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Failure mechanisms of thermal barrier coatings exposed to elevated temperatures

机译:隔热涂层暴露于高温下的失效机理

摘要

The failure of a ZrO2-8%Y2O3/Ni-14% Al-0.1% Zr coating system on Rene 41 in Mach 0.3 burner rig tests was characterized. High flame and metal temperatures were employed in order to accelerate coating failure. Failure by delamination was shown to precede surface cracking or spalling. This type of failure could be duplicated by cooling down the specimen after a single long duration isothermal high temperature cycle in a burner rig or a furnace, but only if the atmosphere was oxidizing. Stresses due to thermal expansion mismatch on cooling coupled with the effects of plastic deformation of the bond coat and oxidation of the irregular bond coat are the probable life limiting factors. Heat up stresses alone could not fail the coating in the burner rig tests. Spalling eventually occurs on heat up but only after the coating has already failed through delamination.
机译:表征了在0.3马赫燃烧机试验中Rene 41上ZrO2-8%Y2O3 / Ni-14%Al-0.1%Zr涂层系统的失效。采用较高的火焰和金属温度以加速涂层失效。结果表明,脱层失败是在表面开裂或剥落之前。这种类型的故障可以通过在燃烧设备或熔炉中进行单个长时间的等温高温循环后冷却样品来重复进行,但前提是大气正在氧化。冷却时由于热膨胀失配引起的应力,再加上粘结层的塑性变形和不规则粘结层的氧化,是可能的寿命限制因素。仅加热应力就不能在燃烧器试验中使涂层失效。剥落最终会在加热时发生,但仅在涂层已经因分层而失效之后才发生。

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  • 作者

    Miller R. A.; Lowell C. E.;

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  • 年度 1982
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