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Effect of Mechanical and Geometric Mismatching on Fatigue and Damage of Welded Joints

机译:机械和几何不匹配对焊接接头疲劳和损伤的影响

摘要

The future of high technology welded constructions will be characterised by higher strength materials and improved weld quality with respect to fatigue resistance. The expected implementation of high quality high strength steel welds will require that more attention be given to the issues of crack initiation and mechanical mismatching. Experiments and finite element analyses were performed within the framework of continuum damage mechanics to investigate the effect of mismatching of welded joints on void nucleation and coalescence during monotonic loading. It was found that the damage of undermatched joints mainly occurred in the sandwich layer and the damageresistance of the joints decreases with the decrease of the sandwich layer width. The damage of over-matched joints mainly occurred in the base metal adjacent to the sandwich layer and the damage resistance of the joints increases with thedecrease of the sandwich layer width. The mechanisms of the initiation of the micro voids/cracks were found to be cracking of the inclusions or the embrittled second phase, and the debonding of the inclusions from the matrix. Experimental fatigue crack growth rate testing showed that the fatigue life of under-matched central crack panel specimens is longer than that of over-matched and even-matched specimens. Further investigation by the elastic-plastic finite element analysis indicated that fatigue crack closure, which originated from the inhomogeneousyielding adjacent to the crack tip, played an important role in the fatigue crack propagation. The applicability of the J integral concept to the mismatched specimens with crack extension under cyclic loading was assessed. The concept of fatigue class used by the International Institute of Welding was introduced in the parametric numerical analysis of several welded joints. The effect of weld geometry and load condition on fatigue strength of ferrite-pearlite steel joints was systematically evaluated based on linear elastic fracture mechanics. Joint types included lap joints, angle joints and butt joints. Various combinations of the tensile and bending loads were considered during the evaluation with the emphasis focused on the existence of both root and toe cracks. For a lap joint with asmall lack-of-penetration, a reasonably large weld leg and smaller flank angle were recommended for engineering practice in order to achieve higher fatigue strength. It was found that the fatigue strength of the angle joint depended strongly on the location and orientation of the preexisting crack-like welding defects, even if the joint was welded with full penetration. It is commonly believed that the double sided butt welds can have significantly higher fatigue strength than that of a single sided welds, but fatigue crack initiation and propagation can originate from the weld root if the welding procedure results in a partial penetration. It is clearly shown that the fatigue strength of the butt joint could be improved remarkably by ensuring full penetration. Nevertheless, increasing the fatigue strength of a butt joint by increasing the size of the weld is an uneconomical alternative.
机译:高科技焊接结构的未来将以更高强度的材料和改善的抗疲劳性为特征。高质量高强度钢焊缝的预期实施将需要更多地关注裂纹引发和机械失配的问题。在连续损伤力学的框架内进行了实验和有限元分析,以研究焊接接头的不匹配对单调加载过程中空隙形核和聚结的影响。发现不匹配的接头的损伤主要发生在夹层中,接头的抗损伤性随夹层厚度的减小而减小。过度匹配的接头的损伤主要发生在与夹层相邻的母材中,接头的抗损伤性随夹层宽度的减小而增加。发现微空隙/裂纹的引发机理是夹杂物开裂或脆化的第二相,以及夹杂物从基体上脱粘。实验疲劳裂纹扩展速率测试表明,不匹配的中央裂纹面板试样的疲劳寿命比过度匹配和均匀匹配的试样更长。弹塑性有限元分析的进一步研究表明,疲劳裂纹闭合起因于裂纹尖端附近的不均匀屈服,在疲劳裂纹扩展中起着重要作用。评估了J积分概念在循环载荷下具有裂纹扩展的不匹配试样的适用性。在几个焊接接头的参数数值分析中引入了国际焊接学会使用的疲劳等级的概念。基于线性弹性断裂力学,系统地评估了焊​​接几何形状和载荷条件对铁素体-珠光体钢接头疲劳强度的影响。接头类型包括搭接,角接和对接。在评估过程中考虑了拉伸和弯曲载荷的各种组合,重点是根部和趾部裂纹的存在。对于穿透力较小的搭接接头,建议在工程实践中使用较大的焊脚和较小的侧面角,以实现更高的疲劳强度。已经发现,即使角焊缝以全熔透方式焊接,角形接头的疲劳强度也很大程度上取决于预先存在的裂纹状焊接缺陷的位置和方向。通常认为,双面对接焊缝比单面焊缝具有更高的疲劳强度,但是,如果焊接过程导致部分熔透,则疲劳裂纹的萌生和蔓延可能源自焊缝根部。清楚地表明,通过确保完全穿透,可以显着提高对接接头的疲劳强度。然而,通过增加焊接尺寸来增加对接接头的疲劳强度是不经济的选择。

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  • 作者

    Li Xiaoyan;

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  • 年度 2003
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  • 原文格式 PDF
  • 正文语种 en
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