Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
10673548 | CIRP Annals - Manufacturing Technology | 2008 | 4 Pages |
Abstract
A thermomechanical model for cutting processes is presented. The deformation in the shear zone is represented using Johnson-Cook material model. The rake contact is modeled using sticking and sliding zones, and their lengths are also predicted. The parameters of the material model and the friction coefficient on the rake are directly identified from a few number of orthogonal cutting tests. The model can predict cutting forces, shear angle and stress, pressure distribution and contact lengths on the rake face and temperature distribution. The application of the model to common operations such as turning and multi-axis milling is also presented with experimental verification, and satisfactory results are obtained.
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Physical Sciences and Engineering
Engineering
Industrial and Manufacturing Engineering
Authors
E. Budak, E. Ozlu,