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Flexural time-dependent cracking and post-cracking behaviour of FRP strengthened concrete beams

机译:FRP加固混凝土梁的挠曲随时间变化的开裂和后开裂行为

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摘要

The time-dependent flexural cracking behaviour of reinforced concrete beams strengthened with externally bonded composite materials is investigated with a focus on the creep effects. A theoretical model is developed, which accounts for the creep of the different materials involved, and which also accounts for the time-dependent cracking and the tension-stiffening phenomenon. The deformability of the adhesive layer in shear and through its thickness, as well as its ability to transfer shear and vertical normal stresses, is considered in the model. The incremental governing equations are formulated via the variational principle of virtual work based on an incremental exponential algorithm for the creep modelling. The capabilities of the model are demonstrated through numerical examples including a comparison with test results available in the literature. The results show that creep causes a significant redistribution of the internal forces and the interfacial stresses at the adhesive interfaces with time, which should be carefully considered in the design of FRP strengthened members.
机译:研究了外结合复合材料增强的钢筋混凝土梁随时间变化的挠曲开裂行为,重点是蠕变效应。建立了一个理论模型,该模型考虑了所涉及的不同材料的蠕变,还考虑了随时间变化的裂纹和拉伸刚度现象。在模型中考虑了粘合剂层在剪切和厚度方向的变形能力,以及传递剪切力和垂直法向应力的能力。基于虚拟工作的变分原理,基于蠕变建模的增量指数算法,制定了增量控制方程。该模型的功能通过数值示例进行了演示,包括与文献中提供的测试结果进行比较。结果表明,蠕变会引起内力和粘合剂界面处的界面应力随时间的明显重新分布,在设计FRP加固构件时应谨慎考虑。

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