叠加原理
应力腐蚀开裂
材料科学
开裂
现象学模型
腐蚀疲劳
压力(语言学)
裂缝闭合
结构工程
疲劳开裂
腐蚀
巴黎法
商业周期
复合材料
断裂力学
工程类
数学
经济
数学分析
统计
语言学
哲学
凯恩斯经济学
标识
DOI:10.22541/au.160919323.38587674/v1
摘要
For 50 years, researchers have considered how time-dependent environmental effects can be included in cycle-dependent corrosion fatigue (CF) crack growth rate (CGR) models. Common assumptions are that cycle- and time-dependent contributions are separable, operate in parallel, are non-interacting and that total environmental CGR can be obtained by linear summation of cycle-dependent fatigue and time-dependent (SCC) CGRs. However, considered here are data and analyses that show that environmental CGRs may be greater than predicted by superposition models. A phenomenological model is developed to quantify the effect of crack-tip strain-rate due to fatigue stress-cycles on electrochemical activity at a crack tip and thereby synergistically increase crack growth rates by a cyclic-stress corrosion-cracking (C-SCC) mechanism.
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