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Hygro-thermal and durability properties of a lightweight mortar made with foamed plastic waste aggregates

机译:用泡沫塑料废料制成的轻质砂浆的湿热和耐久性能

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摘要

In the present study, hygro-thermal and durability related properties of a cementitious mortar containing highly porous foamed aggregates obtained from polymeric end-of-waste materials were investigated. The evaluation of capillary water absorption, thermal conductivity, water vapour permeability and sulfate attack resistance of samples where natural quartz sand was replaced by 10%, 25% and 50% in volume with foamed aggregates was carried out. Experimental investigations showed that the presence of plastic aggregates decreased mortar density (up to 36%, compared to the reference sample, for the maximum investigated natural sand volume replacement) as well as thermal conductivity (10% for the 50% volume replacement). Moreover, water vapour transmission rate increased at increasing natural sand replacement while capillary water absorption decreased. Finally, after fifteen cycles of sulfate attack test, lightweight mortars evidenced a lower mass loss compared to the reference sample. The results were related to morphological modifications in the mortars bulk porosity, demonstrating by mercury intrusion porosimetry investigations, that polymeric foamed aggregates determine a variation of the pores microstructure, resulting in an increased pores dimension. (C) 2018 Elsevier Ltd. All rights reserved.
机译:在本研究中,研究了水泥砂浆的与湿热和耐久性相关的特性,该砂浆包含由聚合物废料制成的高度多孔的泡沫骨料。对用泡沫骨料代替天然石英砂的体积分别为10%,25%和50%的样品的毛细管吸水率,导热率,水蒸气渗透性和抗硫酸盐侵蚀性进行了评估。实验研究表明,塑料骨料的存在降低了砂浆密度(与参考样品相比,最大调查的天然砂体积替代量达到36%)以及导热系数(50%体积替代量降低了10%)。此外,随着天然砂替代量的增加,水蒸气透过率增加,而毛细吸水率降低。最终,经过十五次硫酸盐侵蚀测试,与参考样品相比,轻质砂浆的质量损失更低。结果与砂浆整体孔隙率的形态学改变有关,通过压汞法进行了研究,表明聚合物泡沫聚集体决定了孔隙微观结构的变化,从而导致孔隙尺寸增加。 (C)2018 Elsevier Ltd.保留所有权利。

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