Mechanical and tribological properties of PVD-coated cemented carbide as evaluated by a new multipass scratch-testing method

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Abstract

A new test method based on multipass scratch testing has been developed for evaluating the mechanical and tribological properties of thin, hard coatings. The proposed test method uses a pin-on-disc tribometer and during testing a Rockwell C diamond stylus is used as the "pin" and loaded against the rotating coated sample. The influence of normal load on the number of cycles to coating damage is investigated and the resulting coating damage mechanisms are evaluated by posttest scanning electron microscopy. The present study presents the test method by evaluating the performance of Tii, Til, and (Alrcoatings deposited by cathodic arc evaporation on cemented carbide inserts. The results show that the test method is quick, simple, and reproducible and can preferably be used to obtain relevant data concerning the fatigue, wear, chipping, and spalling characteristics of different coating-substrate composites. The test method can be used as a virtually nondestructive test and, for example, be used to evaluate the fatigue and wear resistance as well as the cohesive and adhesive interfacial strength of coated cemented carbide inserts prior to cutting tests. © 2012 M. Fallqvist et al.

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Fallqvist, M., M’Saoubi, R., Andersson, J. M., & Olsson, M. (2012). Mechanical and tribological properties of PVD-coated cemented carbide as evaluated by a new multipass scratch-testing method. Advances in Tribology. https://doi.org/10.1155/2012/305209

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