期刊
METALS AND MATERIALS INTERNATIONAL
卷 27, 期 7, 页码 1947-1968出版社
KOREAN INST METALS MATERIALS
DOI: 10.1007/s12540-020-00705-w
关键词
Thermal barrier coating; Residual stresses; Life prediction; High temperature behavior; Spraying techniques
Thermal barrier coatings have advanced significantly since their initial development, and are now widely used in various engineering fields. The focus is on improving the life of the underlying substrate through new materials and deposition techniques. There is high potential for further advancement in thermal barrier coatings, with continuous efforts being made to produce improved and durable coatings.
Thermal barrier coatings (TBCs) have seen considerable advancement since the initial testing and development of thermal spray coating. Thermal barrier coatings are currently been utilized in various engineering areas which include internal combustion engines, gas turbine blades of jet engines, pyrochemical reprocessing units and many more. The development of new materials, deposition techniques is targeted at improving the life of the underlying substrate. Hence, the performance of the coating plays a vital role in improving the life of substrate. The scope for advancement in thermal barrier coatings is very high and continuous efforts are being made to produce improved and durable coatings. Thermal barrier coatings have the potential to address long term and short-term problems in gas turbine, internal combustion and power generation industry. The study of thermal barrier coating material, performance and life estimation is a critical factor that should be understood to introduce any advancement. The present review gives an overview of the thermal spraying techniques and current advancements in materials, mechanical properties, understanding the high temperature performance, residual stress in the coating, understanding the failure mechanisms and life prediction models for coatings. Graphic
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