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首页> 外文期刊>ACI Materials Journal >Effect of Curing Water Availability and Composition on Cement Hydration
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Effect of Curing Water Availability and Composition on Cement Hydration

机译:养护用水量和组成对水泥水化的影响

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Curing can help concrete reach its full strength and durability potential. The effect of sealing the concrete with plastic or form-work, use of a liquid curing compound, wet curing, and internal curing with saturated lightweight aggregates on the cement degree of hydration (DOH) development with time was examined using isothermal calorimetry. Curing water amount, curing water ionic concentration, and sample thickness were varied. Finally, curing application timing was studied by comparing strength development of concrete cylinders sealed, placed in a moist room after 24 hours sealed, and immersed in a water bath immediately after finishing. Increasing the height of curing water decreased the height of heat of hydration rate peaks. Curing water ionic concentration affected the setting time and heat of hydration rate peak heights. Strength results show delayed curing can result in significant strength loss because of the difficulty for water to penetrate the already-hardened concrete.
机译:养护可以帮助混凝土发挥其全部强度和耐久性潜能。使用等温量热法研究了用塑料或模板密封混凝土,使用液体固化剂,湿固化以及使用饱和轻质骨料进行内部固化对水泥水合度(DOH)随时间发展的影响。改变固化水量,固化水离子浓度和样品厚度。最后,通过比较密封的圆柱体的强度发展研究固化时间,密封的圆柱体在密封24小时后放置在潮湿的房间中,并在完成后立即浸入水浴中。增加固化水的高度会降低水合速率峰值的热量。固化水中的离子浓度会影响水合速率峰高的凝固时间和热量。强度结果表明,由于水难以渗透已硬化的混凝土,延迟固化会导致强度显着下降。

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