Articles | Volume 8, issue 2
https://doi.org/10.5194/ms-8-215-2017
https://doi.org/10.5194/ms-8-215-2017
Research article
 | 
11 Jul 2017
Research article |  | 11 Jul 2017

Study on the tool wear of 3-D elliptical vibration cutting

Jieqiong Lin, Xian Jing, Mingming Lu, Yan Gu, and Jinguo Han

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Cited articles

Ahmed, S. A. and Sathyan, S.: Experimental investigation of transverse vibration-assisted orthogonal cutting of AL-2024, Int. J. Mach. Tool. Manu., 50, 294–302, 2010.
Brehl, D. E., Dow, T. A., Garrard, K., and Sohn, A.: Micro-structure fabrication using elliptical vibration-assisted machining (EVAM), ASPE Proceedings, 39, 511–515, 1999.
Jung, H., Hayasaka, T., and Shamoto, E.: Mechanism and suppression of frictional chatter in high-efficiency elliptical vibration cutting, CIRP Ann.-Manuf. Techn., 65, 369–372, 2016.
Kim, G. D. and Loh, B. G.: Characteristics of chip formation in micro V-grooving using elliptical vibration cutting, J. Micromech. Microeng., 17, 1458–1466, 2007.
Li, W., Lin, F., and Zhang, D.: Study on the improvement of surface quality through ultrasonic elliptical vibration cutting, Advances in Future Manufacturing Engineering: Proceedings of the 2014 International Conference on Future Manufacturing Engineering (ICFME 2014), Hong Kong, 10–11 December 2014, CRC Press, 2, 269–279, 2015.
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Short summary
The formation principle of 3-D cutting elliptical trajectory was analysed and a prediction model of tool wear was established in the present work. Besides, a self-developed three-dimensional elliptical vibration device was employed to conduct turning experiment. Compared with the proposed model, the experimental results showed a great agreement with the proposed prediction model. This work may provide a reference for the further optimization of the 3-D elliptical vibration cutting parameters.