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Experimentation and Predictive Models for Properties of Concrete Added with Active and Inactive SiO2 Fillers

机译:含活性和非活性SiO2填料的混凝土性能的试验和预测模型

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摘要

Cement is one of the main constituents of concrete material and it is one of the main sources of carbon dioxide emissions in the environment. Fillers within a range of 5–7% from different sources can be used as a replacement of cement without compromising the properties of concrete or even tailoring for required property. This paper investigates the influence of inactive silica filler and silica fume on the mechanical- and durability-related properties of concrete with different strengths. The investigated mechanical properties focused on compressive strength at different ages up to 400 days, while the durability-related properties focused on porosity and rapid chloride ion penetrability (RCPT). Two types of ultrafines, namely quartz ultrafine and silica fume, were used. Concrete mixtures with four different water/binder ratios (0.25, 0.30, 0.35, 0.40) were prepared for various dosages of quartz ultrafine (0%, 5%, 8%, 10%, 15%, 25%, and 35%) and different dosages of silica fume (0%, 8%, 10%, and 12%). The results revealed that the compressive strength and durability related properties of concrete with different dosages of ultrafines and silica fume were significantly affected; however, there was a negative impact of ultrafine filler on the compressive strength after replacement of more than 8% of ultrafines. The strength relationships for the concrete with different water-to-cement ratio were assessed and certain modifications were proposed for ultrafines and silica fume. Predictive models were proposed for predicting the compressive strength of concrete in terms of RCPT and porosity for different levels of replacements of ultrafines and silica fume.
机译:水泥是混凝土材料的主要成分之一,也是环境中二氧化碳排放的主要来源之一。来自不同来源的5–7%范围内的填料可以用作水泥的替代品,而不会影响混凝土的性能,甚至可以根据要求的性能进行调整。本文研究了惰性二氧化硅填料和硅粉对不同强度混凝土的力学和耐久性相关性能的影响。所研究的机械性能集中在长达400天的不同年龄下的抗压强度,而与耐久性相关的性能集中在孔隙率和快速氯离子渗透性(RCPT)上。使用了两种超细粉,即石英超细粉和硅粉。为各种剂量的石英超细粉(0%,5%,8%,10%,15%,25%和35%)制备了四种不同水/粘合剂比(0.25、0.30、0.35、0.40)的混凝土混合物。不同剂量的硅粉(0%,8%,10%和12%)。结果表明,不同剂量的超细粉和硅粉对混凝土的抗压强度和耐久性的影响显着;但是,在更换超过8%的超细粉后,超细填料会对抗压强度产生负面影响。评估了水灰比不同的混凝土的强度关系,并提出了对超细粉和硅粉的某些改进方案。针对超细粉和硅粉的不同替代水平,提出了一种预测模型,用于根据RCPT和孔隙率预测混凝土的抗压强度。

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