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首页> 外文期刊>Solid state sciences >Influence of aluminium on the valence electron density of the interface between the bond-coat and the thermally grown oxide of thermal barrier coatings
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Influence of aluminium on the valence electron density of the interface between the bond-coat and the thermally grown oxide of thermal barrier coatings

机译:铝对粘结涂层与热障涂层热生长氧化物之间界面的价电子密度的影响

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摘要

The interface cohesion greatly affects the longevity of thermal barrier coatings (TBCs). The adherence and stress of the interface between the bond-coat and the thermally grown oxide (TGO) are considered as crucial properties governing the life times of TBCs. In this paper, the electron density of the bond-coat/TGO interface of TBCs was calculated with the empirical electron theory in solid and molecules. The calculation results of the electron density of the bond-coat/TGO interface with various bond-coat aluminium contents were analyzed in the views of interface bonding force, interface stress and interface stability. It is shown that the suitable aluminium content of the bond-coat should be in the ranges of 8- 10 wt percent and about 2 wt percent considering the bond-coat/TGO interface only. Taking the bond-coat/top-coat interface of TBCs into account, combining the consideration of the TGO forming ability, the suitable aluminium content becomes about 8 wt percent and a little less than 8 wt percent, which accords better with actual TBC applications. The deduction not only can be a useful reference to the composition design of the bond-coat of TBCs, but also shows the necessity of considering the electron density parameters of the interfaces of bond-coat/top-coat and bond-coat/ TGO simultaneously in the composition design of the bond-coat of TBCs.
机译:界面内聚力极大地影响了热障涂层(TBC)的寿命。粘结层和热生长氧化物(TGO)之间的界面的附着力和应力被视为控制TBC寿命的关键特性。本文利用经验电子理论计算了固体和分子中TBCs的键合涂层/ TGO界面的电子密度。从界面结合力,界面应力和界面稳定性的角度分析了不同铝含量的结合层/ TGO界面电子密度的计算结果。已经表明,仅考虑粘合涂层/ TGO界面,粘合涂层的合适的铝含量应在8-10重量%至约2重量%的范围内。考虑到TBC的粘结-涂层/面涂层界面,结合对TGO形成能力的考虑,合适的铝含量变为约8重量%且略小于8重量%,这与实际TBC应用更好。该推论不仅可以作为TBCs胶层组成设计的有益参考,而且还表明了同时考虑胶层/面漆和胶层/ TGO界面的电子密度参数的必要性。在TBC的粘结层的组成设计中。

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