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首页> 外文期刊>Powder Metallurgy >Influence of the SiC content and sintering temperature on the microstructure, mechanical properties and friction behaviour of sintered self-lubricating composites
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Influence of the SiC content and sintering temperature on the microstructure, mechanical properties and friction behaviour of sintered self-lubricating composites

机译:SiC含量和烧结温度对烧结自润滑复合材料组织,力学性能和摩擦性能的影响

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摘要

This work reports the development of a new, low-friction coefficient combined with high mechanical strength and scuffing resistance of self-lubricating composite produced by powder injection moulding process and the recently introduced plasma-assisted debinding and sintering process. We present and discuss the effect of sintering temperature and SiC content on the microstructure, mechanical and friction properties. Three different temperatures (1100,1150, 1200 degrees C) and six different SiC contents (0-5%) were analysed. SiC content had a paramount role on the microstructure, mechanical and friction behaviour. Sintering temperature had almost no effect on the friction coefficient. However, the sintering temperature strongly influences scuffing resistance. Raman spectra obtained in the central region of the wear scar indicate the presence of turbostratic two-dimensional graphite. The misorientation between graphene planes and the increase in interlamellae distance may induce a low interaction between these atomic planes and are, probably, the origin of the low-friction coefficient.
机译:这项工作报告了一种新的低摩擦系数的开发,该粉末具有粉末注射成型工艺以及最近推出的等离子辅助脱脂和烧结工艺生产的自润滑复合材料的高机械强度和耐擦伤性。我们提出并讨论了烧结温度和SiC含量对组织,力学性能和摩擦性能的影响。分析了三种不同的温度(1100、1150、1200摄氏度)和六种不同的SiC含量(0-5%)。 SiC含量对组织,机械性能和摩擦性能至关重要。烧结温度对摩擦系数几乎没有影响。然而,烧结温度强烈影响耐擦伤性。在磨损痕迹中心区域获得的拉曼光谱表明存在涡轮层二维石墨。石墨烯平面之间的取向错误和层间距离的增加可能会导致这些原子平面之间的相互作用低,并且很可能是低摩擦系数的起源。

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