Effect of heat treatments on the wear resistance of HVAF and HVOF sprayed tool steel coatings
Year of publication
2023
Authors
Varis, Tommi; Lagerbom, Juha; Suhonen, Tomi; Raami, Lassi; Terho, Sakari; Laurila, Jussi; Peura, Pasi; Vuoristo, Petri;
Abstract
<p>Iron-based coatings are an attractive solution for many wear applications, considering sustainability requirements such as avoidance of critical raw materials and toxic substances. Cold worked tool steels are one potential, yet very undiscovered, material option for coating applications. As a bulk, their careful heat treatment typically produces a martensitic carbide microstructure with very good wear resistance. Compared to bulk materials, the thermal history of a thermally sprayed coating in the as sprayed state is quite different as the microstructure of the sprayed coating does not form in equilibrium. This study explored the potential of AISI D2 cold worked tool steel as a thermal spray coating under different wear conditions. The study investigated different heat treatments to achieve different microstructures of the powder and coatings and their effect on the wear and cavitation erosion properties of the HVOF and HVAF sprayed thermally sprayed tool steel coating. It is important to understand whether the properties of thermally sprayed coatings, which initially have a high defect density, can be improved by heat treatments, and how modification of the phase structures of iron-based coatings affects their properties, in order to extend the use of these coatings.</p>
Show moreOrganizations and authors
Publication type
Publication format
Article
Parent publication type
Journal
Article type
Original article
Audience
ScientificPeer-reviewed
Peer-ReviewedMINEDU's publication type classification code
A1 Journal article (refereed), original researchPublication channel information
Journal/Series
Volume
462
Article number
129508
ISSN
Publication forum
Publication forum level
2
Open access
Open access in the publisher’s service
Yes
Open access of publication channel
Partially open publication channel
License of the publisher’s version
CC BY
Self-archived
Yes
License of the self-archived publication
CC BY
Other information
Fields of science
Materials engineering; Environmental engineering
Identified topic
[object Object]
Internationality of the publisher
International
Language
English
International co-publication
No
Co-publication with a company
Yes
DOI
10.1016/j.surfcoat.2023.129508
The publication is included in the Ministry of Education and Culture’s Publication data collection
Yes