关注低成本玻璃纤维增强聚合物(GFRP)对同心加载混凝土柱性能的影响

Pannirselvam N, Sudarsan J S, Nithiyanantham S
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引用次数: 0

摘要

(玻璃钢)在加固因结构老化或地震、洪水、飓风等自然灾害而造成的现有结构方面发挥着重要作用。为了减小结构部件的尺寸,玻璃钢包覆材料有助于提高结构的性能。 混凝土因其优点而被广泛使用,添加玻璃钢则是为了提高其强度质量。我们根据 21 个圆柱体的细长率对其进行了研究。圆柱的纤度比分别为 8、16 和 24。在厚度为 5 毫米和 7 毫米时,采用了两种包覆材料(UDCGFRP)和(WRGFRP)。直到破坏点,柱子都受到单调的轴向压缩力。根据荷载-挠度曲线推断出柱子的屈服荷载和极限荷载。整体单向布提供了最有效的约束,并产生了非常理想的破坏机制,这是一个渐进的过程。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Follow effect of low cost glass fibre reinforced polymer (GFRP) on the performance of concentrically loaded concrete column
(FRP) plays a major role in the strengthening of existing structures due to the age of the structure or natural calamities like earthquakes, floods, cyclones, etc. For reducing the size of structural members, the FRP wrapping assists to achieve the performance of the structure.  Concrete is widely used due to its advantages and FRP is added to improve its quality in terms of strength. A study has been conducted on 21 cylinders based on their slenderness ratio. The slenderness ratios in the columns were 8, 16, and 24. At thicknesses of 5 mm and 7 mm, two types of wrap materials (UDCGFRP) and (WRGFRP)] were employed. Up to the point of failure, the columns were subjected to monotonic axial compressive force. The column’s yield loads, and ultimate load, were deduced from the load-deflection curves. The overall, uni-directional cloth provided the most effective confinement and led to a highly desirable failure mechanism, which was a gradual process.
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