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A KINEMATIC APPROACH FOR THE COMPLETE SHEAR BEHAVIOR OF SHORT FRC COUPLING BEAMS

机译:短FRC耦合梁完全剪切行为的运动学方法

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Short coupling beams are susceptible to brittle shear failures that need to be suppressed with dense transverse and diagonal reinforcement. To reduce the amount of shear reinforcement and improve the service behavior, researchers have proposed a solution with steel fiber-reinforced concrete (FRC). However, while this solution is promising, there are no sufficiently simple mechanical models capable of describing the complete shear behavior of short FRC coupling beams. This paper proposes such a model based on first principles: kinematics, equilibrium, and constitutive relationships for the mechanism of shear resistance. The model is compared with tests from the literature and with a significantly more complex finite element model (FEM). It is shown that, while the proposed kinematic approach requires a straightforward input and negligible time for computations, it also provides a similar (or better) accuracy as the FEM with excellent shear strength predictions.
机译:短耦合梁易受脆性剪切破坏的影响,需要通过密集的横向和对角线加固来抑制这种破坏。为了减少抗剪钢筋的数量并改善使用性能,研究人员提出了一种使用钢纤维增强混凝土(FRC)的解决方案。但是,尽管该解决方案很有希望,但还没有足够简单的机械模型能够描述短FRC耦合梁的完整剪切行为。本文基于抗剪机理的第一原理(运动学,平衡和本构关系)提出了这样的模型。该模型与文献中的测试以及显着更复杂的有限元模型(FEM)进行了比较。结果表明,虽然所提出的运动学方法需要简单的输入和可忽略的时间进行计算,但它还提供了与FEM相似(或更好)的精度,并具有出色的抗剪强度预测能力。

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