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Characterization of thermal barrier coated various aerospace alloys

机译:热障涂层的各种航空合金的表征

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摘要

Purpose - Thermal barrier coatings (TBCs) are widely used in gas turbine engines because they allow higher operating temperatures due to their thermal insulation effect. The aim of this paper is to explain the effect of the substrate (base metal) on the performance of TBCs applied to various nickel-based superalloys and stainless steels. Design/methodology/approach - Specimens were prepared by applying atmospheric plasma spraying (APS). Six TBC-coated samples were prepared. Three of the substrates were stainless steel and the rest were nickel-based superalloys. Characterization effort included thermal exposure, microhardness testing, optical metallography and image analysis. Findings - Microhardness test results showed that extended periods in high-temperature environments affected the coating morphology, which was measured by changes in the microhardness values. At the end of the long periods in the furnace, microhardness values increased, which might be a sign that modulus of the coating increased. These changes in the microhardness might be due to the sintering effect and morphological changes that occurred in the coating. Effects of thermal exposure to the coatings were also visible in the micrographs in the form of fully open cracks. Development of larger cracks was life-threatening for the ceramic coating. Originality/value - It was shown for the first time that, in the above-mentioned crack growth and spallation stages, stainless steel and superalloy substrates showed considerably different performances. Microhardness test results of coatings on different substrates were considerably dissimilar, which was a sign that the coating morphology was affected during thermal exposure.
机译:用途-隔热涂层(TBC)广泛用于燃气涡轮发动机,因为它们具有绝热作用,因此可以承受更高的工作温度。本文的目的是解释基材(贱金属)对应用于各种镍基高温合金和不锈钢的TBC性能的影响。设计/方法/方法-通过施加大气等离子喷涂(APS)来制备样品。制备了六个TBC涂层的样品。三种基材是不锈钢,其余是镍基高温合金。表征工作包括热暴露,显微硬度测试,光学金相学和图像分析。研究结果-显微硬度测试结果表明,高温环境中较长的时间会影响涂层的形貌,这是通过显微硬度值的变化来衡量的。在炉子中的长时间结束时,显微硬度值增加,这可能表明涂层的模量增加。显微硬度的这些变化可能是由于涂层中发生的烧结效应和形态变化所致。在显微照片中还可以看到完全暴露在裂缝中的热暴露的影响。更大的裂纹的发展危及了陶瓷涂层的生命。原创性/价值-在上述裂纹扩展和剥落阶段,不锈钢和超合金基材首次显示出明显不同的性能。不同基材上涂层的显微硬度测试结果相差很大,这表明在热暴露过程中涂层的形态会受到影响。

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  • 来源
  • 作者

    Gursev Pirge;

  • 作者单位

    Gursev Pirge, Department of Aeronautical Engineering, Turkish Air Force Academy, Istanbul, Turkey;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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