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Analysis Model of Slip for Composite Box Girders

机译:组合箱梁滑移分析模型

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摘要

The interface slip of steel-concrete composite beams was studied analytically and numerically. Based on the partial interaction theory, a theoretical solution for the theory of steel-concrete composite box beams with partial shear interaction was derived and equilibrium of the rotation angle w' was introduced to account for the convenient computation of composite box beam deformation. Numerical simulations of steel-concrete composite box beams subjected to concentrated loads and uniformly distributed loads were conducted. The analytical solutions show an excellent agreement with the numerical results. For typical composite box beams used in practice, shear slip in partial composite box beams makes a significant contribution to beam deformation. Even for full composite box beams, slip effects may result in stiffness reduction. However, many design specifications that use transformed section methods ignore slip effects, except for the American Institute of Steel Construction (AISC) specifications, which recommend a calculation procedure in the commentary. Finally, the proposed method was extended to analyse the interface slip of shear connectors of different pitch and to some extent validate the accurate prediction.
机译:对钢-混凝土组合梁的界面滑移进行了分析和数值研究。基于局部相互作用理论,推导了具有部分剪切相互作用的钢-混凝土组合箱梁理论的理论解,并引入了旋转角w'的平衡,以方便计算组合箱梁的变形。进行了钢-混凝土组合箱梁在集中荷载和均布荷载作用下的数值模拟。解析解与数值结果非常吻合。对于在实践中使用的典型复合箱形梁,部分复合箱形梁的剪切滑移对梁的变形有重要贡献。即使对于完整的组合箱形梁,滑移效应也可能导致刚度降低。但是,许多使用变形截面方法的设计规范会忽略滑移效应,但美国钢结构学会(AISC)规范除外,后者在评论中建议了计算程序。最后,将所提出的方法扩展到分析不同节距的剪切连接器的界面滑动,并在一定程度上验证了准确的预测。

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