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Crack tip displacement fields measured by digital image correlation for evaluating variable mode-mixity during fatigue crack growth

机译:通过数字图像相关测量的裂纹尖端位移场,用于评估疲劳裂纹扩展过程中的可变模式混合

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The assessment of mixed-mode fatigue is an actual object of research. Various hypotheses have been published with the focus on calculating equivalent stress intensity factors and on predicting kink angles after a change of mode-mixity from one cycle to the next. Relatively few works are known for cases when the mode-mixity changes continuously during the fatigue cycles. Such investigations on determining equivalent stress intensity factors and their effects on crack growth have been performed in the present study. Thin-walled tubes with a through-wall crack have been loaded by proportional and non-proportional tension and torsion.In the experimental investigation, the region of fatigue crack growth was observed by means of applying the digital image correlation technique. The variations of the displacement fields during the cycles are shown. Depending on the ratio of applied loads as well as on the actual orientation of the crack tip tangent, fracture parameters associated with opening modes I, II and III are identified, not only during a cycle but also from cycle to cycle.As the crack path is known from experiment, its curvature – both kinks and continuously developing warped cracks were observed – may be attributed to the variation of the displacement field. Results of ongoing work are presented in this paper.Modelling crack closure is a special challenge. Closure is clearly visible in the measurement. It is a combination of conventional plasticity induced closure and roughness induced closure; on top, the curvature of the cracks enforces a geometrical type of crack flank locking.
机译:混合模式疲劳的评估是一个实际的研究对象。已经发表了各种假设,重点放在计算等效应力强度因子和预测模态混合从一个周期到下一个周期变化之后的扭结角。当模式混合在疲劳循环中连续变化时,已知的工作相对较少。在本研究中已经进行了确定等效应力强度因子及其对裂纹扩展影响的研究。通过比例和非比例的拉力和扭力加载了具有通孔裂纹的薄壁管。在实验研究中,通过应用数字图像相关技术观察了疲劳裂纹扩展区域。显示了循环期间位移场的变化。根据施加载荷的比例以及裂纹尖端切线的实际方向,不仅可以确定一个周期内的开模I,II和III的断裂参数,还可以确定一个周期与一个周期之间的断裂参数。从实验中知道,它的曲率-既观察到扭结,又观察到不断发展的翘曲裂纹-可能是由于位移场的变化引起的。本文介绍了正在进行的工作的结果。裂纹闭合建模是一个特殊的挑战。闭合在测量中清晰可见。它是常规塑性诱导闭合和粗糙度诱导闭合的结合。最重要的是,裂纹的曲率强制采用几何类型的裂纹侧面锁定。

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