The 2016 Thermal Spray Roadmap View Full Text


Ontology type: schema:ScholarlyArticle      Open Access: True


Article Info

DATE

2016-12-01

AUTHORS

Armelle Vardelle, Christian Moreau, Jun Akedo, Hossein Ashrafizadeh, Christopher C. Berndt, Jörg Oberste Berghaus, Maher Boulos, Jeffrey Brogan, Athanasios C. Bourtsalas, Ali Dolatabadi, Mitchell Dorfman, Timothy J. Eden, Pierre Fauchais, Gary Fisher, Frank Gaertner, Malko Gindrat, Rudolf Henne, Margaret Hyland, Eric Irissou, Eric H. Jordan, Khiam Aik Khor, Andreas Killinger, Yuk-Chiu Lau, Chang-Jiu Li, Li Li, Jon Longtin, Nicolaie Markocsan, Patrick J. Masset, Jiri Matejicek, Georg Mauer, André McDonald, Javad Mostaghimi, Sanjay Sampath, Günter Schiller, Kentaro Shinoda, Mark F. Smith, Asif Ansar Syed, Nickolas J. Themelis, Filofteia-Laura Toma, Juan Pablo Trelles, Robert Vassen, Petri Vuoristo

ABSTRACT

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. More... »

PAGES

1376-1440

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  • Journal

    TITLE

    Journal of Thermal Spray Technology

    ISSUE

    8

    VOLUME

    25

    Author Affiliations

  • University of Limoges, Limoges, France
  • Concordia University, Montreal, QC, Canada
  • National Institute of Advanced Industrial Science and Technology (AIST), Tsukuba, Japan
  • University of Alberta, Edmonton, AB, Canada
  • Swinburne University of Technology, Hawthorn, VIC, Australia
  • Soleras Advanced Coatings, Deinze, Belgium
  • University of Sherbrooke, Sherbrooke, Canada
  • Mesoscribe Technologies, Inc., St. James, NY, USA
  • Columbia University, New York, NY, USA
  • Oerlikon Metco, Inc., Westbury, NY, USA
  • The Pennsylvania State University, State College, PA, USA
  • Alberta Innovates - Technology Futures, Edmonton, AB, Canada
  • Helmut Schmidt University, Hamburg, Germany
  • Oerlikon Metco AG, Wohlen, Switzerland
  • German Aerospace Center (DLR), Stuttgart, Germany
  • University of Auckland, Auckland, New Zealand
  • National Research Council of Canada, Boucherville, QC, Canada
  • University of Connecticut, Storrs, CT, USA
  • Nanyang Technological University, Singapore, Singapore
  • Universität Stuttgart, Stuttgart, Germany
  • GE Power, Niskayuna, NY, USA
  • Xi’an Jiaotong University, Xi’an, Shaanxi, China
  • Praxair Surface Technologies, Inc., Indianapolis, IN, USA
  • Stony Brook University, Stony Brook, NY, USA
  • University West, Trollhättan, Sweden
  • Fraunhofer UMSICHT, Sulzbach-Rosenberg, Germany
  • Institute of Plasma Physics, Prague, Czech Republic
  • Forschungszentrum Jülich Institute of Energy and Climate Research, Jülich, Germany
  • University of Toronto, Toronto, ON, Canada
  • Sandia National Laboratories, Albuquerque, NM, USA
  • Fraunhofer Institute for Material and Beam Technology IWS, Dresden, Germany
  • University of Massachusetts Lowell, Lowell, MA, USA
  • Tampere University of Technology, Tampere, Finland
  • Identifiers

    URI

    http://scigraph.springernature.com/pub.10.1007/s11666-016-0473-x

    DOI

    http://dx.doi.org/10.1007/s11666-016-0473-x

    DIMENSIONS

    https://app.dimensions.ai/details/publication/pub.1007752349


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