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铝合金型材搅拌摩擦焊无减薄接头组织和性能

Structure and properties of friction stir welding joint of aluminum profile
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摘要 传统铝合金型材通常采用接头局部加厚的凸台设计,用于抵消搅拌摩擦焊中轴肩下压力造成的接头减薄量.然而,此类铝型材表面焊后需要耗费大量工时进行人工打磨.为了减少焊缝的打磨量,文中设计了一种无凸台结构的铝型材,通过改变搅拌头轴肩的结构形式,实现了无减薄工艺的焊接.从焊缝的成形质量、力学性能和组织结构角度开展深入研究,确定了焊接下压量等关键工艺参数.最后,结合实际生产中型材存在挤压公差和拼接公差的特点,研究了接头错边量对焊接质量的影响,并确定合理的接头公差范围. Welding joints with partial thickened structures are usually adopted in the design of aluminum alloy profiles to offset the thinning of the joint caused by the downward pressure of the shoulder in friction stir welding.However,after welding of such aluminum profiles,it will take a lot of hours to manually polish the thickened structures.In order to reduce the amount of grinding,a new type of aluminum profile without thickened structure is designed in this paper,ensuring non-thinning-welding by changing the structure of shoulder.In-depth research is carried out from the perspective of weld forming quality,mechanical properties and organizational structure,and key process parameters such as welding downforce are determined.Finally,combined with the characteristics of extrusion tolerance and assembly tolerance in industrial production,the influence of joint misalignment on welding quality is studied,and a reasonable joint tolerance range is determined.Highlights:(1)A new type of aluminum profile joint based on non-thnning technique is designed,whose welding properties are studied.(2)Combined with extrusion tolerance and assembly tolerance in industrial production,the influence of tolerance on welding quality is studied.
作者 邢松龄 李充 周海鹏 陈高强 史清宇 XING Songling;LI Chong;ZHOU Haipeng;CHEN Gaoqiang;SHI Qingyu(Beijing Infrastructure Investment Co.,Ltd.,Beijing 100101;Beijing Rail Transit Technology Equipment Group Co.,Ltd.,Beijing 100070;Tsinghua University,Beijing 100084)
出处 《焊接学报》 EI CAS CSCD 北大核心 2023年第11期124-128,I0010,共6页 Transactions of The China Welding Institution
基金 北京市博士后工作经费资助项目(2021-ZZ-076) 北京市基础设施投资有限公司科研储备项目(2021-07-05-06)。
关键词 搅拌摩擦焊 铝合金 型材 无减薄工艺 Friction stir welding Aluminum alloy Profiles Non-weld-thinning technique
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