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Nondestructive Evaluation and Analyses of Thermal Spray Coatings: Latest Technology Progresses and Case Studies

机译:无损评价和分析热喷涂涂料:最新技术进展和案例研究

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Nondestructive Evaluation and Testing (NDE&T) techniques have been played vital roles in property characterization, process development and quality control of various thermal spray coatings. Besides conventional NDE&T lab methods such as eddy current test (ECT) for thickness measurement and fluorescent penetrant inspection (FPI) for cracking detection, some latest NDE techniques have been developed, demonstrated and applied to evaluate and characterize thermal sprayed coatings recently. The improved and innovative NDE methods provide more capable and accurate measurement to inspect on surface morphology, 2D and 3D coating porosity, oxide content, interface debonding, as well as other types of coating features, defects or specific properties. In this work, some non-contact NDE techniques and their applications were investigated and discussed based on several case studies of thermal sprayed coatings. Laser confocal microscopy had been used for characterizing surface morphologies and roughness profiles of HVOF WC-based coatings with 2D and 3D mapping methods. In particular, thermal wave imaging and ultrasonic micro imaging methods were used to detect the suspicious existence of lateral coating separation within or at the MCrAlY coating-substrate interfaces. Laser dimension sensoring method exhibited the extended capability of in-situ coating thickening measurements on turbine blade and vane. The latest non-contact NDE techniques demonstrated their unique and strong capability for in-situ and ex-situ coating characterization, process and quality control and coating failure analysis.
机译:无损评估和测试(NDE&T)技术在物业特征,过程开发和各种热喷涂涂层的过程开发和质量控制方面发挥了重要作用。除常规NDE&T实验室方法如厚度测量和荧光渗透检查(FPI)的涡流试验(ECT)外,还开发了一些最新的NDE技术,并阐明了最近的热喷涂涂料来评估和表征热喷涂涂料。改进和创新的NDE方法提供了更有能力和准确的测量来检查表面形态,2D和3D涂层孔隙,氧化物含量,界面剥离以及其他类型的涂层特征,缺陷或特定性质。在这项工作中,研究了一些非接触式NDE技术及其应用,并根据热喷涂涂层的几种情况研究讨论。激光共聚焦显微镜已被用于用2D和3D映射方法表征HVOF基涂层的表面形态和粗糙度谱。特别地,使用热波成像和超声波微成像方法来检测伴随涂层分离的可疑存在于McR发生涂层基板界面。激光尺寸传感器方法在涡轮叶片和叶片上表现出原位涂层增厚测量的延长能力。最新的非接触式NDE技术证明了它们的原位和原位涂层表征,工艺和质量控制和涂层故障分析的独特和强大能力。

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