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EFFECT OF GAS SHIELDING AND HEAT INPUT ON AUTOGENOUS WELDING OF DUPLEX STAINLESS STEEL

机译:气体屏蔽和热输入对双相不锈钢自体焊接的影响

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Stainless steel is increasingly being used in various applications where the laser process may be the perfect tool for welding autogenously. Use of the keyhole welding mode typically assures high weld quality and productivity. Heat tint and discoloration on the surface may decrease the corrosion resistance and have to be removed or minimized. With laser welding, it is possible to limit the weld bead and root oxidization and thereby decrease the need for post-weld cleaning. The main drawback of using a keyhole when welding duplex stainless steels is the high cooling rate, which can cause unfavorable phase balance in weld metal. Thus addition of over-alloyed filler metal or even post-weld annealing is required. Another solution is to use laser hybrid welding to increase the heat input and add filler metal. This is, however, not an attractive choice for welding thin materials and in continuous production. The excellent beam quality of modern high-brightness lasers can, together with high power provide a great opportunity to shorten the total welding time, but the difficulty in obtaining suitable phase balance remains or is even enhanced. This study concentrates on testing the effect of dynamic beam forming on the laser beam absorptivity and resulting weld microstructure in order to define the usability of this technique for welding of thin duplex stainless steel sheets. The differences between various focal spot configurations were analyzed together with the effect of gas shielding technique. The focal spot size and shape had a significant effect on the absorption and heat input and thus affected the weld metal microstructure.
机译:不锈钢越来越多地用于激光过程可以是自动焊接的完美工具的各种应用中。使用钥匙孔焊接模式通常可确保高焊接质量和生产率。热色调和表面上的变色可降低耐腐蚀性,并且必须被移除或最小化。通过激光焊接,可以限制焊缝和根氧化,从而降低对焊接后清洁的需求。焊接双面不锈钢时使用钥匙孔的主要缺点是高冷却速率,这可能导致焊接金属中不利相平衡。因此,需要添加过合金的填充金属或甚至焊接后退火。另一种解决方案是使用激光混合焊接来增加热输入并加入填充金属。然而,这不是焊接薄材料和连续生产的有吸引力的选择。现代高亮度激光器的优良光束质量可以与大功率一起提供缩短总焊接时间的绝佳机会,但难以获得合适的相平衡仍然增强。本研究专注于测试动态梁形成对激光束吸收率的影响,并得到焊接微观结构,以定义该技术的焊接薄双面不锈钢板的可用性。将各种焦点配置之间的差异与气体屏蔽技术的效果一起分析。焦点尺寸和形状对吸收和热输入具有显着影响,从而影响了焊接金属微观结构。

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