Adaptive Vibration Control of Machining via PZT Actuator

Efraín Zamora Solórzano, J. A. S. Galíndez, Eduardo Sasía Boya, Joseba Albizuri Irigoien, María H. Fernandes Rodrigues
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Abstract

At present, the techniques developed to control machine tool vibration have been dominated by passive features, focusing on manipulating the cutting parameters such as feed rate, cutting speed, and depth of cut. Since productivity is affected when modifying cutting parameters, other control methods must be investigated. To that end, electroactive actuators and robust control algorithms have attributes that make them potentially effective in reducing the vibration level. In this paper, the successful use of an adaptive control with a piezoelectric actuator to decrease the vibrations in a machine tool is reported.
压电陶瓷作动器加工的自适应振动控制
目前,机床振动控制技术以被动控制为主,主要集中在对进给速度、切削速度和切削深度等切削参数的控制上。由于修改切削参数会影响生产率,因此必须研究其他控制方法。为此,电致动器和鲁棒控制算法具有降低振动水平的潜在有效属性。本文报道了利用压电作动器的自适应控制来降低机床振动的成功方法。
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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