首页> 外文会议>Symposium on Quantitative Nondestructive Evaluation >NON-DESTRUCTIVE EVALUATION OF DEGRADATION IN EB-PVD THERMAL BARRIER COATINGS BY INFRARED REFLECTANCE SPECTROSCOPY
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NON-DESTRUCTIVE EVALUATION OF DEGRADATION IN EB-PVD THERMAL BARRIER COATINGS BY INFRARED REFLECTANCE SPECTROSCOPY

机译:红外反射光谱法未破坏性评价EB-PVD热阻挡涂层的降解

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At room temperature and atmospheric conditions infrared reflectance spectroscopy and X-ray diffraction were employed for the detection of the phase transformation and residual stress within thermal barrier coatings (TBC). The TBC's samples initially consisted of the porous ceramic topcoat deposited by electron beam plasma vapor deposition, a bond coat and a superalloy substrate. Reflectance spectroscopy scans were performed from 7497 cm~(-1) to 68 cm~(-1) to analysis the fingerprint region as well as the chemical bonding region. These regions should indicate if a detectable change within the TBC response is a result of thermal degradation of the microstructure and the changes in yttrium dispersion throughout the yttrium stabilized zirconium. The thermal degradation was induced by thermal cycling the samples to 1100° C and then cooling them in an atmospheric environment. X-ray diffraction was also used to detect the phase composition within the TBC samples and see if either would clearly identify failure prior to actual spallation. The eventual measurability and quantify-ability of the phase changes within the TBC's may be used as an effective non-destructive evaluation (NDE) technique that would allow personnel in the field to know when servicing of the turbine blade was necessary.
机译:在室温和大气条件下,采用红外反射光谱和X射线衍射来检测热阻挡涂层(TBC)内的相变和残余应力。 TBC的样品最初由电子束等离子体气相沉积,粘合涂层和超合金基板沉积的多孔陶瓷面涂层组成。反射光谱扫描从7497cm〜(-1)到68cm〜(-1)进行,以分析指纹区域以及化学键合区域。这些区域应指示TBC响应内的可检测变化是微观结构热降解的结果,并在整个钇稳定的锆中的钇分散的变化。通过热循环样品至1100℃,然后将它们冷却在大气环境中的热降解。 X射线衍射还用于检测TBC样品内的相组合物,并在实际介质之前明确识别故障。 TBC内相变的最终可测量和量化能力可以用作有效的非破坏性评估(NDE)技术,其将允许现场的人员知道涡轮机叶片的维修时是必要的。

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