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EN
Purpose: The intention of this research is to test the applicability of oblique cutting tools for improving surface textures produced in turning operations on parts made of popular steels (carbon, low- and high-alloy) with different chemical compositions and microstructures as well as P-F ductile iron. The aim of the research is to quantify the surface roughness and lays produced under practical working conditions. Design/methodology/approach: The objectives were achieved by the characterization of machined surfaces using 2D and 3D scanning techniques and typical LOM examinations. The surface profile and surface topographies were characterized and compared for optimal machining conditions. Findings: This investigation confirms that oblique machining allows producing surfaces with lower surface roughness and, in some cases, with attractive service properties. The main conclusion is that oblique cutting operations can reduce machining times and partly eliminate grinding operations, especially in the machining of hardened materials. Research limitations/implications: The basic limitations concern the measurement of residual stresses and microstructural alterations. Another important problem is to optimize the surface integrity including surface roughness and sublayer properties. Practical implications: One practical outcome is selecting the machining conditions which guarantee the demanded surface finish together with bearing properties. In particular, surfaces with characteristic plateau can be produced instead of special abrasive finishing operations. Originality/value: Original value of the paper is the presentation of new cutting tools and their effects in turning operations. Experiments were performed under the conditions combining low surface roughness with attractive service properties. This knowledge can support the design of technological processes of steel and NDI parts.
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