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Innovative Coatings for a Greener Sky: The 2026 Strategic Roadmap for Thermal Spray and PVD Coatings

delete2026-07-29
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OA
AI
A
Andrew Ang
T
Thibaut Archer
F
Farzam Arhami
M
Mettupalayam Balachander
K
Kantesh Balani
D
Dominique Billières
A
Ann Bolcavage
G
Giovanni Bolelli
M
Marjorie Cavarroc
S
S. Costil
N
Nicholas Curry
A
Alain Denoirjean
A
Ali Dolatabadi
A
Alice Dolmaire
W
William Duarte
D
David Dublanche
J
Julien Escobar
A
Alice Fabre
G
Gaël Fick
G
Guillaume Fradet
F
Frank Gärtner
E
Edward J. Gildersleeve
M
Mohit Gupta
J
J. Gutleber
M
Makoto Hasegawa
B
Bryan J. Harder
B
Brian Hazel
H
H. Heinemann
X
Xianghui Hou
T
Tanvir Hussain
É
Éric Irissou
M
Mehdi Jadidi
C
Cédric Jaoul
M
Maria Ophelia Jarligo
B
Bertrand Jodoin
S
Shrikant Joshi
A
Andreas Killinger
J
Jolanta E. Klemberg-Sapieha
K
Komal Laul
A
Andre C. Liberati
R
Rocco Lupoi
G
Gilles Mariaux
L
L. Martinů
A
André McDonald
C
Christian Moreau
M
Majid Nabavi
A
Aleksandra Nastic
A
Ahmet Hilmi Paksoy
C
C. Poupon
V
Vincent Rat
O
Oscar Rojas
C
Céline Ruelle
P
Pierre Sallot
D
Daniel Scotson
C
Christian Semmler
S
Sophie Senani de Monredon
K
Kentaro Shinoda
P
Paweł Sokołowski
U
Uwe Schulz
M
Moussa Tembely
F
Filofteia-Laura Toma
P
Pascal Tristant
T
Thibaut Van Hoof
A
A. Vardelle
R
Robert Vassen *
S
Scott Wilson
P
Ping Xiao
G
Guan‐Jun Yang
S
Shuo Yin
S
Stephen Yue
T
Tianqi Zhu
DOI:10.1007/s11666-026-02276-5delete
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Abstract

Abstract

En 中文
Decarbonizing aviation aims to reduce greenhouse gas emissions from aircraft operations, paving the way for sustainable air travel. This endeavor requires adopting advanced technologies, alternative fuels, high-performance coatings and efficient engineering solutions that minimize environmental impact while maintaining performance and safety standards. Two of the most prevalent and cost-effective methods for applying protective and functional coatings to aerospace components are thermal spray and physical vapor deposition. These techniques enhance the durability and efficiency of several components, resulting in fuel savings and an extended service life across the aviation industry. This supports the broader aim of transitioning the aviation industry to net-zero emissions and sustainable growth. This roadmap explores how these two coating techniques can promote sustainable aviation and identifies the challenges and opportunities in the aerospace sector for researchers and manufacturers of thermal spray and physical vapor deposition (PVD) coatings. It also proposes research directions to address these challenges and discusses the role of AI, which is crucial for breakthrough technologies in process optimization and integration, new coating development and coating design optimization. The roadmap is organized into 20 concise subsections, each focusing on a specific topic. Renowned specialists in each area were invited to summarize the current status of their field, discuss the challenges it faces, and offer recommendations for necessary research and development to overcome these issues. Together, these contributions vividly highlight the essential elements of the field and the challenges that lie ahead. The innovative ideas and concepts outlined in the roadmap reveal that the future path is both expansive and far-reaching. A decade after the JTST released its roadmap on thermal spray, which emphasized the processes, coatings, and applications of thermal spray, the current roadmap shifts its focus to spray processes and vapor deposition methods aimed at decarbonizing aviation. Academic and industry experts are collaborating to share insights on how thermal spray and vapor deposition techniques and coatings can advance sustainable aviation and the necessary research to overcome associated challenges. This roadmap can serve as a valuable reference point for researchers aiming to understand the field’s trajectory and identify critical gaps to address.
Keywords:
abradable coatings
aerosol deposition
AI-driven modeling
anti-icing coatings aeronautics
anti-oxidation coatings
chord plasma spray
cold spray
complex parts
environmental analysis
environmental barriers coatings
numerical twins
polymer substrate
refurbishment
substrate preparation
suspension plasma spray
thermal barrier coatings
thermal spray
vapor deposition
wear-resistant coatings

Journal

Journal of Thermal Spray Technology cover
Journal of Thermal Spray Technology
IF:
3.3
Papers:
3.7K
Citations:
7.6K

Organization

U
University of Technology of Belfort-Montbéliard
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6
Papers: 6
Citations: 0
U
university of ottawa
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Y
Yokohama National University
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4.1K
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xi'an jiaotong university
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8.9W
Papers: 6.5W
Citations: 75
N
northwestern polytechnical university
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1.0W
Papers: 3.8K
Citations: 0
S
surface engineering institute
Scholars:
10
Papers: 5
Citations: 0
R
rolls-royce corporation
Scholars:
4
Papers: 4
Citations: 0
F
forschungszentrum jülich
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542
Papers: 227
Citations: 0
G
German Aerospace Center
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381
Papers: 128
Citations: 3
U
University West
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79
Papers: 50
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U
university of alberta
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5.0W
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M
mcgill university
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indian institute of technology kanpur
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488
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Wroclaw University of Technology
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3
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Helmut Schmidt University
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O
onera - universite paris-saclay
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3
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U
university of limoges
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57
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university of modena and reggio emilia
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901
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C
Concordia University
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929
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T
Trinity College Dublin
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university of stuttgart
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university of nottingham
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nasa glenn research center
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519
Papers: 424
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swinburne university of technology
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719
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university of toronto
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14.5W
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Citations: 165
U
University of Manchester
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Papers: 5.2W
Citations: 7.4W
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