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首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Friction Stir Welding in Wrought and Cast Aluminum Alloys: Weld Quality Evaluation and Effects of Processing Parameters on Microstructure and Mechanical Properties
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Friction Stir Welding in Wrought and Cast Aluminum Alloys: Weld Quality Evaluation and Effects of Processing Parameters on Microstructure and Mechanical Properties

机译:锻炼铝合金摩擦搅拌焊接:焊接质量评价与加工参数对微观结构和机械性能的影响

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摘要

Friction stir welding (FSW) is a solid-state process widely used for joining similar and dissimilar materials for critical applications in the transportation sector. Understanding the effects of the process on microstructure and mechanical properties is critical in design for structural integrity. In this study, four aluminum alloy systems (wrought 6061-T651 and cast A356, 319, and A390) were processed in both as-fabricated and pre-weld heat-treated (T6) conditions using various processing parameters. The effects of processing and heat treatment on the resulting microstructures, macro-/micro-hardness, and tensile properties were systematically investigated and mechanistically correlated to changes in grain size, characteristic phases, and strengthening precipitates. Tensile tests were performed at room temperature both along and across the welding zones. A new method able to evaluate weld quality (using a weld quality index) was developed based on the stress concentration calculated under tensile loading. Optimum processing parameter domains that provide both defect-free welds and good mechanical properties were determined for each alloy and associated with the thermal history of the process. These results were further related to characteristic microstructural features, which can be used for component design and materials/process optimization.
机译:摩擦搅拌焊接(FSW)是一种固态过程,广泛用于加入类似的和异种材料,用于运输部门的关键应用。理解过程对微观结构和机械性能的影响对于结构完整性的设计至关重要。在本研究中,使用各种加工参数,在制造和预焊接热处理(T6)条件下,处理四种铝合金系统(锻造6061-T651和铸造A356,319和A390)。系统地研究了加工和热处理对所得微观结构,宏观/微硬度和拉伸性质的影响,并机械地相关与晶粒尺寸,特征相和加强沉淀物的变化。在室温下沿着焊接区域进行拉伸试验。一种能够评估焊接质量(使用焊接质量指数)的新方法是基于在拉伸载荷下计算的应力浓度开发的。为每个合金确定提供缺陷焊缝和良好机械性能的最佳处理参数域,并与该过程的热历史相关联。这些结果进一步与特征微观结构特征有关,可用于组件设计和材料/过程优化。

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