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Unified code-compliant equations for bending and ductility capacity of full and hollow rectangular RC sections

机译:完整和空心矩形RC截面的抗弯和延展能力的统一规范规范方程

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摘要

Simple closed-form code-compliant equations for determining the bending capacity of full and hollow rectangular reinforced concrete (RC) sections at yielding and ultimate are proposed. The equations, based on the material models of ACI 318-14 and EN 1992:2005, are fully parameterized and allow modeling square and rectangular cross-sections with steel arbitrarily distributed on all four sides and subjected to axial force and uniaxial bending moment. Because of their simplicity, the equations provide an efficient tool for performing parametric and stochastic massive analyses, and for rapidly assessing existing territorially-distributed infrastructural systems, such as highways and railways. The equations require the definition of the cross-sections material and geometrical properties and are of general validity, since any geometrical configurations, reinforcement arrangements and concrete constitutive models can be employed. The accuracy of the equations in predicting bending capacity (resisting moment), ductility and axial force-bending moment interaction domain of a representative sample of realistic full and hollow RC sections is demonstrated through comparisons with fiber analysis performed in OpenSees.
机译:提出了用于确定全空心矩形钢筋混凝土(RC)截面在屈服和极限时的抗弯能力的简单的封闭格式规范方程。这些方程式基于ACI 318-14和EN 1992:2005的材料模型,经过完全参数化,可以对四边任意分布的钢进行正方形和矩形截面建模,并承受轴向力和单轴弯矩。由于其简单性,这些方程式为执行参数化和随机大规模分析以及快速评估现有的按地区分布的基础设施系统(例如高速公路和铁路)提供了有效的工具。这些方程需要定义横截面的材料和几何特性,并且具有通用性,因为可以采用任何几何构型,钢筋布置和混凝土本构模型。通过与OpenSees中进行的纤维分析进行比较,证明了方程式在预测实际的实心和空心RC截面的代表性样品的弯曲能力(抵抗力矩),延性和轴向力-弯矩相互作用域时的准确性。

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