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Development of lightweight concrete with high resistance to water and chloride-ion penetration

机译:开发出对水和氯离子渗透具有高抵抗力的轻质混凝土

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摘要

This paper presents an experimental study to evaluate the influence of coarse lightweight aggregate (LWA), fine LWA and the quality of the paste matrix on water absorption and permeability, and resistance to chloride-ion penetration in concrete. The results indicate that incorporation of pre-soaked coarse LWA in concrete increases water sorptivity and permeability slightly compared to normal weight concrete (NWC) of similar water-to-cementitious materials ratio (w/cm). Furthermore, resistance of the sandlightweight concrete (LWC) to water permeability and chloride-ion penetration decreases with an increase in porosity of the coarse LWA. The use of fine LWA including a crushed fraction <1.18 mm reduced resistance of the all-LWC to water and chloride-ion penetration compared with the sand-LWC which has the same coarse LWA. Overall, the quality of the paste matrix was dominant in controlling the transport properties of the concrete, regardless of porosity of the aggregates used. With low w/cm and silica fume, low unit weight LWC (-1300 kg/m~3) was produced with a higher resistance to water and chloride-ion penetration compared with NWC and LWC of higher unit weights.
机译:本文提出了一项实验研究,以评估粗轻骨料(LWA),细LWA和糊状基质的质量对混凝土的吸水率和渗透性以及耐氯离子渗透性的影响。结果表明,与类似水胶凝材料比例(w / cm)的普通重量混凝土(NWC)相比,将预浸泡的粗LWA掺入混凝土中可以稍微提高吸水性和渗透性。此外,随着粗LWA孔隙率的增加,轻质混凝土(LWC)的耐水渗透性和氯离子渗透性降低。与具有相同粗LWA的砂土LWC相比,使用碎裂度<1.18 mm的细LWA降低了全LWC对水和氯离子渗透的抵抗力。总体而言,无论所用集料的孔隙度如何,糊状基质的质量在控制混凝土的运输性能方面均占主导地位。与低单位重量的NWC和LWC相比,在低w / cm和硅粉的情况下,生产的低单位重量LWC(-1300 kg / m〜3)具有更高的耐水和氯离子渗透性。

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