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Effect of Carbon Dioxide Curing on Strength Development of Cement Mortar

机译:二氧化碳固化对水泥砂浆力量发展的影响

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This study was conducted to assess the acceleration of strength development by CO_2 curing and to evaluate the strength and microstructure of two cement mortars. Three curing pressures (1, 5, 8 bars), three curing time (20, 120, 180 minutes) and four CO_2 concentration (0%, 25%, 50% and 100%) were used in this investigation. Two mortar specimens are made with Type I Portland cement and oil-well cement. After the CO_2 curing duration and demolding, the mortar samples were assessed through the mass gain, the compressive strength, the pressure drop, the temperature rise in the curing chamber, and the microstructure characteristics. The performance of the CO_2 cured mortars was found through the measurement of pressure drop, temperature rise, strength development, mass gain and carbonation. In general, higher CO_2 concentration, longer carbonation time, higher CO_2 pressure could increase the compressive strength of the mortar and promote more CO_2 absorption. The better results obtained from this study are the Type 1 cement mortars curing three hours under 5-bar pressure with 100%) CO_2 concentration using one-time supply method. The three-hour mortar samples had a high percent strength development. The increasing of CO_2 concentration results in higher carbonation degree of mortar, more mass gain, and a stiffer and denser material.
机译:进行该研究以评估Co_2固化的强度发展加速,评价两个水泥砂浆的强度和微观结构。在该研究中使用三种固化压力(1,5,8巴),三个固化时间(20,120,180分钟)和四种CO_2浓度(0%,25%,50%和100%)。两个砂浆样本由I型Portland水泥和油井水泥制成。在CO_2固化持续时间和脱模之后,通过质量增益,压缩强度,压降,固化室中的温度升高以及微结构特性来评估研钵样品。通过测量压降,温度升高,强度发育,质量增益和碳化,发现CO_2固化砂浆的性能。通常,较高的CO_2浓度,较长的碳酸化时间,较高的CO_2压力可以增加砂浆的抗压强度并促进更多CO_2吸收。从该研究中获得的更好结果是使用一次性供应方法的5%)CO_2浓度在5-BAR压力下固化三小时的1型水泥砂浆。三小时的砂浆样品具有较高的强度显影。 CO_2浓度的增加导致砂浆的较高的碳酸化程度,更多的质量增加和更致密的材料和更密集材料。

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