首页> 外文会议>Canadian Society for Civil Engineering annual conference >MECHANICAL PROPERTIES OF CONCRETE CONTAINING REACTIVE MgO UNDER ACCELERATED CARBONATION CURING
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MECHANICAL PROPERTIES OF CONCRETE CONTAINING REACTIVE MgO UNDER ACCELERATED CARBONATION CURING

机译:加速碳化过程中含活性MgO的混凝土力学性能

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Concrete containing reactive MgO has potentially superior mechanical properties to conventional concrete under accelerated carbonation curing. Experiments were carried out to determine the influence of r-MgO replacement and accelerated carbonation on the mechanical properties of concrete containing r-MgO. Cylinders (dimensions of Φ50 mm x H100 mm and Φ100 mm x H200 mm) with an r-MgO replacement level of 30%, 50% and 70% were cast. Samples were demolded at 1 day for 30% and 50% r-MgO concrete, and on the 2~(nd) day for 70% r-MgO concrete. Demoulded cylinders were exposed to an ambient environment (temperature (20±3 °C) and a relative humidity (20±5%)) until day 5, and then the specimens were subjected to accelerated carbonation curing (temperature (20±3 °C), relative humidity (95±5%) and CO_2 concentration of 99%) for another 28 days. Mechanical properties, including compressive strength, bulk density, porosity and dynamic and static elastic modulus, were measured at 3, 5, 8, 12, 19 and 33 days after casting. The experimental results reveal that accelerated carbonation improves the mechanical properties of concrete containing r-MgO, especially in the first 3 days of carbonation. The mechanical properties of 30% r-MgO concrete are superior to those of 50% and 70% r-MgO concrete before carbonation, but are inferior after carbonation curing. This phenomenon is quantified by the relatively low carbonation depth of 30% r-MgO concrete, which results from the combined effect of water-to-binder ratio and differences in the precipitated carbonation product compared to the 50 and 70% r-MgO mixes.
机译:含活性MgO的混凝土在加速碳化固化后可能具有优于常规混凝土的机械性能。进行实验以确定r-MgO的替代和加速碳化对含r-MgO的混凝土的机械性能的影响。铸造r-MgO替代水平为30%,50%和70%的圆柱体(尺寸为Φ50mm x H100 mm和Φ100mm x H200 mm)。对于30%和50%的r-MgO混凝土,样品在第1天脱模,对于第二天(70%)的r-MgO混凝土,样品脱模。将脱模的钢瓶暴露于周围环境(温度(20±3°C)和相对湿度(20±5%))直到第5天,然后对样品进行加速碳化固化(温度(20±3°C) ),相对湿度(95±5%)和CO_2浓度为99%)再持续28天。在铸造后3、5、8、12、19和33天测量机械性能,包括抗压强度,堆积密度,孔隙率以及动态和静态弹性模量。实验结果表明,加速碳化可以改善含r-MgO的混凝土的机械性能,特别是在碳化的前三天。 30%r-MgO混凝土的机械性能优于碳化前的50%和70%r-MgO混凝土,但碳化后的机械性能较差。这种现象可以通过30%r-MgO混凝土相对较低的碳化深度来量化,这是由于水与粘合剂的比例以及与50%和70%的r-MgO混合物相比沉淀的碳酸化产物的差异共同造成的。

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