Highly Orientated Sericite Nanosheets in Epoxy Coating for Excellent Corrosion Protection of AZ31B Mg Alloy

Author:

Wu Hao12ORCID,Xi Ke3,Huang Yan12ORCID,Zheng Zena12,Wu Zhenghua12,Liu Ruolin1,Zhou Chilou3ORCID,Xu Yao4,Du Hao12,Yin Yansheng1

Affiliation:

1. Guangdong Key Laboratory of Materials and Equipment in Harsh Marine Environment, Guangzhou Maritime University, Guangzhou 510725, China

2. School of Naval Architecture and Ocean Engineering, Guangzhou Maritime University, Guangzhou 510725, China

3. School of Mechanical and Automobile Engineering, South China University of Technology, Guangzhou 510641, China

4. Guangdong Institute of Special Equipment Inspection and Research, Foshan 510655, China

Abstract

The growing demands for material longevity in marine environments necessitate the development of highly efficient, low-cost, and durable corrosion-protective coatings. Although magnesium alloys are widely used in the automotive and aerospace industries, severe corrosion issues still hinder their long-term service in naval architecture. In the present work, an epoxy composite coating containing sericite nanosheets is prepared on the AZ31B Mg alloy using a one-step electrophoretic deposition method to improve corrosion resistance. Due to the polyetherimide (PEI) modification, positively charged sericite nanosheets can be highly orientated in an epoxy coating under the influence of an electric field. The sericite-incorporated epoxy coating prepared in the emulsion with 4 wt.% sericite exhibits the highest corrosion resistance, with its corrosion current density being 6 orders of magnitude lower than that of the substrate. Electrochemical measurements and immersion tests showed that the highly orientated sericite nanosheets in the epoxy coating have an excellent barrier effect against corrosive media, thus significantly improving the long-term anti-corrosion performance of the epoxy coating. This work provides new insight into the design of lamellar filler/epoxy coatings with superior anticorrosion performance and shows promise in the corrosion protection of magnesium alloys.

Funder

National Natural Science Foundation of China

China Postdoctoral Science Foundation

Fundamental Research Funds for the Central Universities

Guangdong Basic and Applied Basic Research Foundation

Guangdong Provincial Administration for Market Regulation Funds of Science and Technology

Publisher

MDPI AG

Subject

General Materials Science,General Chemical Engineering

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