Influence of Residual Stress on Fatigue Strength of Non-load-carrying Fillet Weld Joints

K. Matsuoka, I. Takahashi, T. Yoshii, E. Fujii
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引用次数: 2

Abstract

In this paper, the influence of plate thickness on the fatigue strength of non-load-carrying fillet weld joints is examined both experimentally and analytically, from the view point of weld residual stresses.In order to control the longitudinal residual stresses (in the direction of the weld line), rib-cruciform joint specimens with various plate width were prepared. On the one hand, specimens of which heat input for each pass was varied were also prepared to control the transverse residual stresses (in the perpendicular direction to the weld line). Using these specimens, both residual stress measurement and fatigue tests were carried out.It was found that the plate width of specimen had great effects on the longitudinal residual stresses and little effect on the transverse residual stresses respectively. And it was also found that the transverse residual stresses increased as the heat input decreased.As far as the heat input was constant, the plate width had no effect on the fatigue strength. On the other hand, the heat input significantly influenced the fatigue strength of joints with a same thickness of main plate. That was, the fatigue strength in the case of high heat input was much higher than in the case of low heat input.From above results, it is concluded that the fatigue strength of non-load-carrying fillet weld joints depends on the transverse residual stresses and that the tensile residual stresses increase as the plate thickness increases and/or the heat input decreases, causing the reduction of the fatigue strength.
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残余应力对非承载角焊接头疲劳强度的影响
本文从焊缝残余应力的角度出发,从实验和分析两方面研究了板厚对非承载角焊缝疲劳强度的影响。为了控制纵向残余应力(焊缝方向),制备了不同板宽的肋-十字形接头试件。一方面,为了控制横向残余应力(垂直于焊缝方向),还制备了不同道次热输入的试样。利用这些试样进行了残余应力测量和疲劳试验。结果表明,试件板宽对纵向残余应力影响较大,对横向残余应力影响较小。横向残余应力随热输入的减小而增大。在热输入一定的情况下,板宽对疲劳强度没有影响。另一方面,热输入对相同主板厚度节点的疲劳强度有显著影响。即高热输入情况下的疲劳强度远高于低热输入情况下的疲劳强度。由以上结果可知,非承载角焊缝接头的疲劳强度取决于横向残余应力,拉伸残余应力随板厚的增加和/或热输入的减小而增大,导致疲劳强度降低。
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