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Internal Material Flow Layers in AA6082-T6 Butt-Joints during Bobbin Friction Stir Welding

机译:线轴摩擦搅拌焊接过程中,AA6082-T6对接中的内部材料流动层

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Bobbin friction stir welding with a double-sided tool configuration produces a symmetrical solid-state joint. However, control of the process parameters to achieve defect-free welds is difficult. The internal flow features of the AA6082-T6 butt-joints in bobbin friction stir welding were evaluated using a set of developed reagents and optical microscopy. The key findings are that the dark curved patterns (conventionally called 'flow-arms'), are actually oxidation layers at the advancing side, and at the retreating side are elongated grains with a high-density of accumulation of sub-grain boundaries due to dynamic recrystallization. A model of discontinuous flow within the weld is proposed, based on the microscopic observations. It is inferred that the internal flow is characterized by packets of material ('flow patches') being transported around the pin. At the retreating side they experience high localized shearing at their mutual boundaries, as evidenced in high density of sub-grain boundaries. Flow patches at the advancing side are stacked on each other and exposed to oxidization.
机译:具有双面工具配置的线轴摩擦搅拌焊接产生对称的固态接头。然而,控制工艺参数以实现无缺陷焊接是困难的。使用一套开发的试剂和光学显微镜对线轴摩擦搅拌焊接中AA6082-T6对接的内部流动特性进行了评估。关键发现是,深色的弯曲图案(通常称为“流臂”)实际上是前进侧的氧化层,而在后退侧则是细长晶粒,具有高密度的亚晶粒边界堆积动态重结晶。基于微观观察,提出了焊缝内不连续流动的模型。可以推断,内部流动的特征是材料包(“流动斑块”)围绕销传输。在后退侧,它们在彼此的边界处经历高局部剪切,这在亚晶粒边界的高密度中得到了证明。前进侧的流动斑块彼此堆叠并暴露于氧化作用。

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