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N-M-V Interaction Domains for Box and l-Shaped Reinforced Concrete Members

机译:箱形和L形钢筋混凝土构件的N-M-V相互作用域

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摘要

This paper proposes an approximate physical model to evaluate the N-M-V interaction resistance domains for box and I-shaped concrete cross sections. The model subdivides the concrete beam in layers, with nearly constant stress fields, and determines the internal forces satisfying equilibrium of the cross section, applying the static theorem of plasticity (lower bound theorem). The resisting contribution of the web longitudinal reinforcements is also considered by including stress fields of variable inclination on the longitudinal element direction. The proposed model leads to a conservative evaluation of bearing capacity and permits to numerically obtain the N-M-V interaction resistance domains of the indicated cross sections. The obtained N-M-V failure surfaces are in good agreement with the experimental evidences of tests performed by P. Regan and H. Rezai-Jorabi and by J. R. Robinson and J. M. Demorieux.
机译:本文提出了一种近似的物理模型来评估箱形和I形混凝土截面的N-M-V相互作用阻力域。该模型将混凝土梁细分为几乎恒定的应力场,并应用可塑性静态定理(下界定理)确定满足截面平衡的内力。腹板纵向加强件的抵抗作用也可以通过在纵向单元方向上包含可变​​倾角的应力场来考虑。所提出的模型导致对承载力的保守评估,并允许从数值上获得所示横截面的N-M-V相互作用阻力域。获得的N-M-V破坏面与P. Regan和H.Rezai-Jorabi以及J.R. Robinson和J.M. Demorieux进行的测试的实验证据非常吻合。

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