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TGO Growth and Crack Propagation in a Thermal Barrier Coating

机译:热障涂层中TGO的生长和裂纹扩展

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摘要

In thermal barrier coating (TBC) systems, a continuous alumina layer developed at the ceramic topcoat/bond coat interface helps to protect the metallic bond coat from further oxidation and improve the durability of the TBC system under service conditions. However, other oxides such as spinel and nickel oxide, formed in the oxidizing environment, are believed to be detrimental to TBC durability during service at high temperatures. It was shown that in an air-plasma-sprayed (APS) TBC system, postspraying heat treatments in low-pressure oxygen environments could suppress the formation of the detrimental oxides by promoting the formation of an alumina layer at the ceramic topcoat/bond coat interface, leading to an improved TBC durability. This work presents the influence of postspraying heat treatments in low-pressure oxygen environments on the oxidation behavior and durability of a thermally sprayed TBC system with high-velocity oxy-fuel (HVOF)-produced Co-32Ni-21Cr-8Al-0.5Y (wt.%) bond coat. Oxidation behavior of the TBCs is evaluated by examining their microstructural evolution, growth kinetics of the thermally grown oxide (TGO) layers, and crack propagation during low-frequency thermal cycling at 1050 °C. The relationship between the TGO growth and crack propagation will also be discussed.
机译:在热障涂层(TBC)系统中,在陶瓷面漆/粘结层界面处形成的连续氧化铝层有助于保护金属粘结层免于进一步氧化,并改善了TBC系统在使用条件下的耐久性。然而,据信在氧化环境中形成的其他氧化物,例如尖晶石和氧化镍,在高温下使用期间不利于TBC耐久性。结果表明,在空气等离子喷涂(APS)TBC系统中,在低压氧气环境中进行后祈祷热处理可以通过促进陶瓷面漆/粘结层界面处氧化铝层的形成来抑制有害氧化物的形成。 ,从而提高了TBC的耐久性。这项工作提出了在低压氧气环境中进行后祈祷热处理对使用高速含氧燃料(HVOF)生产的Co-32Ni-21Cr-8Al-0.5Y的热喷涂TBC系统的氧化行为和耐久性的影响( wt。%)粘结层。通过检查TBC的微观结构演变,热生长氧化物(TGO)层的生长动力学以及在1050°C的低频热循环过程中的裂纹扩展,可以评估它们的氧化行为。 TGO的增长与裂纹扩展之间的关系也将被讨论。

著录项

  • 来源
    《Journal of Thermal Spray Technology》 |2008年第6期|858-864|共7页
  • 作者单位

    Institute for Aerospace Research SMPL National Research Council Canada Ottawa ON Canada K1A 0R6;

    Department of Mechanical and Aerospace Engineering Carleton University Ottawa ON Canada K1S 5B6;

    Department of Mechanical and Aerospace Engineering Carleton University Ottawa ON Canada K1S 5B6;

    Industrial Materials Institute National Research Council Canada Boucherville QC Canada J4B 6Y4;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    crack propagation; HVOF; TBC; TGO growth;

    机译:裂纹扩展;HVOF;TBC;TGO生长;

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