Thermal Conductivity Analysis and Lifetime Testing of Suspension Plasma-Sprayed Thermal Barrier Coatings

Анализ теплопроводности и испытания на долговечность теплозащитных покрытий, нанесённых плазменным напылением из суспензии
Nicolaie Markocsan, Kent VanEvery, Nicholas Curry, Todd Snyder
2014-08-15

gas turbine componentssuspension plasma sprayingthermal barrier coatingsthermal conductivitythermo-cyclic fatigue
Suspension plasma spraying (SPS) has become an interesting method for the production of thermal barrier coatings for gas turbine components. The development of the SPS process has led to structures with segmented vertical cracks or column-like structures that can imitate strain-tolerant air plasma spraying (APS) or electron beam physical vapor deposition (EB-PVD) coatings. Additionally, SPS coatings can have lower thermal conductivity than EB-PVD coatings, while also being easier to produce. The combination of similar or improved properties with a potential for lower production costs makes SPS of great interest to the gas turbine industry. This study compares a number of SPS thermal barrier coatings (TBCs) with vertical cracks or column-like structures with the reference of segmented APS coatings. The primary focus has been on lifetime testing of these new coating systems. Samples were tested in thermo-cyclic fatigue at temperatures of 1100 °C for 1 h cycles. Additional testing was performed to assess thermal shock performance and erosion resistance. Thermal conductivity was also assessed for samples in their as-sprayed state, and the microstructures were investigated using SEM.
1
Coating durability was evaluated through thermocyclic fatigue at 1100 °C using one-hour cycles, alongside thermal shock and erosion-resistance testing.
2
SPS coatings may provide lower thermal conductivity than EB-PVD coatings while offering simpler and potentially less costly production.
3
Suspension plasma spraying produces thermal barrier coatings with segmented vertical cracks or column-like structures resembling strain-tolerant APS and EB-PVD coatings.
4
The research correlates as-sprayed thermal conductivity and SEM-characterized microstructure with the performance of SPS thermal barrier coatings.
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The study compares multiple vertically cracked and columnar SPS coatings against segmented APS reference coatings.

Suspension plasma-sprayed thermal barrier coatings with segmented vertical cracks or column-like structures for gas turbine components

Thermal conductivity, thermo-cyclic lifetime, thermal shock performance, erosion resistance, and microstructure of the coatings compared with segmented air-plasma-sprayed reference coatings

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2014-08-15
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Authors
Nicolaie Markocsan
Kent VanEvery
Nicholas Curry
Todd Snyder
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