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Structural-Acoustic Coupling Effects on the Non-Vacuum Packaging Vibratory Cylinder Gyroscope

机译:结构-声耦合对非真空包装振动圆柱陀螺仪的影响

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摘要

The resonant shells of vibratory cylinder gyroscopes are commonly packaged in metallic caps. In order to lower the production cost, a portion of vibratory cylinder gyroscopes do not employ vacuum packaging. However, under non-vacuum packaging conditions there can be internal acoustic noise leading to considerable acoustic pressure which is exerted on the resonant shell. Based on the theory of the structural-acoustic coupling, the dynamical behavior of the resonant shell under acoustic pressure is presented in this paper. A finite element (FE) model is introduced to quantitatively analyze the effect of the structural-acoustic coupling. Several main factors, such as sealing cap sizes and degree of vacuum which directly affect the vibration of the resonant shell, are studied. The results indicate that the vibration amplitude and the operating frequency of the resonant shell will be changed when the effect of structural-acoustic coupling is taken into account. In addition, an experiment was set up to study the effect of structural-acoustic coupling on the sensitivity of the gyroscope. A 32.4 mV/°/s increase of the scale factor and a 6.2 Hz variation of the operating frequency were observed when the radial gap size between the resonant shell and the sealing cap was changed from 0.5 mm to 20 mm.
机译:振动圆柱陀螺仪的共振壳通常包装在金属盖中。为了降低生产成本,一部分振动圆柱陀螺仪不采用真空包装。但是,在非真空包装条件下,可能会产生内部噪声,从而导致相当大的声压,该声压会施加在谐振外壳上。基于结构声耦合理论,提出了共振壳在声压作用下的动力学行为。引入有限元(FE)模型来定量分析结构声耦合的影响。研究了几个主要因素,例如密封帽的尺寸和真空度,它们直接影响共振壳的振动。结果表明,当考虑结构声耦合的影响时,谐振壳的振幅和工作频率将发生变化。此外,建立了一个实验来研究结构声耦合对陀螺仪灵敏度的影响。当谐振壳体和密封盖之间的径向间隙尺寸从0.5 mm更改为20 mm时,比例因子增加了32.4 mV /°/ s,工作频率变化了6.2 Hz。

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