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Principle Research on a Single Mass Piezoelectric Six-Degrees-of-Freedom Accelerometer

机译:单质量压电六自由度加速度计的原理研究

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摘要

A signal mass piezoelectric six-degrees-of-freedom (six-DOF) accelerometer is put forward in response to the need for health monitoring of the dynamic vibration characteristics of high grade digitally controlled machine tools. The operating principle of the piezoelectric six-degrees-of-freedom accelerometer is analyzed, and its structure model is constructed. The numerical simulation model (finite element model) of the six axis accelerometer is established. Piezoelectric quartz is chosen for the acceleration sensing element and conversion element, and its static sensitivity, static coupling interference and dynamic natural frequency, dynamic cross coupling are analyzed by ANSYS software. Research results show that the piezoelectric six-DOF accelerometer has advantages of simple and rational structure, correct sensing principle and mathematic model, good linearity, high rigidity, and theoretical natural frequency is more than 25 kHz, no nonlinear cross coupling and no complex decoupling work.
机译:为了对高级数控机床的动态振动特性进行健康监测,提出了信号质量压电六自由度(六自由度)加速度计。分析了压电六自由度加速度计的工作原理,并建立了其结构模型。建立了六轴加速度计的数值模拟模型(有限元模型)。加速度传感元件和转换元件选用压电石英,并通过ANSYS软件分析其静态灵敏度,静态耦合干扰和动态固有频率,动态交叉耦合。研究结果表明,压电六自由度加速度传感器结构简单合理,传感原理和数学模型正确,线性度好,刚性高,理论固有频率大于25 kHz,无非线性交叉耦合,无复杂的解耦工作。

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