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Prediction of friction stir welding effects on AA2024-T3 plates and stiffened panels using a shell-based finite element model

机译:使用壳体有限元模型预测AA2024-T3板和加强面板的摩擦搅拌焊接效应

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摘要

Manufacturing-induced effects significantly affect in-service behaviour of welded structures, such as integrally stiffened panels for aeronautic applications. Being a complex phenomenon with several variables involved, the assessment of the effects coming from welding usually relies on numerical simulations. Here, a novel shell-based finite element model is proposed to accurately simulate the transient thermal fields and stress-strain distributions resulting from friction stir welding (FSW) processes. The capability of the model to predict (i) residual stresses, (ii) material softening and (iii) geometric distortion of the welded parts is assessed by the modelling and simulation of FSW applied on aluminium integrally stiffened panels.
机译:制造诱导的效果显着影响焊接结构的在职行为,例如用于航空应用的整体加强面板。作为具有多个变量的复杂现象,对来自焊接的效果的评估通常依赖于数值模拟。这里,提出了一种新型壳基有限元模型,以精确地模拟由摩擦搅拌焊接(FSW)工艺产生的瞬态热场和应力 - 应变分布。通过在整体加强板上的FSW的建模和模拟来评估模型预测(i)预测(i)的残余应力,(ii)材料软化和(iii)的几何变形来评估焊接部件的几何变形。

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