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Atmospheric Plasma Spraying of Single Phase Lanthanum Zirconate Thermal Barrier Coatings with Optimized Porosity

机译:具有优化孔隙率的单相锆酸镧热障涂层的大气等离子喷涂

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摘要

The shortcomings at elevated operation temperatures of the standard material yttria-stabilized zirconia (YSZ) for thermal barrier coatings (TBCs) have initiated many research activities seeking alternatives. One candidate is the pyrochlore lanthanum zirconate La2Zr2O7 (LZ), which is phase-stable to its melting point. At the same time, it shows a lower thermal conductivity and a lower sintering tendency when compared to YSZ. Because of its low thermal expansion coefficient and poor toughness, it is applied in combination with YSZ in double layer TBC systems. It is the current state of knowledge that LZ is prone to lanthanum depletion if processed by plasma spraying. The process conditions have to be selected carefully to avoid this. Furthermore, the amount and morphology of the coating porosity is essential for a good thermo-mechanical performance. In this work, the development and testing of LZ/YSZ double layer TBC systems is described. Initially, suitable basic parameters (torch, plasma gas composition, and power) were tested with respect to coating stoichiometry. Then, microstructures were optimized by adjusting feed rate, spray distance, and by selecting a more appropriate feedstock. Powder particles and coatings were characterized by digital image analysis.
机译:用于隔热涂层(TBC)的标准材料氧化钇稳定的氧化锆(YSZ)在高温下的缺点引发了许多寻找替代方法的研究活动。一种候选物是烧绿锆石锆酸镧La2Zr2O7(LZ),该相稳定至其熔点。同时,与YSZ相比,它显示出较低的热导率和较低的烧结趋势。由于其低的热膨胀系数和较差的韧性,因此与YSZ结合使用在双层TBC系统中。目前的知识状态是,如果通过等离子喷涂处理,LZ容易耗尽镧。为了避免这种情况,必须仔细选择工艺条件。此外,涂层孔隙率的数量和形态对于良好的热机械性能至关重要。在这项工作中,描述了LZ / YSZ双层TBC系统的开发和测试。最初,针对涂层的化学计量测试了合适的基本参数(割炬,等离子气体成分和功率)。然后,通过调整进料速度,喷雾距离和选择更合适的原料来优化微结构。通过数字图像分析表征粉末颗粒和涂层。

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