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首页> 外文期刊>Journal of Solid Mechanics and Materials Engineering >Software Tools for Lifetime Assessment of Thermal Barrier Coatings Part II — Bond Coat Aluminum Depletion Failure
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Software Tools for Lifetime Assessment of Thermal Barrier Coatings Part II — Bond Coat Aluminum Depletion Failure

机译:用于热障涂层寿命评估的软件工具,第二部分-粘结层铝耗竭失败

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摘要

The use of thermal barrier coatings (TBCs) made from yttria stabilized zirconia (YSZ) on superalloy base materials has been a significant step to a new level of operational limits in high temperature applications. By the application of a TBC in conjunction with cooling of the component material the operating temperature can be raised and higher efficiencies are achieved. As a consequence of the raised temperature failure of a TBC leads to an increased oxidative attack of the underlying bond coat material and therefore needs to be avoided. The lifetime prediction of thermal barrier coatings is therefore of interest to ensure safe operation within the inspection intervals. Several mechanisms have been identified to play a critical role in the degradation of TBC systems. Here we discuss failure of TBC systems due to bond coat aluminum depletion. This type of chemical failure may occur when the bond coat material is critically depleted of aluminum and instead of a dense slow growing α-alumina the formation of voluminous and fast growing spinels is promoted. Lifetime prediction for this failure mode requires a fundamental understanding of diffusion mechanisms and in particular the interaction of different diffusion rates in the bond coat and substrate material. Aim of this work was therefore to develop software tools that allow user friendly analysis of measured Al profiles for the assessment of diffusion rates and consequently for lifetime prediction.
机译:在高温合金中,将由氧化钇稳定的氧化锆(YSZ)制成的隔热涂层(TBC)用于高温应用已迈出了新的一步。通过结合TBC的应用和零件材​​料的冷却,可以提高工作温度并获得更高的效率。由于升高的TBC的温度失效的结果导致下面的粘结涂层材料的增加的氧化侵蚀,因此需要避免。因此,对隔热涂层的寿命预测至关重要,以确保在检查间隔内安全运行。已经确定了几种机制在TBC系统的降解中起关键作用。在这里,我们讨论由于粘结层铝耗竭而导致的TBC系统故障。当粘结涂层材料中的铝被严重耗尽时,可能会发生这种化学破坏,并且代替了缓慢生长的致密α-氧化铝,而是促进了大量且快速生长的尖晶石的形成。对于这种失效模式的寿命预测需要对扩散机理有一个基本的了解,尤其是在粘结层和基材中不同扩散速率之间的相互作用。因此,这项工作的目的是开发软件工具,该工具允许用户对测量的Al分布图进行用户友好的分析,以评估扩散速率,从而进行寿命预测。

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