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Effect of aggressive environment on durability of concrete containing fibrous rubber shreds and silica fume

机译:侵蚀环境对含有纤维橡胶碎片混凝土耐用性的影响和硅粉

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The present study deals with the investigation of durability properties of reinforced concrete fabricated by incorporating fiber type rubber shreds as fine aggregate in concrete and silica fume as a supplementary cementitious material. Concrete designs were produced to replace natural fine aggregate and cement by rubber shreds, and silica fume, respectively. The concrete mixes were studied for compressive strength up to 365 days, abrasion resistance, and water absorption up to 28 days. The carbonation and acid resistance (H2SO4 and HCl) properties were studied up to 90 and 180 days, respectively. Corrosion samples were tested up to 18 months for both macrocell current and half-cell potential. The incorporation of rubber shreds lowered the compressive strength of concrete and resistance to water absorption, carbonation, and corrosion. However, the resistance to abrasion and acid attack was enhanced on the utilization of rubber shreds in concrete. The presence of silica fume considerably enhanced the mechanical and durability properties of rubber shreds concrete and lowered the probability of corrosion.
机译:本研究涉及通过将纤维型橡胶碎片掺入混凝土和硅粉中的细骨料作为补充水泥材料的细聚集体进行耐燃烧混凝土耐久性性能的研究。产生混凝土设计以分别通过橡胶碎片和硅粉替代天然细骨料和水泥。研究了混凝土混合物,用于抗压强度,可达365天,耐磨性和吸水率,高达28天。研究了碳酸化和耐酸性(H 2 SO 4和HCl)的性质,分别高达90和180天。对于宏小区电流和半电池电位,腐蚀样品最多可测试18个月。橡胶碎片的掺入降低了混凝土的抗压强度和对吸水性,碳酸化和腐蚀的抗压性。然而,对混凝土中的橡胶碎片的利用增强了对磨损和酸攻击的抗性。二氧化硅烟气的存在显着提高了橡胶碎片混凝土的机械和耐久性,并降低了腐蚀的概率。

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