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首页> 外文期刊>Welding in the World: Journal of the International Institute of Welding: Journal of the International Institute of Welding >HENRY GRANJON PRIZE COMPETITION 2005 Winner, Category A 'Joining and fabrication technology' NOVEL WAYS OF USING ND:YAG LASER FOR WELDING THICK SECTION AUSTENITIC STAINLESS STEEL
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HENRY GRANJON PRIZE COMPETITION 2005 Winner, Category A 'Joining and fabrication technology' NOVEL WAYS OF USING ND:YAG LASER FOR WELDING THICK SECTION AUSTENITIC STAINLESS STEEL

机译:HENRY GRANJON竞赛2005年获奖者,“连接和制造技术”类别A奖:使用ND:YAG激光焊接厚截面奥氏体不锈钢的新方法

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摘要

Hybrid welding has been introduced as a process that combines one laser and one arc welding process to work together. These advanced joining processes are effective and outweigh several drawbacks of mere single methods. Hot spots, made by laser to the joint, have been reported to stabilise the arc and change the way of material transfer in the arc. The arc is also attracted and constricted by the hot spot. This phenomenon has been utilised in this study in order to get the process adaptable inside very narrow grooves. This novel approach, combined with multipass techniques, enables a considerable increase in the thickness of the parts to be welded. Welding continues to employ rather low total heat input levels and, consequently, results in very low thermal distortions in joining thick sections. As the process retains a keyhole typical of high energy density welding, the process is also very effective for joining thick sections. Based on the above argument, the process further developed in this study should be considered when evaluating welding processes for joining vacuum vessel sectors of ITER. The same certainly applies to many other demanding thick sections and hence heavy high precision components.
机译:引入混合焊接作为一种过程,该过程将一个激光和一个电弧焊接过程结合在一起一起工作。这些先进的连接方法是有效的,并且超过了单一方法的几个缺点。据报道,激光在接缝处形成的热点可以稳定电弧并改变电弧中材料的传输方式。电弧也被热点吸引和收缩。在这项研究中已经利用了这种现象,以便使过程在非常狭窄的凹槽内适应。这种新颖的方法与多道次技术相结合,可以显着增加待焊接零件的厚度。焊接继续采用相当低的总热量输入水平,因此,在连接厚壁部分时导致非常低的热变形。由于该工艺保留了高能量密度焊接中典型的锁孔,因此该工艺对于连接厚壁段也非常有效。基于以上观点,在评估连接ITER真空容器部分的焊接工艺时,应考虑本研究中进一步开发的工艺。当然,这同样适用于许多其他要求较厚的零件,因此也需要重型的高精度零件。

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