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Local buckling of longitudinally stiffened plates with rotational stiffness of closed-section ribs

机译:锁定截面肋骨旋转刚度的纵向硬化板局部屈曲

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Recent studies have shown that the rotational stiffness of longitudinally installed closed-section ribs increases the local buckling strength of thin plates. Thus, in this study, the equations for the buckling strength of compressively loaded stiffened plates, which reasonably account for the partially restrained effect, were theoretically derived using the principle of minimum potential energy. Through three-dimensional refined finite element analysis performed using ABAQUS that appropriately simulates the buckling of plates stiffened with rotational rigidities along the sides, a series of parametric numerical analyses were conducted to examine the variation in buckling stresses based on the influential parameters revealed from the theoretical formulas. Further simplified and readily applicable formulas for the strength increment factor were derived from a series of rigorous regression analyses on the parametric analysis results. A comparative study of the suggested approximate solutions and the numerical analysis results was carried out to validate the proposed method. (C) 2019 Published by Elsevier Ltd.
机译:最近的研究表明,纵向安装的闭结肋的旋转刚度增加了薄板的局部屈曲强度。因此,在本研究中,使用最小势能的原理理论上地衍生,对压缩加载的加固板的屈曲强度的屈曲强度的方程理论上是从理论上衍生的。通过使用ABAQUS进行的三维精制有限元分析,该分析适当地模拟沿侧面与旋转刚性加强的板屈曲的屈曲,一系列参数数值分析,以检查屈曲应力的变化,基于理论上显示的影响力参数公式。进一步简化和容易适用的强度增量因子的公式源自参数分析结果的一系列严格回归分析。对建议的近似解的比较研究和数值分析结果以验证提出的方法。 (c)2019年由elestvier有限公司发布

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