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Fatigue crack growth in cruciform welded joints: Influence of residual stresses and of the weld toe geometry

机译:十字形焊接接头的疲劳裂纹扩展:残余应力和焊趾几何形状的影响

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The aim of the present investigation is to calculate the fatigue life of cruciform welded joints by taking into account both the effect of residual stresses and the influence of the weld toe geometry. Two and three dimensional finite element models, with cracks as initial defects, will be constructed for this purpose. Fatigue crack growth analyses are performed by using the node release technique, together with the finite element program ABAQUS. The welding residual stresses, as well as the plasticity induced crack closure effects, are considered. The effective cyclic J-integral (ΔJ_(eff)) is used as crack tip parameter in a relation similar to the Paris equation for the calculation of the fatigue life. For this purpose, a specific code was written for the determination of ΔJ_(eff) at each crack length configuration. The impact of residual stresses on ΔJ_(eff) as well as on the fatigue life during short crack growth is investigated. Results reveal that the influence of residual stresses can be neglected only for large load amplitudes. The calculated fatigue lives are compared with experimental data and a good accordance between both results is achieved. The influences of the weld toe radius and of the weld flank angle are also investigated.
机译:本研究的目的是通过考虑残余应力的影响和焊趾几何形状的影响来计算十字形焊接接头的疲劳寿命。为此,将构建以裂纹为初始缺陷的二维和三维有限元模型。疲劳裂纹扩展分析是通过使用节点释放技术以及有限元程序ABAQUS进行的。考虑了焊接残余应力以及塑性诱导的裂纹闭合效应。有效循环J积分(ΔJ_(eff))以类似于巴黎方程的关系用作裂纹尖端参数,以计算疲劳寿命。为此,编写了一个特定的代码来确定每种裂纹长度构型的ΔJ_(eff)。研究了残余应力对短裂纹扩展过程中ΔJ_(eff)以及疲劳寿命的影响。结果表明,仅在较大的负载振幅下,残余应力的影响才可以忽略。将计算出的疲劳寿命与实验数据进行比较,并在两个结果之间取得了良好的一致性。还研究了焊趾半径和焊缝侧面角的影响。

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