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QUANTATIVE MICROSTRUCTURAL ANALYSIS OF THERMAL BARRIER COATINGS PRODUCED BY ELECTRON BEAM PHYSICAL VAPOR DEPOSITION

机译:电子束物理气相沉积产生的热阻挡涂层的定量微观结构分析

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Thermal Barrier Coatings (TBC) produced by Electron Beam Physical Vapor Deposition (EB-PVD) are used primarily for system critical components of power turbines. The performance of coatings is highly dependant on micro and nano structural features. This paper proposes and demonstrates quantitative microstructural analysis of TBC produced by the EB-PVD. Metallographic techniques were applied to surfaces parallel and perpendicular to the columnar growth direction. Multiple levels perpendicular to the columnar growth direction were prepared to identify descriptive statistical values for coating microstructure throughout coating thickness. Metallographic surfaces were imaged with Scanning Electron Microscopy (SEM) and evaluated with commercial image analysis software. Samples produced with different vapor incidence angles were evaluated by the proposed method and show distinct quantitative differences of column grain size, inter-columnar porosity, and levels of re-nucleation. Microstructural results will be presented as a function of coating thickness and vapor incidence angle.
机译:电子束物理气相沉积(EB-PVD)产生的热阻挡涂层(EB-PVD)主要用于动力涡轮机的系统关键部件。涂层的性能高度依赖于微观和纳米结构特征。本文提出并表明了EB-PVD产生的TBC的定量微观结构分析。将金相技术施加到平行且垂直于柱状生长方向的表面。准备垂直于柱状生长方向的多个水平,以鉴定整个涂层厚度的涂覆微观结构的描述性统计值。使用扫描电子显微镜(SEM)对金相表面进行成像,并用商业图像分析软件进行评估。通过所提出的方法评估用不同蒸发率角产生的样品,并显示出柱晶粒尺寸,柱状孔隙率和重新成核水平的明显定量差异。微观结构结果将作为涂层厚度和蒸汽入射角的函数呈现。

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