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Model for compressive strength development of OPC concrete and fly ash concrete with time

机译:OPC混凝土和粉煤灰混凝土的抗压强度随时间变化的模型。

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Towards promoting the use of higher percentage levels of fly ash in concrete in order to reduce its carbon dioxide footprint, rational models for estimating the mechanical properties of fly ash concrete (FAC) are required. A simple model for predicting the mean compressive strength development with age of both FAC and ordinary Portland cement concrete (OPCC) is proposed. The model is applicable to concrete containing 0-75% class F fly ash, type I cement and normal-weight aggregates and having a 28 d average compressive strength up to 65 MPa. The model was developed based on two-stage regression analyses of the experimental data of 512 concrete mixtures collected from the literature. The predictions made using the model were found to be in good agreement with the results of experimental investigations carried out at CSIR-Structural Engineering Research Centre and additional experimental data collected from the literature. From a comparison with a reaction-kinetics-based strength development model available in the literature, it was noted that the proposed model is able to reflect the reaction kinetic processes involved in strength development in both OPCC and FAC. The proposed model should help in developing specifications related to strength development for FAC similar to that given in fib Model Code 2010 for OPCC.
机译:为了促进在混凝土中使用更高百分比的粉煤灰以减少其二氧化碳足迹,需要合理的模型来估算粉煤灰混凝土的机械性能(FAC)。提出了一个简单的模型来预测FAC和普通波特兰水泥混凝土(OPCC)随年龄的平均抗压强度发展。该模型适用于含有0-75%的F级粉煤灰,I型水泥和正常重量的骨料,并且平均抗压强度为28 d(最高65 MPa)的混凝土。该模型是基于对从文献中收集的512种混凝土混合物的实验数据进行两阶段回归分析而开发的。发现使用该模型进行的预测与CSIR结构工程研究中心进行的实验研究结果以及从文献中收集的其他实验数据非常吻合。通过与文献中基于反应动力学的强度发展模型进行比较,注意到所提出的模型能够反映OPCC和FAC中涉及强度发展的反应动力学过程。拟议的模型应有助于制定与FAC强度开发相关的规范,类似于OPCC的fib模型代码2010中给出的规范。

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