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首页> 外文期刊>International Shipbuilding Progress >Numerical And Experimental Investigation Of Weld Root Fatigue In Fillet-welded Structures
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Numerical And Experimental Investigation Of Weld Root Fatigue In Fillet-welded Structures

机译:角焊缝结构焊缝疲劳数值和实验研究

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摘要

For fabrication reasons, a great part of the joints in ship structures are welded with non-penetrating fillet welds. This implies the risk of fatigue failure originating from the weld root under cyclic loading. A fatigue analysis may be performed using the nominal stress approach, which is rather coarse, and the crack propagation approach, which is less practical due to the high computational effort. Alternatives are offered by the effective notch stress approach, which assumes a fictitious radius at the tip of the non-fused root faces and by a newly developed structural stress approach for weld failures. The latter is outlined in the paper and applied to the fillet-welded end of a rectangular hollow section (RHS) and to a doubler plate under out-of-plane loads. These represent typical situations with one-sided welds subjected to local throat bending, where fatigue tests have generally shown weld root failure. From the fatigue lives, a design S-N curve based on the structural weld stress is derived. For further verification, the effective notch stress approach is applied to the RHS-joint showing similar results in relation to the design S-N curve as the structural stress approach.
机译:出于制造原因,船舶结构中的大部分接头都采用非穿透角焊缝焊接。这暗示了在循环载荷下疲劳根源于焊缝根部的风险。可以使用相当粗糙的标称应力方法和由于高计算量而不太实用的裂纹扩展方法来执行疲劳分析。有效的缺口应力方法提供了替代方案,该方法假定未熔合的根面尖端处的半径为虚拟,并且通过新开发的结构应力方法来解决焊接失效。后者在本文中进行了概述,并在平面外载荷下应用于矩形空心截面(RHS)的角焊缝末端和双层板。这些代表了单面焊缝经受局部喉部弯曲的典型情况,疲劳测试通常显示出焊缝根部失效。从疲劳寿命中,得出基于结构焊接应力的设计S-N曲线。为了进一步验证,将有效缺口应力方法应用于RHS接头,与结构应力方法相比,在设计S-N曲线方面显示出相似的结果。

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