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首页> 外文期刊>Journal of Materials Science and Chemical Engineering >Forced Electrocodeposition of Silica Particles into Nickel Matrix by Horizontal Impinging Jet Cell
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Forced Electrocodeposition of Silica Particles into Nickel Matrix by Horizontal Impinging Jet Cell

机译:水平撞击射流电池将二氧化硅颗粒强制电共沉积到镍基体中

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The improvement of silica particle codeposition into a nickel electrodeposited composite coating (ECC) by a double face horizontal impinging jet cell (IJC) has been studied. The microstructure of coatings was examined by means of scanning electron microscopy performed in backscattered electron mode. The embedded particles distribution was shown to be the densest and the most uniform in laminar low flow mode and when the nozzle is at a distance of 5 mm close from the cathode. Excrescences observed on the composite surface are due to the wave-like flow of the jet on the cathode surface. The silica content of the nickel composite coatings was assessed by energy dispersive X-ray spectroscopy. The amount of particles embedded in the coating decreases with an increasing Reynolds number and as the nozzle-to-sample distance d becomes larger. A maximum rate of 4.43 wt% of silica has been successfully loaded at a distance d equal to 5 mm in the Ni-SiO2 composite coating.
机译:研究了通过双面水平撞击射流电池(IJC)改善二氧化硅颗粒共沉积到镍电沉积复合涂层(ECC)中的方法。通过在反向散射电子模式下进行的扫描电子显微镜检查涂层的微观结构。在层流低流量模式下以及当喷嘴距离阴极5毫米时,嵌入的颗粒分布显示为最密集,最均匀。在复合材料表面观察到的裂纹是由于阴极表面的射流呈波浪状流动所致。镍复合涂层的二氧化硅含量通过能量色散X射线光谱法评估。随着雷诺数的增加,并且随着喷嘴到样品的距离d变大,包埋在涂层中的颗粒数量减少。在Ni-SiO2复合涂层中,距离d等于5 mm的二氧化硅的最大添加量为4.43 wt%。

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