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Nanocellulose for improved concrete performance: A macro-to-micro investigation for disclosing the effects of cellulose filaments on strength of cement systems

机译:纳米纤维素改善混凝土性能:从宏观到微观的研究,揭示纤维素细丝对水泥体系强度的影响

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To fulfill further eco-efficiency requirements, concrete technology practitioners are currently challenged to provide concretes with tailored properties to meet sustainability and resilience requirements for infrastructural systems. As such, nano-engineering concrete by incorporating nanocellulose materials (NCM) can disclose new research directions for tailoring properties necessary for sustainable cement composites. The current study investigates the performance of cement systems incorporating cellulose filaments (CF) and aims at fostering new understanding of the macroscale mechanical performance with a top-down multiscale approach. The study investigates the mechanical performance (i.e., compressive strength, flexural capacity, and elastic modulus) at macroscale of cement pastes incorporating CF at dosages of 0.0%, 0.05%, 0.10%, 0.20% and 0.30 wt%. The findings are supplemented by microstructure investigations, namely, degree of hydration and micromechanical properties (hardness, indentation modulus, and contact creep modulus) of microstructure phases using nanoindentation coupled with quantitative energy-dispersive spectroscopy (NI-QEDS). Results showed that CF incorporation resulted into 15-25% enhancements in macro-mechanical properties with up to 74% enhancement in flexural toughness. These enhancements are driven by a twofold microstructure change, i.e.: increased degree of hydration (15%) and higher micromechanical properties of C-S-H matrix (similar to 12-25%). CF is a promising nano-reinforcement for engineering cement composites with superior mechanical performance, while promoting the development of ecological construction materials. (C) 2019 Elsevier Ltd. All rights reserved.
机译:为了满足进一步的生态效率要求,混凝土技术从业人员目前面临着为混凝土提供量身定制的性能,以满足基础设施系统的可持续性和弹性要求的挑战。因此,通过掺入纳米纤维素材料(NCM)的纳米工程混凝土可以揭示新的研究方向,以定制可持续水泥复合材料所需的性能。当前的研究调查了掺入纤维素长丝(CF)的水泥系统的性能,旨在通过自上而下的多尺度方法来增进对宏观机械性能的新认识。这项研究调查了掺入CF的水泥浆在0.0%,0.05%,0.10%,0.20%和0.30 wt%的宏观范围内的力学性能(即抗压强度,挠曲能力和弹性模量)。通过使用纳米压痕结合定量能量色散光谱法(NI-QEDS)对微结构相的水合度和微机械性能(硬度,压痕模量和接触蠕变模量)进行微结构研究,对发现进行补充。结果表明,CF的掺入导致宏观力学性能提高了15-25%,弯曲韧性提高了74%。这些增强是由双重的微观结构变化驱动的,即:水合度提高(15%)和C-S-H基质更高的微机械性能(约12-25%)。 CF是一种有前途的纳米增强材料,可用于工程水泥复合材料,具有优异的机械性能,同时促进了生态建筑材料的发展。 (C)2019 Elsevier Ltd.保留所有权利。

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