首页> 外文会议>2003 ASME(American Society of Mechanical Engineers) Turbo Expo; Jun 16-19, 2003; Atlanta, Georgia >VALIDATION OF MULTI-FREQUENCY EDDY CURRENT MWM SENSORS AND MWM-ARRAYS FOR COATING PRODUCTION QUALITY AND REFURBISHMENT ASSESSMENT
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VALIDATION OF MULTI-FREQUENCY EDDY CURRENT MWM SENSORS AND MWM-ARRAYS FOR COATING PRODUCTION QUALITY AND REFURBISHMENT ASSESSMENT

机译:用于涂层生产质量和翻新评估的多通道涡流MWM传感器和MWM阵列的验证

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Coatings for oxidation, corrosion, and thermal protection provide the required materials performance for gas turbine blades and vanes in state-of-the-art industrial gas turbines. These turbines must withstand severe operating conditions for well over ten thousand hours. Variations in the coating thickness, and increased porosity, can influence the lifetime of such coatings significantly. For components that have been removed from service, effective assessment of the aged coating and substrate condition is critical for refurbish/replace/continue-to-run decisions. A suitable device for coating thickness measurement and detection of unacceptable porosity is needed for ensuring the quality of such coatings. In this paper, we present new results on coating thickness measurements for metallic MCrAlY overlay coatings on gas turbine parts. These measurements were performed with a Meandering Winding Magnetometer (MWM~(~R)) eddy-current sensor using grid methods. This technique allows proper coating measurements even after a diffusion heat treatment for a better coating adhesive strength. The MWM technology enables measurement of the coating thickness, the absolute electrical conductivity (which may in turn be related to porosity or other properties of interest), and lift-off, which is related to surface roughness. Single-channel MWM sensors and multi-channel imaging MWM-Arrays permit capture of features of interest for a population of components. New capabilities for inspecting gas turbine components are, thus, provided. Inspection applications include metallic and non-metallic coating thickness measurements, porosity measurements, and detection of cracks on complex surfaces. Results of coating assessment for a production line of gas turbine vanes by means of a multifrequency MWM technique are presented for various combinations of coatings and base metals. A description of improved multiple frequency quantitative inversion methods is provided for simultaneous and independent measurement of multiple unknowns such as metallic bond coat thickness, metallic bond coat porosity, and top coat thickness. Ongoing research focuses on characterization of aged components using MWM sensors and imaging MWM-Arrays as well as on development of enhanced algorithms for four and five unknown coating / substrate properties. In a recent study of hot corrosion, uncoated nickel alloy specimens were characterized using an MWM sensor with grid methods. Preliminary results indicated that, within the limitations of the three-unknown single-layer model used, the method could readily identify specimens with no apparent corrosion damage, specimens with moderate corrosion damage, and specimens with severe corrosion damage.
机译:用于抗氧化,腐蚀和热保护的涂层为最先进的工业燃气轮机提供了燃气轮机叶片和叶片所需的材料性能。这些涡轮机必须经受严酷的运行条件长达一万小时以上。涂层厚度的变化和孔隙率的增加会严重影响此类涂层的寿命。对于已停止使用的组件,有效评估老化的涂层和基材状况对于翻新/更换/继续运行决策至关重要。为了确保这种涂层的质量,需要一种适合的涂层厚度测量和不可接受的孔隙率检测装置。在本文中,我们提出了有关燃气轮机零件上的金属MCrAlY覆盖涂层的涂层厚度测量的新结果。这些测量是使用网格法用曲折式绕线磁强计(MWM〜(〜R))涡流传感器进行的。即使在扩散热处理之后,该技术也可以进行正确的涂层测量,以获得更好的涂层粘合强度。 MWM技术能够测量涂层厚度,绝对电导率(这可能又与孔隙率或其他感兴趣的特性有关)和剥离(与表面粗糙度有关)。单通道MWM传感器和多通道成像MWM阵列可捕获大量组件的感兴趣特征。因此,提供了用于检查燃气轮机部件的新功能。检验应用包括金属和非金属涂层的厚度测量,孔隙率测量以及复杂表面裂缝的检测。提出了通过多频MWM技术对燃气轮机叶片生产线进行涂层评估的结果,适用于涂层和贱金属的各种组合。提供了改进的多频率定量反演方法的描述,用于同时独立地测量多个未知量,例如金属粘结层厚度,金属粘结层孔隙率和面涂层厚度。正在进行的研究重点是使用MWM传感器和MWM阵列成像来表征老化的部件,以及开发针对四种和五种未知涂层/基材特性的增强算法。在最新的热腐蚀研究中,使用带网格方法的MWM传感器对未涂层的镍合金样品进行了表征。初步结果表明,在所使用的三层未知单层模型的限制内,该方法可以轻松地识别出无明显腐蚀损伤的试样,有中等腐蚀损伤的试样以及有严重腐蚀损伤的试样。

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