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Failure mechanisms of dense vertically-cracked thermal barrier coatings

机译:致密的垂直裂纹热障涂层的失效机理

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Failure lives and failure mechanisms of samples coated with dense vertically-cracked (DVC) thermal barrier coatings (TBCs) were studied in cyclic furnace tests using 1-h cycles at three different temperatures: 1100℃, 1121℃ and 1151℃. Average failure life at 1100℃ cycles was six times longer than at 1151℃. At all the three temperatures in the 1-h cycle tests, progressive cracking of the TBC near and parallel to the interface with the bond coat was observed beginning typically at 25% of the expected failure life. The measured density of such cracks increased almost linearly with cycles. Strains imposed on the TBC by progressive distortion of the bond coat (rumpling) are believed to be primarily responsible for the observed cracking with a secondary role played by the formation of chromia in the bond coat.
机译:在循环炉试验中,在三种不同温度(1100℃,1121℃和1151℃)下,通过1-h循环研究了用致密的垂直裂纹(DVC)热障涂层(TBC)涂层的样品的失效寿命和失效机理。 1100℃循环的平均故障寿命是1151℃的六倍。在1小时循环测试中的所有三个温度下,观察到TBC在与粘结涂层的界面附近并平行时逐渐开裂,通常始于预期失效寿命的25%。此类裂纹的实测密度几乎随周期线性增加。人们认为,由于粘结层的逐渐变形(起皱)而在TBC上施加的应变是观察到的开裂的主要原因,而裂纹是由粘结层中氧化铬的形成所起的辅助作用。

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