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Effect of chloride treatment curing condition on the mechanical properties and durability of concrete containing zeolite and micro-nano-bubble water

机译:氯化物处理养护条件对含沸石和微纳米气泡水的混凝土力学性能和耐久性的影响

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Chloride ion has the highest proportion of chemical compounds present in seawater. This research utilized the chloride curing conditions in order to study the effect of chloride ion on properties of concrete containing zeolite as a mineral admixture and micro-nano-bubble water. The objective was to improve the durability and the mechanical properties of concrete. It was observed that the addition of zeolite-pozzolan and micro-nano-bubble water to the concrete under chloride curing conditions improved the mechanical properties and durability of concrete of 28 days old by forming Friedel's salt. With increasing age of concrete and decomposition of Friedel's salt in concrete samples, the process of improvement was reduced. The greatest effect on improving the mechanical properties and durability of 28 days old concrete was related to the mixture containing 15% zeolite and 100% micro-nano-bubble water under chloride curing conditions. Results also showed that in the mixture containing 15% zeolite and 100% micro-nano-bubble water, under chloride treatment condition, there was 45% increase in the compressive strength. Also, tensile strength and electrical resistance were improved 78 and 254%, respectively, and the chloride penetration and water absorption were reduced by 83 and 49%, respectively, compared to the control mixture. (C) 2018 Elsevier Ltd. All rights reserved.
机译:氯离子在海水中的化学化合物比例最高。为了研究氯离子对含沸石作为矿物掺合料和微纳米气泡水的混凝土性能的影响,本研究利用了氯化物的固化条件。目的是提高混凝土的耐久性和机械性能。观察到,在氯化物固化条件下向混凝土中添加沸石-火山灰水和微纳泡沫水,通过形成弗里德尔盐来改善28天龄混凝土的机械性能和耐久性。随着混凝土年龄的增加和混凝土样品中弗里德尔盐的分解,改进过程有所减少。改善28天龄混凝土的机械性能和耐久性的最大影响与在氯化物固化条件下含有15%沸石和100%微纳米气泡水的混合物有关。结果还表明,在含有15%沸石和100%微纳米气泡水的混合物中,在氯化物处理条件下,抗压强度提高了45%。同样,与对照混合物相比,抗张强度和电阻分别提高了78%和254%,氯化物渗透和吸水率分别降低了83%和49%。 (C)2018 Elsevier Ltd.保留所有权利。

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