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悬浮液等离子喷涂沉积热障涂层研究进展
Research Progress of Thermal Barrier Coatings Deposited by Suspension Plasma Spraying
【摘要】 悬浮液等离子喷涂(SPS)采用液相送料的方式,解决了纳米级粉末在热喷涂过程中送料困难的问题,同时,可沉积具有纳米级或亚微米级的柱状晶或垂直裂纹等结构的涂层。综述了近年SPS制备热障涂层的相关研究进展。对SPS的原理和工艺特点进行了介绍;阐明了SPS制备热障涂层典型微结构,包括垂直裂纹和柱状晶结构的沉积机理;探讨了悬浮液特性(包括固含量、黏度、表面张力)、喷涂工艺参数(包括喷枪类型、喷涂距离)、基材表面粗糙度等对SPS沉积涂层微结构、热物理性能、热循环性能等的影响。最后,对SPS未来的发展及研究趋势进行了展望。
【Abstract】 Suspension Plasma Spraying(SPS) adopts a liquid-phase feeding method, which solves the difficulty of feeding nano-scale powders during thermal spraying.At the same time, it can deposit coatings with nano-scale or sub-micron columnar crystals or vertical cracks.The relevant research progress in the preparation of thermal barrier coatings by SPS in recent years was reviewed.The principles and technological characteristics of SPS were introduced.The deposition mechanism of typical microstructures of thermal barrier coatings prepared by SPS was illustrated, including vertical cracks and columnar crystal structures.The effects of suspension characteristics(including solid content, viscosity, and surface tension),spraying process parameters(including spray gun type and spraying distance),and substrate surface roughness on the microstructure, thermophysical properties, and thermal cycling performance of SPS-deposited coatings were discussed.Finally, the future development and research trends of SPS were projected.
【Key words】 suspension plasma spraying; thermal barrier coating; microstructure; coating performance;
- 【文献出处】 热喷涂技术 ,Thermal Spray Technology , 编辑部邮箱 ,2024年01期
- 【分类号】TG174.4
- 【下载频次】39