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Effect of curing condition on the characteristics of mortar containing high volume supplementary cementitious materials / Evi Aprianti Sud

机译:固化条件对含大量辅助胶凝材料砂浆特性的影响/ Evi aprianti s ud

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摘要

The purposes of this research were to studies the physical and chemical properties of materials, compressive strength, flexural strength, water absorption and porosity of multi-blended cements under different curing methods. Due to an enormous amount of different types of waste materials as by-product from different sectors like industrial and agricultural produced globally but not deposited safely. One solution to this crisis lies in recycling waste into useful products. Fly ash (FA), palm oil fuel ash (POFA), ground granulated Blast furnace slag (GGBFS) and rice husk ash (RHA) were used to replace with 50% to 75% ordinary Portland cement (OPC) by mass. Specimens were cured in water (WC), air under room temperature (AC), the combination of hot-water at 60oC for 24 h followed by curing in water (HWC), and air (HAC). The results showed that HAC could be an effective curing method with higher compressive and flexural strengths, lower water absorption and porosity for blended cement mortars. Mortars containing GGBFS in binder had higher enhancement on compressive strength under early hot water curing. While, at 24 h hot water curing mortar containing OPC-RHA-FA binder showed better quality in properties compared to the other binders.
机译:本研究的目的是研究在不同养护方法下多掺水泥的材料物理和化学性能,抗压强度,抗弯强度,吸水率和孔隙率。由于来自全球不同部门(如工业和农业部门)的副产品产生大量不同类型的废料,但这些废料并未安全地存放。解决这一危机的一种方法是将废物回收成有用的产品。用粉煤灰(FA),棕榈油燃料灰(POFA),磨碎的高炉矿渣(GGBFS)和稻壳灰(RHA)代替了按质量计50%至75%的普通硅酸盐水泥(OPC)。样品在水(WC),室温下的空气(AC),60oC的热水在24oC下混合固化24小时,然后在水(HWC)和空气(HAC)中固化。结果表明,HAC可以作为一种有效的养护方法,具有较高的抗压和抗弯强度,较低的吸水率和孔隙率,可用于混合水泥砂浆。在早期热水养护下,粘合剂中含有GGBFS的砂浆的抗压强度有更高的提高。而在24小时内,与其他粘合剂相比,含有OPC-RHA-FA粘合剂的热水固化砂浆显示出更好的性能。

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