Mitigation of Corrosion on Magnesium Alloy by Predesigned Surface Corrosion

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作者
Xuming Zhang
Guosong Wu
Xiang Peng
Limin Li
Hongqing Feng
Biao Gao
Kaifu Huo
Paul K. Chu
机构
[1] City University of Hong Kong,Department of Physics and Materials Science
[2] Tat Chee Avenue,undefined
[3] Kowloon,undefined
[4] The State Key Laboratory of Refractories and Metallurgy,undefined
[5] Wuhan University of Science and Technology,undefined
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Rapid corrosion of magnesium alloys is undesirable in structural and biomedical applications and a general way to control corrosion is to form a surface barrier layer isolating the bulk materials from the external environment. Herein, based on the insights gained from the anticorrosion behavior of corrosion products, a special way to mitigate aqueous corrosion is described. The concept is based on pre-corrosion by a hydrothermal treatment of Al-enriched Mg alloys in water. A uniform surface composed of an inner compact layer and top Mg-Al layered double hydroxide (LDH) microsheet is produced on a large area using a one-step process and excellent corrosion resistance is achieved in saline solutions. Moreover, inspired by the super-hydrophobic phenomenon in nature such as the lotus leaves effect, the orientation of the top microsheet layer is tailored by adjusting the hydrothermal temperature, time and pH to produce a water-repellent surface after modification with fluorinated silane. As a result of the trapped air pockets in the microstructure, the super-hydrophobic surface with the Cassie state shows better corrosion resistance in the immersion tests. The results reveal an economical and environmentally friendly means to control and use the pre-corrosion products on magnesium alloys.
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