Analysis of Environmentally Assisted Cracking in S420 Steel by Using the Theory of Critical Distances

P. González, S. Cicero, B. Arroyo, J. Álvarez
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Abstract

The behavior of S420 steel under cathodic polarization in low pH aqueous environment is analyzed following the assumptions of the Theory of Critical Distances. This methodology has been successfully applied in fracture and fatigue analysis, but it has not been employed yet under stress corrosion cracking or hydrogen embrittlement conditions. This work focuses on the problem of environmentally assisted cracking by using the Point Method and the Line Method, both of them belonging to the Theory of Critical Distances. Fracture mechanic tests were carried out, using a slow strain rate machine, at two different solicitation rates (6·10−8 m/s and 6·10−9 m/s). The study is based on an experimental program composed of C(T) specimens with notch radii varying from 0 mm up to 2 mm. Cathodic polarization with a 5 mA/cm2 current has been employed and the aqueous aggressive environment was made using the Pressouyre’s method. The study has been completed with finite elements simulation analysis. The results reveal that the Theory of Critical Distances provides accurate predictions of the environmentally assisted cracking behavior of S420 steel in notched conditions.
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用临界距离理论分析S420钢环境辅助开裂
根据临界距离理论的假设,分析了S420钢在低pH水环境中阴极极化的行为。该方法已成功地应用于断裂和疲劳分析,但尚未应用于应力腐蚀开裂或氢脆条件下。本文主要利用临界距离理论中的点法和线法研究环境辅助开裂问题。采用慢应变速率试验机,在6·10−8 m/s和6·10−9 m/s两种不同的拉伸速率下进行了断裂力学试验。该研究是基于一个由C(T)样品组成的实验程序,其缺口半径从0毫米到2毫米不等。采用5 mA/cm2电流的阴极极化,并采用Pressouyre的方法制造了水侵蚀环境。通过有限元仿真分析完成了研究。结果表明,临界距离理论可以准确预测S420钢在缺口条件下的环境辅助开裂行为。
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