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Strengthening of RC beams with an innovative timber-FRP composite system

机译:采用创新的木材-玻璃钢复合材料系统加固RC梁

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摘要

The results of a theoretical and experimental research project on the use of an innovative technique for strengthening concrete beams are presented. A spacer element is inserted between the tension side of a beam and the composite material to increase its lever arm and to enhance the over all stiffness of the strengthened beam. The main aim of this exploratory project was to increase the ultimate failure load of strengthened beam specimens, whilst guaranteeing acceptable over all deflections at the serviceability limit states. This resulted into a significant reduction in the amount of FPR required and in a better utilization of the materials employed. A preliminary theoretical study was carried out to investigate the effect of Young's modulus, failure strain, and thickness of the element to be used as a spacer in order to determine the best possible candidate material. Three tests on 2.5-m-long beams were carried out, and different anchorage techniques were used to try and prevent the debonding of the strengthening system. The results from this pilot study are very promising, as the strengthening system ensures an adequate initial stiffness along with an improved ultimate flexural capacity.
机译:介绍了有关使用创新技术加固混凝土梁的理论和实验研究项目的结果。在梁的张紧侧和复合材料之间插入一个隔离元件,以增加其杠杆臂并增强加固梁的整体刚度。该探索性项目的主要目的是增加加强梁试件的极限破坏荷载,同时保证在使用极限状态下所有挠度都可接受。这大大减少了所需的FPR量,并更好地利用了所用的材料。进行了初步的理论研究,以研究杨氏模量,破坏应变和用作间隔物的元件的厚度的影响,以确定可能的最佳候选材料。对2.5米长的梁进行了三个测试,并使用了不同的锚固技术来尝试防止加固系统的脱粘。这项初步研究的结果非常有希望,因为加强系统可确保足够的初始刚度以及提高的极限抗弯能力。

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