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Torsional stiffness of prestressing tendons in double-T beams

机译:双T梁中预应力筋的扭转刚度

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When a prestressed double-T beam is subjected to torsion, a pair of prestressing tendons resists torsional rotation because of the restoring action of the displaced prestressing tendons. A comprehensive formulation to account for the torsional restoring action of double-T beams is presented, based on Vlasov's hypothesis of considering warping displacement in an open-section. The deformation energies of prestressing tendons and reinforcing bars are calculated based on the deformed geometry to obtain the total potential energy. A two-noded beam element with seven degrees of freedom per node approximates an axial displacement, two translations, two flexural, and one torsional rotations, and a warping displacement to derive the finite-element equilibrium equations by minimizing the potential energy function. The role of prestressing forces of the tendons on the torsional resistance and the limitations of the traditional transformed section approach are addressed when it is applied to torsional problems. As a numerical example, an existing three-span continuous double-T beam is analyzed, and the bimoment and angle of twist are compared to those calculated using conventional three-dimensional finite-element analysis and the analytical solution of governing differential equations.
机译:当预应力双T型梁受到扭转时,由于位移的预应力肌腱的恢复作用,一对预应力肌腱抵抗扭转旋转。基于弗拉索夫假设中考虑了开放截面翘曲位移的假设,提出了一个综合的公式来说明双T型梁的扭转恢复作用。根据变形的几何形状计算预应力筋和钢筋的变形能,以获得总势能。每个节点具有七个自由度的两节点梁单元近似一个轴向位移,两个平移,两个挠曲和一个扭转旋转以及一个翘曲位移,以通过最小化势能函数来导出有限元平衡方程。当将筋腱的预应力应用于扭转问题时,可以解决其作用,以及传统的变形截面方法的局限性。作为一个数值示例,分析了一个现有的三跨连续双T形梁,并将其弯矩和扭转角与使用常规三维有限元分析和控制微分方程的解析解计算出的弯矩和扭转角进行了比较。

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