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Degree of Hydration and Compressive Strength of Conditioned Samples Made of Normal and Blended Cement System

机译:由普通水泥和混合水泥制成的条件试样的水化度和抗压强度

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In this paper; results of the degree of hydration of the pastes and the compressive strength of the 50 mm cubes prepared with the 100% cement and fly ash blended cement were determined. 24 hours after casting mortar cubes and the paste samples were cured for 28 days in the fog room. After 28 days curing, a set of three cubes and a paste sample was dried in the 100%, 75%, 65%, 40% and 12% ambient relative humidity at the constant temperature of 27℃. Drying conditions showed significant effects on the compressive strength and the degree of hydration. Highest compressive strength of 70 MPa was measured of mortar cubes dried in 100% RH; similarly, 97% degree of hydration was obtained for 100% cement samples dried in the 100% RH. For mortar cubes dried in 12% RH, the compressive strength was measured between 47 and 53 MPa. The similar paste samples showed the maximum degree of hydration as 81%. Statistically valid correlations were obtained between the degree of hydration and the compressive strength of normal and blended cement system.
机译:本文确定了糊料的水合度的结果以及用100%水泥和粉煤灰掺合水泥制得的50 mm立方体的抗压强度。浇铸砂浆立方体后24小时,糊状样品在雾化室中固化28天。固化28天后,将一组三个立方体和一个糊状样品分别在100%,75%,65%,40%和12%的环境相对湿度下于27℃的恒温下干燥。干燥条件显示出对抗压强度和水合度的显着影响。在100%RH下干燥的砂浆立方体的最高抗压强度为70 MPa;类似地,对于在100%RH中干燥的100%水泥样品,获得97%的水合度。对于在12%RH下干燥的砂浆立方体,测得的抗压强度在47到53 MPa之间。相似的糊状样品显示最大水合度为81%。在普通水泥和混合水泥系统的水化程度与抗压强度之间获得了统计上有效的相关性。

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