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◆ Corrosion Communications2026-01-01· Materials science

Temperature dependence of SCC behavior and mechanism of stainless steel 304 in chloride-containing solution

Baozhuang Sun, Yue Pan, Lixian Wang, Zengyao Chen, Zhiyong Liu, Xiaogang Li

原始摘要(英文原文)· Original abstract
Effects of temperature on stress corrosion cracking (SCC) of stainless steel 304 were studied through electrochemical measurement, X-ray photoelectron spectroscopy and slow strain rate tensile tests combined with electron backscattered diffraction and electron channeling contrast imaging. Results indicate that the electrochemical behavior of the microstructure plays a significant role in SCC mechanism. With the rising test temperature, passive film breaks down; SCC susceptibility increases linearly with the logarithm of passive current density as a result of dislocation slip dissolution, which facilitates transgranular SCC. The formation of strain-induced α '-martensite along grain boundaries weakens passive film and causes intergranular SCC as martensite enhances hydrogen permeation and hydrogen embrittlement (HE). Therefore, HE plays a role in SCC; but the effect diminishes with rising solution temperature, as martensite formation is hindered.
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Temperature dependence of SCC behavior and mechanism of stainless steel 304 in chloride-containing solution — 科研速览 Science Skim