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Friction Stir Welding in Wrought and Cast Aluminum Alloys: Heat Transfer Modeling and Thermal History Analysis

机译:锻炼铝合金摩擦搅拌焊接:传热建模和热历史分析

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摘要

Friction stir welding (FSW) is a technique that can be used for materials joining and local microstructural refinement. Owing to the solid-state character of the process, FSW has significant advantages over traditional fusion welding, including reduced part distortion and overheating. In this study, a novel heat transfer model was developed to predict weld temperature distributions and quantify peak temperatures under various combinations of processing parameters for different wrought and cast Al alloys. Specifically, an analytical analysis was first developed to characterize and predict heat generation rate within the weld nugget, and then a two-dimensional (2D) numerical simulation was performed to evaluate the temperature distribution in the weld cross-section and top-view planes. A further three-dimensional (3D) simulation was developed based on the heat generation analysis. The model was validated by measuring actual temperatures near the weld nugget using thermocouples, and good agreement was obtained for all studied materials and conditions.
机译:摩擦搅拌焊接(FSW)是一种可用于连接和局部微观结构改进的材料。由于该过程的固态特性,FSW与传统的融合焊接具有显着的优势,包括减少的部分失真和过热。在该研究中,开发了一种新型传热模型,以预测焊接温度分布,并在不同锻造和铸造铝合金的处理参数的各种组合下量化峰温。具体而言,分析分析首先被开发以表征和焊点熔核内预测发热率,然后进行二维(2D)的数值模拟,以评估在焊接横截面和顶视平面的温度分布。基于发热分析开发了另外的三维(3D)模拟。通过使用热电偶测量焊缝掘块附近的实际温度来验证该模型,并获得所有研究的材料和条件的良好一致性。

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