Optimal design of high precision compliant guide mechanism using gene algorithm and Taguchi-based sensitivity analysis

Van-Khien Nguyen, H. Pham, H. Pham
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引用次数: 5

Abstract

This paper presents the optimal design of a compliant guide mechanism (CGM) for high precision CNC turning manufacturing. Genetic algorithm (GA) and finite element analysis (FEA) are used during the optimization process of the mechanism. Before the implementation of GA, sensitivity analysis of design variables is performed by using the combination of FEA-based experiments, Taguchi method and variance analysis ANOVA. The designed CGM is used as an amplification mechanism for the precision tool feeder of a CNC machine from the ultra-precision actuation of a piezo actuator (PZT). The design is validated in a 3-dimensional FEA model using Ansys. The result shows that the maximum amplification ratio obtained from the CGM is 6.8 with a very high linearity for the transformation.
基于基因算法和田口灵敏度分析的高精度柔顺导向机构优化设计
提出了一种适用于高精度数控车削加工的柔性导向机构的优化设计。在机构优化过程中采用了遗传算法和有限元分析方法。在实施遗传算法之前,采用基于有限元的实验、田口法和方差分析ANOVA相结合的方法对设计变量进行敏感性分析。利用压电致动器的超精密驱动,将所设计的CGM作为数控机床精密刀具进给的放大机构。在Ansys的三维有限元模型中对设计进行了验证。结果表明,CGM的最大放大比为6.8,线性度较高。
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