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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Root formation and metallurgical challenges in laser beam and laser-arc hybrid welding of thick structural steel
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Root formation and metallurgical challenges in laser beam and laser-arc hybrid welding of thick structural steel

机译:厚结构钢激光束和激光-电弧混合焊接的根系形成及冶金挑战

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摘要

Single-pass laser beam welding (LBW) of steel components with wall thickness of > 10 mm is of high interest due to enhanced productivity. Deep penetration LBW provides excessive hardness and certain quality issues such as root humping in flat position, which is associated with disability of surface tension to sustain melt dropout. High hardness is associated with fast cooling rates and shortage of filler wire transportation to the root of the fusion zone. Use of laser-arc hybrid welding (LAHW) can promote acicular ferrite by adding filler metal and additional heat input from the arc. However, LAHW may promote humping and adjustment of many parameters is required hindering its application. In this work, a 16 kW disk laser was used in butt welding of 12 mm and 15 mm thick plates with different bevelling geometries. Root humping occurred within a wide range of process parameters providing narrow process window. Twelve millimeter thick plates were successfully welded with a single-pass technique providing good quality of root by using zero air gap regardless bevelling geometry. Welding of 15 mm plates was more challenging, and the process was sensitive even with a slight parameter change. Improved results were achieved with application of small air gap. Acceptable hardness in both weld metal and heat affected zone (< 290 HV) was achieved for both plate thicknesses providing good toughness of minimum 27 J at -50 degrees C.
机译:壁厚为 > 10 mm 的钢构件的单程激光束焊接 (LBW) 因其生产率的提高而受到高度关注。深穿透LBW会带来过高的硬度和某些质量问题,例如根部在平坦位置的驼峰,这与表面张力无法维持熔体脱落有关。高硬度与快速冷却速度和填充丝到熔合区根部的输送不足有关。使用激光电弧混合焊接 (LAHW) 可以通过添加填充金属和电弧的额外热量输入来促进针状铁素体。然而,LAHW可能会促进驼峰,并且需要调整许多参数来阻碍其应用。在这项工作中,使用16 kW的圆盘激光器对具有不同坡口几何形状的12 mm和15 mm厚的板进行对焊。在很宽的工艺参数范围内发生根部驼峰,从而提供了较窄的工艺窗口。12 毫米厚的钢板采用单道技术成功焊接,无论坡口几何形状如何,均采用零气隙,提供良好的根部质量。15 mm 板的焊接更具挑战性,即使参数略有变化,该过程也很敏感。通过应用小气隙,取得了更好的结果。两种板厚在焊缝金属和热影响区(< 290 HV)均达到可接受的硬度,在 -50 °C 下提供至少 27 J 的良好韧性。

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