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Comparative Analyses on FEM Simulation and Experiment of the Hard Turning Using Chamfered PCBN Tool
| Content Provider | CiteSeerX |
|---|---|
| Author | Chen, T. Wang, Y. W. Li, Y. F. Yang, C. J. Liu, X. L. |
| Abstract | Abstract. In this paper, cutting experiment and FEM simulation are combined to investigate the effect of various chamfered edge geometries on cutting force and cutting temperature distribution when hardened steel GCr15(HRC60+2) is machined with PCBN tool. The research results indicate that radial force and main cutting force increase with the enlargement of chamfer angle, and especially, radial force rises more significantly, but radial force is less than main cutting force during the entire cutting process. Cutting temperature also gradually rises as chamfer angle increases, and moreover, it is maximized on the chip-tool interface in a place of 0.1-0.2mm distant from nose. |
| File Format | |
| Access Restriction | Open |
| Subject Keyword | Fem Simulation Radial Force Comparative Analysis Steel Gcr15 Pcbn Tool Research Result Force Increase Edge Geometry Entire Cutting Process Chip-tool Interface Chamfer Angle Temperature Distribution Chamfer Angle Increase |
| Content Type | Text |
| Resource Type | Article |