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Improving Strength And Ductility Of Continuous Composite Plate Girder Bridges

机译:改善连续组合板梁桥的强度和延性

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The ultimate load carrying capacity of continuous composite plate girder bridges is usually limited by the local buckling failure of steel girders at interior supports. This paper presents a simple reinforcement method which changes the failure mechanism of the continuous girder from local buckling to formation of plastic hinges at the interior supports and mid-span. Such a change in failure mechanism greatly improves the strength and ductility of the superstructure. In this method the compressive portion of the web near the interior support is braced against local buckling by bolting pairs of stiff bracing elements on opposite sides of the web. The bracing elements prevent local buckling failure of the support section and create a section which can rotate inelastically at plastic moment allowing the second hinge to form at mid-span. The bracing elements may be plates or longitudinal stiffeners which should be designed to remain elastic while the section undergoes plastic deformation. The behavior of plate girders which are reinforced by such bracing elements is studied using nonlinear finite element analyses.
机译:连续复合板梁桥的极限承载能力通常受内部支撑处钢梁局部屈曲破坏的限制。本文提出了一种简单的加固方法,该方法将连续梁的破坏机理从局部屈曲改变为内部支撑和中跨处的塑料铰链的形成。破坏机理的这种改变大大提高了上部结构的强度和延展性。在该方法中,通过将成对的刚性支撑元件螺栓连接在腹板的相对侧上,腹板的靠近内部支撑件的压缩部分被支撑以抵抗局部屈曲。支撑元件防止了支撑部分的局部屈曲破坏,并形成了可以在塑性力矩下非弹性旋转的部分,从而允许第二个铰链在跨度的中间形成。支撑元件可以是板或纵向加劲肋,其应设计成在截面经历塑性变形时保持弹性。使用非线性有限元分析研究了用这种支撑元件加固的板梁的性能。

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