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Effect of N plus Cr ions implantation on corrosion and tribological properties in simulated seawater of carburized alloy steel

机译:N加Cr离子植入对渗碳合金钢模拟海水腐蚀和摩擦学性质的影响

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摘要

N + Cr ions were co-implanted into the carburized 18Cr2Ni4WA steel to improve hardness, wear and corrosion resistance. The microstructures of the samples were characterized by the glancing incidence X-ray diffractometer, X-ray photoelectron spectroscopy, scanning electron microscopy and transmission electron microscopy, respectively. In addition, the mechanical, corrosion and tribological properties were evaluated by nano-indenter instrument, electrochemical corrosion workstation and wear test, respectively. The results showed that after implanting N + Cr ions, a new nano-nitride phase was formed on the surface of carburized steel. Ions implantation process was accompanied by the radiation damage, which led to lattice distortion on the surface of the steel. These changes accordingly made the N + Cr ions implantation layer present high nano-hardness. Meanwhile, the N + Cr ions implantation layer could effectively prevent the synergistic effect of corrosion and friction in seawater environment, and significantly enhance the tribological property of the carburized steels in simulated seawater.
机译:将N + Cr离子共注入渗碳18Cr2Ni4Wa钢中,以改善硬度,磨损和耐腐蚀性。通过渗透入射X射线衍射仪,X射线光电子体光谱,扫描电子显微镜和透射电子显微镜的特征在于样品的微观结构。此外,通过纳米压头仪器,电化学腐蚀工作站和磨损试验评估机械,腐蚀和摩擦学性质。结果表明,在植入N + Cr离子后,在渗碳钢的表面上形成了新的纳米氮化物相。离子植入过程伴随着辐射损伤,导致钢表面上的晶格变形。因此,这些变化使得N + Cr离子注入层具有高纳米硬度。同时,N + Cr离子植入层可有效防止腐蚀和摩擦在海水环境中的协同作用,并显着提高了模拟海水中渗碳钢的摩擦学性质。

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