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A weak shear web model for deflection analysis of deep composite box-type beams

机译:深箱形组合梁挠度分析的弱剪力网模型

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Deep box-type beams, consisting of framing members and sheathings, are sensitive to shear deformations and hence appropriate refined theories or complicated magnification factors are needed to be used to obtain accurate results. For sheathings or webs between the framing members that are weak in shear, additional shear deformations occur corresponding to the relative axial displacement between the framing members. These sandwich -type or partial interaction-type of in-plane shear behaviour between the framing members, needs to be taken into account, especially when the web shear stiffness is very low. The composite box-type beam treated here is composed of three framing members with sheathings on both sides. To incorporate effects of the sheathings shear deformations between the framing members on the deflection, the sheathings, here called web interlayers, are modelled as shear media with equivalent slip moduli corresponding to a partially interacting composite beam model. Governing equilibrium equations of the model are obtained using the minimum total potential energy principle and solved explicitly. The obtained results are compared with those based on different conventional beam theories and 3-D finite element (FE) simulations. It is shown that the model is capable of predicting accurately the deflection for a wide range of geometry and property parameters. It is demonstrated that the deflection of such deep box-type beams can be expressed as the summation of three different effects, namely bending deformations, conventional shear deformations in the framing members and sheathings, and additional in-plane shear deformations or shear slips of the weak web causing relative axial displacements between the framing members.
机译:由框架构件和护套组成的深箱形梁对剪切变形敏感,因此需要使用适当的改进理论或复杂的放大倍数才能获得准确的结果。对于在框架构件之间的剪切强度较弱的护套或腹板,发生额外的剪切变形,其对应于框架构件之间的相对轴向位移。需要考虑框架构件之间的这些夹心型或部分相互作用型的面内剪切行为,尤其是在腹板剪切刚度非常低的情况下。此处处理的复合箱式梁由三个框架构件组成,两侧均带有护套。为了吸收框架构件之间的护套剪切变形对挠度的影响,将护套(这里称为腹板中间层)建模为具有等效滑动模量的剪切介质,等效于部分相互作用的复合梁模型。使用最小总势能原理获得模型的控制平衡方程,并明确求解。将获得的结果与基于不同常规光束理论和3-D有限元(FE)模拟的结果进行比较。结果表明,该模型能够准确预测各种几何形状和特性参数的挠度。结果表明,这种深箱形梁的挠度可以表示为三种不同影响的总和,即弯曲变形,框架构件和护套中的常规剪切变形,以及附加的面内剪切变形或剪切滑移。薄的腹板会导致框架构件之间的相对轴向位移。

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