Influence of Grain Size and Film Formation Potential on the Diffusivity of Point Defects in the Passive Film of Pure Aluminum in NaCl Solution

Author:

Hu Xiuhua1,Gao Kunyuan1,Xiong Xiangyuan1,Huang Hui1,Wu Xiaolan1,Wen Shengping1,Wei Wu1ORCID,Nie Zuoren1,Zhou Dejing2

Affiliation:

1. National Engineering Laboratory for Industrial Big-Data Application Technology, College of Materials Science and Engineering, Beijing University of Technology, Beijing 100124, China

2. Yin Bang Clad Material Co., Ltd., Jiangsu Key Laboratory for Clad Materials, Wuxi 214145, China

Abstract

The influence of grain size on the corrosion behavior of pure aluminum and the defect density and diffusion coefficient of surface passive films were investigated using electron backscatter diffraction (EBSD) and electrochemical testing techniques, based on the point defect model (PDM). Samples with three different grain sizes (23 ± 11, 134 ± 52, and 462 ± 203 μm) were obtained by annealing at different temperatures and times. The polarization curves and electrochemical impedance spectroscopy results for the pure aluminum in the 3.5% NaCl solution showed that with decreasing grain size, the corrosion current (icorr) decreased monotonously, giving rise to a noble corrosion potential and a large polarization resistance. The Motte–Schottky results showed that the passive films that formed on pure aluminum with fine grains of 23 ± 11 μm had a low density (3.82 × 1020 cm−3) of point defects, such as oxygen vacancies and/or metal interstitials, and a small diffusion coefficient (1.94 × 10−17 cm2/s). The influence of grain size on corrosion resistance was discussed. This work demonstrated that grain refinement could be an effective approach to achieving high corrosion resistance of passive metals.

Funder

National Key Research and Development Program of China

Jiangsu Province Program for Commercialization of Scientific and Technological Achievements

Program on Jiangsu Key Laboratory for Clad Materials

Publisher

MDPI AG

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