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Study on the Permeability of Recycled Aggregate Pervious Concrete with Fibers

机译:纤维再生骨料渗透混凝土的渗透性研究

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摘要

Pervious concrete is considered to be porous concrete because of its pore structure and excellent permeability. In general, larger porosity will increase the permeability coefficient, but will significantly decrease the compressive strength. The effects of water-cement ratio, fiber types, and fiber content on the permeability coefficient, porosity, compressive strength, and flexural strength were investigated. The pore tortuosity of the pervious concrete was determined by volumetric analysis and two-dimensional cross-sectional image analysis. The concept and calculation method of porosity tortuosity were further proposed. Results show that the permeability coefficient of the pervious concrete is the most suitable with a water-cement ratio of 0.30; the water permeability of the pervious concrete is influenced by fiber diameter. The permeability coefficient of pervious concrete with polypropylene thick fiber (PPTF) is greater than that with copper coated steel fiber (CCF) and the polypropylene fiber (PPF). The permeability coefficient is related to tortuosity and porosity, but when porosity is the same, the permeability coefficient may be different. Finally, general relations between the permeability coefficient and porosity tortuosity are constructed.
机译:渗透混凝土由于其孔结构和优异的渗透性而被认为是多孔混凝土。通常,较大的孔隙率将增加渗透系数,但会显着降低抗压强度。研究了水灰比,纤维类型和纤维含量对渗透系数,孔隙率,抗压强度和抗弯强度的影响。通过体积分析和二维截面图像分析确定透水混凝土的孔隙曲率。进一步提出了孔隙曲率的概念和计算方法。结果表明,透水混凝土的渗透系数最合适,水灰比为0.30。渗透混凝土的透水性受纤维直径的影响。聚丙烯粗纤维(PPTF)的透水混凝土的渗透系数大于铜包钢纤维(CCF)和聚丙烯纤维(PPF)的透水混凝土的渗透系数。渗透系数与曲折度和孔隙率有关,但是当孔隙率相同时,渗透系数可能不同。最后,构造了渗透系数与孔隙曲率之间的一般关系。

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