Strength and Stiffness Evaluation of a Fiber-Reinforced Cement-Stabilized Fly Ash Stone Dust Aggregate Mixture

IF 3 Q2 MATERIALS SCIENCE, COMPOSITES
Sanjeeb Kumar Mohanty, Dipti Ranjan Biswal, Benu Gopal Mohapatra, Brundaban Beriha, Ramachandra Pradhan, Harekrushna Sutar
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Abstract

The utilization of waste fly ash in road construction is primarily confined to its use in embankment filling or as a stabilizer when combined with lime and cement. Its application in structural pavement layers, such as the base and subbase, faces a challenge due to the high volume of fine particles, which renders it brittle when stabilized. In this study, fly ash was blended with stone dust and aggregated to enhance its gradation. Subsequently, it was stabilized with cement to bolster its strength, rendering it suitable for pavement use. Additionally, polypropylene (PP) fibers were introduced to mitigate the brittleness of the mixture. An extensive experimental investigation was conducted to assess the strength and stiffness properties, including compressive strength, indirect tensile strength, flexural strength, cyclic indirect tensile modulus, and flexural modulus of fiber-reinforced cement-stabilized mixtures of fly ash, stone dust, and aggregate. The experimental results reveal that the addition of PP fibers up to 0.25 wt.% enhances compressive strength, but any further increase in fiber content leads to a reduction in strength. However, indirect tensile strength and flexural strength show improvement, with an increase in fiber percentage up to 0.5 wt.%. It was observed that cement content plays a dominant role in stabilizing these materials. Appropriate relationships have been established between strength and modulus parameters for stabilized mixtures. Based on the strength and stiffness study, a combination of 70% fly ash and 30% stone dust aggregate with 6% cement can be considered for the base layer. Regarding the behavior of indirect tensile strength and flexural strength, an optimum fiber percentage of 0.35% is recommended.
纤维增强水泥稳定粉煤灰石粉骨料的强度和刚度评价
废粉煤灰在道路建设中的利用主要局限于路基填筑或与石灰和水泥混合用作稳定剂。它在结构路面层(如基层和下层)中的应用面临着挑战,因为大量的细颗粒使其在稳定时变得脆性。在本研究中,粉煤灰与石粉混合,团聚,以提高其级配。随后,用水泥将其稳定以增强其强度,使其适合路面使用。此外,聚丙烯(PP)纤维被引入以减轻混合物的脆性。进行了广泛的实验研究,以评估强度和刚度特性,包括抗压强度、间接抗拉强度、弯曲强度、循环间接拉伸模量和弯曲模量的纤维增强水泥稳定的粉煤灰、石粉和骨料混合物。实验结果表明,添加0.25 wt.%的PP纤维可提高材料的抗压强度,但纤维含量的进一步增加会导致强度的降低。然而,间接拉伸强度和弯曲强度有所改善,纤维含量增加0.5 wt.%。观察到水泥含量在稳定这些材料中起主导作用。建立了稳定混合物强度和模量参数之间的适当关系。根据强度刚度研究,基层可考虑采用70%粉煤灰+ 30%石粉骨料+ 6%水泥的组合结构。在间接拉伸强度和弯曲强度方面,推荐纤维掺量为0.35%为最佳。
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来源期刊
Journal of Composites Science
Journal of Composites Science MATERIALS SCIENCE, COMPOSITES-
CiteScore
5.00
自引率
9.10%
发文量
328
审稿时长
11 weeks
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