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A practical method for determining shear crack induced deformation in FRP RC beams

机译:一种确定FRp RC梁剪切裂缝诱发变形的实用方法

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摘要

This article proposes a practical semi-empirical method for determining shear crack-induced deformations in Glass Fibre Reinforced Polymer (GFRP) Reinforced Concrete (RC) beams. Current design guidelines neglect shear and shear crack-induced deformations in the calculation of deflections of GFRP RC beams. However, shear-induced deformations can be up to 30% of the total beam deflection due to the lower stiffness of GFRP bars compared to steel. To calculate the component of deflection due to shear action and crack opening, the proposed model uses a ‘single fictitious inclined crack’ with a width equal to the sum of the individual effective shear crack widths. Twelve shear tests were conducted on six RC beams reinforced internally with GFRP bars considering different reinforcement types and test parameters. The additional deformation due to shear cracks calculated by the proposed model is then used to predict the overall deformations of such beams up to failure. It is shown that, in comparison to current design guidelines, the proposed model predicts more accurately the total deflection of FRP RC beams at both service and ultimate loads. This article contributes towards the development of more accurate models to assess the overall shear deflection behaviour of FRP RC beams so as to balance the performance, serviceability and economic viability of structures.
机译:本文提出了一种实用的半经验方法,用于确定玻璃纤维增​​强聚合物(GFRP)增强混凝土(RC)梁中的剪切裂纹引起的变形。当前的设计准则在计算GFRP RC梁的挠度时忽略了剪切和剪切裂缝引起的变形。但是,由于GFRP筋的刚度比钢低,因此剪切引起的变形可能高达梁总挠度的30%。为了计算由于剪切作用和裂缝开裂而引起的挠度分量,所提出的模型使用宽度等于各个有效剪切裂缝宽度之和的“单一虚拟倾斜裂缝”。考虑到不同的钢筋类型和试验参数,对六根内部用GFRP筋加固的RC梁进行了十二次剪切试验。然后,由所提出的模型计算出的由剪切裂纹引起的附加变形将用于预测这种梁直至破坏的整体变形。结果表明,与当前的设计指南相比,该模型可以更准确地预测FRP RC梁在使用和极限荷载下的总挠度。本文有助于开发更准确的模型,以评估FRP RC梁的整体剪切挠度行为,从而平衡结构的性能,适用性和经济可行性。

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