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The role of SiO2 nanoparticles and ground granulated blast furnace slag admixtures on physical, thermal and mechanical properties of self compacting concrete

机译:SiO2纳米颗粒和磨细的高炉矿渣掺合料对自密实混凝土的物理,热和机械性能的作用

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In this work, strength assessments and percentage of water absorption of self compacting concrete containing ground granulated blast furnace slag and SiO_2 nanoparticles as binder have been investigated. Portland cement was replaced by different amounts of ground granulated blast furnace slag and the properties of concrete specimens were investigated. Although it negatively impacts the physical and mechanical properties of concrete at early ages of curing, ground granulated blast furnace slag was found to improve the physical and mechanical properties of concrete up to 45 wt% at later ages. SiO_2 nanoparticles with the average particle size of 15 nm were added partially to concrete with the optimum content of ground granulated blast furnace slag and physical and mechanical properties of the specimens were measured. SiO_2 nanoparticle as a partial replacement of cement up to 3.0 wt% could accelerate C-S-H gel formation as a result of increased crystalline Ca(OH)2 amount at the early ages and hence increase strength and improve the resistance to water permeability of concrete specimens. The increased SiO_2 nanoparticles' content by more than 3.0wt%, causes the reduced strength because of the decreased crystalline Ca(OH)_2 content required for C-S-H gel formation. Several empirical relationships have been presented to predict flexural and split tensile strength of the specimens by means of the corresponding compressive strength at a certain age of curing. Accelerated peak appearance in conduction calorimetry tests, more weight loss in thermogravimetric analysis and more rapid appearance of the peaks related to hydrated products in X-ray diffraction results, all indicate that SiO_2 nanoparticles could improve mechanical and physical properties of the concrete specimens.
机译:在这项工作中,研究了强度评估和自密实混凝土的吸水率,该自密实混凝土包含高炉矿渣和SiO_2纳米颗粒作为粘结剂。用不同量的高炉矿渣代替波特兰水泥,并研究了混凝土试样的性能。尽管它在早期固化时对混凝土的物理和机械性能产生负面影响,但发现粒状高炉矿渣可改善混凝土的物理和机械性能,最高可达到45 wt%。将平均粒径为15 nm的SiO_2纳米颗粒部分添加到混凝土中,并加入经磨碎的高炉矿渣的最佳含量,并测量样品的物理和机械性能。 SiO_2纳米颗粒作为水泥的部分替代品,其含量高达3.0 wt%可以加速C-S-H凝胶的形成,这是由于早期使用的结晶Ca(OH)2含量增加,从而提高了强度并提高了混凝土试样的耐水渗透性。 SiO_2纳米粒子含量增加超过3.0wt%,由于C-S-H凝胶形成所需的结晶Ca(OH)_2含量降低,导致强度降低。已经提出了几种经验关系,以通过在一定固化年龄下的相应抗压强度来预测样品的挠曲强度和裂口抗张强度。导电量热法测试中加速出现的峰外观,热重分析中更多的失重以及X射线衍射结果中与水合产物相关的峰的更快出现,都表明SiO_2纳米粒子可以改善混凝土试样的机械和物理性能。

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