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Effect of External Constant Magnetic Field on Weld Nugget of Resistance Spot Welded Dual-Phase Steel DP590

机译:外部恒定磁场对电阻点焊双相钢DP590焊接熔核的影响

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摘要

The applications of magnetic field in metal casting and welding processes have drawn much attention of researchers. However, the effect of external magnetic field on nugget formation of resistance spot welding (RSW) is still lack of understanding. In this paper, the effect of a radially oriented constant magnetic field generated by a pair of ring-shaped permanent magnets on the weld nugget of RSW was experimentally investigated. The nugget diameter, microhardness, and mechanical performance were compared between welds with and without the external magnetic field. Results showed that, under the action of the external magnetic field, the weld nugget got wider with an increase in diameter by nearly 10%. Besides, the Vickers hardness in fusion zone (FZ) of the welding joint was more uniform. As a result, the RSW joints welded under the constant magnetic field exhibited better mechanical performance in tensile-shear tests. Therefore, the application of the external constant magnetic field could be an effective way to control the weld quality of RSW by affecting its melting and crystallization process.
机译:磁场在金属铸造和焊接过程中的应用引起了研究人员的极大关注。然而,仍然缺乏对外磁场对电阻点焊(RSW)熔核形成的影响。本文通过实验研究了一对环形永磁体产生的径向恒定磁场对RSW焊缝熔核的影响。比较了在有和没有外部磁场的情况下焊缝的熔核直径,显微硬度和机械性能。结果表明,在外部磁场的作用下,熔核变宽,直径增大了近10%。此外,焊接接头的熔合区(FZ)的维氏硬度更均匀。结果,在恒定磁场下焊接的RSW接头在拉伸剪切试验中表现出更好的机械性能。因此,施加外部恒定磁场可能是影响RSW熔化和结晶过程来控制其质量的有效方法。

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