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Research on force-sensing element's spatial arrangement of piezoelectric six-component force/torque sensor

机译:压电六分量力/力矩传感器力传感元件的空间布置研究

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摘要

This paper proposes a novel piezoelectric six-component force/torque sensor with four-point supporting structure, and makes research on force-sensing element's spatial arrangement of the novel sensor. Two kinds of different spatial arrangements are advanced, lozenge and square arrangement. The mathematical models are built and calculated. The influence on using performance of the two kinds of different spatial arrangements of the sensor is analyzed by FEM [ANSYS software). In order to investigate the validity of the proposed method, a prototype of piezoelectric six-component force/ moment sensor is developed with two kinds of different spatial arrangements, and characteristic tests of the piezoelectric six-component force/moment sensor are performed. The test shows that both of the different spatial arrangement sensors could be used to measure six-component force/torque, but the square arrangement piezoelectric six-component force/moment sensor is more suitable for measurement of six-component force/torque on axis. The interference errors of square arrangement sensor are less than 5%, which are lower than those of the lozenge arrangement sensor. The natural frequencies in six directions are analyzed and discussed.
机译:提出了一种新型的具有四点支撑结构的压电六分量力/力矩传感器,并对这种传感器的力传感元件的空间布置进行了研究。两种不同的空间布置是先进的,菱形和正方形布置。建立并计算数学模型。通过FEM [ANSYS软件]分析了传感器的两种不同空间布置对使用性能的影响。为了研究该方法的有效性,研制了具有两种不同空间布置的压电六分量力/力矩传感器的原型,并对压电六分量力/力矩传感器进行了性能测试。测试表明,两个不同的空间布置传感器都可以用于测量六分量力/扭矩,但是方形布置的压电六分量力/力矩传感器更适合于测量轴向六分量力/扭矩。方形排列传感器的干扰误差小于5%,低于菱形排列传感器的干扰误差。分析并讨论了六个方向的固有频率。

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