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Ultimate Strength Interaction of Bending and Torsion of Steel/Concrete Composite Trapezoidal Box Girders in Positive Bending

机译:钢/混凝土组合梯形箱梁在正弯曲中的弯曲和扭转极限强度相互作用

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摘要

In the case of horizontally curved highway bridges, girders are subjected to the combined action of vertical bending and torsion due to the offset. Although steel/concrete composite sections are proportioned to avoid abrupt brittle failure, the ultimate strengths of composite box girders subjected to bending and torsion may be limited by the diagonal tensile stress in the deck concrete induced by the St. Venant torsion. Concurrent compressive stresses in the concrete deck improve the shear resisting capacity of concrete, thereby resulting in increased torsional resistance of the composite box girder in positive bending. Three-dimensional finite element analyses and classical strength of materials investigations were conducted in this study to determine the ultimate strengths of composite box girders in bending and torsion and their interaction. An advanced material model including the concrete tension mechanism was incorporated in the incremental nonlinear analyses. The ultimate strengths from numerical data were compared with theoretically derived values. The proposed interaction equation is very simple, yet it provides a rational lower bound for the determination of the ultimate strengths of concrete/steel composite box girders.
机译:在水平弯曲的公路桥梁中,大梁由于偏移而承受垂直弯曲和扭转的共同作用。尽管为避免突然的脆性破坏而按比例分配了钢/混凝土组合截面,但是受St. Venant扭转引起的混凝土面板中的对角拉伸应力可能会限制经受弯曲和扭转的复合箱形梁的极限强度。混凝土桥面中的并发压缩应力提高了混凝土的抗剪承载力,从而导致复合箱梁在正弯中的抗扭强度增加。本研究进行了三维有限元分析和经典材料强度研究,以确定复合箱形梁在弯曲和扭转中的极限强度及其相互作用。在增量非线性分析中纳入了包括混凝土张拉机制在内的先进材料模型。将数值数据的极限强度与理论推导值进行了比较。所提出的相互作用方程非常简单,但是它为确定混凝土/钢组合箱形梁的极限强度提供了合理的下限。

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