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◆ Eng—Advances in Engineering2025-11-05· Materials science

Enhancing Dry-Sliding Wear Performance of a Powder-Metallurgy-Processed “Metal Matrix–Carbide” Composite via Laser Surface Modification

Yu. G. Chabak, V. G. Efremenko, Yevhen Barma, Ivan Petrišinec, Bohdan Efremenko, František Kromka, Іван Сілі, Taras Kovbasiuk

原始摘要(英文原文)· Original abstract
The increasing demand for enhanced wear resistance and mechanical integrity in tooling applications has driven the development of advanced surface engineering strategies for high-alloy steels. Böhler K390 MICROCLEAN, a powder-metallurgical V–Cr–Mo–W cold work tool steel with high vanadium content, features a composite metal matrix–carbide microstructure, consisting of uniformly distributed coarse vanadium carbides and finer carbides (M7C3, M6C/MC) embedded in a ferritic matrix. This study investigated the effects of non-melting laser surface treatment (LST) applied to both as-received and bulk heat-treated K390 specimens. Microstructural characterization using SEM, EBSD, XRD, and EDX revealed the formation of a hardened surface layer comprising a structureless mixture of ultrafine-grained martensite and retained austenite, localized around vanadium carbides. Lattice parameter analysis and Williamson–Hall evaluation demonstrated increased carbon content, lattice distortion, and crystallite size reduction, contributing to high dislocation density (6.4 × 1014 to 2.6 × 1015 m−2) and enhanced hardness. Microhardness was increased by up to 160% compared to the initial state (reaching 835–887 HV20), and dry-sliding testing showed up to 3.94 times reduced volume loss and decreased friction coefficients. Wear occurred via the formation and delamination of thin oxide tribo-layers, which enhanced the wear behavior. The combined approach of bulk heat treatment followed by LST produced a graded microstructure with superior mechanical stability, offering clear advantages for extending tool life under severe contact loads in stamping and forming operations.
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Enhancing Dry-Sliding Wear Performance of a Powder-Metallurgy-Processed “Metal Matrix–Carbide” Composite via Laser Surface Modification — 科研速览 Science Skim