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Neutron diffraction measurements of residual stresses around a crack tip developed under variable-amplitude fatigue loadings

机译:可变振幅疲劳载荷下裂纹尖端周围残余应力的中子衍射测量

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The spatially resolved neutron-diffraction residual stress mappings were performed on five compact-tension (CT) specimens subjected to various variable-amplitude fatigue loadings (e.g. overload, underload and their mixed loads) during fatigue crack propagation. Three principal residual-stress components (i.e. longitudinal, transverse and normal stresses) were measured as a function of the distance from the crack tip along the crack-propagation direction. The shape of respective crack tips on the five CT specimens was examined using scanning electron microscope. The results show the distinct residual-stress fields near the crack tip and significant changes in the crack-tip geometry for five different loading cases. It is thought that the combined effects of the changes in the residual-stress state and crack-tip geometry seem to be a key factor to account for the observed transient crack-growth phenomena.
机译:在疲劳裂纹扩展过程中,对五个承受不同振幅疲劳载荷(例如,过载,欠载荷及其混合载荷)的紧凑张力(CT)标本进行了空间分辨中子衍射残余应力映射。测量了三个主要残余应力分量(即纵向应力,横向应力和法向应力),它是沿着裂纹扩展方向到裂纹尖端的距离的函数。使用扫描电子显微镜检查五个CT样品上的各个裂纹尖端的形状。结果表明,在五个不同的载荷工况下,裂纹尖端附近有明显的残余应力场,并且裂纹尖端的几何形状发生了显着变化。据认为,残余应力状态和裂纹尖端几何形状变化的综合影响似乎是解释观察到的瞬时裂纹增长现象的关键因素。

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