石英和硅摆加速度计灵敏元件的设计特点

E. Vetrova, I. Smirnov, D. Kozlov, V. V. Zapetlyaev
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引用次数: 1

摘要

本文综述了利用石英和硅(电容硅和补偿石英钟摆)制成的灵敏元件,通过批量加工获得的摆加速度计的发展变化。介绍了生产敏感元件的工艺特点,特别是硅和石英的液相刻蚀工艺特点。本文分析了深液各向异性和各向同性刻蚀工艺中与生产材料和工艺特点有关的设计和工艺问题。要特别注意扭转元件的设计特点,因为一般来说,设备的输出特性取决于这些元件的生产精度。在SolidWorks仿真软件中对摆杆活动部件的变形参数和刚度进行了仿真。仿真结果表明,通过改变扭力杆的几何形状,可以在较宽的范围内选择必要的关节刚度参数。确定了敏感元件材料加工的最佳参数。已开发的两类加速度计敏感元件生产技术的一个显著特点是它们的群体性。在扫描电子显微镜上对生产的样品进行研究,可以确定敏感元件扭力杆的几何参数。结构的刚度以及加速度计的灵敏度主要取决于这些参数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design Features of Sensitive Elements for Quartz and Silicon Pendulum Accelerometers
The article presents the review of the developed variants of pendulum accelerometers based on sensitive elements made of quartz and silicon (capacitive silicon and compensation quartz pendula) obtained by means of batch volume processing. The features of the technology for producing sensitive elements, in particular liquid etching of silicon and quartz, are given. The paper shows the analysis of the design and technological problems connected with the characteristics of the materials of production and process of the deep liquid anisotropic and isotrope etching. A special attention is given to the design features of torsional elements, because, in general, the output characteristics of the device depend on the production accuracy of such elements. Simulation of the deformation parameters and stiffness of the movable parts of the pendula was carried out in the SolidWorks Simulation program complex. The simulation results showed that it is possible to choose the necessary parameters of stiffness of the joint in a wide range by changing the geometry of the torsion bar. The best parameters for materials processing of the sensitive elements were determined. A distinctive feature of the developed technologies for producing sensitive elements of two types of accelerometers is their group character. A study of the produced samples carried out on the scanning electron microscope made it possible to determine the geometric parameters of the torsion bars of the sensitive elements. The stiffness of the structure and consequently the sensitivity of the accelerometer depended mainly on those parameters.
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