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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Numerical simulation and experimental investigation of band patterns in bobbin tool friction stir welding of aluminum alloy
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Numerical simulation and experimental investigation of band patterns in bobbin tool friction stir welding of aluminum alloy

机译:铝合金筒管工具摩擦搅拌焊接带图案的数值模拟及实验研究

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A coupled Eulerian-Lagrangian (CEL) model was developed to investigate the formation mechanism of band pattern (BP) during bobbin tool friction stir welding (BTFSW) process. The Johnson-Cook constitutive model which combines the strain rate and temperature effects in the material flow stress was used. The workpiece was modeled by the Eulerian formulation, while the tool was characterized by the Lagrangian formulation. The numerical analysis results agree well with experimental observations. The band structures with various sizes were discovered in the BP zone. Both the experimental and numerical analysis results indicate the BP zone forms on the advancing side of the joint. This is because the converged material flow is produced by both shoulders while being driven by the probe. The peak temperature, along the thickness of the BP zone, increased at the beginning followed by a decrease further away from the upper surface. The peak temperature obtained near the lower surface is slightly higher than that near the upper surface.
机译:开发了一种耦合的Eulerian-Lagrangian(CEL)模型来研究筒管工具摩擦搅拌焊接(BTFSW)过程中带状图案(BP)的形成机制。使用了将应变速率和温度效应结合在材料流应力中的约翰逊烹饪本构模型。工件被欧拉配方模型,而该工具的特征在于拉格朗日配方。数值分析结果与实验观察结果很好。在BP区发现具有各种尺寸的带结构。实验和数值分析结果都表示BP区在接头的前进侧形成。这是因为在由探针驱动的同时由两个肩部产生融合材料流。沿着BP区域的厚度,峰值温度在开始时增加,然后从上表面进一步减少。在下表面附近获得的峰值温度略高于上表面附近。

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