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首页> 外文期刊>Journal of Materials Processing Technology >Effect of TIG current on microstructural and mechanical properties of 6061-T6 aluminium alloy joints by TIG-CMT hybrid welding
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Effect of TIG current on microstructural and mechanical properties of 6061-T6 aluminium alloy joints by TIG-CMT hybrid welding

机译:TIG电流对TIG-CMT杂交焊接6061-T6铝合金接头微观结构和力学性能的影响

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摘要

In order to expand the direct current-cold metal transfer (DC-CMT) method to include large-thickness plate welding, a tungsten inert gas-CMT (TIG-CMT) hybrid welding process was employed in this work. Adding a stable TIG arc can increase the total heat input on the workpiece and the penetration capacity of the DC-CMT welding process. A16061 plates 4 mm thick were welded successfully by this method. As the TIG current increased, the heat input of the welding process increased. The effect of TIG current on the microstructure and mechanical properties of the joints was investigated. The hardening phase in A16061 was sensitive to the heat input provided by the welding process. Because of microstructural transformation, a decrease in the mechanical properties (softening phenomenon) invariably appeared in the heat-affected zone (HAZ). With increasing TIG current, the microstructures of the joints coarsened, and the width of the partially melted zone (PMZ) and HAZ of the joints broadened. A precipitation strengthening phase of Mg2Si appeared in HAZ. The hardness curve of the joint presented roughly W-type distribution. The hardness obtained in the softened zone was approximately 50% that of the base metal (BM). The joints demonstrated good deformation capability before fracture. As compared to the base material, the strength and the elongation of the joints decreased approximately 40% and 50%, respectively.
机译:为了扩展直流冷金属转移(DC-CMT)方法以包括大厚度板焊接,在这项工作中采用钨惰性气体-CMT(TIG-CMT)混合焊接工艺。添加稳定的TIG电弧可以增加工件上的总热量和DC-CMT焊接过程的穿透能力。通过该方法成功地焊接4mm1厚的16061板。随着TIG电流增加,焊接过程的热量输入增加。研究了TIG电流对关节微观结构和机械性能的影响。 A16061中的硬化相对焊接过程提供的热输入敏感。由于微观变换,在热影响区(HAZ)中出现了机械性能(软化现象)的降低。随着TIG电流的增加,粗糙的接头的微观结构以及关节部分熔化区(PMZ)和振荡的宽度扩大。 HAZ中出现了MG2SI的沉淀强化阶段。关节的硬度曲线大致W型分布。软化区中获得的硬度约为贱金属(BM)的50%。接头在骨折之前表现出良好的变形能力。与基材相比,关节的强度和伸长率分别降低了约40%和50%。

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