Abstract:Turning of the thin-walled cylindrical workpiece is technologically highly demanding process due to the high flexibility of the workpiece . In this paper, a mathematical treatment of integral-based model of the cutting force which takes into account feed, cutting speed, depth of cut and tool nose radius leading to a model of tool- workpiece interaction is presented. The force interaction together with the compliant workpiece dynamics leads to a machining stability formulation. The effect of the aforementioned … Show more
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