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PROGRESS IN LASER-MAG HYBRID WELDING OF HIGH-STRENGTH STEELS UP TO 30 MM THICKNESS

机译:激光 - MAG混合焊接的高强度钢厚度厚度高达30毫米

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Within the European project HYBLAS, funded by the Research Fund for Coal and Steel (RFCS), significant progress has been achieved in laser-MAG hybrid welding of thick high-strength steel plates up to 30 mm. Results are presented in this paper. Fraunhofer ILT as leader of the HYBLAS work package "Process development and production of welds", has performed extensive investigations with CO{sub}2 lasers up to 20 kW and Nd:YAG lasers up to 7.2 kW in order to expand the hitherto existing state-of-the art regarding e.g. weldable thickness, bridgeable gaps, hot crack prevention and fatigue properties. The work resulted in qualified process rules for parameter settings like focal position, laser-arc orientation and laser-arc distance as well as characteristics for adaptation of laser power, welding speed and wire feed rate depending on thickness and gap width. A simple physical model of the gap situation during single pass hybrid welding has been derived, which explains the process limits and reveals the crucial parameters for welding thick sections without drop-through. Hybrid welded large scale demonstrators show excellent mechanical properties. Moreover, new hybrid techniques for very deep welds and for special seam shaping capabilities have been developed and demonstrate even further potential for applications in shipbuilding, earth-moving equipment and steel construction.
机译:在欧洲项目Hyblas内,由煤炭和钢铁(RFC)的研究基金资助,在厚的高强度钢板的激光 - MAG混合焊接中取得了显着进展,高达30毫米。结果是本文提出的。 Fraunhofer int in作为Hyblas工作包的领导者“流程开发和焊接生产”,已经与CO {Sub} 2激光器进行了广泛的调查,最多20千瓦和ND:YAG激光器高达7.2 KW,以扩大迄今为止现有的州 - 关于例如的艺术可焊接厚度,折两率间隙,防耐热和疲劳性能。这项工作导致参数设置的合格过程规则,如焦点位置,激光 - 电弧方向和激光电弧距离以及适应激光功率,焊接速度和送丝速率的特性,这取决于厚度和间隙宽度。已经得出了单通混合焊接过程中间隙情况的简单物理模型,这解释了该过程限制并揭示了焊接厚截面的关键参数而无需掉落。杂交焊接大型示威者显示出优异的机械性能。此外,已经开发了用于非常深焊缝和特殊接缝成形能力的新的混合技​​术,并且甚至可以展示造船,地球移动设备和钢结构中的应用的进一步潜力。

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