材料科学
巴黎法
增长率
裂缝闭合
疲劳试验
复合材料
电子背散射衍射
可塑性
晶体塑性
拉伤
结晶学
断裂力学
微观结构
几何学
化学
医学
数学
内科学
作者
Yelm Okuyama,Masaki Tanaka,Tatsuya Morikawa
标识
DOI:10.2320/matertrans.mt-m2021211
摘要
The temperature dependence of fatigue crack growth in stage IIb was investigated in Ti–0.49 mass%O with an alpha single phase. It was found that the fatigue crack growth rate in stage IIb was temperature independent at temperatures above 300 K. EBSD maps beside the fatigue crack showed that prismatic slips with 〈a〉 dislocations were dominantly activated during the fatigue crack growth. The reason why the prismatic slips were dominantly activated is discussed with numerical crystal plasticity analysis. It was shown that the local strain rate at the notch tip was higher than the macroscopic strain rate, which leads to the suppression of non-prismatic slips at the fatigue crack tip.
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