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Effect of residual stresses on the crack-tip constraint in a modified boundary layer model

机译:修正边界层模型中残余应力对裂纹尖端约束的影响

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摘要

Residual stresses play a crucial role in structural integrity assessment. In this study, a large cracked cylinder with a weld in the center is applied to investigate the effect of residual stresses on the crack-tip constraint. A modified boundary layer model with a remote displacement-controlled elastic K-field and T-stress under small scale yielding has been used to simulate the problem. A two-dimensional tensile residual stress field due to the weld is introduced into the model by the so-called eigenstrain method. It has been shown that the residual stresses can significantly elevate the crack-tip constraint and thus increase the probability for cleavage fracture. The constraint parameter R introduced by the authors can be used to rank the crack-tip constraint induced by the bi-axial residual stresses. The R value decreases with the increase in the applied J-integral. The residual stress-induced constraint is also coupled with the T-stress. The R value becomes smaller with larger T-stress.
机译:残余应力在结构完整性评估中起着至关重要的作用。在这项研究中,一个大的裂纹圆柱体,其中心有一个焊缝,用于研究残余应力对裂纹尖端约束的影响。在小规模屈服下,采用具有远程位移控制的弹性K场和T应力的改进边界层模型来模拟该问题。通过焊缝产生的二维拉伸残余应力场通过所谓的本征应变方法引入模型中。已经表明,残余应力可以显着提高裂纹尖端的约束,从而增加劈裂的可能性。作者引入的约束参数R可用于对双轴残余应力引起的裂纹尖端约束进行排序。 R值随着所应用的J积分的增加而减小。残余应力引起的约束也与T应力耦合。 T应力越大,R值越小。

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