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Porosity and solidification cracking in welded 45 mm thick steel by fiber laser-MAG process

机译:纤维激光-MAG工艺对45 mm厚焊接钢的气孔和凝固裂纹

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Porosity and solidification cracking in joining of thick sections are very common issues in deep penetration keyhole laser-arc hybrid welding (LAHW). In the present work, 45 mm thick high strength steel was joined by a double-sided technique. With combined use of fast welding speeds and larger air gap between plates, higher amount of porosity was found because of the dynamic behavior of the keyhole walls. Solidification cracking formed at the centerline in the bottom of the weld due to high-depth-to-width geometrical ratio. Numerical simulations have been performed and showed very high cooling rate and stresses occurred in the root of the deep welds, which corresponds with higher cracking tendency.
机译:在深熔键孔激光电弧混合焊接(LAHW)中,厚壁连接的孔隙和凝固裂纹是非常普遍的问题。在目前的工作中,通过双面技术将45毫米厚的高强度钢连接起来。结合使用快速焊接速度和较大的板间气隙,由于锁孔壁的动态行为,发现了较高的孔隙率。由于高深宽比的影响,在焊缝底部中心线形成了凝固裂纹。进行了数值模拟,结果表明,很高的冷却速度和深焊缝根部产生了应力,这与较高的开裂趋势相对应。

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