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Enhanced mathematical modeling of the displacement amplification ratio for piezoelectric compliant mechanisms

机译:压电顺应机构的位移放大比的增强数学模型

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Piezo-actuated, flexure hinge-based compliant mechanisms have been frequently used in precision engineering in the last few decades. There have been a considerable number of publications on modeling the displacement amplification behavior of rhombus-type and bridge-type compliant mechanisms. However, due to an unclear geometric approximation and mechanical assumption between these two flexures, it is very difficult to obtain an exact description of the kinematic performance using previous analytical models, especially when the designed angle of the compliant mechanisms is small. Therefore, enhanced theoretical models of the displacement amplification ratio for rhombus-type and bridge-type compliant mechanisms are proposed to improve the prediction accuracy based on the distinct force analysis between these two flexures. The energy conservation law and the elastic beam theory are employed for modeling with consideration of the translational and rotational stiffness. Theoretical and finite elemental results show that the prediction errors of the displacement amplification ratio will be enlarged if the bridge-type flexure is simplified as a rhombic structure to perform mechanical modeling. More importantly, the proposed models exhibit better performance than the previous models, which is further verified by experiments.
机译:在过去的几十年中,压电驱动的基于挠性铰链的柔性机构已广泛用于精密工程中。关于建模菱形和桥式顺应机构的位移放大行为,已有大量出版物。但是,由于这两个挠曲之间的几何近似度和机械假设尚不清楚,因此很难使用以前的分析模型来获得运动性能的准确描述,尤其是当顺应机构的设计角度较小时。因此,提出了基于菱形和桥式柔顺机构的位移放大比的增强理论模型,以基于这两个挠曲之间的独特力分析来提高预测精度。考虑平移和旋转刚度,采用能量守恒定律和弹性梁理论进行建模。理论和有限元结果表明,如果将桥型挠曲简化为菱形结构以进行机械建模,则位移放大率的预测误差将会增大。更重要的是,所提出的模型比以前的模型表现出更好的性能,这已经通过实验得到了进一步的验证。

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