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Remaining Fatigue Life Assessment of Plasma Sprayed Thermal Barrier Coatings

机译:等离子喷涂热障涂层的剩余疲劳寿命评估

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Ceramic functional coatings are frequently applied to structural materials, covering a wide range of thermomechanical and electrochemical applications. The main limiting feature is their reliability when subjected to cyclic transient thermal stresses. The study described in this article is a continuation of earlier research study focused on acoustic emission (AE) monitoring of the thermomechanical aging effects in ceramic coatings. Here, emphasis is placed on the usefulness of combining AE short-term monitoring with finite element modeling (FEM) to predict the performance of such coatings when subjected to cyclic thermal loads. The FEM study presented in this article is based on a three-dimensional, time-dependent approach, of the stress fields that developed within the coatings during the post-deposition cooling step and the thermal cycling. Experiments were conducted using yttrium-stabilized zirconia (YSZ) and Alumina (Al_2O_3) ceramic coatings combined with a NiCr-based intermetallic bond coat.
机译:陶瓷功能涂料经常用于结构材料,涉及范围广泛的热机械和电化学应用。主要的限制特征是它们在经受周期性瞬态热应力时的可靠性。本文描述的研究是对早期研究的延续,该研究专注于声发射(AE)监视陶瓷涂层中热机械老化效应。在这里,重点放在将AE短期监测与有限元建模(FEM)相结合以预测此类涂层在承受周期性热负荷时的性能的实用性。本文介绍的FEM研究基于三维,随时间变化的方法,研究了沉积后冷却步骤和热循环过程中涂层内部产生的应力场。使用钇稳定的氧化锆(YSZ)和氧化铝(Al_2O_3)陶瓷涂层与基于NiCr的金属间金属结合涂层进行实验。

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