The performance of fiber GGBS based alkali-activated concrete

被引:50
|
作者
Hammad, Nancy [1 ]
El-Nemr, Amr [2 ]
Hasan, Hossam El-Deen [3 ]
机构
[1] German Univ Cairo GUC, Civil Engn Dept, Cairo, Egypt
[2] German Univ Cairo GUC, Mat Engn Civil Engn Dept, Cairo, Egypt
[3] Shoubra Bertha Univ, Dept Civil Engn, Mat & Struct Engn, Cairo, Egypt
来源
关键词
Geopolymer; Alkali-activated concrete; Slag; Polypropylene fiber; Steel fiber reinforced concrete; Mechanical properties; Physical properties; SEM analysis; FLY-ASH; MECHANICAL-PROPERTIES; STEEL; GEOPOLYMERIZATION; MICROSTRUCTURE; DURABILITY;
D O I
10.1016/j.jobe.2021.102464
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
The fast construction and renovation of roads and bridges and the infrastructures in Egypt and developing countries cause concrete and cement production on a large scale. This huge market demand for precast units and concrete production harms the environment and global warming. Thus, the Ordinary Portland Cement (OPC) should reduce by developing new materials such as geopolymer concrete or alkali-activated concrete. This study investigated alkali-activated slag concrete (AAC) performance reinforced with structural polypropylene and steel fibers cured at ambient room temperature. The structural polypropylene and steel fibers were incorporated into the alkali-activated mix by 1.5% and 5% of the total binder weight, respectively. A wide range of engineering properties was assessed, including compressive strength, split tensile strength and stress-strain behavior, density, water absorption, and porosity. Microstructural analysis of the AAC samples was evaluated through scanning electron microscopic (SEM). The results showed that compressive strength at 1-day curing developed about 85% of the compressive strength for ACC at 28-days, which was considered as early high strength. A 10% enhancement of the AAC specimens' average compressive strength was reported after 7 and 28 days while fiber addition. The split tensile strength significantly increased by 19.28 and 26.80% by incorporating structural polypropylene and steel fibers, respectively. Comparison between the ACI 318 and ECP 203 provisions was handled along with those experimental results obtained elastic and rupture modulus. The ACI 318 provisions provided a more conservative prediction to the experimental results than the ECP 203 provision, which overestimated the experimental values by an average value of 1.1. The electron microscopy images confirmed the improvement in the engineering properties by showing a proper and coherent bond between the mortar matrix and the added fibers.
引用
收藏
页数:13
相关论文
共 50 条
  • [21] Performance evaluation of foaming agents in cellular concrete based on foamed alkali-activated slag
    Tarameshloo, Azadeh
    Kani, Ebrahim Najafi
    Allahverdi, Ali
    CANADIAN JOURNAL OF CIVIL ENGINEERING, 2017, 44 (11) : 893 - 898
  • [22] Optimized Alkali-Activated Slag-Based Concrete Reinforced with Recycled Tire Steel Fiber
    Eskandarinia, Milad
    Esmailzade, Mina
    Hojatkashani, Ata
    Rahmani, Aida
    Jahandari, Soheil
    MATERIALS, 2022, 15 (19)
  • [23] Experimental study on creep of short performance-based alkali-activated concrete column
    Du, Yunxing
    Qiu, Juan
    Zhou, Fen
    Shi, Caijun
    JOURNAL OF BUILDING ENGINEERING, 2022, 60
  • [24] New analytical models to predict the mechanical performance of steel fiber-reinforced alkali-activated concrete
    Rossi, Laura
    Patel, Ravi A.
    Dehn, Frank
    STRUCTURAL CONCRETE, 2024,
  • [25] Crack initiation in concrete specimens based on alkali-activated binders
    Simonova, H.
    Topolar, L.
    Havlikova, I.
    Rozsypalova, I.
    Kucharczykova, B.
    Kersner, Z.
    Bilek, V., Jr.
    ADVANCES AND TRENDS IN ENGINEERING SCIENCES AND TECHNOLOGIES II, 2017, : 267 - 272
  • [26] Optimization of alkali-activated concrete based on the characteristics of binder systems
    Wang, Jixiang
    Huang, Tianyong
    Han, Le
    Xie, Fuzhu
    Liu, Ze
    Wang, Donming
    CONSTRUCTION AND BUILDING MATERIALS, 2021, 300
  • [28] Performance evaluation of alkali-activated coal-ash aggregate in concrete
    Menon, Sreekesh U.
    Anand, Kalpathy Balakrishnan
    Sharma, Anil Kumar
    PROCEEDINGS OF THE INSTITUTION OF CIVIL ENGINEERS-WASTE AND RESOURCE MANAGEMENT, 2018, 171 (01) : 4 - 13
  • [29] Formulation and performance evaluation of alkali-activated self-compacting concrete
    Nagaraj V.K.
    Venkatesh Babu D.L.
    Asian Journal of Civil Engineering, 2018, 19 (8) : 1021 - 1036
  • [30] Development of eco-friendly GGBS and SF based alkali-activated mortar with quartz sand
    Karri S.K.
    Ponnada M.R.
    Veerni L.
    Journal of Building Pathology and Rehabilitation, 2022, 7 (1)