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Multi-angle truss model for predicting the shear deformation of RC beams with low span-effective depth ratios

机译:多角度桁架模型,用于预测低跨距有效深度比的RC梁的剪切变形

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The deflection of reinforced concrete (RC) beams with low span-effective depth ratios can be attributed equally to shear and flexural deformations. Although truss models can be used to evaluate shear deformation, their prediction accuracy is strongly dependent on how the diagonal crack angle is estimated. This paper presents the results from an experimental test of nine RC beams that failed in shear and had low span-effective depth ratios (i.e., a/h(0) < 3). It then proposes a multi-angle truss model for predicting ultimate shear deformation while considering the effect of the bending moment variation along the span on diagonal crack angles. An empirical formula is also presented to predict the shear stiffness degradation of RC beams up to the ultimate state through regression analyses. Numerical results show that the proposed multi-angle truss model can be used to predict the shear deformation of RC beams with low span-effective depth ratios with reasonable accuracy. (C) 2015 Elsevier Ltd. All rights reserved.
机译:具有低跨度有效深度比的钢筋混凝土(RC)梁的挠度可以等同地归因于剪切变形和挠曲变形。尽管桁架模型可用于评估剪切变形,但其预测精度在很大程度上取决于对角裂缝角的估算方式。本文介绍了九个钢筋混凝土梁的实验测试结果,这些钢筋混凝土在剪切过程中失效,跨距有效深度比低(即a / h(0)<3)。然后,它提出了一个多角度桁架模型,用于预测极限剪切变形,同时考虑沿跨距的弯矩变化对对角裂缝角的影响。提出了经验公式,通过回归分析预测了钢筋混凝土梁的抗剪刚度退化,直至达到极限状态。数值结果表明,所提出的多角度桁架模型可用于以合理的精度预测低跨度有效深度比的RC梁的剪切变形。 (C)2015 Elsevier Ltd.保留所有权利。

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