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CRACK TIP BEHAVIOUR IN RESIDUAL STRESS FIELD: FINITE ELEMENT MODELLING AND NEUTRON DIFFRACTION MEASUREMENTS

机译:残余应力场中的裂纹尖端行为:有限元建模和中子衍射测量

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Simple analyses of fracture and fatigue often make use of the stress intensity at a crack tip or the J-integral surrounding it. However, there is no universally accepted method of including the effect of residual stress in these values, even though the qualitative effect of residual stress on crack growth is well known. In this work, we create a cracked compact tension C(T) specimen with a residual stress field that affects the crack tip behaviour, in particular by altering the level of expected crack closure. Neutron diffraction measurements under in situ applied loading reveal strain distributions consistent with an increased level of closure when the crack tip is in a state of compressive residual stress. Through finite element modelling of the samples studied, we show that the residual stress in these samples redistributes as the crack grows, which changes the level of crack closure for any given crack length and applied load. As crack closure is often considered in fatigue analysis by deriving an 'effective' stress intensity based on the applied load needed to overcome the closure and open the crack, the model is used to compare this approach with numerical calculations of the J-integral for different crack lengths.
机译:骨折和疲劳的简单分析通常在裂纹尖端或围绕其周围的J-Intional的应力强度使用应力强度。然而,即使残余应力对裂纹生长的定性效果是众所周知的,也没有普遍接受的方法包括这些值中的残余应力的影响。在这项工作中,我们用残余应力场产生裂缝的紧凑张力C(t)样品,其影响裂缝尖端行为,特别是通过改变预期的裂缝闭合水平。在原位施加的装载下的中子衍射测量揭示了当裂纹尖端处于压缩残余应力状态时与闭合水平的增加一致的应变分布。通过研究样本的有限元建模,我们表明这些样品中的残余应力作为裂缝的增长重新分配,这改变了任何给定的裂缝长度和施加载荷的裂纹闭合水平。由于裂纹闭合通常在疲劳分析中通过导出克服闭合所需的载荷并打开裂缝所需的“有效”应力强度来考虑疲劳分析,该模型用于将这种方法与不同的J-Intional的数值计算进行比较裂缝长度。

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