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Performance of BFRP Retrofitted RCC Piles Subjected to Axial Loads

机译:BFRP改造RCC桩受轴压性能研究。

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This paper deals with the behaviour of basalt fibre reinforced polymer (BFRP) composites retrofitted RCC piles subjected to axial compression loads. Currently the awareness of using FRP increases rapidly in engineering fields and also among public. Retrofitting becomes vital for aged and damaged concrete structures, piles, and so forth, to improve its load carrying capacity and to extend the service life. The load carrying capacity of piles retrofitted with basalt unidirectional fabric was studied experimentally. 15 nos. of RCC end bearing pile elements were cast with same reinforcement for axial compression experiment. Three piles were used as conventional elements, another 3 piles were used as double BFRP wrapped pile elements, and remaining 9 piles were used as retrofitted piles with BFRP double wrapping after preloaded to 30%, 60%, and 90% of ultimate load of conventional element. The effects of retrofitting of RCC pile elements were observed and a mathematical prediction was developed for calculation of retrofitting strength. The stress vs. strain relationship curve, load vs. deformation curve, preloaded elements strength losses are tabulated and plotted. Besides, crack patterns of conventional elements and tearing BFRP wrapped elements were also observed. The BFRP wrapped elements and retrofitted elements withstand more axial compressive load than the conventional elements.
机译:本文研究了玄武岩纤维增强聚合物(BFRP)复合材料翻新的RCC桩在轴向压缩载荷下的性能。当前,在工程领域以及公众中使用FRP的意识正在迅速提高。改造对于老化和损坏的混凝土结构,桩等至关重要,以提高其承载能力并延长使用寿命。实验研究了玄武岩单向织物加固桩的承载能力。 15号碾压混凝土的端部承压桩组件采用相同的钢筋进行浇铸,以进行轴向压缩试验。将三桩用作常规构件,再将三桩用作BFRP双层包裹的桩元素,将剩余的9桩用作经过BFRP双层包裹的翻新桩,将其预载到常规极限载荷的30%,60%和90%元件。观察了碾压混凝土桩元的改造效果,并建立了数学预测以计算加固强度。将应力-应变关系曲线,载荷-变形曲线,预载构件强度损失制成表格并绘制成图。此外,还观察到常规元件的裂纹模式和被BFRP包裹的元件撕裂。与传统元件相比,BFRP缠绕元件和翻新元件承受更大的轴向压缩载荷。

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