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Development of Advanced Thermal Barrier Coatings With Improved Temperature Capability

机译:具有改进的温度能力的先进热阻挡涂层的开发

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Continuously increasing hot gas temperatures in heavy duty gas turbines lead to increased thermal loadings of the hot gas path materials. Thermal barrier coatings (TBCs) are used to reduce the superalloys temperature and cooling air needs. Until now 6-8 wt. % yttria stabilized zirconia (YSZ) is the first choice material for such coatings, but it is slowly reaching its maximum temperature capability due to the phase transformation at high temperature and sintering. New thermal barrier coating material with increased temperature capability enables the next generation of gas turbine with >60% combined cycle efficiency. Such material solutions have been developed through a multistage selection process. In a first step, critical material performance requirements for thermal barrier coating performance have been defined based on the understanding of standard TBC degradation mechanisms. Based on these requirements, more than 30 materials were a preselected and evaluated as potential coating materials. After carefully reviewing their properties both from literature data and laboratory test results on raw materials, five materials were selected for coating manufacturing and laboratory testing. Based on the coating manufacturing trials and laboratory test results, two materials have been selected for engine testing, in a first step in GT26 Birr Test Power Plant and afterward in customer engines. For such tests, the original coating thickness has been increased such to achieve coating surface temperature ~100 K higher than with a standard thermal barrier coating. Both coatings performed as predicted in both GT26 Birr Test Power Plant and customer engines.
机译:连续增加重型燃气涡轮机中的热气体温度导致热气路径材料的热载荷增加。热阻挡涂层(TBC)用于减少超合金温度和冷却空气需求。到目前为止,6-8英镑。 %ytTria稳定的氧化锆(YSZ)是这种涂层的第一选择材料,但由于高温和烧结的相变,它正在缓慢地达到其最大温度能力。具有较高温度能力的新型热障涂层材料使下一代燃气轮机具有> 60%的综合循环效率。这些材料解决方案已经通过多级选择过程开发。在第一步中,基于对标准TBC降解机制的理解,定义了对热阻挡涂层性能的关键材料性能要求。基于这些要求,预选和评价了30多种材料作为潜在的涂层材料。在仔细审查他们的物业既是对原材料的文献数据和实验室测试结果,选择了五种材料用于涂料制造和实验室检测。基于涂料制造试验和实验室测试结果,在GT26 BIRR试验电厂和客户发动机之后的第一步中,已经选择了两种材料用于发动机测试。对于这种测试,原始涂层厚度已经增加,以实现涂层表面温度〜100k高于标准的热障涂层。两种涂层如GT26 BIRR测试发电厂和客户发动机所预测的。

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