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Some aspects of thick thermal barrier coatings lifetime prolongation

机译:厚热障涂层使用寿命延长的某些方面

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Much research has been performed in the field of thermal barrier coatings (TBCs) deposited by atmospheric plasma spraying of ZrO{sub}2-Y{sub}2O{sub}3. The necessity of efficient thermal insulation, corrosion resistance, and sufficient lifetime under thermomechanical loads promotes the development of TBCs of several millimeters in thickness. However, some problems arise with the production of thick TBCs, such as poor adhesion and low thermal shock resistance. These problems are not observed clearly when the TBCs are, for example, 300μm thick. This article presents strategies of thick TBC lifetime optimization by different cooling systems. Attempts have been made to improve thermal shock resistance (TSR) by applying thicker coatings with graded porosity, but they failed. Besides metallographical evaluation and scanning electron microscopy (SEM) analysis, microcracks and porosity were determined. Furthermore, the results of bond strength and burner rig tests are presented, and forthcoming experimental tasks are outlined.
机译:在通过大气等离子喷涂ZrO {sub} 2-Y {sub} 2O {sub} 3沉积的热障涂层(TBC)领域已经进行了许多研究。有效的隔热,耐腐蚀和在热机械载荷下具有足够使用寿命的必要性促进了几毫米厚的TBC的发展。然而,在生产厚的TBC时会出现一些问题,例如粘合性差和耐热冲击性低。当TBC为例如300μm厚时,这些问题不能清楚地观察到。本文介绍了通过不同的冷却系统优化厚TBC寿命的策略。已经尝试通过涂覆具有分级孔隙率的较厚涂层来改善抗热震性(TSR),但是它们失败了。除了金相评估和扫描电子显微镜(SEM)分析,还确定了微裂纹和孔隙率。此外,介绍了粘结强度和燃烧器试验的结果,并概述了即将进行的实验任务。

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