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HYBRID SPINDLE CURRENT REGULATION SYSTEM WITH TOOL WEAR DETECTION ALGORITHM

机译:带有工具磨损检测算法的混合主轴电流调节系统

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摘要

In this paper, a hybrid adaptive control algorithm that controls feedrate to regulate spindle current and detects tool wear is proposed. For this purpose, variation of steady state spindle current, time constant, and time delay were examined through experiments based on step end milling under various cutting conditions. The developed hybrid adaptive control algorithm is composed of adjustable proportional feedback control (adjustable P control), fine control, entry feedrate control, and tool wear detection algorithm. Adjustable P control carries out large scale control, fine control carries out detailed control, entry feedrate control reduces the peak current produced when a tool makes contact with a workpiece, and tool wear detection algorithm perceives tool wear and breakage qualitatively. The adjustable P control algorithm was verified through comparisons between calculated P gains and experimentally obtained P gains. The hybrid adaptive control algorithm was applied to various cutting conditions and it showed global stability as well as excellent applicability behavior.
机译:本文提出了一种混合自适应控制算法,该算法控制进给率以调节主轴电流并检测刀具磨损。为此,通过在各种切削条件下进行基于阶跃铣削的实验,研究了稳态主轴电流,时间常数和时间延迟的变化。所开发的混合自适应控制算法由可调比例反馈控制(可调P控制),精细控制,入口进给率控制和刀具磨损检测算法组成。可调P控制执行大规模控制,精细控制执行详细控制,入口进给率控制可降低工具与工件接触时产生的峰值电流,并且工具磨损检测算法可定性地感知工具的磨损和破损。通过比较计算的P增益和实验获得的P增益,验证了可调P控制算法。混合自适应控制算法应用于各种切削条件,显示出整体稳定性以及出色的适用性。

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