CHAOTIC ANALYSIS OF METAL CUTTING WITH NONLINEAR SUSPENSION

Cai-Wan Chang-Jian, Hsieh-Chung Hsu, Guan-I Wu, Cheng-I Weng

Abstract

This study performs a systematic analysis of dynamic behavior of cutting process of machine tool with unbalance force induced from mass eccentricity of work-piece, nonlinear cutting force and nonlinear suspension effect. Phase diagrams, power spectra, bifurcation diagrams and Poincaré section are applied to identify the dynamic motions in this study. The simulation results show that the non-periodic dynamic responses are very abundant in cutting process of machine tool. The results presented in this study provide an understanding of the operating conditions under which undesirable dynamic motion takes place in this kind of system and therefore serve as a useful source of reference for engineers in designing and controlling such systems.

References

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Paper Citation


in Harvard Style

Chang-Jian C., Hsu H., Wu G. and Weng C. (2011). CHAOTIC ANALYSIS OF METAL CUTTING WITH NONLINEAR SUSPENSION . In Proceedings of the 8th International Conference on Informatics in Control, Automation and Robotics - Volume 2: MSIE, (ICINCO 2011) ISBN 978-989-8425-75-1, pages 501-504. DOI: 10.5220/0003645305010504


in Bibtex Style

@conference{msie11,
author={Cai-Wan Chang-Jian and Hsieh-Chung Hsu and Guan-I Wu and Cheng-I Weng},
title={CHAOTIC ANALYSIS OF METAL CUTTING WITH NONLINEAR SUSPENSION},
booktitle={Proceedings of the 8th International Conference on Informatics in Control, Automation and Robotics - Volume 2: MSIE, (ICINCO 2011)},
year={2011},
pages={501-504},
publisher={SciTePress},
organization={INSTICC},
doi={10.5220/0003645305010504},
isbn={978-989-8425-75-1},
}


in EndNote Style

TY - CONF
JO - Proceedings of the 8th International Conference on Informatics in Control, Automation and Robotics - Volume 2: MSIE, (ICINCO 2011)
TI - CHAOTIC ANALYSIS OF METAL CUTTING WITH NONLINEAR SUSPENSION
SN - 978-989-8425-75-1
AU - Chang-Jian C.
AU - Hsu H.
AU - Wu G.
AU - Weng C.
PY - 2011
SP - 501
EP - 504
DO - 10.5220/0003645305010504