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Shear design of FRP reinforced concrete beams without transverse reinforcement

机译:FRP无横筋混凝土梁的剪力设计

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摘要

A simple and rational model for the prediction of the shear strength of FRP reinforced concrete beams without shear reinforcement is presented. The method is based on the principles of structural mechanics and on the experimentally observed behavior of RC beams at shear-flexural failure. It is assumed that, just before failure, the shear is resisted exclusively by the concrete flexural compression head at the critical section, placed at the tip of the shear crack closer to the support. Failure is considered to occur when the principal tensile stress at the concrete head reaches the concrete tensile strength. Simple design equations are provided, which explicitly account for those parameters governing the shear strength, such as the concrete tensile strength, the amount of longitudinal reinforcement ratio and the ratio between the elastic modulus of the longitudinal reinforcement and the concrete. The accuracy of the proposed method has been verified by comparing the model predictions with the results of 144 tests on CFRP and GFRP reinforced concrete beams and with a previously published database on steel reinforced concrete beams failing on shear, providing better results than those obtained using the design equations of current codes of practice, which are mainly empirically based.
机译:提出了一种简单合理的FRP无筋混凝土梁抗剪强度预测模型。该方法基于结构力学原理和RC梁在剪切-弯曲破坏时的实验观察特性。可以假设,在即将失效之前,剪切力仅在临界位置处的混凝土挠曲压缩头抵抗,该剪切力头位于剪切裂缝的尖端,靠近支撑。当混凝土头部的主要拉应力达到混凝土抗拉强度时,就认为发生了破坏。提供了简单的设计方程式,这些方程式明确说明了控制剪切强度的那些参数,例如混凝土的抗拉强度,纵向增强比的数量以及纵向增强与混凝土的弹性模量之比。通过将模型预测与144次CFRP和GFRP钢筋混凝土梁的测试结果以及先前发布的关于钢筋混凝土梁受剪切破坏的数据库进行比较,验证了所提方法的准确性,其结果要优于使用钢筋混凝土梁获得的结果。当前实践准则的设计方程,主要基于经验。

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