高效协同双面搅拌摩擦点焊方法:2198-T8 铝锂合金接头的工艺优化、界面特性和机械性能案例研究

IF 6.1 1区 工程技术 Q1 ENGINEERING, MANUFACTURING Journal of Manufacturing Processes Pub Date : 2024-09-13 DOI:10.1016/j.jmapro.2024.09.025
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引用次数: 0

摘要

搅拌摩擦点焊在薄金属板的连接中有着重要的应用。然而,单面搅拌摩擦点焊固有的非对称热机械作用不可避免地在接合界面产生钩状缺陷,且该缺陷随着界面冶金结合力的提高而恶化,造成了不可调和的矛盾,极大地制约了工艺稳定性和焊接效率的突破。本研究提出的协同双面无探伤搅拌摩擦点焊(SDP-FSSW)技术,采用双轴协同控制系统,在焊接过程中通过精确的轴向运动,从界面两侧引入强烈的塑性变形,形成波浪形的挂钩。这一创新工艺解决了挂钩翘曲问题,同时实现了界面的快速冶金结合和机械互锁,从而在较短的停留时间(0-3 秒)内获得拉伸/剪切强度超过 9kN 的 AA2198-T8 铝锂合金点焊接头。通过响应面方法,确定了最佳工艺参数,即转速为 603 rpm、停留时间为 3 s、切入深度为 0.26 mm,在此条件下,平均接头强度为 13.0 ± 0.5kN,与单面无探针摩擦搅拌点焊的优化接头(8.9kN)相比提高了 47%。光学显微镜检查表明,波浪状的钩子可以通过旋转速度进行调节,旋转速度越高,波浪越消失,产生的界面近似平直。断口分析表明,波浪形挂钩可抑制裂纹扩展,具有良好的机械互锁效果,但高转速下的扁平挂钩会导致裂纹直接沿界面扩展,失效模式由插拔断裂转变为界面断裂。因此,1000 转/分时的接头强度仅为 7.0kN,与最佳强度相比降低了约 47%。电子反向散射衍射分析表明,由于在 SDP-FSSW 过程中应变速率较大,界面温度较低,因此在钩区发生了连续的动态再结晶,形成了良好的冶金结合,在大晶粒之间还分布着一些不连续的动态再结晶晶粒。研究发现,通过控制界面成形,可在点焊接头中引入具有良好冶金结合和机械互锁性的波形钩,这是制造优质、高效和可靠点焊接头的一种可行方法。
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An efficient synergistic double-sided friction stir spot welding method: A case study on process optimization, interfacial characteristics and mechanical properties of 2198-T8 aluminum‑lithium alloy joints

Friction stir spot welding has important applications in the joining of thin metallic plates. However, the asymmetric thermomechanical action inherent in the single-sided friction stir spot welding inevitably generates the hook defect at the joint interface, and the defect deteriorates with the improvement of the interfacial metallurgical bonding, which causes the irreconcilable contradiction and significantly restricts the breakthrough of the process stability and welding efficiency. The synergistic double-sided probeless friction stir spot welding (SDP-FSSW) technology proposed in this study adopts a dual-axis synergistic control system, which introduces intense plastic deformation from both sides of the interface to form a wavy hook by accurate axial motion during the welding process. This innovative process solves the problem of hook warpage while realizing rapid metallurgical bonding and mechanical interlocking at the interface, thus obtaining AA2198-T8 aluminum‑lithium alloy spot joints with a tensile/shear strength exceeding 9kN in a short dwell time (0–3 s). Through response surface methodology, the optimal process parameters are identified, i.e. rotation speed of 603 rpm, dwell time of 3 s, and plunge depth of 0.26 mm, at which condition the average joint strength is 13.0 ± 0.5kN, a 47 % increase compared to an optimized joint of single-sided probeless friction stir spot welding (8.9kN). The optical microscope examination shows that the wavy hook can be adjusted by the rotation speed and the higher rotation speeds will make the wave disappear and produce an approximately straight interface. The fractographic analysis shows that the wavy hook can inhibit crack propagation and has good mechanical interlocking effect, but the flat hook at high rotation speeds leads to crack propagation directly along the interface, and the failure mode is changed from plug-pull fracture to interfacial fracture. Therefore, the joint strength at 1000 rpm is only 7.0kN, which decreases by about 47 % compared with the optimal strength. The electron backscattering diffraction analysis shows that continuous dynamic recrystallization occurs in the hook region and good metallurgical bonding is formed, and there are also some discontinuous dynamic recrystallized grains distributed between the large grains due to the larger strain rates and lower temperature at the interface during the SDP-FSSW process. It has been found that the wavy hook with good metallurgical bonding and mechanical interlocking can be introduced in spot welded joints by controlling the interface forming, which is a viable method to create high quality, efficient and reliable spot joints.

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来源期刊
Journal of Manufacturing Processes
Journal of Manufacturing Processes ENGINEERING, MANUFACTURING-
CiteScore
10.20
自引率
11.30%
发文量
833
审稿时长
50 days
期刊介绍: The aim of the Journal of Manufacturing Processes (JMP) is to exchange current and future directions of manufacturing processes research, development and implementation, and to publish archival scholarly literature with a view to advancing state-of-the-art manufacturing processes and encouraging innovation for developing new and efficient processes. The journal will also publish from other research communities for rapid communication of innovative new concepts. Special-topic issues on emerging technologies and invited papers will also be published.
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