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Buckling analysis for an integrally stiffened panel structure with a friction stir weld

机译:带搅拌摩擦焊的整体加劲板结构的屈曲分析

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The effect of an friction stir weld (FSW) on the buckling behavior of an integrally stiffened panel (ISP) structure was investigated. For proper consideration of the buckling modes, the Riks method based on geometric imperfection was introduced. The Ramberg-Osgood deformation plasticity model was used for the elasto-plastic material behavior. A basic buckling benchmark test with a simple square plate was performed to verify the effect of the element type, Ramberg-Osgood model and the Riks method on the critical buckling load. Buckling analyses with two different sectional shapes were conducted corresponding to 400 and 600 kN buckling loads. After confirming that the predicted results without FSW were in excellent agreement with known analytical solutions, finite element (FE) analyses for 2- and 3-stiffener ISP sections joined by FSW were performed. The simulated results with and without FSW were compared to each other. The presence of the weld reduced the maximum buckling load from 3% to 10% depending on the sectional shape as a result of the reduction in material strength in the weld zone. The reduction in buckling load was greater for the 2-stiffener ISP section than for the 3-stiffener ISP configuration, due to the closer spacing of the welds. For both ISP configurations, the percentage decrease in the buckling load for the higher load case (600 kN) was less than that for the lower load case (400 kN).
机译:研究了搅拌摩擦焊(FSW)对整体加劲板(ISP)结构的屈曲行为的影响。为了适当考虑屈曲模式,引入了基于几何缺陷的Riks方法。将Ramberg-Osgood变形可塑性模型用于弹塑性材料行为。用简单的正方形板进行了基本屈曲基准测试,以验证单元类型,Ramberg-Osgood模型和Riks方法对临界屈曲载荷的影响。进行了两种不同截面形状的屈曲分析,分别对应于400 kN和600 kN的屈曲载荷。在确认没有FSW的预测结果与已知的分析解决方案非常吻合后,对由FSW连接的2和3加劲肋ISP截面进行了有限元(FE)分析。将带有和不带有FSW的仿真结果相互比较。焊接的存在将最大屈曲载荷从3%降低到了10%,具体取决于截面形状,这是由于焊接区域材料强度的降低所致。由于焊缝的间距较小,因此与2筋ISP相比,2筋ISP截面的屈曲载荷减小更大。对于这两种ISP配置,较高负载情况(600 kN)的屈曲负载减少百分比小于较低负载情况(400 kN)。

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