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Thermal Cycling Behavior of Lanthanum-Cerium Oxide Thermal Barrier Coatings Prepared by Air Plasma Spraying

机译:空气等离子喷涂制备的镧-铈氧化物热障涂层的热循环行为

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摘要

Lanthanum-cerium oxide (La_2Ce_2O_7, LC) is considered as a new candidate material for thermal barrier coatings (TBCs) because of its low thermal conductivity and high phase stability between room temperature and 1673K. The LC coatings with different La_2O_3 contents were prepared by air plasma spraying (APS) and their lifetime was evaluated by thermal cyclic testing from room temperature to 1373 K. The structures of the coatings were characterized by XRD and SEM and the deviation of the composition from the powder was determined by EDS analysis. Long time annealing for the freestanding coating at 1673K reveals that the near stoichiometric LC coating is stable up to 240h, and the stability decreases with increasing the deviation from stoichiometric LC composition. During thermal cyclic testing, spallation was observed within the top coat near the bond coat. It is considered that the effect of intrinsic stress caused by the coefficient of thermal expansion (CTE) mismatch between top coat and bond coat is larger than that of thermally grown oxide (TGO) and the bond adherence of top coat with TGO,
机译:镧铈氧化物(La_2Ce_2O_7,LC)被认为是热障涂层(TBC)的新候选材料,因为它的低导热性和在室温至1673K之间的高相稳定性。通过空气等离子喷涂(APS)制备了具有不同La_2O_3含量的LC涂层,并通过从室温到1373 K的热循环测试评估了它们的寿命。通过XRD和SEM表征了涂层的结构,并对涂层的结构进行了表征。通过EDS分析确定粉末。对于1673K的独立涂层进行长时间退火后,发现接近化学计量的LC涂层在240h内都保持稳定,并且随着与化学计量LC成分的偏差增加,稳定性降低。在热循环测试期间,在粘结涂层附近的面漆中观察到散裂。认为由面涂层和粘结涂层之间的热膨胀系数(CTE)不匹配引起的固有应力的影响大于热生长氧化物(TGO)以及面涂层与TGO的粘结粘附的影响,

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