Augmenting microstructure and tribological performance of wire arc additive manufactured PH13-8Mo stainless steel via TiC/TiB2 nano-particles incorporation
Author:
Funder
Canada Research Chairs Program
Ocean Frontier Institute
Dalhousie University
NSERC
Publisher
Elsevier BV
Reference50 articles.
1. Effect of heat treatment on microstructure and mechanical properties of 17-4PH stainless steel manufactured by laser-powder bed fusion;Li;J Mater Res Technol,2023
2. Wire + Arc Additive Manufacture of 17-4 PH stainless steel: effect of different processing conditions on microstructure, hardness, and tensile strength;Caballero;J Mater Process Technol,2019
3. Microstructure and corrosion behavior of a novel additively manufactured maraging stainless steel;Shahriari;Electrochim Acta,2020
4. Microstructural evolution and mechanical performance after precipitation hardening of PH 13-8Mo martensitic stainless steel fabricated by wire arc additive manufacturing;Ghaffari;Materialia (Oxf),2022
5. Study of direct aging heat treatment of additively manufactured PH13–8Mo stainless steel: role of the manufacturing process, phase transformation kinetics, and microstructure evolution;Moniruzzaman;J Mater Res Technol,2023
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1. Enhancing passivity and corrosion resistance of laser-powder bed fused maraging stainless steel CX through TiC-induced microstructure tailoring;Colloids and Surfaces A: Physicochemical and Engineering Aspects;2025-07
2. Review of Tribological and Wear Behavior of Alloys Fabricated via Directed Energy Deposition Additive Manufacturing;Journal of Manufacturing and Materials Processing;2025-06-11
3. Enhancing densification and grain refinement of laser powder bed fusion-processed CX stainless steel via TiC addition;Progress in Additive Manufacturing;2025-05-07
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