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Tunable properties of (HoxY1-x)2SiO5 as damage self-monitoring environmental/thermal barrier coating candidates

机译:(HoxY1-x)2SiO5的可调谐特性可作为损坏自我监测的环境/隔热涂层候选

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摘要

RE2SiO5 with low thermal conductivity, compatible thermal expansion coefficients and excellent high-temperature reliability in harsh environments are excellent candidates as advanced environmental/thermal barrier coating materials for high-efficiency gas turbine engines. A series of rare earth silicates (HoxY1-x)2SiO5 are designed and their properties are comprehensively investigated in this paper. Through doping Ho into Y2SiO5, the thermal conductivity of Y2SiO5 is significantly decreased and the thermal expansion coefficient is also optimized closer to Si-based ceramics. High-temperature elastic stiffness and bending strength are increased with the enhancing of Ho content. Most important, doping Ho element provides (HoxY1-x)2SiO5 with tunable luminescence characteristic. (HoxY1-x)2SiO5 exhibit green, to yellow-green, then to orange-red luminescence color with increased Ho concentration. The results show that they can be used as damage self-monitoring environmental/thermal barrier coating materials for Si-based ceramics.
机译:RE2SiO5具有低导热率,相容的热膨胀系数以及在恶劣环境下出色的高温可靠性,是用于高效燃气涡轮发动机的先进环境/隔热涂层材料的极佳选择。设计了一系列稀土硅酸盐(HoxY1-x)2SiO5,并对其性能进行了综合研究。通过将Ho掺杂到Y2SiO5中,Y2SiO5的热导率显着降低,并且热膨胀系数也更接近于Si基陶瓷。随着Ho含量的增加,高温弹性刚度和弯曲强度增加。最重要的是,掺杂Ho元素为(HoxY1-x)2SiO5提供了可调的发光特性。 (HoxY1-x) 2 SiO 5 呈现绿色,呈黄绿色,然后呈橙色,随着Ho浓度的增加而发光。结果表明,它们可用作硅基陶瓷的损伤自我监测环境/隔热涂层材料。

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