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Graphene oxide as additive to replace using air-entraining agents

机译:氧化石墨烯作为添加剂使用引气剂代替

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Despite its negative impact on compressive strength of concrete, practitioners rely exclusively on using air entrainment to defeat freezing-and-thawing deterioration. This paper describes the use of graphene oxide (GO) as an effective method to minimize the negative impact of freezing-and-thawing action in concrete while maintaining high compressive strength. Two series of graphene oxidebearing concrete samples (containing 0.01% and 0.06% graphene oxide by cement weight) were produced. Plain concrete samples and samples with 4% air-entraining content were also produced for comparison. All the concrete samples were subjected to up to 500 repeated freezing-and-thawing cycles. Different series of tests such as electric resistance, nitrogen adsorption, and compressive strength were conducted within and at the end of the freezing-andthawing cycles. The results show that the GO specimens indicate higher initial compressive strength than the control and the air-entrained specimens. A significant enhancement of freezingand- thawing resistance in the graphene oxide-bearing concrete samples was expressed in maintaining the compressive strength close to initial values before the exposure to freezing-and-thawing cycles.
机译:尽管它对混凝土的抗压强度有负面影响,但从业人员仅依靠使用空气夹带来克服冻融恶化。本文介绍了使用氧化石墨烯(GO)作为有效的方法,以最大程度地减小混凝土中冻融作用的负面影响,同时保持较高的抗压强度。制备了两个系列的含氧化石墨烯的混凝土样品(按水泥重量计分别包含0.01%和0.06%的氧化石墨烯)。还生产了普通混凝土样品和引气含量为4%的样品以进行比较。所有混凝土样品均经过多达500次重复的冻融循环。在冷冻-融化循环的过程中和结束时,进行了一系列不同的测试,例如电阻,氮吸附和抗压强度。结果表明,GO样品显示出比对照样品和空气夹带样品更高的初始抗压强度。承受氧化石墨烯的混凝土样品中的抗冻融性显着提高,可以使抗压强度保持在暴露于冻融循环之前的初始值附近。

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