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Characteristics of microstructures in laser spot welds of a sintered NdFeB permanent magnet under different welding modes

机译:不同焊接模式下烧结NDFEB永磁体激光点焊的微观结构特征

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Laser spot welds were made on sintered NdFeB permanent magnets under deep penetration and heat conduction modes using 2kW continuous fiber laser. The microstructures of the welds show that the HAZ (heat affected zones) of both welds are rich of cracks caused by the melting of grain boundary phase, and the fusion zones are both composed by Nd_2Fe_(14)B and α-Fe, moreover the nuggets of both welds are composed by submicron ultrafine equiaxed grains of Nd_2Fe_(14)B. Differently, the α-Fe columnar dendrites exist in the upper surface of the nugget of deep penetration weld but not on that of heat conduction weld. Besides, Nd-rich phase is found in the periphery of the upper surface of the nugget for the deep penetration spot welding, while it is found in the center of the upper surface of the nugget for the heat conduction spot welding. The reasons that lead to such microstructures are analyzed briefly.
机译:使用2KW连续光纤激光器,在深渗透和导热模式下在烧结NdFeB永磁体上制造激光点焊。焊缝的微观结构表明,两种焊缝的HAZ(热影响区)富含晶粒边界相熔化引起的裂缝,并且融合区域均由ND_2FE_(14)B和α-FE组成,而且两种焊缝的掘金由亚微米超细等式的ND_2FE_(14)B组成。不同地,α-Fe柱状树突在深渗透焊缝的块的上表面中存在,但不存在导热焊缝的块。此外,在深渗透点焊接的块的上表面的周边中发现了ND的富相位,而在熔化点焊接的块的上表面的中心,则发现在熔池的中心。简要地分析了导致这种微观结构的原因。

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