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首页> 外文期刊>Journal of Dynamic Systems, Measurement, and Control >Adaptive Active Chatter Control in Milling Processes
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Adaptive Active Chatter Control in Milling Processes

机译:铣削过程中的自适应主动颤振控制

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摘要

Chatter is an undesirable dynamic phenomenon in machining processes, which causes cutting disturbance, overcut, quick tool wear, etc., and thus seriously impairs workpiece quality. To mitigate chatter, traditional methods called passive control focus on optimizing working spindle speeds and depths of cut. But they have inherent disadvantages in gaining highly efficient machining. On the contrary, the research in this paper is along the line of active control. Specifically, an adaptive algorithm is developed based on Fourier series analysis to deal with the so-called regenerative cutting force which causes chatter. As a result, chatter is remarkably mitigated. The performance improvement is illustrated by numerical simulation in terms of both stability lobes diagram (SLD) and surface location error (SLE).
机译:颤振是加工过程中不希望出现的动态现象,会引起切削干扰,过切,刀具快速磨损等,从而严重损害工件质量。为了减轻抖动,称为被动控制的传统方法着重于优化工作主轴的速度和切削深度。但是它们在获得高效加工方面具有固有的缺点。相反,本文的研究是沿着主动控制的方向进行的。具体而言,基于傅立叶级数分析开发了一种自适应算法,以处理引起颤动的所谓再生切削力。结果,颤动显着减轻。通过数值仿真,从稳定性凸角图(SLD)和表面位置误差(SLE)方面说明了性能的提高。

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