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Numerical Study of the Mechanical Behavior and Fatigue in a Weld Bead by Friction Stir for a 6082-T6 Aluminum Alloy

机译:6082-T6铝合金搅拌摩擦焊珠力学行为和疲劳数值研究。

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The process of friction stir welding is a significant advance in the field of research on the Friction welding technique known for several decades. This assembly technique has obvious originality since welding is performed in the solid state, which can help eliminate birth defects related to solidification phase compared to conventional welding.The numerical modeling of this type of process is complex, not only in terms of the variety of physical phenomena which must be considered, but also because of the experimental procedure that must be followed in order to verify and validate numerical predictions. In this work, a finite element model is proposed in order to simulate the crack propagation under monotonic loading in different areas of the weld seam of a specimen CT-50 aluminum alloy 6082-T6.Microhardness tests were performed to characterize the Vickers hardness profile in the vicinity of the weld area. Friction stir welding process leads to a decrease of the static mechanical properties relatively to base material. Detailed examination revealed a hardness decrease in the thermo mechanically affected zone and the nugget zone average hardness was found to be significantly lower than the base alloy hardness. Welded specimens show significantly lower lives than base material.
机译:搅拌摩擦焊接工艺是数十年来已知的摩擦焊接技术研究领域的一项重大进展。这种组装技术具有明显的独创性,因为焊接是在固态下进行的,与传统焊接相比,它可以消除与凝固相有关的先天缺陷。这种类型的过程的数值模型很复杂,不仅在物理方面必须考虑的现象,也因为要验证和验证数值预测必须遵循的实验程序。在这项工作中,为了模拟CT-50铝合金6082-T6试样在焊缝不同区域中单调加载下的裂纹扩展,提出了一个有限元模型。焊接区域附近。搅拌摩擦焊接工艺导致相对于基础材料的静态机械性能下降。详细检查发现,热机械影响区的硬度降低,而熔核区的平均硬度明显低于母合金的硬度。焊接样品的寿命明显低于基础材料。

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