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首页> 外文期刊>Coatings >Thermal Stability of Plasma-Sprayed Thick Thermal Barrier Coatings Using Triplex ProTM-200 Torch
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Thermal Stability of Plasma-Sprayed Thick Thermal Barrier Coatings Using Triplex ProTM-200 Torch

机译:使用Triple Protm-200火炬的等离子体喷涂厚热阻挡涂层的热稳定性

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Segmentation-crack structured yttria-stabilized zirconia (YSZ) thermal barrier coatings (TBCs) were deposited by atmospheric plasma spraying (APS) using a Triplex Pro?-200 gun. In this work, free-standing coating specimens (~700 μm) were isothermally heat-treated in air from 1200 to 1600 °C for 24 h and at 1550 °C for 20 to 100 h, respectively. The thermal aging behaviors such as microstructures, phase compositions, grain growth and mechanical properties were characterized via scanning electron microscopy (SEM), X-ray diffraction (XRD), electron backscatter diffraction (EBSD) and a Vickers hardness test. The results indicated that the as-sprayed coatings mainly consisted of metastable tetragonal (t′-YSZ) phase, but the t′-YSZ gradually partitioned into equilibrium tetragonal (t-YSZ) and cubic (c-YSZ) phases due to yttrium diffusion during thermal exposure, and with an improvement in temperature, the c-YSZ may retain or transform into another yttrium-rich tetragonal (t″-YSZ) phase. The transformation of t-YSZ to monoclinic phase (m-YSZ) has occurred after 1550 °C/40 h heat treatment, and the content of the m-YSZ phase increased with the prolongation of the thermal exposure time. The variations of Vickers hardness have a correlation with pores healing and grain growth, which might be attributed to the coating sintering and m-YSZ phase formation. Furthermore, the growth pattern of the grains was investigated in detail. In service, cracks and pores proceeded along the grain boundaries, especially surrounding the small grains. It is conducive to the engineering application of TBCs fabricated with the Triplex Pro?-200 gun.
机译:通过使用Triple Pro -200枪,通过大气等离子体喷涂(APS)沉积分段裂纹结构氧化钇稳定的氧化锆(YSZ)热阻挡涂层(TBC)。在这项工作中,将独立的涂层标本(〜700μm)(〜700μm)在空气中从1200至1600℃下均热处理24小时,分别在1550℃下进行20至100小时。通过扫描电子显微镜(SEM),X射线衍射(XRD),电子背散射衍射(EBSD)和维氏硬度试验,表征了诸如微观结构,相组合物,晶粒生长和机械性能的热老化性能。结果表明,由于钇扩散,T'-ysz主要由亚稳态四方(T'-ysz)相的稳定性四边形(T'-YSZ)相块组成,但T'-YSZ逐渐分配成平衡四方(T-YSZ)和立方(C-YSZ)阶段在热暴露期间,随着温度的改善,C-YSZ可以保留或转化成另一个富含钇的四方(T“-ysZ)相。在1550℃/ 40小时的热处理后,发生T-YSZ对单斜相(M-YSZ)的转化,并且M-YSZ相的含量随着热暴露时间的延长而增加。维氏硬度的变化与孔愈合和晶粒生长具有相关性,这可能归因于涂层烧结和M-YSZ相形成。此外,详细研究了晶粒的生长模式。在服务中,沿着晶界进行裂缝和孔隙,特别是围绕小颗粒。它有利于用TRIPLEX PRO-200枪制造的TBCS的工程应用。

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