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- W4285498927 abstract "In this paper, highly dispersed edge graphene oxides (hereinafter referred to as eGO) were successfully applied in the Ni-W-P bath system, and high-performance Ni-W-P-eGO coating was prepared on the surface of N80 carbon steel by an electroless deposition method. By investigating concentration of eGO in solution in the solution, and using XPS, XRD, EDS, and SEM to analyze the crystal properties, electroless composition, micromorphology, and microstructure of the coating in detail,and the hardness, corrosion resistance and wear resistance of the coatings were investigated by microhardness tests, electrochemical corrosion and friction and wear tests. The niversal electrochemical methods determined the corrosion resistance of the coating, and the abrasion resistance of the coating was determined by ageneralduty reciprocating test. The experimental characterization results show that the addition of eGO nanomaterials to the Ni-W-P composite coating significantly improves the corrosion resistance of the coating in 3.5 wt% NaCl solution, improve the mechanical properties of the coating. When eGO content reaches 0.1 g/l, Ni-W-P-eGO coating demonstrated the most excellent corrosion resistance with a corrosion current of 0.9476 μA/cm 2 , and mechanical properties (the average friction coefficient is 0.173, and the microhardness value is 744.58 HV). In this paper, nanometers were added to the Ni-W-P composite coating, and a series of tests were carried out. The surface morphology, crystal structure and elemental composition of the coatings were characterized, and the corrosion resistance, wear resistance and hardness of the coatings were tested. The results show that the addition of eGO improves the hardness, corrosion resistance and wear resistance of the coatings. • For the first time, the two-dimensional hierarchical nanomaterial eGO was applied to the field of electroless Ni-W-P coating. • We used various characterization methods. • Ni-W-P-eGO (0.1 g/L) coating exhibits the best corrison resistance (R ct = 29815 Ω·cm 2 ), and the best hardness (744.58 HV). • Provides a new idea for the preparation of high-performance Ni-W-P composite coatings." @default.
- W4285498927 created "2022-07-15" @default.
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- W4285498927 date "2022-10-01" @default.
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- W4285498927 title "Preparation, corrosion resistance and mechanical properties of electroless Ni-W-P-eGO composite coatings" @default.
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- W4285498927 doi "https://doi.org/10.1016/j.colsurfa.2022.129704" @default.
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