材料科学
微观结构
类金刚石碳
冶金
钛
断裂韧性
残余应力
镁
韧性
碳纤维
复合材料
薄膜
复合数
纳米技术
作者
Weihong Xie,Cuixia Guo,Yiping Zhao,Chang-Jiu Li,Bin Liao,Sam Zhang
标识
DOI:10.1016/j.surfcoat.2023.130328
摘要
To improve both the corrosion resistance and wear resistance of magnesium alloys, titanium-diamond-like carbon (Ti-DLC) monolayer and Ti/Ti-DLC multilayer films with two periods were applied to AZ31 magnesium alloys through filter cathodic vacuum arc deposition technology. The Ti-DLC monolayer film exhibited an amorphous structure doped with TiC nanocrystals. After introducing the Ti sublayer, the Ti/Ti-DLC multilayer films exhibited a layered structure, resulting in improved adhesion strength and fracture toughness and lower hardness. Compared with the (Ti/Ti-DLC)4 multilayer film with a smaller period, the (Ti/Ti-DLC)2 multilayer film with a lager period exhibited better adhesion strength, higher fracture toughness, hardness, ID/IG ratio, and lower residual stress owing to its thicker Ti sublayers.
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