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Rehabilitation of normal and self-compacted steel fiber reinforced concrete corbels via basalt fiber

机译:玄武岩纤维修复普通和自密实钢纤维混凝土牛腿

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This paper investigates the behavior of normal and self-compacted steel fiber reinforced concrete (SCC-SFRC) corbels rehabilitated by Basalt Fiber Mesh (BFM) and Basalt Fiber Fabric (BFF) for the first time in literature. The research objective is to study the effectiveness of BFM and BFF in the rehabilitation of damaged reinforced concrete corbels with and without epoxy injection. The experimental program includes two types of concrete: normal concrete, and self-compacted concrete. For normal concrete, 12 corbels were rehabilitated by BFM without injection epoxy in cracks, with two values of compressive strength, three ratios of steel fiber (SF), and two values of shear span. For self-compacted concrete, 48 corbels were rehabilitated with different parameters where 12 corbels were rehabilitated by BFM with and without epoxy injection, 18 heated corbels with three different high-temperature level were rehabilitated by repairing cracks only by epoxy injection, and 18 heated corbels with three different high-temperature level were rehabilitated by repairing cracks by epoxy and wrapping by BFF. All 48 corbels have two values of compressive strength, three values volumetric ratios of SF, and two values of the shear span. Test results indicate that RC corbels rehabilitated by BFM only without injection did not show any increase in the ultimate load capacity. Moreover, For RC corbels that were repaired by epoxy without basalt wrapping, the ultimate load capacities showed an increase depending on the mode of failure of corbels before the rehabilitation. However, the rehabilitation with only crack repairing by epoxy injection is more effective on medium strength corbels as compared to high strength ones. Finally, it can be concluded that use of BFF is an effective and powerful technique for the strengthening of damaged RC corbels.
机译:本文首次研究了通过玄武岩纤维网(BFM)和玄武岩纤维织物(BFF)修复的普通和自密实钢纤维增强混凝土(SCC-SFRC)牛腿的行为。研究目的是研究BFM和BFF在有无环氧注入的情况下对受损钢筋混凝土牛腿的修复效果。实验程序包括两种类型的混凝土:普通混凝土和自密实混凝土。对于普通混凝土,通过BFM在裂缝中未注入环氧树脂的情况下对其进行了修复,其中有两个抗压强度值,三个钢纤维比率(SF)和两个剪切跨度值。对于自密实混凝土,使用不同的参数修复了48根牛腿,其中通过BFM在有或没有环氧注入的情况下通过BFM修复了12根牛腿,通过仅通过注入环氧来修复裂缝来修复了18种具有三种不同高温水平的加热的牛腿,以及18根经过加热的牛腿。用环氧树脂修复裂纹并用BFF包裹来修复三种不同高温等级的材料。所有的48根牛腿具有两个抗压强度值,三个SF体积比值和两个剪切跨度值。测试结果表明,仅通过BFM无需注射即可修复的RC牛腿并未显示出最终承载能力的增加。此外,对于用环氧树脂修复而不用玄武岩包裹的RC牛腿,其最终承载能力根据康复前牛腿的破坏方式而有所增加。但是,与高强度的牛腿相比,仅通过环氧树脂注入进行裂纹修复的修复对中强度的牛腿更为有效。最后,可以得出结论,使用BFF是增强受损RC牛腿的有效且强大的技术。

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