Failure mechanisms and structure tailoring of YSZ and new candidates for thermal barrier coatings: A systematic review

Механизмы разрушения и структурная оптимизация YSZ и новых материалов-кандидатов для теплозащитных покрытий: систематический обзор
Amirhossein Pakseresht, Fariborz Sharifianjazi, Amirhossein Esmaeilkhanian, Leila Bazli, Mehdi Reisi Nafchi, Milad Bazli, A.M. Kamalan Kirubaharan
2022-08-09

CMAS attackTBC failure mechanismsYSZthermal barrier coatingsthermal cycling lifetime
Many factors influence the durability of thermal barrier coatings (TBCs), therefore, in order to tailor these engineering materials for high-temperature applications, it is required to have a comprehensive understanding of the effects of the contributing factors and their interaction for the development of advanced TBCs. This article gives an overview of the failure mechanisms including sintering, TGO growth, thermal shock, CMAS attack, hot corrosion, erosion, and foreign object damage. Also, the approaches that have been investigated to alleviate the adverse effects of the degradation mechanisms were discussed. In addition to chemical and structural modifications of conventional TBCs, new ceramic materials, such as La2Zr2O7, La2Ce2O7, Gd2Zr2O7, SrZrO3, and LaMgAl11O19, as further candidates for TBC applications were reviewed. These TBC candidate materials have been discussed in terms of their thermal conductivity, thermal expansion coefficients, corrosion resistance characteristics, thermophysical properties, and thermal cycling lifetime.
1
Candidate materials are compared using thermal conductivity, thermal expansion, corrosion resistance, thermophysical properties, and thermal cycling lifetime.
2
Chemical and structural modifications of conventional TBCs are reviewed as approaches for mitigating degradation and improving coating durability.
3
La2Zr2O7, La2Ce2O7, Gd2Zr2O7, SrZrO3, and LaMgAl11O19 are assessed as alternative ceramic candidates for thermal barrier coatings.
4
TBC durability is governed by interacting factors, requiring comprehensive consideration when tailoring coatings for high-temperature applications.
5
The review identifies sintering, TGO growth, thermal shock, CMAS attack, hot corrosion, erosion, and foreign object damage as major TBC failure mechanisms.

YSZ and candidate ceramic thermal barrier coating materials for high-temperature applications

Failure mechanisms, degradation mitigation, structure tailoring, and thermophysical and durability performance of thermal barrier coatings

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2022-08-09
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Amirhossein Pakseresht
Fariborz Sharifianjazi
Amirhossein Esmaeilkhanian
Leila Bazli
Mehdi Reisi Nafchi
Milad Bazli
A.M. Kamalan Kirubaharan
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