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Study of gap and misalignment tolerances at hybrid laser arc welding of thick-walled steel with electromagnetic weld pool support system

机译:电磁焊接池支撑系统厚壁钢混合激光弧焊的差距及偏离耐受性研究

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The hybrid laser arc welding (HLAW) process provides many advantages such as improved gap bridgeability, deep penetration and misalignment of edges, that is why the process is used increasingly in industrial applications e.g. shipbuilding, power plant industry and line-pipe manufacturing. The obvious encountered problem for single pass welding in flat position is the gravity drop-out at low welding velocities. With the usage of an electromagnetic weld pool support system, which is based on generating Lorentz forces within the weld pool, wide seams followed by reduced welding velocities could be achieved in this study leading to the realization of a gap bridgeability up to 1 mm, misalignment of edges up to 2 mm and a single pass weld up to 28 mm thickness with a 20-kW fibre laser. These developments expand the boundaries of the HLAW process for different industrial applications. As a result, less accurate preparation of the edges would be sufficient, which saves time for manufacturing.
机译:混合激光电弧焊接(HLAW)工艺提供了许多优点,例如改善的间隙支架,深渗透和边缘的不对准,这就是为什么该过程越来越多地在工业应用中使用的原因。造船,发电厂行业和线管制造。单次通过焊接在平坦位置的明显遇到的问题是在低焊接速度下的重力掉落。利用电磁焊接池支撑系统的使用基于在焊接池内产生洛伦兹力,在本研究中可以实现宽接缝,然后实现焊接速度降低,导致实现高达1毫米,未对准的间隙结束性边缘高达2毫米,单次通过焊缝,厚度高达28毫米,具有20千瓦光纤激光。这些发展扩展了不同工业应用的HLAW过程的界限。结果,不太准确的边缘准备就足够了,这可以节省制造时间。

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