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Prediction of chatter stability is important for planning and optimization of machining process in order to improve machining efficiency and reduce machining damage. Based on the classical analytical solution of chatter stability for milling process and in-depth analysis of the impact of modal parameters on the stability lobe diagram, a straight forward procedure for fast predicting stability lobe...
Machining problems often occur when the fillet area of a part is being milled. A general geometrical model of circular milling has been established, on the basis of which the maximum radial engagement angle formula is derived. The impact of cutting conditions on the maximum radial engagement angle is investigated through simulation. As the normal cutting force has a major impact on the machining deformation,...
The analytical solution of chatter stability limits for peripheral milling process has provided a useful tool for cutting conditions optimization of high speed milling. However, there exists a lot of discrepancy when it is applied to medium and low speed milling. Based on the analytical chatter stability model, cutting tests and numerical simulations were conducted, and the suitable number of lobes...
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