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On the failure mechanisms of thermal barrier coatings with diffusion aluminide bond coatings

机译:扩散铝化物粘结涂层的热障涂层的失效机理

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The mechanisms governing the failure of multi-layer thermal barrier systems based on Pt-modified nickel aluminide bond coats and electron beam deposited thermal barrier coatings (TBCs) have been studied. The primary experimental variable is the morphology of the bond coat surface prior to application of the TBC, at constant multi-layer chemistry. The durability of these systems in a furnace cycle test has been measured and compared. The failure mechanisms, as well as the thickening of the thermally grown oxide (TGO), have been characterized for each of the surface morphologies. The major findings are that the durability is enhanced by removing imperfections on the surface of the bond coat, as well as by surface pre-treatments that diminish subsequent TGO thickening and by incorporating a reactive-element in the substrate that strengthens the bond coat upon inter-diffusion during manufacture. These effects are consistent with the expectations of a TGO instability mechanism, driven by a combination of growth and thermal expansion misfit strains in the TGO. The grain structure of the bond coat also affects failure through its influence on the TGO instability sites.
机译:研究了基于Pt改性的铝化镍粘结涂层和电子束沉积的热障涂层(TBC)的多层热障系统的失效机理。主要的实验变量是在恒定的多层化学条件下,在应用TBC之前,粘结涂层表面的形态。这些系统在炉子循环测试中的耐久性已得到测量和比较。已经针对每种表面形态表征了失效机理以及热生长氧化物(TGO)的增稠。主要发现是,通过消除粘结涂层表面上的瑕疵,以及通过减少后续TGO增稠的表面预处理,以及通过在基材中加入反应性元素来增强粘结层的耐久性,从而增强了耐久性-制造过程中的扩散。这些影响符合TGO不稳定机制的预期,这是由TGO中的增长和热膨胀失配应变共同驱动的。粘结涂层的晶粒结构还通过影响TGO不稳定部位来影响破坏。

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