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Strength development of GGBS and fly ash concretes and applicability of fib model code's maturity function - A critical review

机译:GGBS和粉煤灰混凝土的强度开发以及FIB模型代码的成熟度功能的适用性-一项重要评论

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This paper is the joint work of working group 4 of the RILEM TC 238-SCM and the fib Task Group 4.6. It was the aim of this literature study to quantify the effect of ground granulated blast furnace slag (GGBS) and silicious fly ash (sFA) on strength development of concrete. For the strength development the approach of the fib Model Code was chosen, which is based on an e-function that can be adapted to the strength development of an individual binder by selecting the so-called s-value based on the strength class of the Portland cement used. No guidance is provided for s-values for supplementary cementitious materials (SCMs). In order to determine the s-values for mixes with SCMs, a database was set up with results of material testing from literature. A relationship between s-values and w/b plus SCM/b ratios has been determined. This has been tested on laboratory cast specimens with 50 and 30% cement replacement with GGBS and FA respectively. These were cured at 20 degrees C. The s-values from this relationship were compared to those obtained from regression analysis and they were found to be satisfactory. This increased confidence in their use for predicting the strength development of other curing regimes, i.e. adiabatically cured concrete cubes, using the maturity function in the fib Model Code. Predictions of the effect of curing temperature, i.e. the adiabatic temperature history, on the strength development were again satisfactory. These were not significantly affected by the fib model code's use of one value of "apparent" activation energy. Crown Copyright (C) 2017 Published by Elsevier Ltd. All rights reserved.
机译:本文是RILEM TC 238-SCM的第4工作组与fib任务组4.6的共同工作。该文献研究的目的是量化磨碎的高炉矿渣(GGBS)和粉煤灰(sFA)对混凝土强度发展的影响。为了提高强度,选择了fib模型代码的方法,该方法基于电子函数,该函数可以通过基于强度的等级选择所谓的s值来适应单个粘合剂的强度发展。使用的硅酸盐水泥。没有提供补充胶结材料(SCM)的S值指南。为了确定与SCM混合的s值,建立了一个数据库,其中包含来自文献的材料测试结果。已确定s值与w / b加上SCM / b比率之间的关系。这已经在实验室铸造的试样上进行了测试,分别用GGBS和FA替代了50%和30%的水泥。将它们在20℃下固化。将该关系的s值与通过回归分析获得的s值进行比较,发现它们是令人满意的。使用fib模型代码中的成熟度函数,可以更加可靠地预测它们用于预测其他固化方式(即绝热固化的混凝土立方体)的强度发展。固化温度,即绝热温度历史,对强度发展的影响的预测再次令人满意。这些未受fib模型代码使用“视在”激活能量的一个值的显着影响。 Crown版权所有(C)2017,由Elsevier Ltd.出版。保留所有权利。

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