Impact of outgassing and its corrective methods to improve the vacuum stability in the Coriolis Vibratory Gyroscope

IF 0.6 Q4 ENGINEERING, MECHANICAL Journal of Measurements in Engineering Pub Date : 2022-02-01 DOI:10.21595/jme.2022.22212
Gopala Krishna Murthy Mittapally, D. Dantala, Chhabra Inder Mohan, N. V. N. R. Pasalapudi, K. C. Das
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Abstract

. Coriolis Vibratory Gyroscope (CVG) is an inertial angular rate measurement sensor. CVG sensor comprises of metal coated hemispherical quartz vibrating structure as the rotation sensing element. It is forced to vibrate at one of its resonant modes by electrostatic excitation. Because of the limited flexibility of the quartz sensing element, the amplitude is limited to the submicron level. An ultra-high vacuum environment is required for the sensing element to sustain vibration for a long time. The criticality in the sensor development is to maintaining an ultra-high vacuum environment for the sensing element. Sensor suffers a problem of vacuum instability during the operation due to the outgassing from its components. This paper presents a novel approach in the identification of various outgassing sources that exist in the sensor, mitigation plan to minimize outgassing rate by selection of suitable raw material, suitable fabrication process of the components, and the surface characterization etc. The research work also presents the cost-effective experimental methodology to measure the outgassing rate from the sensor components to assess the CVG vacuum life, the requirement of the getter to maintain the ultra-high vacuum level throughout the CVG operation.
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放气对提高科里奥利振动陀螺真空稳定性的影响及校正方法
科里奥利振动陀螺仪(CVG)是一种惯性角速率测量传感器。CVG传感器包括金属涂层的半球形石英振动结构作为旋转传感元件。静电激励迫使它以一种共振模式振动。由于石英传感元件的灵活性有限,振幅被限制在亚微米水平。感测元件需要超高真空环境以长时间维持振动。传感器开发的关键是为传感元件维持超高真空环境。传感器在运行过程中由于其部件的放气而存在真空不稳定的问题。本文提出了一种识别传感器中存在的各种放气源的新方法,通过选择合适的原材料、合适的部件制造工艺和表面表征等来降低放气率的缓解计划。研究工作还提出了一种成本效益高的实验方法,用于测量传感器组件的放气率,以评估CVG真空寿命,即吸气剂在整个CVG操作过程中保持超高真空水平的要求。
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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来源期刊
Journal of Measurements in Engineering
Journal of Measurements in Engineering ENGINEERING, MECHANICAL-
CiteScore
2.00
自引率
6.20%
发文量
16
审稿时长
16 weeks
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