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Hydrogen-enhanced dislocation emission, motion and nucleation of hydrogen-induced cracking for steel 被引量:9

Hydrogen-enhanced dislocation emission, motion and nucleation of hydrogen-induced cracking for steel
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摘要 The change in dislocation configuration ahead of a loaded crack tip before and after charging with hydrogen was in situ investigated in TEM using a special constant deflection loading device The results showed that hydrogen could facilitate dislocation emission, multiplication and motion The change in displacement field ahead of a loaded notch tip for a bulk specimen before and after charging with hydrogen was in situ measured by the laser moire interferometer technique. The results showed that hydrogen could enlarge the plastic zone and increase the plastic strain The in situ observation in TEM showed that when hydrogen-enhanced dislocation emission and motion reached a critical condition, a nanocrack of hydrogen-induced cracking ( HIC) would nucleate in the dislocation-free zone (DFZ) or at the main crack tip. The reasons for hydrogen-enhanced dislocation emission, multiplication and motion, and the mechanisms of nucleation of HIC have been The change in dislocation configuration ahead of a loaded crack tip before and after charging with hydrogen was in situ investigated in TEM using a special constant deflection loading device The results showed that hydrogen could facilitate dislocation emission, multiplication and motion The change in displacement field ahead of a loaded notch tip for a bulk specimen before and after charging with hydrogen was in situ measured by the laser moire interferometer technique. The results showed that hydrogen could enlarge the plastic zone and increase the plastic strain The in situ observation in TEM showed that when hydrogen-enhanced dislocation emission and motion reached a critical condition, a nanocrack of hydrogen-induced cracking ( HIC) would nucleate in the dislocation-free zone (DFZ) or at the main crack tip. The reasons for hydrogen-enhanced dislocation emission, multiplication and motion, and the mechanisms of nucleation of HIC have been discussed
出处 《Science China(Technological Sciences)》 SCIE EI CAS 1997年第5期530-538,共9页 中国科学(技术科学英文版)
基金 Project supported by the National Natural Science Foundation of China and the State Key Laboratory of Corrosion and Protection of Metal.
关键词 hydrogen-induced CRACKING TEM hydrogen-enhanced DISLOCATION emission and motion. hydrogen-induced cracking, TEM, hydrogen-enhanced dislocation emission and motion.
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