首页> 外文期刊>Welding in the World: Journal of the International Institute of Welding: Journal of the International Institute of Welding >Relationship between penetration and porosity in horizontal fillet welding by a new process 'hybrid tandem MAG welding process'
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Relationship between penetration and porosity in horizontal fillet welding by a new process 'hybrid tandem MAG welding process'

机译:新工艺“混合串联MAG焊接工艺”在水平角焊中熔深与孔隙率的关系

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In the shipbuilding and bridge construction industries, shop primer paint is coated to the surface of steel plates in order to protect them from rusting during a long fabrication period. However, when arc welding is applied to the primer-coated plates, the arc heat may decompose and vaporize the coating. Then, the generated gas will be enclosed in the weld metal during the solidification process, causing the porosity defects, such as blowholes and the pits. In this study, the effects of penetration depth and non-penetrated joint root length on the generation of blowholes were clarified with various welding parameters. A new horizontal fillet welding process called 'hybrid tandem MAG (HTM)' was developed, a combination of a solid wire for the leading electrode and a flux-cored wire for the trailing electrode. The process features deep penetration and excellent porosity resistance. In order to reduce porosity in the fillet welding of primer-coated steel plate, it was found that the following measures are effective: (a) increasing the penetration depth and (b) decreasing the non-penetrated joint root length. The reduction of porosity by increasing the penetration depth is achieved by the formation of consistent ejection passage for vaporized gas. The phenomena mentioned above were verified by observing the interior of the weld pool directly by using an X-ray video camera. It is effective to reduce the leading electrode torch angle and to use a combination of high current and low voltage to create a buried arc to realize these measures. The MAG (HTM) procedure reduced the porosity formation to one tenth of that produced with the conventional tandem MAG process even at travel speeds up to 1600 mm/min.
机译:在造船和桥梁建筑行业中,车间底漆被涂在钢板表面上,以防止在长时间的制造过程中生锈。但是,当电弧焊应用于涂有底漆的板上时,电弧热会分解并蒸发涂层。然后,在凝固过程中,产生的气体将被封闭在焊接金属中,从而导致气孔缺陷,例如气孔和凹坑。在这项研究中,通过各种焊接参数阐明了熔深和未穿透的接头根部长度对气孔产生的影响。开发了一种新的水平角焊工艺,称为“混合串联MAG(HTM)”,前导电极采用实心焊丝,而尾随电极采用药芯焊丝。该工艺具有深层渗透性和出色的抗孔隙性。为了降低底涂钢板的角焊中的气孔性,发现以下措施是有效的:(a)增加熔深并且(b)减小未熔透的接头根部长度。通过形成穿透的深度来减少气孔,这是通过为汽化气体形成一致的喷射通道来实现的。通过使用X射线摄像机直接观察焊缝池的内部,可以验证上述现象。有效地减小引出电极的焊炬角度,并结合使用大电流和低压来创建埋弧,以实现这些措施。 MAG(HTM)程序即使在最高1600 mm / min的行进速度下也可将孔隙率降低至传统串联MAG工艺产生的孔隙率的十分之一。

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