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Evaluating the durability of recycled concrete made of coarse recycled aggregate concrete containing silica-fume and natural zeolite

机译:评估含有二氧化硅和天然沸石的粗再生骨料混凝土循环混凝土的耐久性

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Although the mechanical properties of recycled aggregates concrete (RAC’s) are well known, the durability properties of these concretes are less agreed upon by researchers. The main of this paper is to evaluate the durability of RAC’s made of recycled concrete coarse aggregate (RCCA) containing silica-fume (SF) and natural zeolite (NZ). Four series of mixtures were made using four levels of RCCA as 0%, 25%, 50%, and 100% with natural coarse aggregates (NCA’s). SF with 5%, 10%, and 15% and NZ with 10%, 20%, and 30% were replaced with cement. To evaluate the durability properties of RAC’s, 28 mixed design were made and compressive strength (CS), water absorption by immersion (WAI), water absorption by capillary (WAC), electrical resistance (ER), electrical conductivity (EC), and rapid chloride ion penetration test (RCPT) were measured. The results showed that WAI and WAC of RAC increased with enhancing the RCCA level. By increasing the replacement level of RCCA, and usage of 10% SF replacement showed a greater impact on improving CS. Concretes containing NZ had higher WAI than that of SF. The increasing level of NZ by more than 10%, increases the space of cavities between silicate gels and therefore increases WAC in concretes. With increasing in the RCA level, so did the EC of RAC;however, EC in pozzolanic concretes showed a lower growth rate by increasing the RCCA level. Using 25% of RCCA, and 10% of SF, it was possible to make concrete with very low chloride ion penetration.
机译:尽管再循环聚集体混凝土(RAC)的机械性能是众所周知的,但是这些混凝土的耐久性较少由研究人员商定。本文的主要主要是评估RAC由含有二氧化硅 - 烟气(SF)和天然沸石(NZ)制成的Rac耐用性。使用四个水平的RCCA为0%,25%,50%和100%进行四系列混合物,具有天然粗骨料(NCA)。含有5%,10%和15%和NZ的SF,用水泥取代了10%,20%和30%。为了评估RAC的耐久性,制造了28个混合设计,并压缩强度(CS),通过浸泡(WAI),吸水,毛细管(WAC),电阻(ER),电导率(EC)和快速吸水测量氯离子渗透试验(RCPT)。结果表明,RAI的WAI和WAC增加了增强RCCA水平。通过增加RCCA的替代水平,使用10%的SF替代物的使用表现出对改善CS的影响更大。含有NZ的混凝土比SF高于Wai。 NZ水平的增加程度增加了10%,增加了硅酸盐凝胶之间的空腔的空间,因此增加了混凝土中的WAC。随着RCA水平的增加,RAC的EC也是如此。然而,通过增加RCCA水平,EC中的EC显示出较低的生长速度。使用25%的RCCA和10%的SF,有可能使混凝土具有非常低的氯离子渗透。

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