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Plastic coupled instabilities of I-shaped steel beams

机译:工字形钢梁的塑性耦合不稳定性

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The paper presents the case of plastic instability of I-shaped beams where the rotation capacity is a very important characteristic in order to assure the required ductility in plastic or seismic design. The failure of such beams can be due to the local plastic plate buckling of compression flange and local plate buckling of the web in flexural compression, produced in-plane or out-of-plane. In the same time the failure can occurs by coupling of these two local buckling modes. In order to study the plastic buckling of beams and to determine the available rotation capacity which is required by the plastic or seismic design, the collapse plastic mechanism theory was developed and a specialized computer program DUCTROT-M was elaborated. The parametrical analysis reveals the paramount importance of the web to thickness ratio and furthermore the sensitivity in out-of-plane buckling of the European hot-rolled sections.
机译:本文介绍了I型梁塑性不稳定性的情况,其中旋转能力是非常重要的特性,以确保在塑性或抗震设计中所需的延展性。这种梁的失效可能是由于压缩凸缘的局部塑料板屈曲和弯曲压缩中腹板的局部板屈曲所致,它们在平面内或平面外产生。同时,这两种局部屈曲模式的耦合会导致失效。为了研究梁的塑性屈曲并确定塑性或抗震设计所需的可用旋转能力,开发了倒塌塑性机理理论,并开发了专用的计算机程序DUCTROT-M。参数分析揭示了幅材与厚度之比的最重要意义,并且进一步揭示了欧洲热轧型材的面外屈曲敏感性。

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