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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Semi-active fuzzy control of machine tool chatter vibration using smart MR dampers
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Semi-active fuzzy control of machine tool chatter vibration using smart MR dampers

机译:使用智能MR阻尼器的机床颤振半主动模糊控制

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摘要

Dynamic stability of cutting processes against chatter vibration is a key requirement for high-speed machining and high material removal rate with high-quality surface finish. In the present work, the stiffness and damping of the machine tool are varied semi-actively by means of a magnetorheological (MR) damper to suppress chatter. An integrated mechatronic model is presented for the chatter analysis of a machine tool equipped with MR damper. Since the structure becomes nonlinear in the presence of MR damper, a novel chatter detection index (CDI) is developed to detect chatter from time-domain vibration signals. Subsequently, a fuzzy controller is designed to compute the best supply voltage to MR damper based on the measured vibration signals. The obtained results from the numerical analysis of the integrated model are encouraging, demonstrating a significant improvement in the dynamic stability of machining process, as well as the ability of detecting and suppressing chatter.
机译:切削过程对颤振的动态稳定性是高速加工和高材料去除率以及高质量表面质量的关键要求。在当前的工作中,机床的刚度和阻尼通过磁流变(MR)阻尼器半主动地变化,以抑制颤动。提出了集成的机电一体化模型,用于对配有MR阻尼器的机床进行颤振分析。由于在存在MR阻尼器的情况下该结构变为非线性,因此开发了一种新颖的颤振检测指标(CDI)来从时域振动信号中检测颤动。随后,设计了一个模糊控制器,根据测得的振动信号计算出最佳的MR阻尼器电源电压。从集成模型的数值分析中获得的结果令人鼓舞,证明了加工过程的动态稳定性以及检测和抑制颤动的能力得到了显着改善。

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