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A novel structured suspension plasma sprayed YSZ-PTFE composite coating with tribological performance improvement

机译:一种新型结构化悬浮等离子体喷涂YSZ-PTFE复合涂层,具有摩擦学性能改进

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摘要

Two kinds of cauliflower-like architecture yttria stabilized zirconia (YSZ) coatings with different amounts inter-columnar voids were prepared by suspension plasma spraying (SPS) under different spraying parameters. YSZ coatings with high and moderate porosity were infiltrated with polytetrafluoroethylene (PTFE) in order to form a novel structured ceramic-polymer composite coating. Subsequently, the composite coatings were tribologically evaluated. The tribology behavior of the denser as-sprayed YSZ coatings and pure PTFE coatings were also investigated as reference materials. The results indicated that the composite coatings exhibited a significantly improved wear resistance in terms of a remarkably reduced coefficient of friction and wear rate compared with the as-sprayed YSZ coatings because of the lubricating effect of PTFE. Additionally, it was noted that the existing YSZ framework in composite coatings reinforces PTFE contributing to an even higher wear resistance than that measured on pure PTFE.
机译:在不同喷涂参数下,通过悬浮等离子体喷涂(SPS)制备两种花椰菜样亚钇钇(YSZ)涂层具有不同量的柱状空隙。用高孔隙率和中等孔隙率的YSZ涂层用聚四氟乙烯(PTFE)渗透,以形成新型结构化陶瓷聚合物复合涂料。随后,复合涂层是摩擦评价的。还研究了更密集的喷雾YSZ涂层和纯PTFE涂层的摩擦学行为作为参考材料。结果表明,由于PTFE的润滑效应,复合涂层在与喷涂的YSZ涂层相比的显着降低的摩擦系数和磨损系数方面表现出显着改善的耐磨性。另外,有人指出,复合涂层中现有的YSZ框架增强了PTFE,其有助于比纯PTFE上测量的耐磨性更高的耐磨性。

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