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Modelling the influence of reactive elements on the work of adhesion between a thermally grown oxide and a bond coat alloy

机译:模拟反应性元素对热生长氧化物和粘结层合金之间粘附作用的影响

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摘要

The durability of thermal barrier coating systems is primarily determined by the degree of adhesion between the thermally grown oxide (TGO) and the bond coat. Failure of the TBC is often the result of delamination at this interface. Adhesion can be improved by the addition of reactive elements (RE) to the bond coat alloy. REs include oxide forming elements such as Y, Zr and Hf. The so-called reactive element effect has been attributed to a direct improvement of the bonding between the TGO and the bond coat. A macroscopic atom model has been developed to allow the work of adhesion between two compounds (e.g. an oxide and a metal compound) to be estimated. By calculating the work of adhesion across a number of different interfaces, the influence of reactive elements and impurities present in the substrate can be assessed. It has been found that the REs have a limited direct influence on the work of adhesion and can even result in a weaker interface. A large reduction in the work of adhesion is calculated when S and C are present at the interface. REs have a high affinity for both S and C. This indicates that the RE effect is primarily that of impurity scavenging, preventing diffusion of impurities to the interface. A number of experiments are reported, which demonstrate the RE effect and support the modelling results.
机译:隔热涂层系统的耐久性主要取决于热生长氧化物(TGO)与粘结涂层之间的粘附程度。 TBC的故障通常是该界面处分层的结果。可以通过向粘结层合金中添加反应性元素(RE)来改善附着力。 RE包括氧化物形成元素,例如Y,Zr和Hf。所谓的反应性元素效应归因于TGO和粘结涂层之间的粘结的直接改善。已经开发了宏观原子模型以允许估计两种化合物(例如,氧化物和金属化合物)之间的粘附功。通过计算在许多不同界面上的粘合功,可以评估基材中存在的反应性元素和杂质的影响。已经发现,RE对粘合的作用具有有限的直接影响,甚至可能导致较弱的界面。当界面处存在S和C时,可大大降低粘合功。 RE对S和C都具有很高的亲和力。这表明RE效应主要是清除杂质,从而防止杂质扩散到界面。报告了许多实验,这些实验证明了RE效果并支持建模结果。

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