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Models for Strength Prediction of High-Porosity Cast-In-Situ Foamed Concrete

机译:高孔隙率现浇泡沫混凝土强度预测模型

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A study was undertaken to develop a prediction model of compressive strength for three types of high-porosity cast-in-situ foamed concrete (cement mix, cement-fly ash mix, and cement-sand mix) with dry densities of less than 700?kg/m3. The model is an extension of Balshin’s model and takes into account the hydration ratio of the raw materials, in which the water/cement ratio was a constant for the entire construction period for a certain casting density. The results show that the measured porosity is slightly lower than the theoretical porosity due to few inaccessible pores. The compressive strength increases exponentially with the increase in the ratio of the dry density to the solid density and increases with the curing time following the composite function for all three types of foamed concrete. Based on the results that the compressive strength changes with the porosity and the curing time, a prediction model taking into account the mix constitution, curing time, and porosity is developed. A simple prediction model is put forward when no experimental data are available.
机译:进行了一项研究,以开发干密度小于700的三种类型的高孔隙率现浇泡沫混凝土(水泥混合料,水泥-粉煤灰混合料和水泥-砂混合料)的抗压强度预测模型。千克/立方米该模型是Balshin模型的扩展,并考虑了原材料的水合比,其中水/水泥比在整个施工期间对于一定的铸件密度都是恒定的。结果表明,由于几乎无法进入孔隙,测得的孔隙度略低于理论孔隙度。对于所有三种类型的泡沫混凝土,抗压强度随着干密度与固体密度之比的增加而指数增加,并且随着复合功能的遵循,随着固化时间的增加而增加。基于抗压强度随孔隙率和固化时间而变化的结果,建立了一种考虑到混合物组成,固化时间和孔隙率的预测模型。当没有实验数据可用时,提出了一种简单的预测模型。

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