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(Session 4B)Enhanced mechanical properties of tungsten inert gas welded AZ31 magnesium alloy joint using two-pass friction stir processing with rapid cooling

机译:(第4B期)使用具有快速冷却的双通摩擦搅拌加工,增强钨惰性气体焊接AZ31镁合金接头的机械性能

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In this study, tungsten inert gas (TIG) welded AZ31 magnesium alloy joint was subjected to two-pass rapid cooling friction stir processing (RC-FSP). The main results show that, two-pass RC-FSP causes the significant dissolution of the coarse eutectic β-Mg17Al12 phase into the magnesium matrix and the remarkable grain refinement in the stir zone. The low-hardness region which frequently located at heat-affected zone was eliminated. The stir zone showed ultrafine grainsof 3.1 μm, and exhibited a good combination of ultrahigh tensile strength of 284 MPa and large elongation of 7.1 %. This work provides an effective strategy to enhance the strength of TIG welded magnesium alloy joint without ductility loss.
机译:在本研究中,钨惰性气体(TIG)焊接AZ31镁合金接头进行双通过快速冷却摩擦搅拌加工(RC-FSP)。主要结果表明,双通RC-FSP导致粗凝胶β-Mg17A112相对溶解到镁基质中的显着溶解,并在搅拌区中的显着晶粒细化。消除了经常位于受热影响区的低硬度区域。搅拌区显示出3.1μm的超细栅格,并表现出284MPa的超高拉伸强度的良好组合,大的伸长率为7.1%。这项工作提供了一种有效的策略,以提高TIG焊接镁合金关节的强度而无需延展性损失。

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