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Use of OPC to improve setting and early strength properties of low calcium fly ash geopolymer concrete cured at room temperature

机译:使用OPC改善室温固化的低钙粉煤灰地质聚合物混凝土的凝结和早期强度性能

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Most previous works on fly ash based geopolymer concrete focused on concretes subjected to heat curing. Development of geopolymer concrete that can set and harden at normal temperature will widen its application beyond precast concrete. This paper has focused on a study of fly ash based geopolymer concrete suitable for ambient curing condition. A small proportion of ordinary Portland cement (OPC) was added with low calcium fly ash to accelerate the curing of geopolymer concrete instead of using elevated heat. Samples were cured in room environment (about 23 degrees C and RH 65 +/- 10%) until tested. Inclusion of OPC as little as 5% of total binder reduced the setting time to acceptable ranges and caused slight decrease of workability. The early-age compressive strength improved significantly with higher strength at the age of 28 days. Geopolymer microstructure showed considerable portion of calcium-rich aluminosilicate gel resulting from the addition of OPC. (C) 2014 Elsevier Ltd. All rights reserved.
机译:以前关于粉煤灰的地聚合物的大多数工作都集中在经过热固化的混凝土上。能够在常温下固化并硬化的地聚合物混凝土的开发将使其应用范围超出预制混凝土。本文重点研究了适用于环境固化条件的粉煤灰基地聚合物混凝土。向少量普通波特兰水泥(OPC)中添加低钙粉煤灰,以加快地聚合物的养护速度,而不是使用高温。样品在室内环境中(约23摄氏度和RH 65 +/- 10%)固化,直到进行测试。加入OPC的量仅占粘合剂总量的5%,可将固化时间降至可接受的范围,并导致可加工性略有下降。在28天龄时,早期抗压强度随着强度的提高而显着提高。地质聚合物的微观结构表明,由于添加了OPC,相当一部分富含钙的铝硅酸盐凝胶。 (C)2014 Elsevier Ltd.保留所有权利。

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