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Comparative microhardness analysis of various thin metallic multilayer composite films

机译:各种金属多层复合薄膜的比较显微硬度分析

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Different composite systems of electrodeposited monolayered and multilayered thin metal films of Ni and Cu on cold-rolled copper substrates were made. Thin metal layers were deposited at narrow spacing of 300 nm and 150 nm and high strength of composites was obtained. Microhardness analysis was performed on the systems of ED Ni film (sulphate “Slotonik 20” electrolyte) / ED Cu film (sulphate electrolyte), ED Ni film (sulphamate electrolyte) / ED Cu film (sulphate electrolyte) and ED Ni film (sulphamate electrolyte) / ED Ni film (“Slotonik 20” electrolyte). Characterization of mechanical properties of the composite systems was done using Vickers microhardness testing with loads ranging from 0.049 N to 1.96 N. Dependence of microhardness for different composite systems on microstructure and Ni/Cu and Ni/Ni layer thickness ratio was investigated. Composite hardness model of Korsunsky was applied to the experimental data in order to determine the absolute composite film hardness. The highest value of all the composite film hardness values was obtained for the system of multilayered Ni films from two different electrolytes, and ”Slotonik 20” and sulphamate and with sublayer thickness ratio 1∶2, respectively.
机译:制备了在冷轧铜基体上电沉积的单层和多层Ni和Cu金属薄膜的不同复合体系。以300 nm和150 nm的狭窄间距沉积金属薄层,从而获得了高强度的复合材料。在ED Ni膜(硫酸盐“ Slotonik 20”电解质)/ ED Cu膜(硫酸盐电解质),ED Ni膜(硫酸盐电解质)/ ED Cu膜(硫酸盐电解质)和ED Ni膜(硫酸盐电解质)的系统上进行了显微硬度分析。 )/ ED Ni膜(“ Slotonik 20”电解质)。使用维氏显微硬度测试对复合系统的机械性能进行表征,载荷范围为0.049 N至1.96N。研究了不同复合体系的显微硬度对显微组织以及Ni / Cu和Ni / Ni层厚比的依赖性。为了确定复合膜的绝对硬度,将Korsunsky的复合硬度模型应用于实验数据。在两种不同电解质的多层Ni膜体系中,“ Slotonik 20”和氨基磺酸盐以及亚层厚度比分别为1∶2时,获得了所有复合膜硬度值中的最大值。

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