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Microstructure and tribological performance of sulfurizing layer prepared on the laser cladding Co-based alloy coating

机译:在激光熔覆Co基合金涂层上制备硫化层的微观结构和摩擦学性能

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AbstractLaser cladding of Co-based alloy coating owns excellent wear and corrosion resistances. The sulfides film fabricated by low temperature ion sulfurizing technique performs outstanding friction-reducing properties. In this study, the sulfides layer was successfully fabricated on the Co-based laser cladding coating by means of low temperature ion sulfurizing. The surface morphologies, microstructures and phase constituents were investigated by SEM, EDS, XRD and XPS. The results show that the surface of sulfurizing layer is loose and porous. The lubricant phases FeS and WS2are detected in the sulfurizing composite layer. The thickness of the sulfurizing composite layer is about 3–4μm. Tribological properties were tested by a pin-on-disc tester, and the wear mechanisms were further analyzed. The friction results indicate that the friction coefficients and wear losses of the sulfurizing composite layer are decreased remarkably in contrast to the cladding coating under dry condition. The sulfides layer prepared on laser cladding coating shows excellent performance on wear and friction-reduction. The lubricant phases of FeS and WS2play an important role in improving the tribological performances of the sulfurizing composite layer.Graphical abstractDisplay Omitted
机译:<![cdata [ 抽象 Co-基合金涂层的激光包层具有​​优异的磨损和耐腐蚀性。通过低温离子硫化技术制造的硫化物膜进行了出色的摩擦性能。在该研究中,通过低温离子硫化成功地制造硫化物层在基于Co-Cater包层涂层上制造。通过SEM,EDS,XRD和XPS研究了表面形态,微观结构和相成分。结果表明,硫化层的表面松散而多孔。在硫化复合层中检测润滑剂相和WS 2 。硫化复合层的厚度约为3-4μm。通过销盘式测试仪测试摩擦学性质,进一步分析磨损机制。摩擦结果表明,与干燥条件下的包层涂层相比,硫化复合层的摩擦系数和磨损损失显着降低。在激光熔覆涂层上制备的硫化物层显示出对磨损和摩擦减少的优异性能。 FES和WS 2 在提高硫化复合层的摩擦学性能方面发挥重要作用。 图形抽象 显示省略

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