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On-line tool breakage monitoring of vibration tapping using spindle motor current

机译:使用主轴电机电流在线监测振动攻丝的刀具破损

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Input current of driving motor has been employed successfully as monitoring the cutting state in manufacturing processes for more than a decade. In vibration tapping, however, the method of on-line monitoring motor electric current has not been reported. In this paper, a tap failure prediction method is proposed to monitor the vibration tapping process using the electrical current signal of the spindle motor. The process of vibration tapping is firstly described. Then the relationship between the torque of vibration tapping and the electric current of motor is investigated by theoretic deducing and experimental measurement. According to those results, a monitoring method of tool's breakage is proposed through monitoring the ratio of the current amplitudes during adjacent vibration tapping periods. Finally, a low frequency vibration tapping system with motor current monitoring is built up using a servo motor B-106B and its driver CR06. The proposed method has been demonstrated with experiment data of vibration tapping in titanic alloys. The result of experiments shows that the method, which can avoid the tool breakage and giving a few error alarms when the threshold of amplitude ratio is 1.2 and there is at least 2 times overrun among 50 adjacent periods, is feasible for tool breakage monitoring in the process of vibration tapping small thread holes.
机译:十多年来,驱动电动机的输入电流已成功用于监视制造过程中的切削状态。然而,在振动攻丝中,还没有在线监测电动机电流的方法的报道。本文提出了一种抽头故障预测方法,以利用主轴电机的电流信号来监测振动敲击过程。首先描述振动攻丝的过程。然后通过理论推导和实验测量研究了振动攻丝扭矩与电动机电流之间的关系。根据这些结果,提出了一种通过监测相邻振动攻牙期间电流幅值的比值来监测刀具破损的方法。最后,使用伺服电机B-106B及其驱动器CR06构建了带有电机电流监控功能的低频振动攻丝系统。钛合金的振动攻丝实验数据证明了该方法的有效性。实验结果表明,该方法可避免幅值比的阈值为1.2,且在相邻50个周期内有至少2次超限时,不会出现刀具破损并发出少量错误报警的情况,适用于现场的刀具破损监测。振动攻丝小螺纹孔的过程。

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