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Formulation Of Blended Cement: Effect Of Process Variables On Clay Pozzolanic Activity

机译:混合水泥的配方:工艺变量对粘土火山灰活性的影响

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摘要

Chemical, physical and mineralogical properties of crude and calcined local kaolinitic clay were studied in detail in order to use it as an artificial pozzolan. The aim of this study was to investigate and optimize the properties of mortars in which calcined clay is employed as a pozzolan. A three variable (calcination time: X1, calcination temperature: X2 and % of calcined clay in the blended cement: X3) rotatable orthogonal composite design was set up. It was concluded that the compressive strengths were governed by the calcination temperature and the percentage of the calcined clay in the blended cement. It was proven that the strengths could be improved by increasing simultaneously the percentage of incorporation and the calcination temperature of the clay. It was also demonstrated that at temperatures lower than 700 ℃, the increase of the calcination time, improved the compressive strength, while above 700 ℃, the opposite effect was observed. Finally, a blended cement composition has been formulated and optimized using the desirability functions. The optimized blended cement contains 25% of calcined clay, heated for 3 h at a temperature of 750 ℃.
机译:详细研究了粗制和煅烧的局部高岭土的化学,物理和矿物学性质,以便将其用作人造火山灰。这项研究的目的是研究和优化以煅烧粘土作为火山灰的砂浆的性能。建立了三个变量(煅烧时间:X1,煅烧温度:X2和混合水泥中煅烧粘土的百分比:X3)可旋转正交复合设计。结论是,抗压强度受煅烧温度和掺合水泥中煅烧粘土的百分比控制。事实证明,通过同时增加粘土的掺入百分比和煅烧温度可以提高强度。还表明,在低于700℃的温度下,煅烧时间的增加,提高了抗压强度,而在700℃以上的温度下,则观察到相反的效果。最后,已使用所需功能配制并优化了混合水泥组合物。经过优化的掺混水泥含有25%的煅烧粘土,并在750℃的温度下加热3小时。

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