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Influence of steam curing on the pore structures and mechanical properties of fly-ash high performance concrete prepared with recycled aggregates

机译:蒸汽养护对再生骨料粉煤灰高性能混凝土孔结构和力学性能的影响

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摘要

In this research work, High Performance Concrete (HPC) was produced employing 30% of fly ash and 70% of Portland cement as binder materials. Three types of coarse recycled concrete aggregates (RCA) sourced from medium to high strength concretes were employed as 100% replacement of natural aggregates for recycled aggregate concrete (RAC) production. The specimens of four types of concretes (natural aggregate concrete (NAC) and three RACs) were subjected to initial steam curing besides the conventional curing process. The use of high quality RCA (>100 MPa) in HPC produced RAC with similar or improved pore structures, compressive and splitting tensile strengths, and modulus of elasticity to those of NAC. It was determined that the mechanical and physical behaviour of HPC decreased with the reduction of RCA quality. Nonetheless steam-cured RACs had greater reductions of porosity up to 90 days than NAC, which led to lower capillary pore volume.
机译:在这项研究工作中,使用30%的粉煤灰和70%的波特兰水泥作为粘结剂材料生产了高性能混凝土(HPC)。从中高强度混凝土中提取了三种类型的粗再生混凝土骨料(RCA),以100%替代天然骨料来生产再生骨料混凝土(RAC)。除常规固化工艺外,还对四种类型的混凝土(天然骨料混凝土(NAC)和三种RAC)的标本进行了初始蒸汽养护。在HPC中使用高质量的RCA(> 100 MPa)可生产出具有与NAC相似或改善的孔结构,抗压和劈裂抗张强度以及弹性模量的RAC。已经确定,随着RCA质量的降低,HPC的机械和物理行为降低。但是,与NAC相比,蒸汽固化的RAC在90天之内的孔隙率降低幅度更大,从而导致较低的毛细孔容积。

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