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Numerical and experimental study on the extrusion through a porthole die to produce a hollow magnesium profile with longitudinal weld seams

机译:通过舷窗模具挤压生产带有纵向焊缝的空心镁型材的数值和实验研究

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摘要

In this study, the thermomechanical behaviour of a magnesium alloy AZ31B during extrusion through a porthole die to form a square tube was revealed. Three-dimensional numerical simulation demonstrated that metal flow into the portholes, welding chamber and die bearing of the porthole die corresponded to the stepped increases of extrusion pressure at the initial stages of an extrusion cycle. Experimental measurements of extrusion pressure and extrudate temperature were found to be in agreement with the predicted values. Extrusion pressure decreased continuously after the pressure peak while the workpiece temperature increased steadily, leading to gradual increases of the recrystallised grain sizes of the extrudate along its length. Expansion tests showed consistent quality of the longitudinal weld seams along the extrudate length, although the temperature on the welding plane increased and the maximum normal pressure in the welding chamber decreased during extrusion. It is thus the ratio of the maximum normal pressure in the welding chamber to the flow stress of the workpiece material on the welding plane that determines the weld seam quality.
机译:在这项研究中,揭示了镁合金AZ31B在通过舷窗模具挤压形成方管过程中的热机械行为。三维数值模拟表明,金属进入孔道,焊接室和孔道模具的模具轴承的流动与挤压循环初始阶段挤压压力的逐步增加相对应。发现挤出压力和挤出物温度的实验测量与预测值一致。压力峰值后,挤出压力连续下降,而工件温度稳定上升,导致挤出物沿其长度方向的重结晶晶粒逐渐增大。膨胀试验表明,沿挤出物长度方向的纵向焊缝质量始终如一,尽管在挤压过程中,焊接面上的温度升高了,而焊接室内的最大法向压力却降低了。因此,决定焊缝质量的是焊接室内最大法向压力与工件材料在焊接平面上的流动应力之比。

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