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首页> 外文期刊>Journal of the European Ceramic Society >Sintering resistance of suspension plasma sprayed 7YSZ TBC under isothermal and cyclic oxidation
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Sintering resistance of suspension plasma sprayed 7YSZ TBC under isothermal and cyclic oxidation

机译:悬浮等离子体的烧结抗性在等温和循环氧化下喷洒7毫秒TBC

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摘要

This study examines sintering resistance of a thermal barrier coating (TBC), composed of a 7YSZ suspension plasma sprayed (SPS) top coat (TC), an air plasma sprayed (APS) NiCoCrAI bond coat (BC), and an INCONEL 625 substrate, under isothermal and cyclic conditions with a peak temperature of 1080 degrees C for 400, 800, and 1300 h/cycles. Microstructure, phase composition and microstrain were examined using SEM and XRD. Mechanical properties of fracture toughness, hardness and elastic modulus were obtained using nano-indentation. Samples under cyclic conditions presented faster sintering rate than under isothermal condition due to larger compressive strain and frequent heating and cooling cycles. Faster degradation of mechanical properties due to sintering leads to shorter lifetime of SPS coating under cyclic conditions. Moreover, vertical cracks within SPS coatings reduces compressive stress leading to a greater lifetime as compared to APS coatings exposed to similar conditions.
机译:该研究检查了热屏障涂层(TBC)的烧结电阻,由7YSZ悬浮等离子体喷涂(SPS)顶部涂层(Tc),空气等离子体喷涂(APS)NicoCrai键合(BC)和Inconel 625衬底组成, 在等温和循环条件下,峰值温度为1080℃,400,800和1300小时/循环。 使用SEM和XRD检查微观结构,相组合物和微陶器。 使用纳米缩进获得断裂韧性,硬度和弹性模量的力学性能。 由于较大的压缩应变和频繁加热和冷却循环,循环条件下的样品呈现比等温条件更快的烧结率。 由于烧结而更快地降解机械性能导致循环条件下的SPS涂层的寿命更短。 此外,与暴露于相似条件的APS涂层相比,SPS涂层内的垂直裂缝降低了导致寿命更大的压缩应力。

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