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Fatigue crack growth under constant and variable amplitude loading at semi-elliptical and V-notched steel specimens

机译:半椭圆形和V型钢钢标本下恒定和可变振幅负荷下疲劳裂纹生长

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An assessment of fatigue crack propagation in components and structures based on fracture mechanical approaches is fundamental to define periodic intervals for service inspections. This paper focuses on the investigation of flat specimens made of mild steel S355 with V-shaped and semi-elliptical notches under constant and variable amplitude fatigue loading to analyze the influence of load sequence effects on crack propagation in order to obtain information about the remaining service life of components. Depending on the load sequence, crack propagation may be accelerated, delayed or in some cases even stopped, which leads to beach marks within the area of fracture. Fractographic analyses of the tested specimens are carried out by light-optical microscopy to determine different crack propagation stages. Numerical and analytical linear-elastic fracture mechanics (LEFM) calculations based on two-and three-dimensional models are performed for constant and variable amplitude loads. All analytical assessments of the V-notched specimen illustrate conservative results compared to testing, and the numerical results match the experimental investigations well. The maximum deviation of results is observed at variable amplitude loading due to missing retardation effects for the LEFM calculations. Preliminary distortion measurements and application of strain gauges on semi-elliptical notched specimens are performed to investigate the influence of angular deformation due to clamping on the local stress distribution. A simple model accounting for superimposed static bending stresses due to clamping is able to improve the crack growth predictions for semi-elliptical surface cracks significantly. A final comparison of the fractographic analyses and the numerical crack propagation calculations illustrates differences in the results and provides information to assess the fatigue crack growth and service inspection intervals of components under variable amplitude loading more precisely.
机译:基于骨折机械方法的组分和结构中的疲劳裂纹繁殖的评估是定义服务检查的周期性间隔的基础。本文侧重于在恒定和可变振幅疲劳负荷下对温和钢S355制成的平面样本的调查,以分析负载序列效应对裂纹传播的影响,以便获取有关其余服务的信息组件的生活。根据负载序列,可以加速裂纹传播,延迟或在某些情况下甚至停止,这导致骨折区域内的海滩标记。通过光光学显微镜进行测试样品的特性分析,以确定不同的裂缝繁殖阶段。对恒定和可变幅度负载执行基于两维模型的数值和分析线性弹性断裂力学(lefm)计算。与测试相比,V-缺口标本的所有分析评估都是说明保守的结果,数值结果与实验研究相匹配。由于偏移计算缺失效应,在可变幅度负载下观察结果的最大偏差。进行初步失真测量和应变仪在半椭圆形缺口标本上的应用,以研究局部应力分布钳位的角度变形的影响。由于夹紧引起的叠加静态弯曲应力的简单模型能够显着改善半椭圆形裂缝的裂缝生长预测。 Fretography分析的最终比较和数值裂纹传播计算说明了结果的差异,并提供了评估可变幅度负载下组分的疲劳裂纹生长和服务检测间隔的信息。

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