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首页> 外文期刊>Cement & concrete composites >The influences of admixtures on the dispersion, workability, and strength of carbon nanotube-OPC paste mixtures
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The influences of admixtures on the dispersion, workability, and strength of carbon nanotube-OPC paste mixtures

机译:添加剂对碳纳米管-OPC糊状混合物的分散性,可加工性和强度的影响

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摘要

Carbon nanotubes (CNT) have excellent mechanical properties and have the potential, if combined with Ordinary Portland Cement (OPC), traditionally a brittle material in tension, to become a nano-composite with superlative mechanical properties. However, highly attractive van der Waals forces between CNTs create coherent agglomerates that prove difficult to disperse within the cement matrix and reduce the fluidity of the fresh mixture. Good dispersion of CNTs, while maintaining good workability of fresh OPC-CNT paste mixtures, is a prequalification before CNT-cement nanocomposites can be considered as a future building and construction material with enhanced mechanical properties. This paper reports the results of investigations of the dispersion, workability, and strength of CNT aqueous and CNT-OPC paste mixtures, with and without several generically different dispersants/surfactants that are compatible as admixtures in the manufacture of concrete. These include an air entrainer, styrene butadiene rubber, polycarboxylates, calcium naphthalene sulfonate, and lignosulfonate formulations. Aqueous mixtures were initially assessed for dispersion of CNTs, followed by workability testing of selected OPC-CNT-dispersant/surfactant paste mixtures. A broad range of workability responses were measured and the CNT dispersion within hardened pastes was qualitatively assessed by SEM analysis.
机译:碳纳米管(CNT)具有出色的机械性能,并且如果与传统上受拉伸的脆性材料普通硅酸盐水泥(OPC)结合使用,则有可能成为具有最高机械性能的纳米复合材料。但是,碳纳米管之间的吸引力极高的范德华力会产生粘结的团聚体,这证明很难分散在水泥基质中,并降低了新鲜混合物的流动性。 CNT的良好分散性,同时保持新鲜的OPC-CNT糊状混合物的良好可加工性,是在CNT-水泥纳米复合材料被视为具有增强的机械性能的未来建筑和建筑材料之前的一项资格预审。本文报道了在有或没有几种可以与混凝土生产中相容的分散剂/表面活性剂混合的情况下,CNT水性和CNT-OPC糊状混合物的分散性,可加工性和强度的研究结果。这些包括空气夹带剂,丁苯橡胶,聚羧酸盐,萘磺酸钙和木质素磺酸盐配方。首先评估水性混合物的CNT分散性,然后对所选的OPC-CNT分散剂/表面活性剂糊状混合物进行可加工性测试。测量了广泛的可加工性响应,并通过SEM分析定性评估了固化浆料中的CNT分散度。

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