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BURNER RIG TESTING OF THERMAL BARRIER COATINGS FOR LIFETIME PREDICTION

机译:隔热层的BURNER RIG测试以预测使用寿命

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Thermal barrier coating lifetime prediction has been commonly performed using furnace cyclic test results. This testing method causes coating failures driven by the bondcoat oxidation. This allows definition of lifetime prediction models representative of the field experience for thin thermal barrier coating systems where the difference between the bondcoat temperature and the coating surface are limited to 100-200 °C. Thick thermal barrier coating systems can experience coating surface temperatures 500 °C higher than the bondcoat temperature. In such cases sintering and phase transformations in the ceramic layers can also affect the coating lifetime. For this reason cyclic test methods like thermal gradient burner rig and laser heat-flux tests have been developed. They allow to test a coating system with surface temperatures >1400 °C while keeping bondcoat temperature <900 °C. The main issue of such tests is the often limited samples statistic, the reproducibility of the test conditions, and the coating failure mode that is not representative of the field experience. In Alstom, a burner rig test has been developed to solve these issues. It allows to test in parallel 10 samples, with a closed loop control system allowing live adjustment of the heat and cooling air input to keep an individually controlled constant thermal gradient with a homogeneous temperature distribution on the sample surface. Modeling of the test has been performed to understand the coating failure mechanism and to adapt the testing conditions such to get a failure mechanism closer to the relevant degradation mechanisms experienced in the field. Testing of coatings coming from the same production batch in various test campaign shows a low scatter in test results confirming that the burner rig test design allowed solving the test reproducibility and samples statistics issues. Examples will be shown how this burner rig test can be used for the development of lifetime prediction rules for thermal barrier coating systems.
机译:隔热涂层寿命的预测通常使用炉子的循环测试结果来进行。这种测试方法会导致由粘结涂层氧化驱动的涂层失效。这允许定义代表薄热障涂层系统现场经验的寿命预测模型,在该系统中,粘合层温度和涂层表面之间的差异限制在100-200°C之间。厚热障涂层系统的涂层表面温度可能比粘合涂层温度高500°C。在这种情况下,陶瓷层中的烧结和相变也会影响涂层寿命。因此,已经开发出了诸如热梯度燃烧器装置和激光热通量测试之类的循环测试方法。他们可以测试表面温度> 1400°C的涂料体系,同时保持粘结涂层温度<900°C。此类测试的主要问题是经常统计有限的样品统计信息,测试条件的可重复性以及不能代表现场经验的涂层失效模式。在阿尔斯通,已经开发了燃烧器装置测试来解决这些问题。它允许使用一个闭环控制系统并行测试10个样品,该系统允许实时调节热和冷却空气输入,以保持独立控制的恒定热梯度,并在样品表面上保持均匀的温度分布。已经进行了测试建模,以了解涂层失效机理并适应测试条件,以使失效机理更接近本领域中经历的相关降解机理。在各种测试活动中对来自同一生产批次的涂料进行的测试显示出较低的测试结果分散度,这表明燃烧器装置的测试设计可以解决测试的可重复性和样品统计问题。将举例说明如何将这种燃烧器试验用于开发热障涂层系统的寿命预测规则。

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