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Extended Model and Control of Regenerative Chatter Vibrations in Orthogonal Cutting

机译:正交切削中再生颤振的扩展模型和控制

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Turning machining is an important manufacturing process, widely used in industry. Dynamic interaction between the tool and the workpiece may cause regenerative chatter, which is associated with problems of poor surface finish, reduced product quality and low productivity. The demand for high accuracy motivates development of active vibration control methods that are based on realistic dynamical models of the turning process. This paper discusses the development of an active robust control law that is based on an extended regenerative chatter vibration model for orthogonal cutting. Its novelty stems from the way the workpiece elastic behavior is taken into consideration. The presented numerical results show that the vibration level can be reduced significantly, even in the presence of external disturbances, parametric uncertainty and (open loop) unstable machining conditions.
机译:车削加工是重要的制造工艺,广泛用于工业中。刀具与工件之间的动态相互作用可能会导致再生颤动,并伴有表面光洁度差,产品质量降低和生产率低下的问题。对高精度的需求推动了基于振动过程的逼真的动力学模型的主动振动控制方法的发展。本文讨论了一种主动的鲁棒控制定律的发展,该定律基于用于正交切削的扩展再生颤振振动模型。它的新颖性源于考虑到工件弹性行为的方式。给出的数值结果表明,即使存在外部干扰,参数不确定性和(开环)不稳定的加工条件,振动水平也可以显着降低。

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