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http://dx.doi.org/10.6111/JKCGCT.2016.26.1.035

A study on the simulation for chatter vibration stability improvement of end milling process  

Hwang, Joon (Department of Aeronautical and Mechanical Design Engineering, Korea National University of Transportation)
Lee, Won-Kuk (Department of Advanced Mechanical Design Engineering, Korea National University of Transportation)
Abstract
End milling process is one of the broadly used manufacturing process for precision machined parts and products. Machining performance is often limited by chatter vibration at the tool-workpiece interface. Chatter vibration is a type of machining self-excited vibration which originated from the variation in cutting forces and the flexibility of the machine tool structure. Even though lots of cutting tooling methods are developed and used in machining process, precise analysis of cutting tooling effect in view of chatter vibration behavior. This study presents numerical and experimental approaches to verify and effects of various cutting parameters to affect to chatter vibration stability. Acquired knowledge from this study will apply the optimal cutting conditions to improve a machining process.
Keywords
Chatter vibration stability; End milling process; Numerical analysis and experimental approaches;
Citations & Related Records
Times Cited By KSCI : 2  (Citation Analysis)
연도 인용수 순위
1 J.Y. Lim, M.J. Yoon, T.H. Kim, S.Y. Kim and T.G. Kim, "A study on the mechanical properties of structure rolled steel and stainless steel for the $CO_2$ welding", J. Korean Cryst. Growth Cryst. Technol. 23 (2013) 207.   DOI
2 G. Totis and M. Sortino, "Development of a modular dynamometer for triaxial cutting force measurement in turning", Int. J. of Machine Tool & Manufacture 51 (2011) 34.   DOI
3 V. Savas and C. Ozay, "The optimization of the surface roughness in the process of tangential turn-milling using genetic algorithm", The Int. J. of Advanced Manufacturing Technology 37 (2007) 335.
4 F.I. Compean, D. Olvera, F.J. Campa, L.N. Lopez de Lacalle, A. Elias-Zuniga and C.A. Rodriguez, "Characterization and stability analysis of a multivariable milling tool by the enhanced multistage homotopy perturbation method", The Int. J. of Machine Tools & Manufacture 33 (2012) 28.
5 C.K. Chang and H. Lu, "Design optimization of cutting parameters for side milling operations with multiple performance characteristics", The Int. J. of Advanced Manufacturing Technology 32 (2007) 18.   DOI
6 V. Savas and C. Ozay, "The optimization of the surface roughness in the process of tangential turn-milling using genetic algorithm", The Int. J. of Advanced Manufacturing Technology 37 (2007) 335.
7 J. Hwang, "A study on the chatter vibration characteristics sumulation for cutting tooling of turning machine tool", J. Korean Cryst. Growth Cryst Technol. 24 (2014) 274.   DOI