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Fatigue Crack Growth Rate and Stress-Intensity Factor Corrections for Out-of-Plane Crack Growth

机译:平面外裂纹扩展的疲劳裂纹扩展速率和应力强度因子校正

摘要

Fatigue crack growth rate testing is performed by automated data collection systems that assume straight crack growth in the plane of symmetry and use standard polynomial solutions to compute crack length and stress-intensity factors from compliance or potential drop measurements. Visual measurements used to correct the collected data typically include only the horizontal crack length, which for cracks that propagate out-of-plane, under-estimates the crack growth rates and over-estimates the stress-intensity factors. The authors have devised an approach for correcting both the crack growth rates and stress-intensity factors based on two-dimensional mixed mode-I/II finite element analysis (FEA). The approach is used to correct out-of-plane data for 7050-T7451 and 2025-T6 aluminum alloys. Results indicate the correction process works well for high DeltaK levels but fails to capture the mixed-mode effects at DeltaK levels approaching threshold (da/dN approximately 10(exp -10) meter/cycle).
机译:疲劳裂纹扩展速率测试是由自动数据收集系统执行的,该系统假设对称平面内的裂纹扩展为直线形,并使用标准多项式解决方案通过顺应性或电位降测量来计算裂纹长度和应力强度因子。用于校正收集到的数据的视觉测量通常仅包括水平裂纹长度,对于水平延伸的裂纹,水平裂纹长度会低估裂纹增长率,而高估应力强度因子。作者设计了一种基于二维混合模式I / II有限元分析(FEA)的裂纹扩展速率和应力强度因子的校正方法。该方法用于校正7050-T7451和2025-T6铝合金的面外数据。结果表明,校正过程对于高DeltaK级别效果很好,但在DeltaK级别接近阈值(da / dN约为10(exp -10)米/周期)时无法捕获混合模式的影响。

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