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首页> 外文期刊>Engineering Fracture Mechanics >Analytical calculation of stress intensity factor of cracked steel I-beams with experimental analysis and 3D digital image correlation measurements
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Analytical calculation of stress intensity factor of cracked steel I-beams with experimental analysis and 3D digital image correlation measurements

机译:用实验分析和3D数字图像相关性测量来分析裂纹钢工字梁的应力强度因子

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摘要

An analytical method to calculate the stress intensity factor for cracked steel I-beams under both bending moment and axial load is presented. The method is based on the approach of crack surface widening energy release rate. The crack surface widening energy release rate is formulated by a G~*-integral and elementary strength theory of materials. Comparisons between the analytical results and results available in the literature for specific cases demonstrate the validity of the methodology. Furthermore, the fatigue and fracture behavior of the steel I-beam are experimentally investigated. The fatigue crack growth rate, residual deflection and stiffness reduction of a cracked beam under cyclic loading are studied. A three-dimensional digital image correlation system is used to illustrate the stress evolution pattern and the plasticity zone around the crack tip using image processing technique, thereby providing further verification of the theoretical models.
机译:提出了一种计算弯曲钢工字梁在弯矩和轴向载荷作用下应力强度因子的解析方法。该方法基于裂纹表面加宽能量释放速率的方法。裂纹表面扩展能量释放率由材料的G〜*积分和基本强度理论公式化。分析结果与针对特定情况的文献中提供的结果之间的比较证明了该方法的有效性。此外,对工字钢的疲劳和断裂行为进行了实验研究。研究了循环荷载作用下裂纹梁的疲劳裂纹扩展速率,残余挠度和刚度降低。使用三维数字图像关联系统,通过图像处理技术来说明应力演化模式和裂纹尖端周围的塑性区,从而进一步验证理论模型。

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