压电驱动器和非线性刚性机制的合和预负荷分析
Wei Wang1, Jinchuan Zheng1, Zhe Sun2
1School of Engineering, Swinburne University of Technology, Melbourne, VIC 3122, Australia.
Micromachines
|September 27, 2025
概括
本研究探讨了预负载如何影响压电执行器 (PZT) 和非线性刚性机制 (NSM) 进行精确控制. 最佳预装载可确保连续接触,增强系统稳定性和定位阶段的位移一致性.
科学领域:
- 机械工程 机械工程
- 控制系统工程 控制系统工程
- 材料科学 材料科学 材料科学
背景情况:
- 在先进的制造和科学仪器仪表中,精确的定位阶段至关重要.
- 压电驱动器 (PZT) 提供高分辨率,但需要与机械元件进行仔细的集成.
- 非线性刚性机制 (NSM) 引入了动态行为和力传递的复杂性.
研究的目的:
- 在不同预装载条件下研究PZT和NSM之间的动态合.
- 建立一个标准,防止PZT和NSM之间的结构分离.
- 为了确定在精确定位中可靠执行的最佳预负载.
主要方法:
- 基于加速度匹配的无分离标准的分析推导.
- 静态和动态模拟用于分析系统频率和变形.
- 对预加载对阶段分离和位移的影响的实验验证.
主要成果:
- 通过分析得出最低预装载要求,以确保连续接触.
- 从0N增加预负载到10N提高了系统的自然频率,从214.21Hz提高到258.17Hz.
- 一个10N的预负载阻止了PZT-NSM的分离,并实现了54.35μm到129.42μm之间的位移.
结论:
- 预负载对于管理动态合和防止PZT-NSM系统中分离至关重要.
- 优化的预装载增强了系统的刚性,减少了非线性变形,并改善了位移一致性.
- 获得的分析结果为非线性精确定位阶段的预负载设置提供了指导.
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