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不同敏化程度奥氏体不锈钢晶间腐蚀敏感性的晶体学评估

Crystallographic Evaluation of Susceptibility to Intergranular Corrosion in Austenitic Stainless Steel with Various Degrees of Sensitization.

作者信息

Fujii Tomoyuki, Furumoto Takaya, Tohgo Keiichiro, Shimamura Yoshinobu

机构信息

Department of Mechanical Engineering, Shizuoka University, Hamamatsu 4328561, Japan.

出版信息

Materials (Basel). 2020 Jan 30;13(3):613. doi: 10.3390/ma13030613.

Abstract

This study investigated the susceptibility to intergranular corrosion (IGC) in austenitic stainless steel with various degrees of sensitization (DOSs) from a microstructural viewpoint based on the coincidence site lattice (CSL) model. IGC testing was conducted using oxalic acid and type 304 stainless steel specimens with electrochemical potentiokinetic reactivation (EPR) ratios that varied from 3 to 30%. As a measure of IGC susceptibility, the width of the corroded groove was used. The relationship between IGC susceptibility, grain boundaries (GB) structure, and EPR ratio of the specimens was evaluated. As a result, the IGC susceptibility cannot be characterized using the  value, irrespective of the DOS of the specimen. The IGC susceptibility increases with increasing unit cell area of CSL boundaries, which is a measure of the stability of the CSL boundaries, and then levels off. The relationship between the IGC susceptibility and unit cell area is sigmoidal, irrespective of the DOS of the specimen. The sigmoid curve shifts rightward and the upper bound of IGC susceptibility decreases with decreasing DOS of the specimen.

摘要

本研究基于重合位置点阵(CSL)模型,从微观结构角度研究了不同敏化程度(DOS)的奥氏体不锈钢的晶间腐蚀(IGC)敏感性。使用草酸和304型不锈钢试样进行IGC测试,其电化学动电位再活化(EPR)比率在3%至30%之间变化。作为IGC敏感性的度量,使用腐蚀沟槽的宽度。评估了试样的IGC敏感性、晶界(GB)结构和EPR比率之间的关系。结果表明,无论试样的DOS如何,均无法使用Σ值来表征IGC敏感性。IGC敏感性随着CSL边界单位晶胞面积的增加而增加,CSL边界单位晶胞面积是CSL边界稳定性的一种度量,然后趋于平稳。无论试样的DOS如何,IGC敏感性与单位晶胞面积之间的关系呈S形。随着试样DOS的降低,S形曲线向右移动,IGC敏感性的上限降低。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cb39/7040806/5ba61f7df55e/materials-13-00613-g001.jpg

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