首页|机器人搅拌摩擦填丝焊5A06铝合金接头力学性能及腐蚀行为

机器人搅拌摩擦填丝焊5A06铝合金接头力学性能及腐蚀行为

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针对搅拌摩擦焊过程中大型及复杂结构由于装配及加工精度等原因存在焊接间隙的问题,导致焊缝成形差及接头力学性能下降,提出机器人搅拌摩擦填丝焊新方法,实现了 2 mm间隙下 3 mm厚 5A06铝合金板材的填丝焊.结果表明,填充材料与基材实现了良好的冶金连接,获得了无缺陷的焊缝.焊接接头抗拉强度达到 388.9 MPa±1.4 MPa,为母材的 99%,消除了间隙对焊接质量带来的不利影响.剧烈的塑性变形使焊核区材料及填充材料均发生动态再结晶,形成细小的等轴晶粒.盐雾腐蚀试验表明,焊核区和填充材料区细小而弥散分布的第二相使其耐蚀性优于热影响区与母材,填充材料增强了焊核区的耐蚀性,热影响区表面发生点蚀成为裂纹起裂位置,焊接接头强度降低为356.6 MPa±1.2 MPa,为母材的91%.
Mechanical performances and corrosion behaviors of robotic wire-feeding friction stir welding of 5A06 aluminum alloys
Large gap width easily occurs in large and complex structural welds due to joint configurations and profile straightness tolerances,which is extremely unfavorable to the joint forming and performance.A novel method,named robotic wire-feeding friction stir welding,was proposed for welding large-gap-width joints.3-mm-thick 5A06 aluminum alloy plates with a gap width of 2 mm were welded.The results showed that sound joints were obtained and the filler materials achieved a high-quality metallurgical welding with the plates.The ultimate tensile strength of the joints reached 388.9 MPa±1.4 MPa,which is 99%of the base material.The adverse effects of gap on welding quality were eliminated.Fine microstructures were obtained via dynamic recrystallization induced by severe plastic deformation.In the salt spray corrosion test,the fine and homogeneous second phase particles in the weld nugget zone and filler material zone made their corrosion resistance better than that of the heat-affected zone and the BM.The filler material enhanced the corrosion resistance of the weld nugget zone.Pitting occurred on the surface of the heat-affected zone which became the crack initiation position.The ultimate tensile strength of the joints reduced to 356.6 MPa±1.2 MPa,reaching 91%of the BM.

robotic wire-feeding friction stir weldinggap width tolerancescorrosionmicrostructuresmechanical properties

董汶江、张欣盟、谢聿铭、邹楠、孟祥晨、黄永宪

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哈尔滨工业大学,材料结构精密焊接与连接全国重点实验室,哈尔滨,150001

中车长春轨道客车股份有限公司,长春,130062

哈尔滨工业大学,郑州研究院,郑州,450046

上海飞机制造有限公司航空制造技术研究所,上海,200120

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机器人搅拌摩擦填丝焊 间隙容忍度 腐蚀 微观组织 力学性能

2024

焊接学报
中国机械工程学会 中国机械工程学会焊接学会 机械科学研究院哈尔滨焊接研究所

焊接学报

CSTPCD北大核心
影响因子:0.815
ISSN:0253-360X
年,卷(期):2024.45(11)