International Journal of Control and Automation · 2015 · 17 citations · 7 references
Deformation problems are main factors affecting the precision of machining the thinwalled parts. This paper focuses on the thin-walled parts of titanium alloy that is the difficult-to-machine material, based on the analysis of deformation characteristics and force, the milling force mathematical model of the ball-end milling cutter was established. On the basis of the 3D milling model of thin-walled parts of titanium alloy, the deformation regularity and cutting force variations were analyzed with the finite element simulation method. Through the experiments of machining thin-walled parts, the cutting force model was verified. The experiments results and simulations results match well. The work provides an effective basis for further study on the control of machining deformation of thin-wall parts of titanium alloy.
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International Journal of Machine Tools and Manufacture
Elsevier Sdol · 2009 · 678 citations
Prediction of workpiece dynamics and its effects on chatter stability in milling
Erhan Budak, Lütfi Taner Tunç, Salih Alan et al. · CIRP Annals · 2012 · 197 citations · Full text