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A Study on Polymer Composite Strengthening Systems for Concrete Columns

机译:混凝土柱的聚合物复合材料增强体系研究

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摘要

An experimental study was conducted to investigate the effects of various composite wrapping systems with different fibres (E-glass and carbon), resins (vinyl-ester and epoxy) and architectures on the strengthening efficiency for wrapped concrete columns. Raw material costs were evaluated to identify the cost-efficiency of each individual system. The results indicated that the use of E-glass fibres with vinyl-ester resin to reinforce concrete columns externally is effective with a low cost of raw materials. The epoxy resin-based system does not show much improvement in the load carrying capacity. The small R/T ratio (thickness of wrap/radius of concrete column) may cause a low strengthening efficiency. Glass fibre mats were hybridised with carbon fibre layers to obtain better mechanical properties and an increased thickness of the composite wraps. Reinforcing efficiency is also highly dependent on the composite architecture. The fibre reinforcement in the hoop direction gives a high confining efficiency to the concrete columns. However, a certain amount of fibres in the axial direction are still needed in designing composite wraps, especially for long, slender columns.
机译:进行了一项实验研究,以研究具有不同纤维(电子玻璃和碳纤维),树脂(乙烯基酯和环氧树脂)和建筑结构的各种复合包裹系统对包裹混凝土柱的加固效率的影响。对原材料成本进行了评估,以确定每个单独系统的成本效率。结果表明,使用电子玻璃纤维和乙烯基酯树脂从外部加固混凝土柱是有效的,而且原材料成本较低。基于环氧树脂的系统在承载能力上没有显示出很大的改善。 R / T比小(包裹层的厚度/混凝土柱的半径)可能导致较低的加固效率。玻璃纤维垫与碳纤维层混合以获得更好的机械性能和增加的复合包裹物的厚度。增强效率还高度依赖于复合体系结构。沿箍筋方向的纤维增强对混凝土柱具有较高的约束效率。但是,在设计复合包裹物时,特别是对于长而细长的柱子,仍需要一定数量的轴向纤维。

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