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Towards low-friction and wear-resistant plasma sintering dies via plasma surface co-alloying CM247 nickel alloy with V/Ag and N

机译:通过等离子表面与V / Ag和N合金化的CM247镍合金表面处理,实现低摩擦和耐磨的等离子烧结模具

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Nickel based superalloys have good oxidation and creep resistance and hence they can function under high mechanical stress and high temperatures. However, their undesirable tribological behaviour is the major technical barrier to the challenging high-temperature, lubricant-free plasma sintering tool application. In this study, nickel based CM247 superalloy surfaces were co-alloyed using innovative active screen plasma technology with both interstitial element (e.g. N) and substitutional alloying elements (e.g. V and Ag) to provide a synergy effect to enhance its tribological properties. The tribological behaviour of the plasma co-alloyed CM247 superalloy surfaces were fully evaluated using reciprocal and pin-on-disc tribometers at temperatures from room temperature to 600?°C. The experimental results demonstrate that the co-alloyed surface with N, Ag and V can effectively lower the friction coefficient, which is expected to help demoulding during lubricant-free plasma sintering.
机译:镍基高温合金具有良好的抗氧化性和抗蠕变性,因此它们可以在高机械应力和高温下发挥作用。然而,它们不希望有的摩擦学行为是挑战性的高温,无润滑剂的等离子体烧结工具应用的主要技术障碍。在这项研究中,镍基CM247超级合金表面使用创新的有源筛分等离子体技术与间隙元素(例如N)和替代合金元素(例如V和Ag)共同合金化,以提供协同效应来增强其摩擦学性能。在室温至600°C的温度下,使用往复式和针盘式摩擦计对等离子体共合金CM247高温合金表面的摩擦学性能进行了全面评估。实验结果表明,与N,Ag和V共合金的表面可有效降低摩擦系数,这有望在无润滑剂等离子体烧结过程中帮助脱模。

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