Mechanical Properties of Permeable Concrete Reinforced with Polypropylene Fibers for Different Water-Cement Ratios

被引:0
|
作者
Ramirez, Wladimir [1 ]
Mayacela, Margarita [2 ]
Contreras, Luis [2 ]
Shambi, Alejandra [3 ]
Ramirez, Francisco [4 ]
Chacon, Jonatan [5 ]
机构
[1] Tech Univ Ambato, Fac Civil & Mech Engn, Ambato 180207, Ecuador
[2] Tech Univ Ambato, Fac Civil & Mech Engn, Res & Dev Directorate, Ambato 180207, Ecuador
[3] Dept Engn Engn & Qual Consulting, Ambato 180207, Ecuador
[4] Municipal Ruminahui, Quito 171103, Ecuador
[5] Builder & Consultant Chacon & Chacon CCJACE Cia Lt, Ambato 050111, Ecuador
关键词
permeable concrete; polypropylene fibers; compressive strength; flexural strength; water-cement ratio; PERVIOUS CONCRETE; PERFORMANCE;
D O I
10.3390/buildings14092935
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
Permeable concrete is a material that allows water filtration, reduces surface runoff, and maintains the natural water cycle. Previous studies have shown that its mechanical properties, particularly its compressive and flexural tensile strengths, are generally lower than those of conventional concrete, with significant variability observed among similar tests. This study investigates the compressive strength, flexural strength, and permeability of polypropylene fiber-reinforced permeable concrete specimens at two water-cement ratios (0.30 and 0.35). The mix design was conducted using the ACI 522R-10 method. Forty-eight cylinders measuring 200 mm x 100 mm were fabricated for permeability and compression tests. Additionally, 12 beams measuring 100 mm x 100 mm x 350 mm were produced and subjected to simple flexural testing in accordance with ASTM C78 guidelines. Compressive strength versus permeability and load versus deflection graphs were plotted, and the fracture energy was calculated for various deflections. The results indicate that the addition of fibers increased permeability and tensile strength but decreased compressive strength. Furthermore, an increase in the water-cement ratio led to higher compressive and flexural tensile strengths.
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页数:14
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