co-supported by Open National Natural Science Foundation of China(No.51005183);National Science and Technology Major Project(No.2011ZX04016031);China Postdoctoral Science Foundation(No.2012M521804)
A deduced cutting force prediction model for circular end milling process is presented in this paper. Traditional researches on cutting force model usually focus on linear milling process which does not meet other cut...
the Postgraduate Seed Fund of Northwestern Polytechnical University(No.Z2012038);National Natural Science Foundation of China(No.51005183);National Key S&T Special Projects(No.2011X04016-031)
An improved method to determine cutting force coefficients for bull-nose cutters is proposed based on the semi-mechanistic cutting force model. Due to variations of cutting speed along the tool axis in bull-nose milli...
National Natural Science Foundation of China (51005183); National Science and Technology Major Project (2011X04016-031)
Machining quality of clean-up region has a strong influence on the performances of the impeller. In order to plan clean-up tool paths rapidly and obtain good finish surface quality, an efficient and robust tool path g...
Sponsored by the Major National Science and Technology Special Project of China (Grant No.2009ZX04014-053);the National Natural Science Foundation of China (Grant No.51005183)
The optimal material removal strategy can improve a geometric accuracy and surface quality of thin-walled parts such as turbine blades and blisks in high-speed ball end milling.The dominant conception in the material ...