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Upper and lower bounds for structural design of RC members with ductile response

机译:具有延性响应的钢筋混凝土构件结构设计的上限和下限

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摘要

In the present paper, some of the complex phenomena characterizing the flexural behaviour of reinforced concrete beams, such as hyper-strength and snap-back and snap-through instabilities, are interpreted under a unified approach based on nonlinear fracture mechanics concepts. In particular, they are analysed by means of a numerical algorithm adopting the cohesive crack model for concrete in tension and the overlapping crack model for concrete in compression. According to the latter constitutive law, a fictitious interpenetration is assumed to describe the concrete damage, analogously to the fictitious crack opening used for tension. Such an integrated cohesive-overlapping crack model is applied to assess the minimum reinforcement amount necessary to prevent unstable tensile crack propagation and to evaluate the rotational capacity of plastic hinges. The main novelty is given by the capability to predict the size-scale effects evidenced by several experimental programmes available in the literature. According to the numerical results obtained, new practical design formulae and diagrams are proposed, as well as, upper and lower bounds to the reinforcement amount, the material properties and the structural dimensions are defined in order to avoid brittle failures.
机译:在本文中,基于非线性断裂力学概念,采用统一的方法来解释一些表征钢筋混凝土梁抗弯性能的复杂现象,例如超强度,快速折返和快速折断不稳定性。特别是,它们采用数值算法进行分析,这些算法采用受拉混凝土的内聚裂缝模型和受压混凝土的重叠裂缝模型。根据后一个本构定律,假定虚拟互穿描述混凝土破坏,类似于用于张紧的虚拟裂缝。这种集成的内聚重叠裂纹模型用于评估防止不稳定的拉伸裂纹扩展和评估塑料铰链旋转能力所需的最小补强量。主要的新颖性是通过预测文献中可用的几种实验程序所证明的规模效应的能力而给出的。根据获得的数值结果,提出了新的实用设计公式和图表,并给出了加固量的上限和下限,定义了材料性能和结构尺寸,以避免脆性破坏。

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