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Fracture behavior of monotype and hybrid fiber reinforced self-compacting concrete at different temperatures

机译:不同温度下单调和混合纤维增强自压制混凝土的断裂行为

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摘要

In the present study, the effect of basalt, glass, and hybrid glass-basalt fibers on mechanical properties and fracture behavior of self-compacting concrete (SCC) mixes have been assessed at room and elevated temperatures. To do so, twelve mix compositions have been prepared such that the proper workability, flowability, and passing ability have been achieved. Besides, to make comparison possible, water to binder ratio and the amount of solid contents were kept constant. Four fiber dosages of 0.5, 1, 1.5, and 2% (by concrete volume) were considered for monotype fiber reinforced mixes, while the total amount of fiber were kept 1% for hybrid fiber reinforced mixes. Three different portions of glass and basalt fiber were considered for hybridization of fibers to show the best cocktail for hybrid basalt-glass fiber. Test results indicated that the fracture energy of mix is highly dependent on both fiber dosage and temperature. Moreover, the hybrid fiber reinforced mixes showed the highest fracture energies in comparison with monotype fiber reinforced specimens with 1% fiber volume fraction. In general, hybridization has played a leading role in the improvement of mechanical properties and fracture behavior of mixes, while compared to monotype fiber reinforced specimens, hybridization has led to lower amounts of compressive strength.
机译:在本研究中,在房间和高温下评估了玄武岩,玻璃和杂化玻璃玄武岩纤维对自压力混凝土(SCC)混合的机械性能和断裂行为的影响。为此,已经制备了12个混合组合物,使得已经实现了适当的可加工性,流动性和传递能力。此外,为了使比较可能,将水与粘合剂的比例和固体内容物的量保持恒定。考虑四种纤维剂量为0.5,1,1.5和2%(通过混凝土体积),用于单型纤维增强混合物,而杂化纤维增强混合物的总量为1%。考虑了三种不同部分的玻璃和玄武岩纤维用于纤维的杂交,以显示混合玄武岩玻璃纤维的最佳鸡尾酒。测试结果表明,混合物的断裂能量高度依赖于纤维剂量和温度。此外,杂化纤维增强混合物显示出最高的断裂能量,与单型纤维增强试样相比,具有1%纤维体积分数。通常,杂交在改善机械性能和混合物的断裂行为方面发挥了主导作用,而与单型纤维增强试样相比,杂交已经导致较低的抗压强度。

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