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Effect of annealing temperature on microstructure, mechanical and tribological properties of nano-SiC reinforced Ni-P coatings

机译:退火温度对纳米siC增强Ni-p涂层组织,力学和摩擦学性能的影响

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摘要

The tribological properties of Ni-P/SiC nanocomposite coatings annealed at different temperatures (350–500 °C) were investigated in order to determine the optimal temperature needed to enhance their wear resistance as well as to reveal the underlying wear mechanisms. With increasing annealing temperature, the hardness of the annealed coatings gradually decreased from 8.2±0.5 to 7.1±0.6 GPa as a result of the Hall-Petch effect, nevertheless these values obtained were constantly higher than that of the as-plated coating (6.3±0.3 GPa) due to the formation of a hard Ni3P phase. Regarding to tribological properties, the Ni-P/SiC coating annealed at 350 °C presented a poorer wear resistance (6.1×10?5 mm3/Nm) compared to the as-plated coating (3.9×10?5 mm3/Nm) owing to a rougher original contact surface and the subsequent generation of nickel and iron oxides on the wear track. In contrast, coatings annealed at temperatures ranging between 400–500 °C exhibited the improved wear resistance (4.3×10?5–7.8×10?6 mm3/Nm) attributable to their smoother surfaces and to the lubrication effect of H3PO4 arising from the tribochemical reaction between Ni3P and the environment. Overall, the Ni-P/SiC coating annealed at 500 °C containing the largest amount of Ni3P exhibited the lowest friction coefficient (0.51) and wear rate (7.8×10?6 mm3/Nm).
机译:研究了在不同温度(350–500°C)下退火的Ni-P / SiC纳米复合涂层的摩擦学性能,以确定增强其耐磨性以及揭示潜在磨损机理所需的最佳温度。随着退火温度的升高,由于霍尔-帕奇效应,退火后涂层的硬度从8.2±0.5 GPa逐渐降低到7.1±0.6 GPa,但这些值始终高于电镀后的涂层(6.3± 0.3 GPa)是由于形成了坚硬的Ni3P相。关于摩擦学性能,与镀层(3.9×10-5 mm3 / Nm)相比,在350°C退火的Ni-P / SiC镀层的耐磨性(6.1×10-5 mm3 / Nm)差。到较粗糙的原始接触表面,随后在磨损轨道上产生镍和铁氧化物。相比之下,在400–500°C的温度范围内退火的涂层表现出更高的耐磨性(4.3×10?5–7.8×10?6 mm3 / Nm),这归因于其光滑的表面和H3PO4的润滑作用。 Ni3P与环境之间的摩擦化学反应。总体而言,在500°C退火的Ni-P / SiC涂层中,Ni3P的含量最高,其摩擦系数(0.51)和磨损率(7.8×10-6mm3 / Nm)最低。

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