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Laser Cladding of Embedded Sensors for Thermal Barrier Coating Applications

机译:用于热障涂层应用的嵌入式传感器的激光熔覆

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The accurate real-time monitoring of surface or internal temperatures of thermal barrier coatings (TBCs) in hostile environments presents significant benefits to the efficient and safe operation of gas turbines. A new method for fabricating high-temperature K-type thermocouple sensors on gas turbine engines using coaxial laser cladding technology has been developed. The deposition of the thermocouple sensors was optimized to provide minimal intrusive features to the TBC, which is beneficial for the operational reliability of the protective coatings. Notably, this avoids a melt pool on the TBC surface. Sensors were deposited onto standard yttria-stabilized zirconia (7–8 wt % YSZ) coated substrates; subsequently, they were embedded with second YSZ layers by the Atmospheric Plasma Spray (APS) process. Morphology of cladded thermocouples before and after embedding was optimized in terms of topography and internal homogeneity, respectively. The dimensions of the cladded thermocouple were in the order of 200 microns in thickness and width. The thermal and electrical response of the cladded thermocouple was tested before and after embedding in temperatures ranging from ambient to approximately 450 °C in a furnace. Seebeck coefficients of bared and embedded thermocouples were also calculated correspondingly, and the results were compared to that of a commercial standard K-type thermocouple, which demonstrates that laser cladding is a prospective technology for manufacturing microsensors on the surface of or even embedded into functional coatings.
机译:在恶劣环境中,对隔热涂层(TBC)的表面或内部温度进行准确的实时监控,可为燃气轮机的高效安全运行带来巨大好处。开发了一种使用同轴激光熔覆技术在燃气轮机上制造高温K型热电偶传感器的新方法。对热电偶传感器的沉积进行了优化,以使TBC的侵入性降至最低,这有利于保护涂层的操作可靠性。值得注意的是,这避免了在TBC表面上的熔池。将传感器沉积到标准的氧化钇稳定的氧化锆(7-8 wt%YSZ)涂层的基材上;随后,通过大气等离子喷涂(APS)工艺将它们嵌入第二YSZ层。分别在形貌和内部均匀性方面优化了包埋前后的包覆热电偶的形态。包覆的热电偶的尺寸在厚度和宽度上约为200微米。包埋的热电偶在炉中嵌入环境温度至大约450°C之前和之后的热和电响应进行了测试。还分别计算了裸露和嵌入的热电偶的塞贝克系数,并将结果与​​商业标准K型热电偶的塞贝克系数进行了比较,这表明激光熔覆是在功能涂层的表面甚至嵌入功能涂层中制造微传感器的前途技术。 。

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