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An experimental study on strength development of concrete containing fly ash and optimum usage of fly ash in concrete

机译:粉煤灰混凝土强度发展及混凝土中粉煤灰最佳用量的试验研究。

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This paper presents a laboratory study on the strength development of concrete containing fly ash and optimum use of fly ash in concrete. Fly ash was added according to the partial replacement method in mixtures. A total of 28 mixtures with different mix designs were prepared. 4 of them were prepared as control mixtures with 250, 300, 350, and 400 kg/m~3 cement content in order to calculate the Bolomey and Feret coefficients (K_B, K_F). Four groups of mixtures were prepared, each group containing six mix designs and using the cement content of one of the control mixture as the base for the mix design. In each group 20 percent of the cement content of the control mixture was removed, resulting in starting mixtures with 200, 240, 280, and 320 kg/m~3 cement content. Fly ash in the amount of approximately 15 perceny, 25 percent, 33 percent, 42 percent, 50 percent, and 58 percent of the rest of the cement content was added as partial cement replacement. All specimens were moist cured for 28 and 180 days before compressive strength testing. The efficiency and the maximum content of fly ash that gives the maximum compressive strength were obtained by using Bolomey and Feret strength equations. Hence, the maximum amount of usable fly ash amount with the optimum efficiency was determined. This study showed that strength increases with increasing amount of fly ash up to an optimum value, beyond which strength starts to decrease with further addition of fly ash. The optimum value of fly ash for the four test groups is about 40 percent of cement. Fly ash/cement ratio is an important factor determining the efficiency of fly ash.
机译:本文对含粉煤灰的混凝土的强度发展以及粉煤灰在混凝土中的最佳使用进行了实验室研究。根据部分替代方法将粉煤灰添加到混合物中。总共准备了28种具有不同混合物设计的混合物。为了计算Bolomey和Feret系数(K_B,K_F),将其中4种作为对照混合物,水泥含量分别为250、300、350和400 kg / m〜3。制备四组混合物,每组包含六种混合物设计,并使用一种对照混合物的水泥含量作为混合物设计的基础。在每组中,去除了对照混合物中20%的水泥含量,从而产生了200、240、280和320 kg / m〜3水泥含量的起始混合物。粉煤灰的添加量约为其余水泥含量的15%,25%,33%,42%,50%和58%,作为水泥的部分替代品。在抗压强度测试之前,将所有样品湿固化28和180天。通过使用Bolomey和Feret强度方程,可以得出具有最大抗压强度的粉煤灰的效率和最大含量。因此,确定了具有最佳效率的最大可用粉煤灰量。这项研究表明,强度随着粉煤灰量的增加而增加,直至达到最佳值,超过此值,强度便随着进一步添加粉煤灰而降低。对于四个测试组,粉煤灰的最佳值约为水泥的40%。粉煤灰/水泥比是决定粉煤灰效率的重要因素。

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