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Numerical investigation on the ultimate strength of stiffened cylindrical shells considering residual stresses and shakedown

机译:考虑残余应力和振动的加筋圆柱壳极限强度的数值研究

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In this paper, the effects of residual stresses on the ultimate strength of stiffened cylinders are numerically investigated with an emphasis on shakedown which might occur during the service of these structures. Residual stresses caused by two types of actions, namely, cold bending and welding, are simulated with simplified approaches in numerical analysis. Cold bending stresses are simulated by simulating cold rolling and elastic springback until the desired curvature for cylindrical shell is obtained. Welding is simulated by applying cooling down to a certain temperature on the elements adjacent to stiffener-shell joints to obtain weld-shrinkage with realistic magnitudes. Six small-scale externally pressurized ring-stiffened cylinder models are utilized to evaluate the appropriateness of the method for inclusion of welding residual stresses in numerical analysis by comparing the experimental and numerical results. Ultimate strength analyses are then performed for a reference ring-stiffened cylinder model under radial pressure and stringer-stiffened cylinder under axial loading. To assess the effect of shakedown, after applying cyclic compressive loading to the ring-stiffened cylinder model, the level of stress relief and the change in the ultimate strength are evaluated.
机译:在本文中,通过数值研究残余应力对加劲圆柱体极限强度的影响,并重点研究了在使用这些结构时可能发生的震动。在数值分析中使用简化的方法模拟了由两种类型的作用(即冷弯和焊接)引起的残余应力。通过模拟冷轧和弹性回弹来模拟冷弯曲应力,直到获得所需的圆柱壳曲率为止。通过对加劲器-壳体接头附近的元件施加一定温度的冷却来模拟焊接,以获得具有实际大小的焊接收缩率。通过比较实验结果和数值结果,利用六个小规模的外部加压环加劲圆筒模型来评估在数值分析中包括焊接残余应力的方法的适当性。然后,在径向压力下对参考环加劲缸模型进行了极限强度分析,在轴向载荷下对桁架加劲缸进行了极限强度分析。为了评估振动的影响,在对环状加劲圆柱模型施加周期性压缩载荷后,评估了应力释放的程度和极限强度的变化。

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