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Effects of welding parameters on microstructure and mechanical properties of the joint of the magnesium alloy AZ31B

机译:焊接参数对镁合金AZ31B接头组织和力学性能的影响

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Through the metal inert gas welding (MIG) experiment, the effects of the different welding parameters on the microstructure, the weld configuration and the mechanical properties of the joint of the magnesium (Mg) alloy AZ31B were analyzed. The results indicate that with the increase in the welding current, the microstructure change of the weld is characterized by the grain coarsening, and the microstructure change of the heat affected zone is characterized by the grain coarsening and the broadening of the heat affected zone. An exorbitant welding current is inimical to the weld configuration. With the increase in the welding speed, the welding linear energy decreases, inducing the formation of the finer equiaxed grains in the weld. Moreover, the grains in the heat affected zone are also with the trend of the refinement, and thus the mechanical properties of the joint increase. The optimal welding current and speed in our experiment are 160-170A and 400-450mm/min, respectively.
机译:通过金属惰性气体保护焊(MIG)实验,分析了不同焊接参数对AZ31B镁合金的组织,焊接构型和接头力学性能的影响。结果表明,随着焊接电流的增加,焊缝的组织变化以晶粒粗大为特征,热影响区的组织变化以晶粒粗大和热影响区的扩大为特征。过高的焊接电流对焊接结构不利。随着焊接速度的增加,焊接线性能量降低,从而导致在焊缝中形成更细的等轴晶粒。此外,热影响区中的晶粒也具有细化的趋势,因此接头的机械性能提高。我们实验中的最佳焊接电流和速度分别为160-170A和400-450mm / min。

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