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Linear Buckling Analysis Of Unstiffened Plates Subjected To Both Patch Load And Bending Moment

机译:贴片荷载和弯矩共同作用下非加筋板的线性屈曲分析

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摘要

In this study, linear buckling analysis of unstiffened plates under interacting patch loading and bending moment is developed. The study focuses on estimation of the elastic critical load due to patch load, and concomitant linearly variable compressive stress in the normal direction, with analysis of mechanisms of plate instability. The present work proposes simple design equations for the elastic critical load of rectangular plates subjected to both patch load, and uniform compressive stress, and also patch load with linearly varying compressive stresses for the serviceability limit state. The proposed analytical relationship, obtained on the basis of parametric numerical analyses, is validated by comparing analytical predictions with experimental tests from the literature, and full numerical models; good agreement was obtained for practical situations in steel bridge design, such as the erection of steel bridges with the launching construction technique. In the launch phase, web panels of the open-section girders are subjected to concentrated loads applied to the lower flange, and considerable bending moment.
机译:在这项研究中,开发了在相互作用的补片载荷和弯矩作用下未加筋板的线性屈曲分析。这项研究的重点是估计由于板块载荷引起的弹性临界载荷,以及在法向方向上伴随的线性可变压缩应力,并分析了板不稳定性的机理。本工作针对矩形板的弹性临界载荷提出了简单的设计方程,该矩形板既承受补丁载荷,又承受均匀的压缩应力,并且对于使用期限极限状态,还具有线性变化的压缩应力的补丁载荷。通过将分析预测与文献中的实验测试和完整的数值模型进行比较,验证了在参数化数值分析的基础上提出的解析关系。对于钢桥设计中的实际情况,例如采用发射施工技术来安装钢桥,已取得了良好的共识。在发射阶段,开放式大梁的腹板要承受施加在下部法兰上的集中载荷和相当大的弯矩。

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