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Mechanisms of spallation of solution precursor plasma spray thermal barrier coatings

机译:溶液前体等离子喷涂热障涂层剥落的机理

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摘要

The durability and failure mechanisms of solution precursor plasma spray (SPPS) thermal barrier coatings (TBCs) are investigated. SPPS TBCs exhibit an average life of 1018 cycles in a 1-h 1121 degreesC cycle furnace test, that is more than 2.5 times of that of a commercial APS TBC in the same test. Failure of the SPPS TBC starts with crack initiation along the unmelted particles in the ceramic top coat and the non-alumina oxides. The cracks propagate and coalesce with thermal cycling. The extensive cracking of the rapidly formed non-alumina oxides, resulting from the depletion of aluminum in the bond coat, leads to the development of a large separation between the TBC and substrate. When a crack of sufficient size emerges, the TBC separates from the metal substrate by large scale buckling. The greatly improved durability of the SPPS TBCs compared to APS TBCs on the same substrate and bond coat is attributed to the reduced stress near the bond coat-SPPS ceramic interface as a result of the vertical microcracks in the SPPS microstructure. (C) 2004 Elsevier B.V. All rights reserved.
机译:研究了溶液前驱体等离子喷涂(SPPS)热障涂层(TBC)的耐久性和失效机理。在1小时1121摄氏度的循环炉测试中,SPPS TBC的平均寿命为1018个循环,是同一测试中商用APS TBC的2.5倍以上。 SPPS TBC的失败始于沿着陶瓷外涂层和非氧化铝氧化物中未熔融颗粒的裂纹萌生。裂纹随着热循环而扩展并聚结。由于粘合剂涂层中铝的消耗而导致快速形成的非氧化铝氧化物的大量开裂,导致在TBC和基材之间形成较大的分离。当出现足够大的裂纹时,TBC会通过大规模屈曲而与金属基板分离。与SPPS TBC在相同基材和粘结涂层上的耐久性相比,SPPS TBC的耐久性大大提高,这归因于SPPS微结构中垂直微裂纹的出现,从而降低了粘结涂层-SPPS陶瓷界面附近的应力。 (C)2004 Elsevier B.V.保留所有权利。

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