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The 2016 thermal spray roadmap

: Vardelle, Armelle M.; Moreau, Christian; Akedo, Jun; Ashrafizadeh, Hossein; Berndt, Christopher; Berghaus, Jörg; Boulos, Mäher; Brogan, Jeffrey; Bourtsalas, Athanasios; Dolatabadi, Ali; Dorfman, Mitchell; Eden, Timothy; Fauchais, Pierre; Fisher, Gary; Gärtner, Frank; Gindrat, Malko; Henne, Rudolf; Hyland, Margaret; Irissou, Éric; Jordan, Eric; Khor, Khiam; Killinger, Andreas; Lau, Yukchiu; Li, Changjiu; Li, Li; Longtin, Jon; Markocsan, Nicolaie; Masset, Patrick; Matějíček, Jiří; Mauer, Georg; McDonald, André; Mostaghimi, Javad; Sampath, Sanjay; Schiller, Günter; Shinoda, Kentaro; Smith, Mark; Syed, Asif Ansar; Themelis, Nickolas; Toma, Filofteia-Laura; Trelles, Juan; Vaßen, Robert; Vuoristo, P.


Journal of thermal spray technology 25 (2016), Nr.8, S.1376-1440
ISSN: 1059-9630
ISSN: 1544-1016
Fraunhofer IWS ()
Fraunhofer UMSICHT SuRo ()
anti-wear and anti-corrosion coatings; anti-wear coatings; anti-corrosion coatings; biomedical; electronics; energy generation; functional coatings; gas turbines; thermal spray processes; biomedical engineering

Considerable progress has been made over the last decades in thermal spray technologies, practices and applications. However, like other technologies, they have to continuously evolve to meet new problems and market requirements. This article aims to identify the current challenges limiting the evolution of these technologies and to propose research directions and priorities to meet these challenges. It was prepared on the basis of a collection of short articles written by experts in thermal spray who were asked to present a snapshot of the current state of their specific field, give their views on current challenges faced by the field and provide some guidance as to the R&D required to meet these challenges. The article is divided in three sections that deal with the emerging thermal spray processes, coating properties and function, and biomedical, electronic, aerospace and energy generation applications.