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首页> 外文期刊>Journal of nuclear science and technology >Fatigue Life Assessment Based on Crack Growth Behavior in Reduced Activation Ferritic/Martensitic Steel
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Fatigue Life Assessment Based on Crack Growth Behavior in Reduced Activation Ferritic/Martensitic Steel

机译:基于裂纹扩展行为的还原活化铁素体/马氏体钢的疲劳寿命评估

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摘要

Crack growth behavior under low cycle fatigue in reduced activation ferritic/martensitic steel, F82H IEA-heat (Fe-8Cr-2W-0.2V-0.02Ta), was investigated to improve the fatigue life assessment method of fusion reactor structural material. Low cycle fatigue test was carried out at room temperature in air at a total strain range of 0.4-1.5% using an hourglass-type miniature fatigue specimen. The relationship between the surface crack length and life fraction was described using one equation independent of the total strain range. Therefore, the fatigue life and residual life could be estimated using the surface crack length. Moreover, the microcrack initiation life could be estimated using the total strain range if there was a one-to-one correspondence between the total strain range and number of cycles to failure. The crack growth rate could be estimated using the total strain range and surface crack length by introducing the concept of the normalized crack growth rate.
机译:研究了还原活化铁素体/马氏体钢F82H IEA-热量(Fe-8Cr-2W-0.2V-0.02Ta)在低循环疲劳下的裂纹扩展行为,以改善聚变反应堆结构材料的疲劳寿命评估方法。使用沙漏型微型疲劳样品在室温下于空气中以0.4-1.5%的总应变范围进行低循环疲劳测试。使用与总应变范围无关的一个方程式描述了表面裂纹长度与寿命分数之间的关系。因此,可以使用表面裂纹长度来估计疲劳寿命和剩余寿命。此外,如果总应变范围与失效循环数之间存在一一对应关系,则可以使用总应变范围估算微裂纹的起始寿命。通过引入归一化裂纹扩展速率的概念,可以使用总应变范围和表面裂纹长度来估算裂纹扩展速率。

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