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Performance of vacuum plasma spray and HVOF bond coatings at 900 degrees and 1100 degrees C

机译:真空等离子喷雾和HVOF键合在900度和1100摄氏度的粘合涂层

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摘要

The effects of Ti and B additions to a vacuum plasma sprayed (VPS) NiCoCrAlYHfSi bond coating on thermal barrier coating (TBC) performance were studied at 1100 degrees C and 900 degrees C and compared to high-velocity oxy-fuel (HVOF) bond coatings. Using alloy 247 substrates and air plasma sprayed Y2O3-stabilized ZrO2 top coatings, additions of B or Ti + B did not improve the average TBC lifetime in 1-h cycles at 1100 degrees C in air with 10% H2O. The addition of Ti resulted in a decrease in lifetime. Photo-stimulated luminescence spectroscopy was used to map residual stresses in the thermally-grown Al2O3 scale. At 900 degrees C, closer to a typical land based turbine operating bond coating temperature, specimens were examined after ten 500-h cycles in laboratory air and air with 10%H2O to study the effect of H2O. The addition of water vapor had little effect on the measured parabolic rate constants at 900 degrees C and a comparison of the oxide microstructures in both environments is reported.
机译:在1100℃和900摄氏度中研究了Ti和B添加到真空等离子体喷涂(VPS)Nicocralyhfsi键合涂层的效果,并与高速氧 - 燃料(HVOF)粘合涂层相比,研究了热阻挡涂层(TBC)性能。 。使用合金247基板和空气等离子体喷涂Y2O3稳定的ZrO2顶涂层,B或Ti + B的添加在1100℃的空气中没有提高1-H循环的平均TBC寿命,10%H 2 O。加入Ti导致寿命减少。光刺激的发光光谱法用于在热生长的Al2O3刻度中映射残余应力。在900摄氏度下,更接近典型的陆基涡轮机操作键合涂层温度,在实验室空气和空气中的10 500小时循环后检查标本,其中10%H2O学习H2O的作用。添加水蒸气对900摄氏度的测量抛物速度常数几乎没有影响,并报告了两种环境中的氧化物微观结构的比较。

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