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The effect of low-cycle fatigue on evolution of fracture mechanics parameters in residual stress field caused by cold hole expansion

机译:低循环疲劳对冷孔膨胀引起的残余应力场裂缝力学参数演变的影响

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摘要

Localized displacement measurements based on electronic speckle-pattern interferometry are used to obtain crack mouth opening displacement (CMOD), stress intensity factor (SIF) and T-stress values during crack growth around cold-expanded holes. The specimens with a central open hole are made from 2024 aluminium alloy. The expansion level is 5% of nominal interference. The results are obtained for the same stress range ??? = 350 MPa, but different stress ratio R = 0.4 and R = �1.0. A sequence of narrow notches, inserted under the constant external load, serves for crack modelling at different stages of cyclic loading. Initial experimental data represent in-plane displacement component values measured in the vicinity of the crack tip. The transition from in-plane displacement components to SIF and T-stress values follows from the relationships of modified version of the crack compliance method. The crack length curves of CMOD, SIF and Tstress profiles are obtained for different stages of cyclic loading. These data provide the construction of dependencies of fracture mechanics parameters for cracks of fixed lengths from the loading cycle number
机译:基于电子散斑图案干涉局部位移测量围绕冷扩孔裂纹生长过程中使用,以获得裂纹张口位移(CMOD),应力强度因子(SIF)和T-应力值。具有中心开孔的试样从2024铝合金制成。膨胀级是标称干扰的5%。其结果为相同的应力范围内获得??? = 350兆帕,但不同的应力比R = 0.4和R = 1.0。窄凹口的序列,恒定外部负载下插入时,用于在循环载荷的不同阶段裂纹建模。初始实验数据表示在裂纹尖端附近测量的面内位移的元件值。从面内位移分量到SIF和T-应力值的过渡从的裂纹柔方法的修改版本的关系如下。的CMOD,SIF和Tstress型材的裂纹长度曲线被循环性加载的不同阶段而获得。这些数据用于从所述加载循环数目的固定长度的裂纹提供的断裂力学参数的依赖关系的构建

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