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Comparison of Welding Residual Stresses of Hybrid Laser-Arc Welding and Submerged Arc Welding in Offshore Steel Structures

机译:近岸钢结构混合激光焊接焊接残余应力和埋弧焊焊接的比较

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In the offshore industry, welding-induced distortion and tensile residual stresses have become a major concern in relation to the structural integrity of a welded structure. Particularly, the continuous increase in size of welded plates and joints needs special attention concerning welding induced residual stresses. These stresses have a negative impact on the integrity of the welded joint as they promote distortion, reduce fatigue life, and contribute to corrosion cracking and premature failure in the weld components.This paper deals with the influence and impact of welding method on the welding induced residual stresses. It is also investigated whether the assumption of residual stresses up to yield strength magnitude are present in welded structures as stated in the design guidelines. The fatigue strength for welded joints is based on this assumption. The two welding methods investigated are hybrid laser-arc welding (HLAW) and submerged arc welding (SAW). Both welding methods are applied for a full penetration butt-weld of 10 mm thick plates made of thermomechanically hot-rolled, low-carbon, fine-grain S355ML grade steel used in offshore steel structures. The welding residual stress state is investigated by means of computational welding mechanics, experiments, and in accordance with existing production procedures to determine the real distribution and magnitude of the residual stresses. The experimental validation of the FE simulations includes temperature and hole-drilling measurements.
机译:在离岸行业中,焊接诱导的变形和拉伸残余应力已经成为焊接结构的结构完整性的主要关注点。特别地,焊接板和关节尺寸的连续增加需要特别注意焊接诱导的残余应力。这些应力对焊接关节的完整性产生负面影响,因为它们促进扭曲,降低疲劳寿命,并有助于焊接部件的腐蚀开裂和过早失效。本文涉及焊接方法对焊接焊接的影响和影响残余应力。还研究了设计指南中所述的焊接结构中剩余应力的假设是否存在于屈服强度幅度。焊接接头的疲劳强度基于这种假设。研究的两种焊接方法是混合激光焊接(HLAW)和浸没电弧焊接(锯)。焊接方法均采用全渗透对接 - 焊接10毫米厚板,由热机械热轧,低碳,精细谷物S355ML等级钢制成,用于海上钢结构。通过计算焊接力学,实验和根据现有的生产程序来研究焊接残余应力状态,以确定残余应力的实际分布和大小。 FE模拟的实验验证包括温度和空穴钻孔测量。

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