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Porosity evaluation of in-service thermal barrier coated turbine blades using a microwave nondestructive technique

机译:使用微波非破坏性技术进行水式热屏蔽型涡轮机叶片的孔隙率评估

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摘要

Porosity inspection of composite materials, ceramics and polymers is an important practical consideration in the nondestructive evaluation/testing (NDE/T) industry. The porosity of ceramics such as yttria stabilized zirconia (YSZ), the most widely used thermal barrier coating (TBC), for hot section metal components in a gas turbine is highly correlated with the thermal conductivity performance of the component. In-situ porosity inspection of TBCs after cyclic service is crucial to ensure the operational quality of TBCs and avoid any catastrophic system failure. The ability of microwave signals to propagate through a dielectric material and interact with the underlying surface and intrinsic properties, combined with the availability of high-resolution portable measurement equipment, make microwave imaging an attractive candidate for in-situ porosity inspection. In this paper, an extensive analysis of the simulation and measurement using a X-band open-ended rectangular waveguide (OERW) energy launch to evaluate the porosity of the TBCs of turbine blades is given. Existing mixing models are verified using simulation to determine the porosity and its relation to dielectric properties. The results show that the OERW microwave NDT/E technique can be used to characterize the porosity of TBCs, after cyclic services, using the phase of the reflection coefficient, S-11. The results are validated using waveguide dielectric property measurements and image analysis produced using a scanning electron microscope (SEM).
机译:复合材料,陶瓷和聚合物的孔隙率检测是非破坏性评估/测试(NDE / T)行业的重要实际考虑因素。诸如氧化钇稳定的氧化锆(YSZ)的陶瓷的孔隙率,最广泛使用的热障涂层(TBC),用于燃气轮机中的热部分金属部件与部件的导热性能高度相关。循环服务后TBCS的原位孔隙度检测至关重要,以确保TBC的运行质量,避免任何灾难性系统故障。微波信号通过介电材料传播的能力并与潜在的表面和本质性质相互作用,与高分辨率便携式测量设备的可用性相结合,使微波成像成为原位孔隙率检查的有吸引力的候选者。在本文中,给出了使用X波段开口矩形波导(Oerw)能量发射来评估涡轮机叶片TBC的孔隙的模拟和测量的广泛分析。使用模拟验证现有的混合模型以确定孔隙率及其与介电性能的关系。结果表明,使用反射系数,S-11的相位,可以使用Oerw微波NDT / E技术来表征TBCS的孔隙率。使用使用扫描电子显微镜(SEM)产生的波导介电性能测量和图像分析来验证结果。

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