面向MEMS元件设计的镍钴合金电沉积及微力学性能表征

Yiming Jiang, Chun-Yi Chen, Xun Luo, D. Yamane, Masanori Mizoguchi, Osamu Kudo, R. Maeda, M. Sone, T. Chang
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引用次数: 2

摘要

采用氨基甲酸盐镀液制备了镍钴合金,并对其微观力学性能进行了评价,为其在微型化电子器件中的应用奠定了基础。使用溴化镍和一种市售表面光亮剂作为添加剂。钴含量由21.5 at增加到60.1 at。使用表面增白剂后,晶粒尺寸由21.1 nm细化到13.2 nm。考虑试样尺寸效应,采用聚焦离子束法制备微柱型试样进行微压缩试验,评价了微尺度下的力学性能。镍钴合金的屈服强度平均晶粒尺寸为13.9 nm,钴含量为66.6 at。%达到2.37 GPa,显示了样品尺寸、晶界强化和固溶体强化效应的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Electrodeposition and Micro-Mechanical Property Characterization of Nickel–Cobalt Alloys toward Design of MEMS Components
Nickel–cobalt alloys were prepared by alloy electrodeposition with a sulfamate bath, and the mechanical properties on the micro-scale were evaluated for the application as micro-components in miniaturized electronic devices. Nickel bromide and a commercially available surface brightener were used as the additives. The cobalt content increased from 21.5 to 60.1 at.% after addition of nickel bromide into the bath, and the grain size refined from 21.1 to 13.2 nm when the surface brightener was used. The mechanical properties on the micro-scale were evaluated by micro-compression test using micro-pillar type specimens fabricated by a focused ion beam system to take the sample size effect into consideration. The yield strength of the nickel–cobalt alloy having an average grain size at 13.9 nm and cobalt content of 66.6 at.% reached 2.37 GPa, revealing influences from the sample size, grain boundary strengthening, and solid solution strengthening effects.
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CiteScore
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