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The Effect of Coating Composition and Geometry on TBC Lifetime

机译:涂料组合物和几何对TBC寿命的影响

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Several factors are being investigated that affect the performance of thermal barrier coatings (TBC) for use in land-based gas turbines where coatings are mainly thermally sprayed. This study examined high velocity oxygen fuel (HVOF), air plasma sprayed (APS) and vacuum plasma sprayed (VPS) MCrAlYHfSi bond coatings with APS YSZ top coatings at 900°-1100°C. For superalloy 247 substrates and VPS coatings tested in 1-h cycles at 1100°C, removing 0.6wt.%Si had no effect on average lifetime in 1-h cycles at 1100°C, but adding 0.3%Ti had a negative effect. Rod specimens were coated with APS, HVOF and HVOF with an outer APS layer bond coating and tested in 100-h cycles in air+10%H_2O at 1100°C. With an HVOF bond coating, initial results indicate that 12.5 mm diameter rod specimens have much shorter 100-h cycle lifetimes than disk specimens. Longer lifetimes were obtained when the bond coating had an inner HVOF layer and outer APS layer.
机译:正在研究几种因素,影响热屏障涂层(TBC)的性能,用于用于焊盘的燃气轮机,其中涂层主要是热喷涂。本研究检测了高速氧气燃料(HVOF),空气等离子体喷涂(APS)和真空等离子体喷涂(VPS)McralyHFSI键合涂层,APS YSZ顶层涂层在900°-1100℃下。对于高温合金247底物和VPS涂层在1100℃下在1-H循环中测试,除去0.6wt。%Si在1100℃下的1-H循环中的平均寿命没有影响,但增加0.3%Ti具有负效应。用外部APS层粘合涂层涂覆棒状,HVOF和HVOF,并在1100℃下在空气中的100-H周期中测试。通过HVOF键合涂层,初始结果表明12.5毫米直径的杆状试样比盘样本更短100-H循环寿命。当键合涂层具有内部HVOF层和外APS层时,获得寿命更长。

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