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Performance of granulated foam glass concrete

机译:泡沫玻璃混凝土的性能

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This research investigated the feasibility of using granulated foam glass (GFG), as natural aggregate substitute by volume, in concrete production. The CFG aggregates used in this study were produced from mixed colour glass bottles waste. The effect of various proportions of coarse GFG (30%, 40%, 50%, 60% and 100%) and fine GFG (5%, 10% and 15%) on fresh, mechanical properties, carbonation and alkali-silica reaction (ASR) have been established and its suitability for use in a range of practical applications is assessed. A series of concrete mixes were proportioned with water-to-cement ratios (w/c) of 0.40, 0.55, 0.62 and 0.76.The GFG aggregates are characterised as of a high content of silicon oxide, porous texture, around 40% low relative density and 2-4 times higher water absorption compared to natural aggregate (NA). Overall, GFG characterisation test results have demonstrated their potential for use as lightweight aggregates in concrete production.Results of compressive strength testing showed that up to 30% coarse or 5% fine GFG had generally negligible effect on the cube and cylinder strength of concrete. Moreover, within 3-days 30% coarse GFG concrete specimens achieved on average 70% of their 28-day compressive strength. This increased to a range of 73-87% at 7-days, regardless of GFG content and comparable to corresponding NA concrete mixes. Up to 50% of NA replaced by the GFG has shown insignificant effect on the carbonation rate as compared to the control NA concretes. Results of accelerated ASR testing indicate expansions of both control NA and up to 50% GFG mixes, but values were found to be within the acceptable limit set by ASTM C1260. A microstructural investigation of the cement paste containing fine GFG using Scanning Electronic Microscope (SEM) images has shown a minor ASR gel and reaction products were dissipated through the pore system of the GFG. The formation of gel in the pores has contributed to minimize the expansions exhibited and thus, evacuate/relax the internal stresses. On the whole, potential extent to which coarse/fine GFG content can be used, as natural aggregate substitute (by volume), has been identified.
机译:这项研究调查了在混凝土生产中使用粒状泡沫玻璃(GFG)作为天然骨料替代品的可行性。本研究中使用的CFG骨料是由彩色玻璃瓶废物制成的。各种比例的粗GFG(30%,40%,50%,60%和100%)和细GFG(5%,10%和15%)对新鲜,机械性能,碳化和碱硅反应的影响(已经建立了ASR,并评估了其在一系列实际应用中的适用性。一系列混凝土混合料的水灰比(w / c)为0.40、0.55、0.62和0.76.GFG骨料的特征是氧化硅含量高,多孔质感,相对低40%密度和吸水率是天然骨料(NA)的2-4倍。总的来说,GFG表征测试结果证明了其在混凝土生产中可用作轻质骨料的潜力。抗压强度测试结果表明,高达30%的粗GF%或5%细的GFG对混凝土的立方和圆柱强度的影响通常可以忽略不计。此外,在3天之内,有30%的GFG粗混凝土样本平均获得了28天的抗压强度的70%。不管GFG含量如何,并且与相应的NA混凝土混合物相当,在7天时其含量增加到73-87%。与对照NA混凝土相比,被GFG替代的高达50%的NA对碳化速率没有显着影响。加速ASR测试的结果表明,对照NA和高达50%GFG混合物均发生了膨胀,但发现其值在ASTM C1260设定的可接受范围内。使用扫描电子显微镜(SEM)图像对包含细粉状GFG的水泥浆的微观结构研究表明,少量的ASR凝胶和反应产物通过GFG的孔系统消散。孔中凝胶的形成有助于最大程度地减少膨胀,从而疏散/放松内应力。总体而言,已经确定了粗/细GFG含量可以用作天然骨料替代品(按体积计)的潜在程度。

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