4.7 Article

Effects of different HVOF thermal sprayed cermet coatings on tensile and fatigue properties of AISI 1045 steel

Journal

JOURNAL OF MATERIALS RESEARCH AND TECHNOLOGY-JMR&T
Volume 15, Issue -, Pages 6647-6658

Publisher

ELSEVIER
DOI: 10.1016/j.jmrt.2021.11.102

Keywords

HVOF thermal spray; Cermet coated materials; AISI 1045 steel; Residual stress; Tensile; High cycle fatigue

Funding

  1. Korea Institute for Advancement of Technology - Korea Government (MOTIE) [P0002007]

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This study investigated the effects of different cermet coatings on the tensile and high-cycle fatigue properties of AISI 1045 steel using the HVOF thermal spray process. The findings showed that the Cr3C2-25NiCr cermet coating exhibited superior performance in terms of fatigue strength and adhesion compared to other coated materials.
The objective of the present work was to investigate the effect of different cermet coatings on tensile and high-cycle fatigue properties of AISI 1045 steel using High-Velocity Oxygen Fuel (HVOF) thermal spray process. In this study, the WC-12Co, WC-10Co-4Cr, and Cr3C2-25NiCr cermet powders were coated onto the surface of annealed AISI 1045 steel specimens via the HVOF thermal spray process. The corresponding HVOF thermal spraying results were compared with those obtained from hard chrome (Cr) electroplating process. The thermal spray coated specimens showed load drop tendency beyond the yield point with significant work hardening in the tensile results, but low fatigue life than the base material in high-cycle fatigue results due to defects and poor adhesion at the interface. However, those cermet coating materials showed higher fatigue strengths than the hard chrome plated material. Fractography tests showed that fatigue strength was not only dependent on residual stress, but also influenced by the modes of fatigue failure related to the coated layer's cohesion and adhesion strength. Overall, the Cr3C2-25NiCr cermet coating is preferable due to its less porosity, high fatigue property, and better adhesion than the other coated materials. (C) 2021 The Authors. Published by Elsevier B.V.

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