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首页> 外文期刊>Surface & Coatings Technology >Effects of annealing temperature on microstructure, surface roughness, mechanical and tribological properties of Ni-P and Ni-P/SiC films
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Effects of annealing temperature on microstructure, surface roughness, mechanical and tribological properties of Ni-P and Ni-P/SiC films

机译:退火温度对Ni-P和Ni-P / SiC薄膜的微观结构,表面粗糙度,力学和摩擦学性能的影响

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In the present study, specimens with Ni-P and Ni-P/SiC composite coatings were deposited on cast iron by the electroless plating method. The former specimens were prepared without a surfactant or reinforcement particles, while the latter specimens were made with fixed concentrations of CO890 surfactant and SiC reinforcement particles. Three annealing temperatures were used in the heat treatments. The differences in the morphology, film thickness, specimen hardness, and tribological properties among the as-plated and annealed specimens due to the effects of annealing temperature and reinforcement particles are discussed. The precipitation of Ni3P produced numerous pores. The number of pores and the mean surface roughness increased along with the annealing temperature. The amount of Ni3Si and Ni5Si2 also rose with the annealing temperature. However, the mean surface roughness decreased as the annealing temperature rose due to the reduction of SiC content at sufficiently high temperatures. A rise in Ni3P to a certain value increased microhardness, but excessive Ni3P may reduce hardness. SiC particles enhanced the hardness of the deposited film. The formation of Ni3Si and Ni5Si2 at high temperatures decreased specimen hardness compared to that of the annealed specimen, which had SiC particles only. The Ni3P precipitation increased wear loss and the friction coefficient. In contrast, the formation of Ni3Si and Ni5Si2 reduced these two tribological parameters. For the Ni-P specimens, a rise in hardness enhanced these two parameters, whereas for the Ni-P/SiC specimen it decreased them. (C) 2016 Published by Elsevier B.V.
机译:在本研究中,通过化学镀方法将具有Ni-P和Ni-P / SiC复合涂层的样品沉积在铸铁上。前一个样品制备时没有表面活性剂或增强颗粒,而后一个样品则使用固定浓度的CO890表面活性剂和SiC增强颗粒制备。在热处理中使用了三个退火温度。讨论了由于退火温度和增强颗粒的影响,镀层和退火样品之间的形貌,膜厚,样品硬度和摩擦学性能的差异。 Ni3P的沉淀产生许多孔。孔的数量和平均表面粗糙度随着退火温度的增加而增加。 Ni 3 Si和Ni 5 Si 2的量也随着退火温度而增加。然而,由于在足够高的温度下SiC含量的降低,平均表面粗糙度随着退火温度的升高而降低。 Ni3P升高到一定值会提高显微硬度,但是过量的Ni3P可能会降低硬度。 SiC颗粒提高了沉积膜的硬度。与仅具有SiC颗粒的退火试样相比,在高温下形成的Ni3Si和Ni5Si2降低了试样硬度。 Ni3P沉淀增加了磨损损失和摩擦系数。相反,Ni3Si和Ni5Si2的形成降低了这两个摩擦学参数。对于Ni-P试样,硬度的增加增强了这两个参数,而对于Ni-P / SiC试样,其减小了这两个参数。 (C)2016由Elsevier B.V.发布

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