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Mechanical Properties of Hybrid Basalt-Polyvinyl Alcohol (PVA) Fiber Reinforced Concrete

机译:杂交玄武岩 - 聚乙烯醇(PVA)纤维增强混凝土的力学性能

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This study focuses on the study of the mechanical behavior of non-metallic hybrid Basalt-PVA fiber reinforced concrete. Total five mixes were investigated with one control plain concrete and four with fiber volume fraction of 0.3%, 0.6%, 0.9% and 1.2%. Basalt and PVA were used in same quantity. Fiber decreased workability, therefore superplasticizer was used to maintain workability constant. The increase in superplasticizer and fiber content decreased compression, split tensile and flexure strengths because of formation of big size pores. Whereas fiber enhanced the post peak load zone in the load-deflection curve. Fiber improved the bridging action by increasing energy absorption. Fiber vanished the brittle behavior of high strength concrete and increased first crack toughness, flexure toughness and also maximum deflection. 0.3% volume fraction of fiber was found to be optimum with the negligible decrease in compression, split tensile and flexure strength while caused the considerable increase in first crack toughness, flexure toughness, and maximum deflection.
机译:本研究重点研究了非金属杂交玄武岩-PVA纤维增强混凝土机械行为的研究。研究了三种控制普通混凝土和4个纤维体积分数0.3%,0.6%,0.9%和1.2%的4种混凝土。玄武岩和PVA在相同的数量中使用。纤维的可加工性降低,因此过度塑化剂用于维持可加工性恒定。由于大尺寸孔的形成,超塑化剂和纤维含量的增加降低了压缩,分裂拉伸和弯曲强度。虽然光纤增强了负载偏转曲线中的柱峰值负载区域。纤维通过增加能量吸收来改善桥接动作。纤维消失了高强度混凝土的脆性行为,并增加了第一裂缝韧性,挠性韧性以及最大偏转。发现0.3%的纤维体积分数是最佳的,可忽略的压缩降低,分裂拉伸和弯曲强度,同时引起了第一裂纹韧性,挠性韧性和最大偏转的相当大的增加。

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