Single-pass Hybrid Laser Welding of 25 mm Thick Steel

Farhang Farrokhi, Raino Mikael Larsen, Morten Kristiansen
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引用次数: 17

Abstract

The manufacturing of large steel structures involves welding thick-section steels. Using hybrid laser welding, it is possible to reduce production costs significantly. However, avoiding solidification cracks in the weld is difficult when welding thick-section steels. In this study, a number of experiments were performed on the hybrid laser welding of 25 mm steel. Different techniques of full penetration and partial penetration welding were discussed. Crack-free welds were obtained using single-pass or two-pass welding techniques. The results of the experiments showed that the joint preparation method and the penetration mode are very important factors in obtaining crack-free welds in welding thick section steels. With the same process parameters applied to hybrid laser welding, partial penetration welds were more susceptible to cracking than full penetration welds. This was partly attributed to a change in the melt flow and, consequently, a different solidification mode that occurred during the full penetration mode welding.

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25mm厚钢单道混合激光焊接
大型钢结构的制造涉及焊接厚截面钢。采用混合激光焊接,可以显著降低生产成本。然而,在焊接厚截面钢时,避免焊缝中的凝固裂纹是困难的。本文对25mm钢的混合激光焊接进行了实验研究。讨论了全熔透焊和部分熔透焊的不同工艺。采用单道或双道焊接技术获得无裂纹焊缝。试验结果表明,焊接厚截面钢时,接头制备方法和焊透方式是获得无裂纹焊缝的重要因素。在混合激光焊接工艺参数相同的情况下,部分熔透焊缝比全熔透焊缝更容易产生裂纹。这部分归因于熔体流动的变化,因此,在全熔透模式焊接过程中发生了不同的凝固模式。
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