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Effect of Hf Additions to Pt Aluminide Bond Coats on EB-PVD TBC Life

机译:Pt铝化物粘结涂层中添加Hf对EB-PVD TBC寿命的影响

摘要

Small Hf additions were incorporated into a Pt aluminide coating during chemical vapor deposition (CVD) on single crystal RENE N5 substrates. Standard yttria-stabilized zirconia top coats were subsequently deposited onto the coated substrates by electron beam-physical vapor deposition (EB-PVD). The coated substrates underwent accelerated thermal cycle testing in a furnace at a temperature in excess of 1121 C (2050 F) (45 minute hot exposure, 15 minute cool to approximately 121 C (250 F)) until the thermal barrier coating (TBC) failed by spallation. Incorporating Hf in the bond coat increased the TBC life by slightly more than three times that of a baseline coating without added Hf. Scanning electron microscopy of the spalled surfaces indicated that the presence of the Hf increased the adherence of the thermally grown alumina to the Pt aluminide bond coat. The presence of oxide pegs growing into the coating from the thermally grown alumina may also partially account for the improved TBC life by creating a near-surface layer with a graded coefficient of thermal expansion.
机译:在单晶RENE N5基板上进行化学气相沉积(CVD)的过程中,将少量Hf添加到Pt铝化物涂层中。随后通过电子束物理气相沉积(EB-PVD)将标准的氧化钇稳定的氧化锆面漆沉积到涂覆的基材上。涂覆的基材在超过1121 C(2050 F)的温度下的炉中进行加速的热循环测试(45分钟的热暴露,15分钟的冷却至约121 C(250 F)的温度),直到隔热涂层(TBC)失效为止通过散裂。将Hf掺入粘结涂层中,可使TBC寿命比不添加Hf的基线涂层的TBC寿命略高三倍以上。剥落表面的扫描电子显微镜表明,Hf的存在增加了热生长氧化铝对Pt铝化物键合涂层的附着力。从热生长的氧化铝生长到涂层中的氧化物钉的存在还可以部分地通过产生具有梯度的热膨胀系数的近表面层来改善TBC寿命。

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