Journal of Engineering for Industry · 1978 · 239 citations · 0 references
EngineeringMechanical EngineeringModeling ToolComputer-aided DesignCutting TemperatureMechanicsMachine ToolMaterials ScienceTool WearSolid MechanicsMachiningManufacturing EngineeringCrater WearCrater Wear DevelopmentMaterial MachiningCivil EngineeringAnalytical PredictionMechanics Of MaterialsComputer Simulation
Through the energy method proposed in the previous parts of this study, it is possible to predict chip formation and cutting force for a single point tool of arbitrary geometry. By using the predicted results together with an assumption made on the stress distribution on the tool face, the temperature distribution within chip and tool is obtained through a numerical analysis. A characteristic equation of crater wear of carbide tool is derived theoretically and verified experimentally. Computer simulation of crater wear development is then carried out by using the characteristic equation, and the predicted distributions of the stress and the temperature.