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首页> 外文期刊>Advances in materials science and engineering >Development of FRC Materials with Recycled Glass Fibers Recovered from Industrial GFRP-Acrylic Waste
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Development of FRC Materials with Recycled Glass Fibers Recovered from Industrial GFRP-Acrylic Waste

机译:具有从工业GFRP-丙烯酸废物中恢复的RECCLED玻璃纤维的FRC材料的开发

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摘要

Fiber-reinforced concrete (FRC) and engineered cementitious composite materials have demonstrated promising requisite in construction industry owing to its superior mechanical and durability properties. In this study, a sustainable approach was taken, i.e., to use industry waste as a reinforcement with improved interfacial bonding leading to enhanced mechanical performance of FRC. An efficient in situ recycling process allowed the authors to extract glass fibers from glass fiber-reinforced polymer acrylic waste. Concrete mixes with low fiber dosages including 0.1%, 0.2%, and 0.3% (by volume) of recycled as well as virgin glass fibers were prepared. The slump of concrete was maintained ~150?mm by using high water-reducing admixture (HWRA). Notably, lower amount of HWRA was required for raw glass fibers vis-à-vis recycled ones due to its hydrophobic nature. Overall, FRC enclosing 0.3% recycled glass fiber demonstrated 20% enhancement in compressive, split tensile, and flexural strength as compared to control (after 28?days of curing), also supported by morphological analysis.
机译:由于其卓越的机械和耐用性,纤维增强混凝土(FRC)和工程化水泥复合材料在建筑行业中展示了有希望的必要条件。在这项研究中,采取了可持续的方法,即使用行业废物作为加强,改善界面粘合,导致FRC的机械性能提高。允许作者允许作者从玻璃纤维增​​强聚合物丙烯酸废物中提取玻璃纤维。制备具有低纤维剂量的混凝土混合,包括0.1%,0.2%和0.3%(体积)再循环以及维珍玻璃纤维。使用高排水混合物(HWRA)保持混凝土的坍落度〜150Ωmm。值得注意的是,由于其疏水性质,原料玻璃纤维可获得较低量的HWRA。总体而言,与对照(28℃的固化后28次)相比,FRC封闭0.3%再循环玻璃纤维的增强率> 20%增强> 20%的增强。

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