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Characteristics of Thermal Cycle Damage of FGM Thermal Barrier Coatings in Vacuum

机译:真空中FGM热阻挡涂层热循环损伤特征

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摘要

Thermal cycle tests of thermal barrier coatings in vacuum were carried out to investigate the characteristics of thermal cycle damage and the effect of compositional gradient on thermal cycle damage. Surface cracks vertical to the coating surface were nucleated during thermal cycling, while no interlamellar crack along the interface between coating layers was found in vacuum. The compositional gradient significantly reduced the size and number of surface cracks nucleated during thermal cycle. This significant improvement in thermal cycle damage due to the compositional gradient results mainly from the improvement of material properties. No degradation of thermal barrier property during thermal cycling in vacuum was observed.
机译:进行真空中热障涂层的热循环试验,以研究热循环损伤的特性及成分梯度对热循环损伤的影响。 在热循环期间垂直于涂层表面的表面裂缝在循环期间核,同时在真空中发现沿涂层之间的界面的界面裂缝。 组成梯度显着降低了热循环期间核化的表面裂缝的尺寸和数量。 由于组成梯度而导致的热循环损伤的显着改善主要从材料特性的改善产生。 观察到在真空中热循环期间的热阻挡性能降解。

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