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Study on Process Monitoring of Elliptical Vibration Cutting by Utilizing Internal Data in Ultrasonic Elliptical Vibration Device

机译:利用超声椭圆振动装置内部数据进行椭圆振动切削过程监测的研究

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摘要

In the present study, monitoring of elliptical vibration cutting process by utilizing internal data in the ultrasonic elliptical vibration device without external sensors such as a dynamometer and displacement sensor is investigated. The internal data utilized here is the change of excitation frequency, i.e. resonant frequency of the device, voltages applied to the piezoelectric actuators composing the device, and electric currents flowing through the actuators. These internal data change automatically in the elliptical vibration control system in order to keep a constant elliptical vibration against the change of the cutting process. Correlativity between the process and the internal data is described by using a vibration model of ultrasonic elliptical vibration cutting and verified by several experiments, i.e. planing and mirror surface finishing of hardened die steel carried out with single crystalline diamond tools. As a result, it is proved that it is possible to estimate the elements of elliptical vibration cutting process, e.g. tool wear and machining load, which are important for stable cutting in such precision machining.
机译:在本研究中,研究了利用超声椭圆振动装置中的内部数据监测椭圆振动切割过程的过程,而无需使用诸如测力计和位移传感器之类的外部传感器。这里利用的内部数据是激励频率的变化,即装置的谐振频率,施加到构成装置的压电致动器的电压以及流过致动器的电流。这些内部数据在椭圆振动控制系统中会自动更改,以保持恒定的椭圆振动,以适应切削过程的变化。通过使用超声椭圆振动切割的振动模型描述过程与内部数据之间的相关性,并通过数个实验(即使用单晶金刚石工具进行的淬硬模具钢的平面和镜面精加工)进行验证。结果,证明了可以估计椭圆振动切割过程的要素,例如。刀具磨损和加工负荷,对于这种精密加工中的稳定切削至关重要。

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