EFFECT OF HYDROGEN CHARGING ON THE CRACK-PROPAGATION AND CRACK BRANCHING IN DELAYED FAILURE OF NI-CR-MO STEEL

被引:1
|
作者
NAKASA, K
CHEN, X
TAKEI, H
机构
[1] Hiroshima Univ, Faculty of, Engineering, Hiroshima, Jpn, Hiroshima Univ, Faculty of Engineering, Hiroshima, Jpn
关键词
CRYSTALS - Dislocations - Failure analysis - HEAT TREATMENT - Quenching - IRON NICKEL CHROMIUM MOLYBDENUM ALLOYS - Stresses;
D O I
10.2320/jinstmet1952.49.10_846
中图分类号
学科分类号
摘要
Delayed failure tests were carried out on Ni-Cr-Mo steel quenched and tempered at 673K in a NaCl aqueous solution in hydrogen charging condition, and the crack branching as well as crack propagation behaviors were investigated. The crack propagation rate da/dt increases with increase in cathode charging current density, i, and da/dt increases to a maximum and then decreases with increase in the increasing rate of stress intensity factor, K. The stress intensity factor at crack branching, K//I//B, decreases to a minimum and then increases with increase in i. These results can be explained by interaction between dislocations and hydrogen atoms, such as dislocation trapping and dislocation transport of hydrogen on the slip planes near the crack tip.
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页码:846 / 853
页数:8
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