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Effect of coarse basalt aggregates on the properties of Ultra-high Performance Concrete (UHPC)

机译:玄武岩粗骨料对超高性能混凝土(UHPC)性能的影响

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In the present research, Ultra-high Performance Concretes (UHPCs) applying coarse basalt aggregate with a maximum particle size of 16 mm are designed by using the particle packing theory and considering optimal powder proportion. The fluidity, shrinkage, strength of paste, and the compressive and tensile splitting strength of UHPC are investigated. The effect of coarse basalt aggregate size and resulting powder content change are evaluated. Furthermore, the mineral admixture effect, interaction between aggregate and steel fibre are analysed and discussed. The results show that the optimal proportion of powder is 5% of micro-silica and 20% of limestone powder by mass of the total powder. The coarse basalt aggregate has limited reducing effect on the mechanical strength of UHPC. The optimal powder content of about 800 kg/m(3) and 700 kg/m(3) is found for UHPC when the maximum basalt aggregate size is 8 mm and 16 mm, respectively. Furthermore, a distribution modulus q of 0.19 for the modified Andreasen and Andersen model is recommended for designing UHPC with coarse aggregates. The optimal powder contents are the same for UHPC without and with 2 vol% steel fibre, and longer fibre is suggested for UHPC with coarser aggregate. (C) 2018 Elsevier Ltd. All rights reserved.
机译:在本研究中,通过使用颗粒堆积理论并考虑最佳粉末比例,设计了最大粒度为16 mm的采用粗玄武岩骨料的超高性能混凝土(UHPC)。研究了UHPC的流动性,收缩率,糊剂强度以及压缩和拉伸断裂强度。评估了玄武岩粗骨料粒度和所产生的粉末含量变化的影响。此外,分析和讨论了矿物掺合效应,骨料与钢纤维之间的相互作用。结果表明,以总粉末的质量计,粉末的最佳比例为微二氧化硅的5%和石灰石粉末的20%。粗玄武岩骨料对UHPC的机械强度的降低作用有限。当最大玄武岩骨料尺寸分别为8 mm和16 mm时,UHPC的最佳粉末含量约为800 kg / m(3)和700 kg / m(3)。此外,建议使用经修改的Andreasen和Andersen模型的分布模量q为0.19,以设计具有粗骨料的UHPC。最佳粉末含量对于不使用和使用2%(体积)钢纤维的UHPC相同,建议对骨料较粗的UHPC使用更长的纤维。 (C)2018 Elsevier Ltd.保留所有权利。

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