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Effect of processing parameters on MCrAlY bondcoat roughness and lifetime of APS-TBC systems

机译:工艺参数对APS-TBC体系MCrAlY粘结涂层粗糙度和寿命的影响

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In the present work it is shown that the lifetime of air plasma sprayed thermal barrier coatings systems with high velocity oxyfuel bondcoats can be substantially extended by application of a thin air plasma sprayed "flashcoat" layer onto the base, high velocity oxyfuel bondcoat. This approach allows improvement of the bondcoat roughness profile to the extent typically obtained by optimized vacuum plasma spraying. The oxidation resistance of the flashcoat strongly depends on the spray parameters used. Deviation from the set of the optimized spray parameters was found to result in early catastrophic oxidation of the flashcoat and corresponding very rapid thermal barrier coating-failure. In order to explain the thermal barrier coating lifetime variations between the various bondcoat morphologies, the roughness profiles of high velocity oxyfuel, vacuum plasma sprayed and air plasma sprayed bondcoats were evaluated using fractal analysis. It is suggested that such an approach provides better correlation between the bondcoat morphology and thermal barrier coating-lifetime than the calculation of the arithmetic mean roughness (R-a) of the bondcoat frequently used in industrial practice. (C) 2014 Elsevier B.V. All rights reserved.
机译:在本工作中表明,通过将薄的空气等离子体喷涂的“闪光涂层”层施加到基本的高速氧燃料粘合涂层上,可以实质上延长具有高速氧燃料粘合涂层的空气等离子体喷涂热障涂层系统的寿命。该方法允许将粘结涂层的粗糙度轮廓改善到通常通过优化的真空等离子体喷涂获得的程度。闪光涂料的抗氧化性在很大程度上取决于所使用的喷涂参数。发现偏离最佳喷涂参数的设置会导致底涂层的早期灾难性氧化,并导致非常快速的热障涂层失效。为了解释隔热涂层寿命在各种粘结涂层形态之间的变化,使用分形分析评估了高速含氧燃料,真空等离子喷涂和空气等离子喷涂的粘结涂层的粗糙度。有人建议,这种方法比在工业实践中经常使用的算术平均粗糙度(R-a)的计算要好,可以在粘合剂涂层的形态和隔热涂层的使用寿命之间提供更好的相关性。 (C)2014 Elsevier B.V.保留所有权利。

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