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Correlation between microstructure and corrosion resistance of amorphous Ni–W–P coatings after low-temperature heat treatment

材料科学 无定形固体 微观结构 腐蚀 非晶态金属 原电池 冶金 化学工程 分析化学(期刊) 结晶学 合金 化学 色谱法 工程类
作者
Guanlin Zhao,Shushuai Liu,Dongting Wu,Yong Zou
出处
期刊:International Journal of Modern Physics B [World Scientific]
卷期号:36 (12n13)
标识
DOI:10.1142/s0217979222400549
摘要

Amorphous Ni–W–P coatings were prepared by electroless plating and annealed at 250[Formula: see text]C for different times to obtain different microstructures. The local atomic structure of these amorphous coatings was analyzed by calculating the atomic pair distribution function from the XRD patterns. The type of crystals in coatings was obtained from the TEM image and corresponding selected area diffraction (SAED) pattern. The proportion of microscopic particles in the matrix was roughly estimated from the first DSC exothermic peak area. Corrosion resistance in 0.5-M sulfuric acid solution was investigated via electrochemical techniques. Experimental results showed that all annealed coatings still held amorphous structure, albeit the microstructure had been changed. The correlation radius and the atomic number of clusters had increased, especially when the annealed time extended to 12 h and 20 h. The number of microscopic particles in the amorphous matrix also increased with rise in heat treatment time. The type of crystals in these amorphous matrices increased from Ni/Ni (W) to Ni/Ni (W), Ni 12 P 5 and Ni 5 P 4 . The decreasing corrosion resistance was in agreement with the increasing number of microscopic particles and higher-order clusters in annealed Ni–W–P coatings. These microscopic particles could form micro-galvanic cells in corrosion solution. The higher-order clusters increased the composition difference in the amorphous matrix, and this also promoted to form micro-galvanic cells in solution.
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