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New research for the distortion of steel box girders with inner solid diaphragms

机译:内固体膜片钢箱梁变形的新研究

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Toward estimating accurately the distortional response of box girders, in this article, distortion of steel box girders strengthened with intermediate solid diaphragms under eccentric loads is analyzed by employing the so-called initial parameter method. A new model of high-order statically indeterminate structure was established with three orthogonal redundant forces acting at the junction between the girder and diaphragms. Emphasis is put onto the interaction between the girder and diaphragms, where a hypothetical bi-moment B_( pi )indicating all longitudinal redundant force components for diaphragm was proposed besides the moment M_(pi) for in-plane shear component. Simplified initial parameter method solutions for distortional angle and distortional warping stresses and displacements were derived based on the in-plane and out-of-plane compatibilities between the girder and diaphragms. Taking box girders with three and five intermediate diaphragms as an example, the proposed initial parameter method solutions have good agreement with the finite element analysis ones. Finally, distortional behavior under moving eccentric loads is investigated, resulting in a bowl-shaped curve for moment M_(pi) and an approximate trigonometric function for bi-moment B_(pi) . Results show that diaphragms have a stronger resistance on in-plane distortional shear for the loads in midspan than on ends. Plus, the thick diaphragm holds a stronger restraint on distortional warping deformations and stresses than the thin one.
机译:为了准确估计箱形梁的变形响应,本文采用所谓的初始参数法分析了偏心荷载作用下用中间固体隔板加固的钢制箱形梁的变形。建立了一种新的高阶静定结构模型,其中三个正交的冗余力作用在梁与隔板之间的交界处。重点放在梁与隔板之间的相互作用上,其中提出了一个假想的双弯矩B_(pi),该矩表明除了平面内剪力分量的力矩M_(pi)以外,隔板的所有纵向冗余力分量。基于大梁与隔板之间的平面内和平面外兼容性,得出了变形角度,变形翘曲应力和位移的简化初始参数方法解。以具有三个和五个中间隔板的箱形梁为例,所提出的初始参数法解决方案与有限元分析方法具有很好的一致性。最后,研究了在偏心移动情况下的变形行为,得出了弯矩M_(pi)的碗形曲线和双弯矩B_(pi)的近似三角函数。结果表明,在中跨载荷下,膜片比在端部具有更大的抵抗面内变形剪切的能力。另外,较厚的膜片对变形翘曲变形和应力的约束要强于较薄的膜片。

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