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Mechanical Stability Diagrams for Thermal Barrier Coating Systems

机译:热屏障涂层系统的机械稳定性图

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摘要

Loss of mechanical integrity due to thermal aging and subsequent spallation of the ceramic top layer is one of the dominant failure mechanisms in thermal barrier coating systems. In order to predict and avoid such mechanical failure, a strain-based lifetime assessment model is presented for a novel double-layer thermal barrier system. The investigated ceramic system consists of a gadolinium zirconate layer on top of a layer of yttria-stabilized zirconia prepared by atmospheric plasma spraying. The mechanical stability diagrams generated by the model delineate areas of safe operation from areas where mechanical damage of the thermal barrier coating becomes imminent. Intensive ceramographic inspection is used to investigate the defect growth kinetics in the ceramic top coat after isothermal exposure. Four-point bending experiments with in situ acoustic emission measurement are utilized to determine the critical strain to failure. The results are then used to generate mechanical stability diagrams for the thermal barrier coatings. From these diagrams, it becomes evident that the gadolinium zirconate layer has significantly lower strain tolerance than the yttria-stabilized zirconia. However, the underlying yttria-stabilized zirconia layer will provide some thermal protection even when the gadolinium zirconate layer has failed.
机译:由于陶瓷顶层的热老化和随后的剥落而导致的机械完整性损失是热障涂层系统的主要失效机制之一。为了预测和避免此类机械故障,提出了一种新型双层热障系统的基于应变的寿命评估模型。所研究的陶瓷系统由氧化钇稳定的氧化锆层上的氧化钆锆层组成,氧化钇稳定的氧化锆层由大气等离子喷涂制备。该模型生成的机械稳定性图描绘了热障涂层即将发生机械损伤的安全操作区域。采用密集的陶瓷形貌检查,研究了等温暴露后陶瓷面漆中的缺陷生长动力学。利用现场声发射测量的四点弯曲实验来确定破坏的临界应变。然后将结果用于生成热障涂层的机械稳定性图。从这些图可以看出,锆酸钆层的应变容限明显低于钇稳定氧化锆层。然而,即使锆酸钆层失效,底层钇稳定的氧化锆层也将提供一些热保护。

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