Effect of macro-synthetic fibers on the drying shrinkage performance of rigid pavement

被引:0
|
作者
M. S. Eisa
M. E. Basiouny
A. M. Youssef
机构
[1] Benha University,Civil Engineering Department, Benha Faculty of Engineering
[2] Benha University,Benha Faculty of Engineering
来源
关键词
Rigid pavement; Macro-synthetic fibers; Cracking; Drying shrinkage; Mechanical properties;
D O I
暂无
中图分类号
学科分类号
摘要
Rigid pavement provides excellent advantages in terms of durability and economic efficiency. However, appropriate maintenance of this pavement is difficult in case of deterioration. Drying shrinkage cracking in the rigid pavement is the main reason of such disadvantages, and the need of maintenance on road sites is rising every day. For the aim of restricting drying shrinkage cracking, fibers are used in fresh concrete. Accordingly, this study evaluates the performance of using macro-synthetic fibers (MSF) in reducing the drying shrinkage strain in order to reduce cracking of the concrete pavement mix to restrict the deterioration of the pavement. The mechanical properties (compressive strength, splitting tensile strength, flexural strength) and the drying shrinkage of the plain concrete (PC) and macro-synthetic fiber-reinforced concrete (MSFRC) are evaluated. The results show that the effect of MSF on the compressive strength is minimal, while the splitting tensile strength and flexural strength of MSFRC are improved by 20 and 34%, respectively. Furthermore, the drying shrinkage strain of MSFRC can be significantly reduced by about 60% compared with that of PC.
引用
收藏
相关论文
共 50 条
  • [21] Combination of Enzyme-Induced Calcium Carbonate Precipitation (EICP) and Macro-Synthetic Fibers for Soil Improvement
    Alotaibi, Emran
    Arab, Mohamed G.
    Omar, Maher
    GEO-CONGRESS 2022: SOIL IMPROVEMENT, GEOSYNTHETICS, AND INNOVATIVE GEOMATERIALS, 2022, 331 : 408 - 417
  • [22] Efficiency of steel and macro-synthetic structural fibers on the flexure-shear behaviour of prestressed concrete beams
    Joshi, Suhas S.
    Thammishetti, Nikesh
    Prakash, Suriya S.
    ENGINEERING STRUCTURES, 2018, 171 : 47 - 55
  • [23] Precast tunnel segments for metro tunnel lining: A hybrid reinforcement solution using macro-synthetic fibers
    Conforti, Antonio
    Trabucchi, Ivan
    Tiberti, Giuseppe
    Plizzari, Giovanni A.
    Caratelli, Angelo
    Meda, Alberto
    ENGINEERING STRUCTURES, 2019, 199
  • [24] The effect of shrinkage reducing admixture and polypropylene fibers on drying shrinkage behaviour of concrete
    Mardani-Aghabaglou, Ali
    Ilhan, Metin
    Ozen, Suleyman
    CEMENT WAPNO BETON, 2019, 24 (03): : 227 - +
  • [25] The Effect of Cement Content on Drying Shrinkage of Roller Compacted Concrete Pavement
    Abbasi, Mehdi
    Shafigh, Payam
    Bin Baharum, Mohamad Rizal
    4TH INTERNATIONAL CONFERENCE ON THE SCIENCE AND ENGINEERING OF MATERIALS (ICOSEM 2019), 2020, 2284
  • [26] Experimental Study on the Seismic Performance of Macro-Synthetic Fiber-Reinforced Concrete Ductile Columns
    Ma, Hua
    Wang, Honghuan
    Li, Zhenbao
    Sun, Xinyu
    Zhang, Xuewei
    TRENDS IN CIVIL ENGINEERING, PTS 1-4, 2012, 446-449 : 2345 - 2350
  • [27] Reinforced concrete with synthetic fibers (PET plus PP) for rigid pavement structures
    Alexander Torres, Diego
    Gabriel Bastidas, Juan
    Ruge Cardenas, Juan Carlos
    2018 CONGRESO INTERNACIONAL DE INNOVACION Y TENDENCIAS EN INGENIERIA (CONIITI), 2018,
  • [28] Experimental study of the steel/CFRP interaction in shear-strengthened RC beams incorporating macro-synthetic fibers
    Altoubat, Salah
    Karzad, Abdul Saboor
    Maalej, Mohamed
    Barakat, Samer
    Junaid, Talha
    STRUCTURES, 2020, 25 : 88 - 98
  • [29] Recycling of Macro-Synthetic Fiber-Reinforced Concrete and Properties of New Concretes with Recycled Aggregate and Recovered Fibers
    Liu, Guanzhi
    Tosic, Nikola
    de la Fuente, Albert
    APPLIED SCIENCES-BASEL, 2023, 13 (04):
  • [30] Effect of pore structure on shear resistance and chloride transport of macro-synthetic fiber reinforced concrete
    Li, Yi
    Sheng, Junlei
    Tan, Kiang Hwee
    Gao, Yan
    CONSTRUCTION AND BUILDING MATERIALS, 2023, 382