Integrated Chatter Monitoring Based on Sensorless Cutting Force/Torque Estimation in Parallel Turning

Author:

Yamada Yuki, ,Kadota Takashi,Sakata Shinya,Tachibana Junji,Nakanishi Kenichi,Sawada Manabu,Kakinuma Yasuhiro, ,

Abstract

Parallel turning technology is considerably important in future multi-tasking machine tool because it has the potential to enhance the stability limits, compared to turning operations using a single tool. Although stability prediction models for parallel turning have been developed recently, the technique of in-process monitoring of chatter is almost out of focus. In this study, the monitoring of chatter based on the sensorless cutting force/torque technique was evaluated in the parallel turning and cutting of the same surface of an elongated workpiece. Two cutting force/torque estimation methods were evaluated: a conventional disturbance observer (DOB) using internal information from a servomotor and a multi-encoder-based disturbance observer (MEDOB) using load-side position/angular information as well. In the DOB-based monitoring, chatter frequency components were observable regardless of the guideway type and drive system. However, chatter monitoring may be difficult when the angle of the servomotor is changed slightly because of the damping properties of the sliding guideway. In the MEDOB-based monitoring, the waveform of the estimated cutting force reflected the vibrational state at the cutting point well, and the extraction of chatter frequency components became easier regardless of the guideway type.

Publisher

Fuji Technology Press Ltd.

Subject

Industrial and Manufacturing Engineering,Mechanical Engineering

Cited by 11 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Prediction and Simulation Design of Cutting Force of Machine Tool Based on Fuzzy Clustering Algorithm;2023 International Conference on Power, Electrical Engineering, Electronics and Control (PEEEC);2023-09-25

2. Harmonics Elimination by Periodic/Aperiodic Separation Filter for Chatter Detection;Transactions of the Institute of Systems, Control and Information Engineers;2023-03-15

3. Study on Method for Avoiding Chatter Vibration by Changing Machine Tool Rigidity;International Journal of Automation Technology;2022-11-05

4. Development of Automatic Chatter Suppression System in Parallel Milling by Real-Time Spindle Speed Control with Observer-Based Chatter Monitoring;International Journal of Precision Engineering and Manufacturing;2021-01-22

5. Experimental verification of design methodology for chatter suppression in tool swing–assisted parallel turning;The International Journal of Advanced Manufacturing Technology;2020-08-28

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