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Understanding and elimination of process defects in narrow gap multi-pass fiber laser welding of ferritic steel sheets of 30 mm thickness

机译:理解和消除30 mm厚铁素体钢板窄间隙多道光纤激光焊接工艺缺陷

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摘要

Narrow gap (or groove) laser welding involves multiple layer additive manufacture for the joining of thick-section metallic components. Typical defects include porosity, cracking, lack of fusion to sidewalls, and between layers, and component distortion including the closure of the groove. This study aimed to understand the defect formation mechanisms and factors affecting them, and to develop appropriate welding procedures and parameters for joining ferritic steel sheets of 30 mm in thickness. High-quality welded joints in 30-mm-thick Grade 43 ferritic steel sheets have been achieved by multi-pass defocused laser beam welding with filler wire addition. The microstructure and the microhardness of the multi-pass welded joint were found to be affected by the tempering of the subsequent multi-pass welding layers. Post-weld heat treatment on the welded joints were required since, although the strength of the welded joints were higher than that of base metal, the ductility was much lower than that of base metal.
机译:窄间隙(或坡口)激光焊接涉及多层增材制造,以连接厚截面的金属部件。典型的缺陷包括孔隙率,开裂,侧壁和各层之间缺乏融合以及组件变形(包括凹槽闭合)。这项研究旨在了解缺陷形成的机理和影响它们的因素,并开发出合适的焊接程序和参数,以连接厚度为30 mm的铁素体钢板。 30毫米厚的43级铁素体钢板的高质量焊接接头是通过多道散焦激光束焊接和添加填充焊丝实现的。发现多道次焊接接头的组织和显微硬度受随后多道次焊接层回火的影响。因为尽管焊接接头的强度高于母材的强度,但延展性远低于母材的延展性,因此需要对焊接接头进行焊后热处理。

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