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钢纤维和聚丙烯纤维增强全再生骨料混凝土的力学性能

Mechanical Properties of Fully Recycled Aggregate Concrete Reinforced with Steel Fiber and Polypropylene Fiber.

作者信息

Zhang Lijuan, Li Xiang, Li Changbin, Zhao Jun, Cheng Shengzhao

机构信息

School of Mechanics and Safety Engineering, Zhengzhou University, No. 100 Science Avenue, Zhengzhou 450001, China.

China Construction Seventh Engineering Division, Co., Ltd., Zhengzhou 450004, China.

出版信息

Materials (Basel). 2024 Mar 1;17(5):1156. doi: 10.3390/ma17051156.

Abstract

The study and utilization of fully recycled aggregate concrete (FRAC), in which coarse and fine aggregates are completely replaced by recycled aggregates, are of great significance in improving the recycling rate of construction waste, reducing the carbon emission of construction materials, and alleviating the ecological degradation problems currently faced. In this paper, investigations were carried out to study the effects of steel fiber (0.5%, 1.0%, and 1.5%) and polypropylene fiber (0.9 kg/m, 1.2 kg/m and 1.5 kg/m) on the properties of FRAC, including compressive strength, splitting tensile strength, the splitting tensile load-displacement curve, the tensile toughness index, flexural strength, the load-deflection curve, and the flexural toughness index. The results show that the compressive strength, splitting tensile strength, and flexural strength of fiber-reinforced FRAC were remarkably enhanced compared with those of ordinary FRAC, and the maximum increase was 56.9%, 113.3%, and 217.0%, respectively. Overall, the enhancement effect of hybrid steel-polypropylene fiber is more significant than single-mixed fiber. Moreover, the enhancement of the crack resistance, tensile toughness, and flexural toughness obtained by adding steel fiber to the FRAC is more significant than that obtained by adding polypropylene fiber. Furthermore, adding polypropylene fiber alone and mixing it with steel fiber showed different FRAC splitting tensile and flexural properties.

摘要

全再生骨料混凝土(FRAC)是指粗、细骨料完全由再生骨料替代,对其进行研究与利用,在提高建筑垃圾回收率、降低建筑材料碳排放以及缓解当前面临的生态退化问题方面具有重要意义。本文开展了相关研究,以探究钢纤维(0.5%、1.0%和1.5%)和聚丙烯纤维(0.9 kg/m、1.2 kg/m和1.5 kg/m)对FRAC性能的影响,这些性能包括抗压强度、劈裂抗拉强度、劈裂抗拉荷载-位移曲线、拉伸韧性指数、抗折强度、荷载-挠度曲线以及抗折韧性指数。结果表明,与普通FRAC相比,纤维增强FRAC的抗压强度、劈裂抗拉强度和抗折强度显著提高,最大增幅分别为56.9%、113.3%和217.0%。总体而言,钢-聚丙烯混杂纤维的增强效果比单一纤维更为显著。此外,向FRAC中添加钢纤维对抗裂性、拉伸韧性和抗折韧性的增强作用比添加聚丙烯纤维更为显著。此外,单独添加聚丙烯纤维以及将其与钢纤维混合,FRAC的劈裂抗拉和抗折性能表现不同。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/024f/10935286/fb4c0b1c6b02/materials-17-01156-g001.jpg

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