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Alkali-silica reactions of mortars produced by using waste glass as fine aggregate and admixtures such as fly ash and Li_2CO_3

机译:以废玻璃为细骨料和粉煤灰和Li_2CO_3等掺合料制得的砂浆的碱硅反应

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Use of waste glass or glass cullet (GC) as concrete aggregate is becoming more widespread each day because of the increase in resource efficiency. Recycling of wastes is very important for sustainable development. When glass is used as aggregate in concrete or mortar, expansions and internal stresses occur due to an alkali-silica reaction (ASR). Furthermore, rapid loss in durability is generally observed due to extreme crack formation and an increase in permeability. It is necessary to use some kind of chemical or mineral admixture to reduce crack formation. In this study, mortar bars are produced by using three different colors of glass in four different quantities as fine aggregate by weight, and the effects of these glass aggregates on ASR are investigated, corresponding to ASTM C 1260. Additionally, in order to reduce the expansions of mortars, 10% and 20% fly ash (FA) as mineral admixture and 1% and 2% Li_2CO_3 as chemical admixture are incorporated by weight in the cement and their effects on expansion are examined. It is observed that among white (WG), green (GG) and brown glass (BG) aggregates, WG aggregate causes the greatest expansion. In addition, expansion increases with an increase in amount of glass. According to the test results, it is seen that over 20% FA and 2% Li_2CO_3 replacements are required to produce mortars which have expansion values below the 0.2% critical value when exposed to ASR. However, usages of these admixtures reduce expansions occurring because of ASR.
机译:由于资源效率的提高,废玻璃或碎玻璃(GC)作为混凝土骨料的使用每天变得越来越普遍。废物的回收对于可持续发展非常重要。当玻璃用作混凝土或砂浆中的骨料时,由于碱硅反应(ASR)会发生膨胀和内部应力。此外,由于极端的裂纹形成和渗透性的增加,通常观察到耐久性的快速损失。必须使用某种化学或矿物混合物来减少裂纹的形成。在这项研究中,砂浆棒是通过使用四种不同数量的三种不同颜色的玻璃作为细骨料生产的,这些细骨料按重量计,并研究了这些玻璃骨料对ASR的影响,对应于ASTM C 1260。将砂浆的膨胀,作为矿物掺合料的10%和20%粉煤灰(FA)以及作为化学掺合料的1%和2%Li_2CO_3按重量计掺入水泥中,并检查其对膨胀的影响。可以看出,在白色(WG),绿色(GG)和棕色玻璃(BG)聚集体中,WG聚集体引起最大的膨胀。另外,膨胀随着玻璃量的增加而增加。根据测试结果,可以看出,生产灰浆的灰浆在暴露于ASR时的膨胀值低于0.2%的临界值,需要用超过20%的FA和2%的Li_2CO_3替代。但是,这些掺混料的使用减少了由于ASR引起的膨胀。

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