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Concrete Modular Pavement Structures with Optimized Thickness Based on Characteristics of High Performance Concrete Mixtures with Fibers and Silica Fume

机译:基于高性能混凝土混合物与纤维和二氧化硅烟气的特点混凝土模块化路面结构

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摘要

Usually, C30/37 strength class concrete is used to construct concrete pavements on a rigid, semi-rigid or flexible base. Concrete with such a strength delivers essential design characteristics: flexural strength and tensile splitting strength are between 4.5–5.4 MPa and 2.8–3.7 MPa, respectively. Design characteristics can be significantly increased by densifying the concrete mixture, i.e., adding silica fume, steel or polypropylene macro fibers. As high-performance concrete characteristics are 20–60% higher than those for standard concrete (C30/37), new possibilities to reduce the thickness of concrete pavement slabs appear. The theoretical analysis of concrete pavement structures with high-performance concrete mixtures (C40/50, C45/55 and C50/60) showed that slab thickness could be reduced by 6–39% compared to a standard concrete pavement structure depending on the concrete properties and design method. From all those pavement structures, three concrete mixtures were determined as the most rational ones in terms of PCP thickness reduction and total pavement cost: (i) with 49.5 kg/m3 of steel fibers and 25.2 kg/m3 of silica fume; (ii) with 10.0 kg/m3 of polypropylene fibers (type A); (iii) with 49.5 kg/m3 of steel fibers.
机译:通常,C30 / 37强度类混凝土用于在刚性,半刚性或柔性底座上构建混凝土路面。具有这种强度的混凝土提供必要的设计特性:弯曲强度和拉伸分裂强度分别在4.5-5.4MPa和2.8-3.7MPa之间。通过使混凝土混合物致密化,即添加二氧化硅油烟,钢或聚丙烯宏观纤维,可以显着增加设计特性。随着高性能的混凝土特性高于标准混凝土(C30 / 37)的20-60%,出现了降低混凝土路面板厚度的新可能性。高性能混凝土混合物(C40 / 50,C45 / 55和C50 / 60)的混凝土路面结构的理论分析表明,与标准混凝土路面结构相比,平板厚度可降低6-39%,具体取决于混凝土的具体性能和设计方法。从所有这些路面结构,三种混凝土混合物在PCP厚度减少和总路面成本方面被确定为最合理的混合物:(i)具有49.5kg / m3的钢纤维和25.2kg / m3的二氧化硅烟雾; (ii)具有10.0kg / m 3的聚丙烯纤维(A型); (iii)49.5 kg / m3的钢纤维。

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