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A compliance-based approach to measure fracture resistance curve for surface cracked steel plates

机译:基于一致性的方法来测量表面裂纹钢板的抗断裂强度曲线

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This paper proposes a compliance-based approach to determine the fracture resistance J-R curve for surface cracks in high-strength steel (S690) plate specimens in a four-point-bend set up. This study extends the η-approach used in the fracture test for the typical specimens with a through-thickness crack, to the surface cracks in plate specimens in calculating the energy release rate from the area below the measured moment versus the crack-plane rotation. The energy release rate, computed from the detailed finite element models using the domain integral approach, confirms a constant η value for surface cracked steel plates. Coupled with the post-test sectioning, the unloading compliance method quantifies the extended crack-front profiles ahead of the fatigue pre-cracked surface notch, using the crack-size versus the compliance relationship derived from linear-elastic finite element analyses. The fracture resistance curves thus obtained remain similar at different locations along the crack front and comparable with the fracture resistance measured using a standard side-grooved compact tension specimen at a finite crack extension.
机译:本文提出了一种基于柔量的方法来确定高强度钢(S690)板试样在四点弯曲设置下表面裂纹的抗断裂强度J-R曲线。这项研究将在具有全厚度裂纹的典型试样的断裂试验中使用的η方法扩展到了板状试样的表面裂纹,从而计算了从测量力矩以下区域相对于裂纹平面旋转的能量释放率。通过使用区域积分法从详细的有限元模型计算得出的能量释放率,证实了表面开裂钢板的η值恒定。结合测试后的截面,卸载顺应性方法使用从线性弹性有限元分析得出的裂缝尺寸与顺应性关系,对疲劳预破裂表面缺口之前的扩展裂缝前轮廓进行了量化。如此获得的断裂抗力曲线在沿着裂纹前沿的不同位置保持相似,并且与在有限的裂纹扩展处使用标准的侧槽压紧试样测量的断裂抗力相当。

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