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Milling workpiece chatter avoidance using piezoelectric active damping: a feasibility study

机译:使用压电主动阻尼铣削工件颤振的可行性研究

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摘要

During the milling of thin-walled and flexible structures such as those manufactured for the aerospace industries, workpiece chatter can become a key factor that limits productivity. Chatter is a form of self-excited vibration that can be stabilized by increasing the damping of the vibrating structure. In the present study, an experimental investigation is described which assesses the feasibility of using piezoelectric active vibration control to mitigate workpiece chatter in milling. A positive position feedback control strategy is used, and a series of milling tests is performed, which demonstrate a sevenfold improvement in the limiting stable depth of cut. The practical issues concerning, the application of this technique are then discussed.
机译:在铣削薄壁柔性结构(例如为航空航天工业制造的结构)时,工件的颤振可能成为限制生产率的关键因素。颤振是一种自激振动的形式,可以通过增加振动结构的阻尼来使其稳定。在本研究中,描述了一项实验研究,评估了使用压电主动振动控制来减轻铣削中工件颤动的可行性。使用了正位置反馈控制策略,并执行了一系列铣削测试,这些测试证明了极限稳定切削深度提高了七倍。然后讨论与该技术的应用有关的实际问题。

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