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Novel actuation approach for active control of slender bars with simulated delayed excitation

机译:模拟延迟激励的纤维杆主动控制的新型致动方法

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摘要

This research is motivated by the problem of regenerative chatter vibration, which is a pronounced problem in machining. The problem of chatter vibration is especially critical in the internal turning process, where the material is removed from the inner part of a rotating workpiece using a slender bar. Active mechatronic solutions to the problem of regenerative chatter vibration in internal turning are mostly given by means of piezoelectric actuators embedded into the boring bar. However, due to the volume needed for accommodation of the actuators, it is difficult to apply these solutions to narrow bars. This paper presents a novel actuation approach with a potential application for active control of regenerative chatter vibration in internal turning. This approach involves a bar whose clamping has an ability to move perpendicularly to the bar axis. In addition, it involves two actuators: one of them is placed near the bar clamping, and another one is placed at the bar clamping. The presented actuation approach is compared to the related approaches in the literature. Additionally, this paper presents a method for robustness analysis of the actively controlled cutting process, which is based on the structured singular value methodology. Experiments performed on a specially designed testbed imitating the internal turning process demonstrate the potential applicability of the introduced actuation approach, as well as the utility of presented robustness analysis method.
机译:该研究是通过再生颤振振动的问题,这是加工中的明显问题。颤振振动的问题在内部转动过程中尤为于临界,其中使用纤维杆从旋转工件的内部移除材料。内部转动中的再生颤振振动问题的主动机电调整解决方案主要通过嵌入镗杆中的压电致动器给出。但是,由于致动器的容纳所需的体积,难以将这些解决方案应用于窄条。本文介绍了一种新型致动方法,具有潜在应用,用于在内部转动中的再生颤振振动的主动控制。该方法涉及夹紧具有垂直于杆轴移动的能力的条形。另外,它涉及两个致动器:其中一个放置在条夹紧附近,另一个位于条夹紧处。将呈现的致动方法与文献中的相关方法进行比较。另外,本文提出了一种用于积极控制切割过程的稳健性分析的方法,其基于结构性奇异值方法。在模仿内部转动过程的专门设计的测试平台上进行的实验证明了引入的致动方法的潜在适用性,以及所提出的鲁棒性分析方法的效用。

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