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Novel servo-feed-drive model considering cutting force and structural effects in milling to predict servo dynamic behaviors

机译:考虑到铣削中的切割力和结构效果的新型伺服馈送驱动模型预测伺服动态行为

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摘要

This paper presents an integrated servo-feed-drive model including the cutting force and structural effect to predict tracking errors in an end-milling process. Most conventional approaches consider the cutting force to be an equivalent torque to servo feed drive. However, in addition to acting as the equivalent torque to the servo feed drive, cutting forces also cause the machine table to vibrate. This paper considers the aforementioned cutting-force effects to predict tracking errors and then verifies the tracking errors using experimental results. Experiments are conducted on a 3-axis computer numerical control (CNC) machining center to validate the tracking errors predicted by the proposed servo-feed-drive model. For one case study, the peak-to-peak tracking errors from the experimental, proposed, and traditional models are 3 mu m, 2.8 mu m, and 0.5 mu m, respectively, for the x-axis, and 2.1 mu m, 1.7 mu m, and 0.4 mu m, respectively, for the y-axis. The experimental results illustrate that the tracking errors predicted using the proposed model are more accurate than those predicted using the traditional model without consideration of the transmission path. Therefore, it can be concluded that the proposed integrated model provides much accurate tracking-error prediction, and thus, the ball-screw and machine-table flexibilities should be considered.
机译:本文介绍了一个集成的伺服进给式型号,包括切割力和结构效果,以预测端铣过程中的跟踪误差。大多数传统方法认为切割力是伺服馈送驱动器的等效扭矩。然而,除了作为伺服馈送驱动器的等效扭矩之外,切割力也使机器台振动。本文考虑了上述切割效应,以预测跟踪误差,然后使用实验结果验证跟踪误差。实验在3轴计算机数控(CNC)加工中心上进行,以验证所提出的伺服馈送模型预测的跟踪误差。对于一种案例研究,实验,提出的峰值跟踪误差分别为X轴和2.1μm,1.7分别为3μm,2.8μm和0.5μm。 mu m,分别为y轴0.4μm。实验结果表明,使用所提出的模型预测的跟踪误差比使用传统模型预测的那些而不考虑传输路径。因此,可以得出结论,所提出的集成模型提供了很大的准确跟踪误差预测,因此应考虑滚珠丝杠和机器表灵活性。

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