天然剑麻纤维增强水泥浆体力学性能研究

IF 1.3 Q3 CONSTRUCTION & BUILDING TECHNOLOGY Proceedings of the Institution of Civil Engineers-Construction Materials Pub Date : 2022-01-24 DOI:10.1680/jcoma.21.00007
Gabriel Zat Guizzardi, Marinara da Silva Machado, W. Michelon, D. F. Vanin
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引用次数: 1

摘要

由于建筑行业一直在寻求更坚固和更可持续的材料,使用天然纤维作为增强剂已被考虑,以提高机械性能和减少碳足迹。具体来说,剑麻纤维(龙舌兰剑麻)的抗拉强度高达880兆帕,因为它的主要成分是纤维素。因此,在水泥膏体中加入不同长度和纤维浓度的增强材料进行了探索。复合力学方法被应用于估算最小体积分数和纤维的临界长度,并通过吸水性进一步表征,因为它直接影响水泥的稠度。此外,还评估了断裂弯曲模量(MOR)和抗压强度。结果表明,20mm长度1.0% (vol.%)可使MOR提高150.71%,而抗压强度降低近25%。另一方面,0.5% (vol. %)的5 mm长度使MOR提高了103.42%,而抗压强度仅降低了7.25%。因此,较短的纤维在力学性能方面是有利的。最后,建议进行某种纤维处理,以避免吸水,因为吸水会影响新水泥浆的整体和易性,以及碱水解和矿化等长期耐久性方面。
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On the mechanical behaviour of natural sisal fibre reinforced cement paste
As the construction industry is always in seek of stronger and more sustainable materials, the use of natural fibres as a reinforcement agent has been considered, for both enhancement of mechanical properties and decreasing carbon footprint. Specifically, sisal fibres (agave sisalana) present a tensile strength up to 880 MPa, as having cellulose as the main constituent. Hence, the addition of varying lengths and fibre concentrations have been explored as reinforcements in cement paste. A composite mechanic's approach has been applied to estimate the minimum volume fraction and fibre's critical length, which was further characterized by water uptake, as it directly influences cement consistency. Furthermore, the flexural modulus of rupture (MOR) and compressive strength were also assessed. It was found that 1.0% (vol.%) of 20 mm length could increase the MOR up to 150.71% while giving up almost 25% in compressive strength. On the other hand, 0.5% (vol. %) of 5 mm length reached a 103.42% increase in the MOR while reducing only 7.25% in compressive strength. Therefore, it was concluded that shorter fibres were beneficial concerning mechanical performance. Ultimately, some sort of fibre treatment is suggested to avoid water absorption, which can affect the overall workability of fresh cement paste, and long-term durability aspects such as alkaline hydrolysis and mineralization.
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来源期刊
CiteScore
3.80
自引率
0.00%
发文量
23
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