首页> 外文会议>2002 ASME International Mechanical Engineering Congress and Exposition , Nov 17-22, 2002, New Orleans, Louisiana >EFFICIENT NC MACHINING USING OFF-LINE OPTIMIZED FEEDRATES AND ON-LINE ADAPTIVE CONTROL
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EFFICIENT NC MACHINING USING OFF-LINE OPTIMIZED FEEDRATES AND ON-LINE ADAPTIVE CONTROL

机译:使用离线优化的Feedate和在线自适应控制进行高效NC加工

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A combination of off-line feedrate optimization and online adaptive force control is used to maintain a reference peak force during end milling for safe, accurate, and efficient machining. Feedrate optimization algorithms use geometry and force models to calculate feedrates for each tool move, based on a reference peak force. The adaptive controller adjusts the feedrate during machining to maintain the reference peak force. It is the combination of these methods that yields accurate force control, unobtainable with either method by itself. Adaptive control alone is inadequate to handle significant transient cut conditions because of the slow system response time. Optimization algorithms are subject to modeling errors that can lead to significant force errors when cutting. Design parameters for the adaptive controllers are selected using an experimentally validated machining process model. The adaptive controllers are implemented on an open architecture controlled (OAC) 3-axis NC milling machine, and evaluated using three experimental test cases: a sine cut, a prismatic cut, and a corner cut. Feedrates for each cut are first optimized off-line, then used in actual machining with and without controller action. Experimental results demonstrate the ability of the integrated system to effectively regulate peak forces for cutting conditions commonly encountered in end milling operations. In particular, a variable geometry sine cut that initiates chatter shows the advantages of the combined system.
机译:离线进给率优化和在线自适应力控制相结合,可在端铣期间维持参考峰值力,从而实现安全,准确和高效的加工。进给率优化算法根据参考峰值力使用几何形状和力模型来计算每个刀具运动的进给率。自适应控制器在加工过程中调节进给速度以保持参考峰值力。这些方法的组合产生了精确的力控制,而这两种方法本身都无法实现。由于系统响应时间慢,仅自适应控制不足以处理重大的瞬态切换条件。优化算法易受建模误差的影响,在切割时会导致明显的力误差。使用经过实验验证的加工过程模型选择自适应控制器的设计参数。自适应控制器在开放式结构控制(OAC)3轴NC铣床上实现,并使用三个实验测试案例进行评估:正弦切割,棱柱切割和转角切割。首先对每个切削的进给率进行离线优化,然后在有或没有控制器动作的情况下用于实际加工中。实验结果表明,该集成系统能够有效调节端铣削中常见切削条件下的峰值力。特别是,引发颤振的可变几何正弦切割显示了组合系统的优势。

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