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Thermal diffusivity of TBC: Results of a small round robin test and considerations about the effect of the surface preparation and the measuring approach

机译:TBC的热扩散率:小循环试验的结果以及有关表面处理效果和测量方法的考虑

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摘要

Among the techniques used to measure the thermal diffusivity of TBC, the Laser Flash is a standard. Nonetheless, this technique shows two main limitations related to the size and the well-defined geometry of the specimens. Furthermore the most reliable data can be typically obtained only on freestanding coatings. On the contrary, other photothermal and thermographic techniques in reflection configuration (the same side is heated and temperature detected) can overcome these limitations. One aspect, only partially studied in the literature, is common to most of the photothermal and thermographic techniques. It concerns the effect of the blackening coating used for guaranteeing the absorption of the heating radiation just within a very shallow outer layer and to make opaque the TBC in the sensitivity range of the IR detector/camera. For this purpose, an inter-laboratory round robin has been promoted for comparing the thermal diffusivity in dependency of the blackening layer deposition technique, the TBC microstructure (in particular porous APS, columnar EB-PVD and PS-PVD~(TM)) and the three different experimental set-ups in terms of spectral range and frame rate of the IR cameras, heating source and data reduction.
机译:在用于测量TBC的热扩散率的技术中,激光闪光是标准。尽管如此,该技术仍显示出两个主要的局限性,这些局限性与样本的尺寸和明确定义的几何形状有关。此外,通常只能在独立式涂料上获得最可靠的数据。相反,反射配置中的其他光热和热成像技术(加热同一侧并检测温度)可以克服这些限制。一方面,对于大多数光热和热成像技术来说,是文献中仅有的部分研究。它涉及用于保证在非常浅的外层内吸收热辐射并在红外探测器/相机的灵敏度范围内使TBC不透明的发黑涂层的作用。为此目的,已经提出了一种实验室间循环法,用于比较取决于发黑层沉积技术,TBC微观结构(特别是多孔APS,柱状EB-PVD和PS-PVD〜)的热扩散率,以及在红外摄像机的光谱范围和帧频,加热源和数据减少方面进行了三种不同的实验设置。

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