Embedded Optical Sensors for Thermal Barrier Coatings | |
Clarke, David R. | |
University of California (System). Regents. | |
关键词: Luminescence; Zirconium Oxides; On-Line Measurement Systems; Europium; Strontium Oxides; | |
DOI : 10.2172/898969 RP-ID : None RP-ID : FG26-03NT41794 RP-ID : 898969 |
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美国|英语 | |
来源: UNT Digital Library | |
【 摘 要 】
The third year of this program on developing embedded optical sensors for thermal barrier coatings has been devoted to two principal topics: (i) continuing the assessment of the long-term, thermal cycle stability of the Eu{sup 3+} doped 8YSZ temperature sensor coatings, and (ii) improving the fiber-optic based luminescence detector system. Following the earlier, preliminary findings, it has been found that not only is the luminescence from the sensors not affected by prolonged thermal cycling, even after 195 hours at 1425 C, but the variation in luminescence lifetime with temperature remains unchanged. As the temperature of 1425 C is much higher than present engines attain or even planned in the foreseeable future, our findings indicate that the Eu{sup 3+} doped thermal barrier coating sensors are very robust and have the potential of being stable throughout the life of coatings. Investigation of Eu{sup 3+} doped coatings prepared by plasma-spraying exhibited the same luminescence characteristics as those prepared by electron-beam evaporation. This is of major significance since thermal barrier coatings can be prepared by both process technologies. A fiber-optic based luminescence system has been constructed in which the hottest section of fiber operates to at least 1250 C.
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