Hybrid Fiber Influence on the Crack Permeability of Cracked Concrete Exposed to Freeze-Thaw Cycles

被引:0
作者
Zeng, Wei [1 ,2 ]
Wang, Weiqi [1 ,2 ]
Wang, Qiannan [1 ,2 ]
Li, Mengya [3 ]
Zhang, Lining [4 ]
Tong, Yunyun [1 ,2 ]
机构
[1] Zhejiang Univ Sci & Technol, Sch Civil Engn & Architecture, Hangzhou 310023, Peoples R China
[2] Zhejiang Univ Sci & Technol, Zhejiang Int Sci & Technol Cooperat Base Waste Res, Hangzhou 310023, Peoples R China
[3] CY Cergy Paris Univ, Lab Mech & Mat Civil Engn L2MGC, EA 4114, F-95000 Paris, France
[4] Univ Auckland, Dept Mech & Mechatron Engn, Auckland 1010, New Zealand
关键词
crack permeability; hybrid fiber; crack surface; positive synergistic effect; splitting tensile load; WATER PERMEABILITY; ROUGHNESS; STRENGTH; SURFACES; STEEL; DURABILITY;
D O I
10.3390/ma17081819
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
This paper describes hybrid fiber's influence on the crack permeability of cracked concrete exposed to freeze-thaw cycles. A permeability setup and a laser-scanning setup have been designed to measure the crack permeability and the fractured surface roughness of cracked hybrid fiber-reinforced concrete, containing polypropylene fiber and steel fiber, under a splitting tensile load. The results show that, when the effective crack width of the specimens is less than 25 mu m, the rough crack surface significantly reduces the concrete's crack permeability. As the crack width increases, the effect of the concrete crack surface on crack permeability gradually decreases, and the crack permeability of the concrete is closer to the Poiseuille flow model. The permeability parameter alpha derived from the Poiseuille flow model is effective for assessing the crack permeability of concrete. Compared to the modified factor xi of crack permeability, the permeability parameter alpha can effectively evaluate and quantify the development trend of crack permeability within a certain range of crack widths. The permeability parameter alpha of SF20PP2.3, subjected to the same freeze-thaw cycles, decreases by 16.3-94.8% compared to PP4.6 and SF40, and SF20PP2.3 demonstrates a positive synergistic effect on the crack impermeability of cracked concrete. The crack impermeability of SF40PP2.3, subjected to the same freeze-thaw cycles, lies between that of PP6.9 and SF60. The roughness of crack surface (X) and the crack permeability (Y) are highly correlated and follow an exponential curve (Y = 1.0415 x 107<middle dot>e-6.025<middle dot>X) in concrete. This demonstrates that hybrid fibers enhance crack impermeability by increasing the crack surface roughness. Furthermore, the combination of polypropylene fiber and steel fiber effectively promotes the formation of micro-cracks and facilitates the propagation of multiple cracks in the concrete matrix. This combination increases the head loss of water flow through the concrete and decreases the crack permeability.
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页数:22
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