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NUMERICAL SIMULATION OF CONTINUOUS CHIP FORMATION DURING NON‐STEADY ORTHOGONAL CUTTING
109
Citations
20
References
1993
Year
EngineeringMicrofabricationMechanicsChip InitiationMechanical EngineeringFinite Element ModelMechanical ModelingMaterial MachiningMachine ToolChip AttachmentOrthogonal Cutting ConditionsChip On BoardComputer-aided DesignElectronic PackagingComputational MechanicsMechanics Of MaterialsMechanics Modeling
A finite element model for numerical simulation of non‐steady but continuous chip formation under orthogonal cutting conditions is described. The problem is treated as coupled thermo‐mechanical. A velocity approach has been adopted for the proposed solution. The computational algorithm takes care of dynamic contact conditions and makes use of an automatic remeshing procedure. The results of simulation yield complete history of chip initiation and growth as well as distributions of strain rate, strain, stress and temperature. The paper includes a detailed presentation of computational results for an illustrative case.
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