2000 万的 Q 因子,这为开发高精度、低成本的圆柱谐振器陀螺仪提供了可能性。