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首页> 外文期刊>International journal of steel structures >A New Model of Fatigue Crack Growth Rate Considering Mean Stress Effects Due to Locked-In Stress
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A New Model of Fatigue Crack Growth Rate Considering Mean Stress Effects Due to Locked-In Stress

机译:考虑锁定应力引起的平均应力效应的疲劳裂纹增长速率的新模型

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摘要

During the fabrication of large structures, proper consideration of the mean stress due to locked-in stress is very important to quality control. In general, crack propagation life is shortened when applying the tensile mean stress. In this study, we examine the mean stress effect in terms of the fatigue crack growth rate (FCGR). We propose a FCGR model that considers crack closure, partial crack closure and compressive loads. The proposed model is validated with aluminum 5083 as well as three other materials at various stress ratios, and is compared with other existing FCGR models. We show that the proposed model effectively characterizes the FCGR under various stress ratios into a single line.
机译:在制造大结构期间,对由于锁定应力引起的平均应力的适当考虑对质量控制非常重要。通常,在施加拉伸平均应力时缩短裂缝繁殖寿命。在这项研究中,我们在疲劳裂纹生长速率(FCGR)方面检查平均应力效应。我们提出了一种FCGR模型,其考虑裂缝闭合,部分裂缝闭合和压缩载荷。所提出的模型用铝5083以及三种以各种应力比的其他材料验证,与其他现有FCGR模型进行比较。我们表明所提出的模型在各种应力​​比下有效地表征了FCGR进入单线。

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