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Optimization of segmented thermal barrier coatings (s-TBC) for high-temperature applications

机译:用于高温应用的分段式热障涂层 (s-TBC) 的优化

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摘要

Hot section components of stationary gas turbines such as turbine blades are coated with thermal barrier coatings (TBCs) to increase the high thermal strain tolerance thereby the improvement of the performance for the gas turbines. TBCs represent high-performance ceramics and are mostly composed of yttria-stabilized zirconia (YSZ) in order to fulfil the function of thermal insulation. The microstructure of conventional TBCs should be porous to decrease heat conduction. Besides porous TBCs, the recently developed vertically segmented thermal barrier coatings (s-TBCs) feature outstanding thermal durability. In this work, process parameter development for atmospheric plasma spraying (APS) of s-TBCs is presented. Within the experiments, relevant process parameters such as powder feed rate, surface speed and pathway strategy have been optimized. The aim of this work is to achieve a combination of low internal residual stress and high adhesive tensile strength for s-TBCs. For the formation of vertical cracks, the heat input into the powder feedstock material and the substrate must be controlled precisely.
机译:固定式燃气轮机的热段部件(如涡轮叶片)涂有热障涂层(TBC),以增加高热应变耐受性,从而提高燃气轮机的性能。TBC代表高性能陶瓷,主要由氧化钇稳定氧化锆(YSZ)组成,以达到隔热功能。传统TBC的微观结构应该是多孔的,以减少热传导。除了多孔TBC外,最近开发的垂直分段热障涂层(s-TBC)还具有出色的热耐久性。本文介绍了s-TBCs大气等离子喷涂(APS)的工艺参数开发。在实验中,优化了粉末进料速率、表面速度和路径策略等相关工艺参数。这项工作的目的是实现s-TBCs的低内部残余应力和高粘合拉伸强度的结合。对于垂直裂纹的形成,必须精确控制输入粉末原料和基材的热量。

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