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首页> 外文期刊>International journal of steel structures >A Methodology for Fatigue Reliability Assessment Considering Stress Range Distribution Truncation
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A Methodology for Fatigue Reliability Assessment Considering Stress Range Distribution Truncation

机译:考虑应力范围分布截断的疲劳可靠性评估方法

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摘要

Not all loads contribute to fatigue crack propagation in the welded detail of steel bridges when they are subjected to variable amplitude loading. For fatigue assessment, therefore, non-contributing stress cycles should be truncated. However, stress range truncation is not considered during typical fatigue reliability assessment. When applying the first order reliability method, stress range truncation occurs mismatch between the expected number of cycles to failure and the number of cycles obtained at the time of evaluation, because the expected number of cycles only counts the stress cycles that contribute to fatigue crack growth. Herein, we introduce a calibration factor to coordinate the expected number of cycles to failure to the equivalent value which includes both contributing and non-contributing stress cycles. The effectiveness of stress range truncation and the proposed calibration factor was validated via case studies.
机译:当钢桥承受可变振幅载荷时,并非所有载荷都会导致疲劳裂纹在钢桥的焊接细节中传播。因此,为了进行疲劳评估,应缩短非贡献性应力循环。但是,在典型的疲劳可靠性评估过程中未考虑应力范围的缩短。当应用一阶可靠性方法时,应力范围截断会导致失效的预期循环次数与评估时获得的循环次数之间不匹配,因为预期的循环次数仅计算出有助于疲劳裂纹扩展的应力循环。在此,我们引入了一个校准因子,以将预期的失效循环次数与等效值进行协调,该等效值包括有贡献的和无贡献的应力循环。通过案例研究验证了应力范围截断和建议的校正因子的有效性。

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