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Effect of Aggregates on the Technological and Mechanical Properties of Glass and Basalt Fibres Reinforced Concrete

机译:聚集体对玻璃和玄武岩纤维钢筋混凝土技术和力学性能的影响

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Reinforcement of high performance concrete(HPC)with glass and basalt fibres is becoming more widely used due to their high.mechanical properties,sustainable manufacturing process and wide range of application in architectural and urban design.Properties of HPC composites are mainly determined by matrix composition,fibre type,volume and distribution in the concrete matrix.Granulometry and shape of aggregates has a major impact on the technological properties of concrete mix,such as water bleeding and slump size.Current study is focused on investigation of HPC reinforced by glass and basalt fibres with aggregates of different types.Quartz sand and crushed granite were used as aggregates.Two matrix compositions were used,both having proportion 1:1 of ordinary Portland cement(OPC)and total amount of aggregate.In the first case,the whole aggregate was quartz sand,and for the second it was 50% quartz sand and 50% crushed granite.For matrix reinforcement,3% of alkali resistant glass fibres and 1.5% chopped basalt from total weight of dry materials were used.1% from cement mass of polycarboxylate ether-based superplasticizer was used to increase workability of concrete mix.The consistency of mixtures decreased,but flexural strength increased approximately by 13% when 50% of quartz sand was replaced with crushed granite for concrete with both types of fibres.
机译:具有玻璃和玄武岩纤维的高性能混凝土(HPC)的加固由于其高机械性能,可持续的制造工艺和在建筑和城市设计中的广泛应用范围内越来越广泛地使用。HPC复合材料的优异产品主要由矩阵组成决定,混凝土基质中的纤维型,体积和分布.Granulometry和骨料形状对混凝土混合物的技术性质进行了重大影响,如水出血和坍落度尺寸。每种研究专注于通过玻璃和玄武岩加固HPC的研究具有不同类型的聚集体的纤维。Quartz Sand和Crushed花岗岩用作聚集体。使用WO基质组合物,普通波特兰水泥(OPC)的比例1:1和骨料总量。在第一种情况下,整个骨料是石英砂,第二次,它是50%石英砂和50%粉碎的花岗岩。对于基质加固,3%的耐碱玻璃纤维从干燥材料总重量的D 1.5%切碎的玄武岩使用,从多元羧酸醚的水泥质量中使用1.%,用于增加混凝土混合物的可加工性。混合物的一致性降低,但弯曲强度在50时增加约13%用两种类型的纤维用压碎的花岗岩替换石英砂的%。

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