A Perspective on Thermally Sprayed Thermal Barrier Coatings: Current Status and Trends

Перспективы термобарьерных покрытий, нанесённых методом термического напыления: современное состояние и тенденции
Emine Bakan, Robert Vaßen, Daniel Emil Mack, Olivier Guillon
2022-02-22

atmospheric plasma sprayingelectron beam physical vapor depositionthermal barrier coatingsthermal spray methodsyttria-stabilized zirconia
Abstract For more than 6 decades, thermal barrier coatings have been used to protect structural parts in both stationary and aviation gas turbines. These coatings allow the use of significant higher operation temperatures and hence increased efficiencies. In the 1970s, yttria-stabilized zirconia (YSZ) was identified as outstanding material for this application. As major deposition technologies both electron beam physical vapor deposition (EB-PVD) and atmospheric plasma spraying (APS) have been established. Although the topic is already rather old, there are still frequent activities ongoing to further improve the technology, both with respect to materials and microstructural issues also regarding the use of advanced coating technologies, especially in the field of thermal spray. The paper tries to summarize major developments in both fields, the materials and the processing focusing on thermal spray methods. The impact of both materials and processing are summarized by the results of burner rig tests for various systems. Furthermore, a short outlook on possible future directions of developments will be given.
1
Burner rig testing is used to summarize how material selection and processing conditions affect the performance of various thermal barrier coating systems.
2
Continued development targets both coating materials and microstructures, with particular emphasis on advancing thermal spray processing technologies.
3
Electron beam physical vapor deposition and atmospheric plasma spraying became established principal deposition technologies for thermal barrier coatings.
4
Thermal barrier coatings enable substantially higher operating temperatures in stationary and aviation gas turbines, thereby improving turbine efficiency.
5
Yttria-stabilized zirconia was identified in the 1970s as an outstanding thermal barrier coating material.

Thermal barrier coatings for structural parts in stationary and aviation gas turbines

Materials, microstructure, deposition processing, and burner-rig performance of thermally sprayed thermal barrier coating systems

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Publication Date
2022-02-22
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Authors
Emine Bakan
Robert Vaßen
Daniel Emil Mack
Olivier Guillon
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