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首页> 外文期刊>Plating & Surface Finishing >Cathode process in nickel-cobalt alloy deposition from sulfamate electrolytes-application to electroforming
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Cathode process in nickel-cobalt alloy deposition from sulfamate electrolytes-application to electroforming

机译:氨基磺酸盐电解质沉积镍钴合金中的阴极工艺-应用于电铸

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摘要

Electroforming is a specialized application of electroplating for the production of finished components and unique articles that cannot be made by any other method. Sulfamate electrolytes for Ni-Co deposition form highly efficient and stablesolutions, but their wide use for electroforming has been hampered by the fact that the mechanism of Ni{sup}(+2) and Co{sup}(+2) codeposition is as yet imperfectly understood. Study was made of the effect of electrolyte composition and operatingconditions on the Ni-Co alloy constitution and the mechanism of its electrodeposition. It was shown that the Faradaic efficiency of the deposition is characterized by a complicated dependence on pH with a maximum of 98.5 percent at pH 3.5 to 3.8. Theconcentration of cobalt in the deposit decreases by as much as five to seven percent for a pH rise from 2 to 5.2. A minor increase of cobalt concentration in the electrolyte is followed by a steep rise in the cobalt content of the alloy. At a ratio ofcobalt to nickel of 0.1, the alloy contains 45 percent coba at equal cation concentrations, the alloy contains 73 percent Co. This is because of the faster kinetics of Co{sup}(+2) reduction. By rotating-disk-electrode and chronopotentiometric methods,it was demonstrated that the rate-determining step of alloy deposition is the electrochemical reaction, complicated by adsorption. It is believed that the codeposition of Ni{sup}(+2) and Co{sup}(+2) is explained by the formation of heteronuclear surfacecomplexes with sulfamate anion as the bidentate ligand. The alloy structure and physical and mechanical properties, such as hardness, internal stress, tensile strength, elongation and thermal stability were also studied. An optimum was found between alloy characteristics and operating conditions. Parts having complex shapes (molds, miniature nozzles and other electronic and aircraft components) were produced by Ni-Co electroforming.
机译:电铸是电镀的一种特殊应用,用于生产成品部件和无法通过其他任何方法制造的独特制品。用于Ni-Co沉积的氨基磺酸盐电解质形成高效且稳定的溶液,但是由于Ni {sup}(+ 2)和Co {sup}(+ 2)共沉积机制的存在,这一事实阻碍了它们在电铸中的广泛应用。不完全理解。研究了电解液组成和工作条件对Ni-Co合金结构的影响及其电沉积机理。结果表明,沉积的法拉第效率的特征在于对pH的复杂依赖性,在pH 3.5至3.8时最大为98.5%。 pH值从2升高到5.2时,沉积物中钴的浓度最多降低5%至7%。电解液中钴浓度的轻微增加,随后合金中钴含量的急剧增加。在钴与镍的比率为0.1的情况下,合金包含45%的钴;在相同的阳离子浓度下,合金中含有73%的Co。这是因为Co {sup}(+ 2)还原的动力学更快。通过转盘电极和计时电位法,证明了合金沉积的决定速率的步骤是电化学反应,是吸附的复杂过程。据信,Ni {sup}(+ 2)和Co {sup}(+ 2)的共沉积是通过形成具有氨基磺酸根阴离子作为双齿配体的异核表面复合物来解释的。还研究了合金的结构和物理机械性能,例如硬度,内应力,拉伸强度,伸长率和热稳定性。在合金特性和操作条件之间找到了最佳值。通过Ni-Co电铸生产具有复杂形状的零件(模具,微型喷嘴以及其他电子和飞机部件)。

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