Design Optimization and Analysis of a Damped Flexure-Guided Stage

Zhong Chen, Xiaomeng Jiang, Xianmin Zhang
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引用次数: 6

Abstract

Enforced modal damping of a piezoelectric driven positioning stage can improve its control bandwidth in avoiding of the shortcomings due to its lightly damping characteristics. This paper presents a novel damping flexure-guided mechanism with the comb-like substructures, which play a role of damping enhancement. This kind of design maintains the merits of a conventional compliant mechanism, such as fabrication methods, meanwhile, shearing damping is realized by a comb-like constrained-layer damping structure. A multi-objective optimization based on maximum control bandwidth and response smoothness is built up and implemented based on an Abaqus-Phython-Matlab cosimulation tool chain. Based on the optimal solution, a scanning transient analysis and comparison are implemented. The results indicate that the optimized flexure-guided mechanism has large modal damping and smoother frequency response than the non-optimized damping and non-damping mechanism.
阻尼柔性导向平台的设计优化与分析
压电驱动定位台采用强制模态阻尼可以改善其控制带宽,避免了其轻阻尼特性的缺点。提出了一种具有梳状子结构的新型阻尼挠性导向机构,该机构具有增强阻尼的作用。该设计保留了传统柔性机构的优点,如制作方法等,同时通过梳状约束层阻尼结构实现剪切阻尼。基于abaquus - phython - matlab协同仿真工具链,建立并实现了基于最大控制带宽和响应平滑度的多目标优化算法。基于最优解,进行了扫描瞬态分析和比较。结果表明,优化后的挠性导向机构比未优化的阻尼和非阻尼机构具有更大的模态阻尼和更平滑的频率响应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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