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Thermal Conductivity of EB-PVD Thermal Barrier Coatings Evaluated by a Steady-State Laser Heat Flux Technique

机译:稳态激光热通量技术评估EB-PVD热障涂层的热导率

摘要

The thermal conductivity of electron beam-physical vapor deposited (EB-PVD) Zr02-8wt%Y2O3 thermal barrier coatings was determined by a steady-state heat flux laser technique. Thermal conductivity change kinetics of the EB-PVD ceramic coatings were also obtained in real time, at high temperatures, under the laser high heat flux, long term test conditions. The thermal conductivity increase due to micro-pore sintering and the decrease due to coating micro-delaminations in the EB-PVD coatings were evaluated for grooved and non-grooved EB-PVD coating systems under isothermal and thermal cycling conditions. The coating failure modes under the high heat flux test conditions were also investigated. The test technique provides a viable means for obtaining coating thermal conductivity data for use in design, development, and life prediction for engine applications.
机译:通过稳态热通量激光技术确定了电子束物理气相沉积(EB-PVD)Zr02-8wt%Y2O3热障涂层的热导率。在高温,激光高热通量,长期测试条件下,还可以实时获得EB-PVD陶瓷涂层的热导率变化动力学。对于等温和热循环条件下的带槽和无槽EB-PVD涂层系统,评估了由于微孔烧结引起的热导率增加以及由于EB-PVD涂层中的涂层微分层而引起的热导率降低。还研究了在高热通量测试条件下的涂层破坏模式。该测试技术提供了一种可行的手段,可获取涂层导热系数数据,以用于发动机应用的设计,开发和寿命预测。

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