双面激光束振荡填充焊中激光分离距离对 2219 铝合金 T 型接头力学性能的影响

IF 2.9 3区 工程技术 Q2 AUTOMATION & CONTROL SYSTEMS
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引用次数: 0

摘要

摘要 在双面激光束振荡填充焊接中,激光分离距离(焊接方向上两束激光之间的距离)很难精确控制。为了评估激光分离距离对 T 型接头力学性能的影响,本文进行了 2219 铝合金双面激光束振荡填充焊实验,实验中采用了不同的激光分离距离。随着激光分离,熔合区的对称性减弱。后一焊接侧的键孔稳定性减弱。T 型接头中的气孔数量增加。激光分隔距离促进了后焊接侧气孔的形成,也促进了纵梁气孔的形成。焊脚拉伸试验中的大多数裂纹都在部分熔化区扩展。气孔对 T 型接头的抗拉强度没有明显影响。当激光分离距离为 3 毫米时,T 型接头的机械性能最好。箍筋拉伸强度为 370.0 兆帕。T 型拉伸强度为 309.5 兆帕。根据拉伸强度测试结果,采用双面激光束振荡填充焊焊接的 T 型接头的机械性能在激光间距小于或等于 3 mm 时没有恶化,这表明焊接工艺对激光间距有较好的容差。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The influence of laser separation distance on the mechanical properties of 2219 aluminum alloy T joint in double-sided laser beam oscillation filler welding

Abstract

The laser separation distance (distance between the two lasers in welding direction) in double-sided laser beam oscillation filler welding is difficult to precisely control. To evaluate the effect of laser separation distance on the mechanical properties of T joints, 2219 aluminum alloy double-sided laser beam oscillation filler welding experiments with different laser separation distances were conducted in this work. With laser separation, the symmetry of fusion zone was weakened. The keyhole stability at latter welding side was weakened. The number of pores in the T joint increased. The laser separation distance promoted the formation of porosity at latter welding side and the formation of porosity in the stringer. Most of the cracks in the tensile tests at the weld foot propagated in the partially melted zone. Porosity has no significant influence on the tensile strength of T joints. When laser separation distance was 3 mm, the mechanical performance of T joint was the best. The hoop tensile strength was 370.0 MPa. The T-pull tensile strength was 309.5 MPa. Based on the results of tensile strength testing, the mechanical performance of T joints welded by double-sided laser beam oscillation filler welding did not deteriorate with the laser separation distance less than or equal to 3 mm, which showed a good tolerance of laser separation distance for the welding process.

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来源期刊
CiteScore
5.70
自引率
17.60%
发文量
2008
审稿时长
62 days
期刊介绍: The International Journal of Advanced Manufacturing Technology bridges the gap between pure research journals and the more practical publications on advanced manufacturing and systems. It therefore provides an outstanding forum for papers covering applications-based research topics relevant to manufacturing processes, machines and process integration.
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