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Surface Enhancement of Titanium-Based Coatings on Commercial Hard Steel Cutting Tools.

Authors :
Dang, Minh Nhat
Singh, Surinder
King, Hannah J.
Navarro-Devia, John H.
Le, Hoang
Pattison, Thomas G.
Hocking, Rosalie K.
Wade, Scott A.
Stephens, Guy
Papageorgiou, Angelo
Manzano, Armando
Wang, James
Source :
Crystals (2073-4352); May2024, Vol. 14 Issue 5, p470, 14p
Publication Year :
2024

Abstract

This study investigates the mechanical properties, surface integrity, and chemical configuration of PVD-coated high-speed steel (HSS) cutting tools, with a particular focus on titanium nitride (TiN) and titanium aluminium nitride (TiAlN) coatings. A range of characterisation methodologies were employed to examine the impact of pre-coating surface conditions on the resulting coatings. This impact includes the effects of gas bubble production and unequal distribution of elements, which are two unwanted occurrences. Notwithstanding these difficulties, coatings applied on surfaces that were highly polished exhibited more consistency in their mechanical and elemental characteristics, with a thickness ranging from 2 to 4 µm. The study of mechanical characteristics confirms a significant increase in hardness, from an initial value of roughly 1000 HV0.5 for untreated tools to 1300 HV0.5 for tools with physical vapour deposition (PVD) coatings. Although PVD coatings produced on an industrial scale might not exceed the quality of coatings manufactured in a laboratory, they do offer substantial enhancements in terms of hardness. This study highlights the significant importance of thorough surface preparation in achieving enhanced coating performance, hence contributing to the efforts to prolong the lifespan of tools and enhance their performance even under demanding operational circumstances. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
20734352
Volume :
14
Issue :
5
Database :
Complementary Index
Journal :
Crystals (2073-4352)
Publication Type :
Academic Journal
Accession number :
177493130
Full Text :
https://doi.org/10.3390/cryst14050470