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Maturity testing of lightweight self-compacting and vibrated concretes

机译:轻型自密实和振动混凝土的成熟度测试

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摘要

A series of laboratory tests were carried out to investigate the effect of temperature on the early-age strength development of lightweight self-compacting and vibrated concrete mixtures. These had been developed at Queen's University Belfast as part of a Technology Strategy Board funded project aimed at developing lightweight and low energy concretes. The new mixtures incorporated high volumes of pulverised fuel ash (PFA), ground granulated blast furnace slag (GGBS), and limestone powder (LSP). Activator, i.e. sodium sulphate, was used to improve the early age strength development of vibrated concrete mixtures proportioned with PFA and GGBS. For each mixture, concrete cubes were manufactured and cured under isothermal (20 °C, 30 °C, 40 °C and 50 °C) as well as adiabatic conditions. The temperature rise under adiabatic curing conditions was also measured. The resulting isothermal strength data were analysed to determine the apparent activation energies of the binders/mixtures used. The suitability of maturity methods for predicting concrete strength development of these low energy lightweight self-compacting and vibrated concrete mixtures under non-isothermal, i.e. adiabatic, curing was assessed.
机译:进行了一系列实验室测试,以研究温度对轻质自密实和振动混凝土混合物早期强度发展的影响。这些是贝尔法斯特女王大学在技术战略委员会资助的旨在开发轻质和低能混凝土的项目中开发的。新混合物掺入大量粉煤灰(PFA),高炉矿渣粉(GGBS)和石灰石粉(LSP)。活化剂,即硫酸钠,用于改善与PFA和GGBS成比例的振动混凝土混合物的早期强度发展。对于每种混合物,都制造了混凝土立方体,并在等温(20°C,30°C,40°C和50°C)以及绝热条件下固化。还测量了在绝热固化条件下的温升。分析所得的等温强度数据,以确定所用粘合剂/混合物的表观活化能。评估了成熟度方法在非等温即绝热固化条件下预测这些低能轻质自密实和振动混凝土混合物的混凝土强度发展的适用性。

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