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Structural Design and Simulation Analysis of Silicon Micro Triaxial Wheel-ring Gyroscope

机译:硅微三轴轮环陀螺仪的结构设计与仿真分析

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Micromechanical gyroscope is one of the important applications of attitude control platform and inertial navigation system. However, domestic gyroscope research and development is not highly integrated at present, and the main research focuses on the design of micro-gyroscope with a single detection axis (especially z-axis detection). In order to realize the monolithic triaxial gyro which can be used in the field of intelligent ammunition, a wheel ring gyro structure is designed. The gyro structure was modeled on the SolidWorks software, and then modal analysis, transient impact response analysis and harmonic response analysis were carried out in the finite element analysis software ANSYS respectively. According to the natural frequency of each mode, the structure size of the gyroscope is optimized. Through the simulation results, it is observed that the frequency split between the working modes is relatively small, and the structure has high mechanical sensitivity. The transient impact simulation of the gyro structure shows that the maximum stress of the sensitive structure under the impact of 10000g@5ms is 394.34Mpa, which proves that the structure has good impact resistance.
机译:微机械陀螺仪是姿态控制平台和惯性导航系统的重要应用之一。但是,目前国内陀螺仪的研发尚未高度整合,主要研究集中在具有单个检测轴(尤其是z轴检测)的微陀螺仪的设计上。为了实现可用于智能弹药领域的整体式三轴陀螺仪,设计了一种轮环陀螺仪结构。在SolidWorks软件上对陀螺结构进行建模,然后分别在有限元分析软件ANSYS中进行模态分析,瞬态冲击响应分析和谐波响应分析。根据每种模式的固有频率,可以优化陀螺仪的结构尺寸。通过仿真结果可以看出,各工作模式之间的频率划分相对较小,并且该结构具有较高的机械灵敏度。陀螺结构的瞬态冲击仿真表明,在10000g @ 5ms的冲击下,敏感结构的最大应力为394.34Mpa,证明该结构具有良好的抗冲击性能。

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