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Effect of Pulse Frequency on Microstructure and Mechanical Properties of 2198 Al-Li Alloy Joints Obtained by Ultrahigh-Frequency Pulse AC CMT Welding

机译:脉冲频率对超高频脉冲交流CMT焊接获得的2198 Al-Li合金接头组织和力学性能的影响

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摘要

In this study, 2198 Al-Li alloy, a low density and high-performance material for aerospace equipment, was welded using ultrahigh-frequency pulse alternating current with cold metal transfer (UHF-ACCMT). Influence of different ultrahigh-frequency on the formation, porosity, microstructure, microhardness and tensile strength of the welded joints were investigated. The results showed that the coupled ultrahigh-frequency current generated electromagnetic force to stir the liquid metal of molten pool. The weld formation became much better with metallic luster and uniform ripples at frequency of 60 kHz and 70 kHz. The porosity was the minimum at frequency of 60 kHz. Furthermore, the molten pool was scoured and stirred by the electromagnetic force which provided the thermal and dynamic conditions for nucleation and grain refinement, the width of fine equiaxed grain zone became larger, and the number of equiaxed non-dendrite grains increased. With the grain refining and crystallize transition, the average microhardness and tensile strength of the joints at frequency of 60 kHz reached up the highest value, 116 HV0.1 and 338 MPa, respectively. The fracture of the welded joints presented the characteristics of quasi-cleavage fracture.
机译:在这项研究中,使用超高频脉冲交流电和冷金属转移(UHF-ACCMT)焊接了2198 Al-Li合金,这是一种用于航空航天设备的低密度高性能材料。研究了不同的超高频对焊接接头的形成,孔隙率,显微组织,显微硬度和拉伸强度的影响。结果表明,耦合的超高频电流产生电磁力来搅拌熔池中的液态金属。在60 kHz和70 kHz的频率下,具有金属光泽和均匀的波纹,焊缝的形成变得更好。在60kHz的频率下,孔隙率是最小的。此外,通过电磁力对熔池进行冲刷和搅拌,电磁力为成核和晶粒细化提供了热和动态条件,细等轴晶区的宽度变大,等轴非枝晶晶粒的数量增加。随着晶粒细化和结晶转变,接头在60 kHz频率下的平均显微硬度和抗拉强度分别达到最高值,分别为116 HV0.1和338 MPa。焊接接头的断裂表现出准解理断裂的特征。

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