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Experimental and microstructural study of the compressive strength of concrete samples containing low volumes of expanded polystyrene beads

机译:低体积膨胀聚苯乙烯珠粒混凝土样品抗压强度的实验和微观结构研究

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摘要

The partial replacement of aggregates with expanded polystyrene (EPS) beads is a common technique to produce lightweight concretes. Much research have been already conducted on the compressive strength of EPS concretes containing high volumes of EPS beads. In the current study, however, specimens with low EPS volume contents are also examined. The results show that all the strength versus EPS volume content graphs initiate with a nearly plateau region. The length of this plateau region is found to be an increasing function of W/C ratio. It is also observed that the replacement of redundant water with the EPS beads initially improves strength but the trend is reversed beyond a critical volume content. Finally, the new empirical findings are interpreted and justified based on the underlying microstructural failure mechanisms. The results of this study can lay fresh grounds for the development of more realistic micromechanical and numerical models for EPS concrete.
机译:用膨胀聚苯乙烯(EPS)珠粒部分代替骨料是生产轻质混凝土的常用技术。已经对包含大量EPS珠粒的EPS混凝土的抗压强度进行了大量研究。但是,在当前的研究中,还检查了EPS含量低的样品。结果表明,所有强度与EPS体积含量的关系图均始于近乎平稳的区域。发现该平台区域的长度是W / C比的增加函数。还观察到,用EPS珠粒代替多余的水最初会提高强度,但趋势会超出临界体积含量。最后,基于潜在的微观结构失效机制来解释和证明新的经验发现。这项研究的结果可以为开发更实际的EPS混凝土微力学和数值模型奠定新的基础。

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