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Approximation of the crack driving force for cracks at notches under static and cyclic loading

机译:静态循环载荷下凹口裂缝裂纹驱动力的近似值

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The work deals with the efficient calculation of the elastic-plastic crack driving force (J-integral for monotonic loading and ΔJ-integral under cyclic loading) for short cracks at notches as essential parameter for the reliable static and fatigue assessment of notched structures. The J- or ΔJ-integral is calculated based on analytical solutions for stress intensity factors, estimated by means of well-known weight function solutions in the case of cracks under power-law stress distributions. A plasticity-correction function is applied to the stress intensity factors to obtain the final expression of the crack driving force. The comparison between analytical solutions and finite element calculations in case of cracks at the weld toe in welded joints shows good agreement.
机译:该工作涉及高效计算弹性塑料裂纹驱动力(J-Integon在循环加载下单调载荷和Δj-一体化),以便在缺口的短裂缝中作为基本参数,以获得缺口结构的可靠静态和疲劳评估。基于用于应力强度因子的分析解决方案来计算J-ORΔJ-Integrate,通过在幂律应力分布下的裂缝的情况下通过众所周知的重量函数解决方案估计。塑性校正功能应用于应力强度因子以获得裂缝驱动力的最终表达。在焊接关节焊接脚趾裂缝的情况下分析解决方案和有限元计算的比较显示了良好的一致性。

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