镗刀振动控制与切削状态识别研究

Y. Kashimura, Yoshiaki Suzuki
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引用次数: 0

摘要

介绍了镗削加工中颤振的控制和切削状态的识别方法。振动控制系统由压电传感器、压电致动器和控制器组成。利用压电传感器检测刀具振动信号,并将其转化为矩形波,应用于压电致动器驱动镗刀刀尖。提出了一种基于人工神经网络的切削状态识别系统。在该系统中,通过计算压电传感器检测到的信号的功率谱来识别切割状态。人工神经网络的输入数据通过功率谱的最大值归一化。利用归一化模式来识别切削状态是稳定还是不稳定。在切削试验中对振动控制系统和切削状态识别系统进行了验证。实验结果验证了系统在实际应用中的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Study on vibration control of boring tool and recognition of cutting state
This paper describes a chatter vibration control and a recognition of cutting state in boring operation. A vibration control system consists of piezoelectric sensors, piezoelectric actuators and a controller. The signals of the tool vibration are detected by the piezoelectric sensors and modified into the rectangular waves which are applied to the piezoelectric actuators to drive the tip of a boring tool. A cutting state recognition system which is based on an artificial neural network is also proposed. In this system, power spectrums of the signals detected by piezoelectric sensors are calculated to identify the cutting state. The input data of the artificial neural network are normalized by the maximum value of the power spectrum. The normalized pattems are utilize to identify whether the cutting state is stable or unstable. The vibration control system and the cutting state recognition system have been examined in cutting tests. The test results verify the effectiveness of the proposed systems for practical application.
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