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Laser and Hybrid Laser-Arc Welding of High Strength Steel N-A-XTRA-70

机译:高强度钢N-A-XTRA-70的激光和混合激光电弧焊

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The advantages of laser and hybrid laser-arc welding in production of welded structures from high strength steels are increase of efficiency due to rise of the welding rate by order; significant (3-5 times) decrease of heat input; reduction of weld size; receiving of fine grain structures in the welds and the heat affected zone increasing strength of the joint and reducing susceptibility to crack formation. Research of the peculiarities of laser and hybrid processes, their effect on weld formation, revealing the advantages and eliminating the disadvantages of laser and arc constituents of the heat sources are currently the main problems for the production engineers and researchers. Therefore, the aim of the investigation lies in determination of the effect of process mode parameters of the hybrid laser-arc and laser welding in high-strength steel welding on formation of the structure of the welded joint metal as well as the analysis of effect of this structure on their mechanical properties. The investigation was focused on the high-strength steel N-A-XTRA-70 which is widely used in European Union countries for manufacture of critical structures of different designations. A laboratory bench was developed for experiments. It was used for carrying out investigation on the process flow sheet which provided location of a consumable electrode arc at some distance ahead of a laser beam during welding proceeding. The laser irradiation source was Nd:YAG-laser DY 044 of ROFIN company (Germany). For the first time the results of carried investigations allowed determining the process modes of laser and hybrid laser-arc welding for producing quality and sound welded joints of the high-strength steel from the point of view of the structure formation and metal phase composition providing high indices of mechanical properties and crack resistance of the welded joints.
机译:在高强度钢的焊接结构生产中,激光和混合激光电弧焊的优点是效率得到提高,这是因为焊接速率按顺序提高。热量输入显着减少(3-5倍);减少焊接尺寸;在焊缝和热影响区中接受细晶粒结构,可提高接头强度,并降低对裂纹形成的敏感性。研究激光和混合工艺的特点,它们对焊缝形成的影响,揭示激光的优点和消除热源的电弧和电弧成分的缺点是当前生产工程师和研究人员的主要问题。因此,研究的目的在于确定高强度钢焊接中混合激光电弧和激光焊接的工艺模式参数对焊接接头金属组织形成的影响,并分析其影响。这种结构对它们的机械性能影响很大。该调查的重点是高强度钢N-A-XTRA-70,该钢在欧盟国家中广泛用于制造不同名称的关键结构。开发了用于实验的实验室工作台。它用于对工艺流程图进行研究,该工艺流程图在焊接过程中将可消耗电极电弧的位置设置在激光束之前一定距离处。激光照射源是德国ROFIN公司的Nd:YAG激光DY 044。首次进行的调查结果允许从结构形成和金属相成分提供高角度的角度,确定用于生产高强度钢的优质和良好焊接接头的激光和混合激光电弧焊工艺模式。焊接接头的力学性能和抗裂性指标。

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