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首页> 外文期刊>MATEC Web of Conferences >Sustainable cementitious materials: The effect of fly ash percentage as a part replacement of portland cement composite (PCC) and curing temperature on the early age strength of fly ash concrete
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Sustainable cementitious materials: The effect of fly ash percentage as a part replacement of portland cement composite (PCC) and curing temperature on the early age strength of fly ash concrete

机译:可持续的胶凝材料:粉煤灰百分比(代替波特兰水泥复合材料(PCC)和固化温度)对粉煤灰混凝土早期强度的影响

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This research aims to determine the effect of fly ash percentage as a part replacement of Portland cement and curing temperatures to the early age strength of concrete. The percentages of fly ash used were 0, 10 and 15% by cement weight. The cured temperatures were 25, 30 dan 50°C. The concrete specimens were cubes of 150 x 150 x 150 mm3. The cubes, which were cured at 25°C, placed in water tank, while those cured at 30 and 50°C cured in oven until 7 days and then continued in water. The testing was conducted at ages 3, 7, 14 dan 28 days. The results showed that at early ages, the strength of concrete without fly ash cured at 25°C were higher than that of fly ash concrete. The higher level replacement of cement with fly ash, the lower strength of concrete obtained. The higher the curing temperature at earlier age resulted the higher the strength of concrete. The strength of concretes with 10% of fly ash cured at 25, 30 and 50°C at age three days were 15.111, 15.481 and 16.296 MPa respectively. Conversely, the strength of concrete that of cured at higher temperatures at ages 28 days, were lower than that of concretes cured at lower temperature. The results of this research also showed that fly ash could improve the workability of concrete.
机译:这项研究旨在确定粉煤灰百分比作为波特兰水泥的一部分替代品以及固化温度对混凝土早期强度的影响。粉煤灰的使用量为水泥重量的0、10和15%。固化温度为25℃,30℃和50℃。混凝土试样是150×150×150mm 3的立方体。将在25°C固化的立方体放在水箱中,而在30和50°C固化的立方体在烤箱中固化直到7天,然后在水中继续。测试在3、7、14和28天的年龄进行。结果表明,在早期,未粉煤灰在25°C固化的混凝土的强度高于粉煤灰混凝土。用粉煤灰替代水泥的含量越高,获得的混凝土强度越低。早期熟化温度越高,混凝土强度越高。三天老化后在25、30和50°C下固化的粉煤灰含量为10%的混凝土的强度分别为15.111、15.481和16.296 MPa。相反,在28天老化时在高温下固化的混凝土的强度低于在低温下固化的混凝土的强度。该研究结果还表明,粉煤灰可以改善混凝土的可加工性。

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