材料科学
纳米晶材料
无定形固体
微观结构
层错能
溅射沉积
成核
弹性模量
复合材料
兴奋剂
粒度
层状结构
结晶度
相(物质)
图层(电子)
薄膜
晶粒生长
溅射
结晶学
纳米技术
光电子学
化学
有机化学
作者
Chao Zhang,Lijun Shao,Yuming Dai,Duo Li,Yuan Chen
出处
期刊:Coatings
[MDPI AG]
日期:2022-10-24
卷期号:12 (11): 1616-1616
被引量:1
标识
DOI:10.3390/coatings12111616
摘要
The mechanical properties of nanocrystalline pure Ni films are degraded due to grain coarsening with exposure for a long time in ambient. In order to further improve the mechanical properties of Ni-based thin films, as-sputtered Mo-W co-doped Ni/Ni3Al multilayered structures were constructed. When the individual layer thickness (h) is lower than 40 nm, both the average grain sizes and the crystallinity degrees are degraded, showing a tendency for the formation of the amorphous phase. With h = 40 nm, nano-twins were observed as (111) twining interfaces for the multilayers due to the reduction of the stacking fault energy by the co-doping of Mo-W, whereas the nucleation and growth of the nano-twins were limited, without observations for the Mo-W co-doped Ni/Ni3Al multilayer with h = 10 nm. The hardness of the multilayers was enhanced, and the elastic modulus was reduced at a lower h, owing to the grain refinements and layer interface barriers for strengthening, and the existence of the amorphous phase with the inferior modulus, respectively. The resistance against the fracture was enhanced due to toughening by the lamellar structure for the Mo-W doped Ni/Ni3Al multilayer at h ≤ 40 nm. Comprehensively, the Mo-W-doped Ni/Ni3Al multilayer with 10 nm displays a superior mechanical performance.
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