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Kinetics of electroplating process of nano-sized ceramic particle/Ni composite

机译:纳米陶瓷颗粒/ Ni复合材料电镀过程的动力学

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摘要

Ultra-tine Al_2O_3, ZrO_2 and SiC powders were co-deposited with Ni by electroplating from a nickel sulfamate bath. An electroplating additive Na_3Co(NO_2)_6 can promote the co-deposition of the SiC particles, but the Al_2O_3 and ZrO_2 particles can form composite layers without the assistance of the additive. It suggests that the complex ion Co(NO_2)_6~(3-) acts as a catalyst during the composite plating. The Guglielmi adsorption mechanism is applied to the electroplating of the ultra-fine SiC with Ni. The ultra-fine SiC particles are more difficult to co-deposit than the coarse SiC, and the rate determination step is controlled by the transferal process of loose adsorption to strong adsorption. The embedded SiC concentration can be increased either by increasing electrical current density or by raising the pH of the suspension to 5. The existence of second ceramic phases in the co-deposited layer changes the grain shape of Ni from columnar to equiaxial, and reduces the average grain size of Ni-matrix to 50 nm.
机译:通过从氨基磺酸镍浴中进行电镀,将超常规Al_2O_3,ZrO_2和SiC粉与Ni共沉积。电镀添加剂Na_3Co(NO_2)_6可以促进SiC颗粒的共沉积,但是Al_2O_3和ZrO_2颗粒可以在没有添加剂帮助的情况下形成复合层。这表明在复合镀过程中,复合离子Co(NO_2)_6〜(3-)起到了催化作用。 Guglielmi吸附机制适用于Ni电镀超细SiC。超细SiC颗粒比粗SiC更难以共沉积,并且速率确定步骤由松散吸附向强吸附的转移过程控制。可以通过增加电流密度或将悬浮液的pH值提高到5来增加嵌入的SiC浓度。共沉积层中第二陶瓷相的存在将Ni的晶粒形状从柱状变为等轴状,并降低了Ni基体的平均晶粒尺寸为50nm。

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