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Microstructure and tribological property of CoCrFeMoNi High entropy alloy treated by ion sulfurization

机译:离子硫处理COCRFemoni高熵合金的组织和摩擦学性质

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The microstructures and tribological properties of CoCrFeMoNi high entropy alloy (HEA) before and after sulfurization were compared and discussed in the present study. The results showed that the CoCrFeMoNi HEA was mainly composed of FCC solid solution. After being sulfurized at 260°C for 2?h, the FeS/MoS2multisulfides solid lubricant films with a thickness of approximately 5.0?μm were successfully fabricated and well combined with the HEA. The stable friction coefficients and weight losses of the sulfurized HEA (0.15 and 4.25?mg) were decreased obviously than the original HEA (0.47 and 15.1?mg). At the beginning of the friction, the friction coefficient of the sulfurized HEA was easier to reach into stable stage. Because of the synergistic work of FeS and MoS2lubricant phases, the sulfides boundary lubricant films were formed in the later stage of friction under the wearing condition, which could help the friction system work for longer time under lower friction coefficient.
机译:比较和硫化前后的COCRFemoni高熵合金(HEA)的微观结构和摩擦学特性,并在本研究中讨论。结果表明,COCRFEMENI HEA主要由FCC固溶体组成。在260℃下硫化2℃后,成功制造了厚度为约5.0μm的固体润滑剂薄膜,并与Hea合并良好。硫化Hea(0.15和4.25μm)的稳定摩擦系数和重量损失明显低于原始Hea(0.47和15.1μg)。在摩擦开始时,硫化Hea的摩擦系数更容易达到稳定的阶段。由于FES和MOS2LUBRICANT阶段的协同作用,硫化物边界润滑膜在磨损条件下的摩擦之后形成,这可以帮助摩擦系统在较低摩擦系数下工作更长的时间。

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