In this paper finite element analysis is applied to evaluate the results regarding the stress and deformation during the turning process of the commercially pure titanium. The results are a very important task to appreciate the state of the piece, from point of view of stress and deformations, during the machining process.In order to perform this analysis, a 3D model of the assembly is developed, with respect to the real dimensions for each of the components, part and tool, respectively. Then, the 3D model was transferred to the finite element analysis software, where, starting with the input data, meaning the mechanical properties of the pure titanium, the appropriate mesh and loading applied, but also interactions between the bodies, the results of the analysis, were obtained. For 3D model and finite element analysis, the dedicated software is used.