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Elastic buckling analysis of corroded stiffened plates with irregular surfaces

机译:具有不规则表面的腐蚀加劲板的弹性屈曲分析

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Numerical simulation is used to study the influence of corrosion damage in stiffened plates focusing on elastic buckling strength. Three-dimensional specta are used to simulate geometries of corroded surfaces and finite element method is employed for computing Euler stress of stiffened plates. The influence of corrosion patterns, amount of corrosion loss and roughness of surface are investigated. Ratio of Euler stress of corroded stiffened plate over Euler stress of un-corroded stiffened plate is used to characterize the effects of corrosion on reduction of buckling strength. Results show that reduction of buckling strength is very sensitive to the amount of corrosion loss and roughness of surface, but less sensitive to the location of corroded region. The potential for decrease in buckling strength as a consequence of corrosion is found to depend on the dominant buckling mode. Residual buckling strength is reduced by as much as 12% for the interaction of plate-web-torsional buckling mode, and by 2% for column buckling.
机译:数值模拟被用来研究加筋板腐蚀损伤对弹性屈曲强度的影响。使用三维光谱模拟腐蚀表面的几何形状,并采用有限元方法计算加劲板的欧拉应力。研究了腐蚀方式,腐蚀损失量和表面粗糙度的影响。用腐蚀后加劲板的欧拉应力与未腐蚀加劲板的欧拉应力之比来表征腐蚀对屈曲强度降低的影响。结果表明,屈曲强度的降低对腐蚀损失和表面粗糙度非常敏感,而对腐蚀区域的位置较不敏感。发现由于腐蚀而导致的屈曲强度降低的可能性取决于主要的屈曲模式。对于板-腹板扭转屈曲模式的相互作用,残余屈曲强度降低多达12%,对于柱屈曲,残余屈曲强度降低2%。

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