Stability Analysis of Milling Process With Time-Varying Delays Via Lyapunov-Krasovskii Functional

Jiang He, Chen Yan, Hong-zhang Wang, Dan-Yun Li
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Abstract

The regenerative chatter during milling seriously affects the stability of the system. This paper proposes a method based on Lyapunov-Krasovski functional analysis for the stability of the milling process. First, the mechanism analysis of the milling process is performed, then the state-space equation of the time-varying delay system caused by the regeneration effect is established. Secondly, based on the model of a time-delay system, a stability criterion is developed by constructing an augmented Lyapunov-Krasovski functional (LKF) and using auxiliary function inequality with reciprocally convex combination technology. Finally, the validity of the method is verified through an example, and the milling stability domain lobe diagram with a parameter combination of spindle speed-cutting depth is obtained which provides operational guidelines to guarantee a stable vibration-free process.
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基于Lyapunov-Krasovskii泛函的时变时滞铣削过程稳定性分析
铣削过程中的再生颤振严重影响系统的稳定性。本文提出了一种基于Lyapunov-Krasovski泛函分析的铣削过程稳定性分析方法。首先对铣削过程进行了机理分析,然后建立了由再生效应引起的时变延迟系统的状态空间方程。其次,在时滞系统模型的基础上,通过构造增广Lyapunov-Krasovski泛函(LKF)和利用互凸组合技术的辅助函数不等式,建立了系统的稳定性判据。最后,通过算例验证了该方法的有效性,得到了主轴速度-切削深度参数组合下的铣削稳定性域瓣图,为保证加工过程的稳定无振动提供了操作指导。
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