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Influences of Initial Curing Conditions on the Microstructure of Fly Ash Cement System

机译:初始固化条件对粉煤灰水泥系统微观结构的影响

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In order to study the influences of initial curing conditions on fly ash (FA) cement concrete durability, fly ash cement samples with 30% replacement ratio were fabricated and cured in water at 10°C, 20°C, 30°C and 40°C for 3d, 7d, 14d and 28d respectively. Hydration degrees of fly ash at early age were measured using the selective dissolve method. Correspondingly the pore structure and morphology of FA-cement mortar and compared cement mortar were studied by using MIP and SEM methods. Then early age compressive strengths of FA-cement concrete and compared normal cement concrete were tested. Experimental results show that initial curing temperatures and ages are important factors to fly ash early age hydration degree, FA-cement system microstructure, morphology and early age compressive strength etc. High curing temperatures and longer curing time can lead higher fly ash hydration degree, and then higher compressive strength of FA-cement concrete, and make the micro-structures of fly ash-cement system denser.
机译:为了研究初始固化条件对粉煤灰(FA)水泥混凝土耐久性的影响,在10°C,20°C,30°C和40°的水中制造粉煤灰水泥样品,并在水中固化。 C对于3D,7d,14d和28d。使用选择性溶解法测量休眠时间在休眠中的水化程度。相应地使用MIP和SEM方法研究了Fa-Cement砂浆的孔结构和形态,并进行了比较的水泥砂浆。然后测试了FA水泥混凝土和比较了正常水泥混凝土的早期抗压强度。实验结果表明,初始固化温度和年龄是粉煤灰早期水合度,FA水泥系统微观结构,形态和早期抗压强度等的重要因素。高固化温度和较长的固化时间可以引发更高的粉煤灰水合度,以及然后较高的FA水泥混凝土抗压强度,使粉煤灰水泥系统密集的微结构。

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