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The effect of multi-walled carbon nanotubes on the Theological properties and hydration process of cement pastes

机译:多壁碳纳米管对水泥浆流变学特性和水化过程的影响

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The properties of cementitious materials can be noticeably improved by the addition of carbon nanotubes (CNTs). It is important to detect the effects of the pellets containing multi-walled CNTs, dispersed in carboxyl-methyl cellulose, on the hydration process of fresh cement pastes, and physical or mechanical properties of hardened cement paste specimens, obtained without the use of commercially available surfactants and plasticisers, in order to use CNTs in cementitious materials more effectively. The influence of dispersed CNTs in different amounts (from 0 to 0.5%) on the pH and electrical conductivity values of water solutions and fresh cement pastes, as well as on the rheological properties, setting time and exothermic reaction of fresh cement pastes or on the physical and mechanical properties of hardened cement paste specimens was analysed in this work. It can be stated, that 0.005% is the marginal amount of CNTs, as amounts above 0.005% deteriorate the hydration parameters of cement pastes. This was confirmed by decreased values in electrical conductivity (approximately 17%), pH (approximately 6.8%) and dynamic viscosity (approximately 3 times) tests. Lower pH values lead to a significant retardation of the dissolution of cement minerals and this process is reflected in the setting time (prolonged by 110-130%) and maximum time (extended by 148%) or temperature (decreased by 18.4%) of exothermic reaction. Consequently, the mechanical properties of hardened cement paste specimens (after 28 days) decreased about 10%, as well as water absorption increased up to 10.6%. (C) 2018 Elsevier Ltd. All rights reserved.
机译:通过添加碳纳米管(CNT)可以显着改善水泥材料的性能。重要的是要检测分散在羧甲基纤维素中的多壁CNT颗粒对新鲜水泥浆水化过程以及硬化水泥浆样品的物理或机械性能的影响,这些样品无需使用市售产品即可获得。表面活性剂和增塑剂,以便在水泥材料中更有效地使用CNT。分散的CNT的数量不同(从0%到0.5%)对水溶液和新鲜水泥浆的pH和电导率值,以及对新鲜水泥浆或水泥浆的流变性,凝固时间和放热反应的影响。在这项工作中分析了硬化水泥浆样本的物理和机械性能。可以说,0.005%是CNT的边际量,因为高于0.005%的量会使水泥浆的水化参数恶化。通过电导率(约17%),pH(约6.8%)和动态粘度(约3倍)测试值的降低证实了这一点。较低的pH值会导致水泥矿物溶解的显着延迟,并且此过程反映在放热的凝固时间(延长110-130%)和最大时间(延长了148%)或温度(降低了18.4%)上。反应。因此,硬化水泥浆样品的机械性能(28天后)降低了约10%,吸水率提高了10.6%。 (C)2018 Elsevier Ltd.保留所有权利。

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