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适用于不同暴露环境的耐久性结构再生混凝土。

Durable Structural Recycled Concrete for Different Exposure Environments.

作者信息

Vintimilla Carla, Etxeberria Miren

机构信息

Department of Civil and Environmental Engineering, Campus Nord, Universitat Politècnica de Catalunya·Barcelona TECH, 08034 Barcelona, Spain.

出版信息

Materials (Basel). 2025 Jan 28;18(3):587. doi: 10.3390/ma18030587.

Abstract

In this work, the influence of limited percentages of coarse (CRCA) and fine (FRCA) recycled concrete aggregates (Type A recycled aggregates) on the durability properties of structural concrete was analyzed. Concretes were designed using 50% and 60% CRCA with simultaneous additions of 0%, 10%, and 20% FRCA and different types of cement (CEM II/AL 42.5 R, CEM II/AS 42.5 N/SRC, and CEM III/B 42.5 N-LH/SR). Recycled aggregate concrete (RAC) and natural aggregate concrete (NAC) mixtures were produced with similar compressive strength using effective water-cement ratios of 0.47 and 0.5. The drying shrinkage values and durability properties were determined, and they included the chloride permeability, chloride penetration depth, and accelerated and natural carbonation rates. The findings revealed that RAC produced using CEM III/B, which included the mixture produced with 60% coarse RCA and 20% fine RCA, achieved low chloride ion penetrability (up to 850 Coulombs) and exhibited the lowest chloride diffusion coefficient, approximately 7 × 10. Additionally, the RAC-C60-F20 concretes made with CEM II/AS proved suitable for the XC3 and XC4 exposure environments, guaranteeing a lifespan of 50 and 100 years based on the natural carbonation rate. In addition, the RAC-C60-F20 concrete made with CEM II/AL cement exhibited an adequate natural carbonation rate for XC4 environments, which was between 1.6 and 2.4 units higher than the accelerated carbonation rate. This work validates the use of RAC in XC environments (corrosion induced by carbonation) and XS1 environments (corrosion caused by chlorides from seawater).

摘要

在本研究中,分析了有限比例的粗(CRCA)和细(FRCA)再生混凝土骨料(A型再生骨料)对结构混凝土耐久性的影响。使用50%和60%的CRCA,同时添加0%、10%和20%的FRCA以及不同类型的水泥(CEM II/AL 42.5 R、CEM II/AS 42.5 N/SRC和CEM III/B 42.5 N-LH/SR)设计混凝土。采用有效水灰比0.47和0.5制备了抗压强度相似的再生骨料混凝土(RAC)和天然骨料混凝土(NAC)混合物。测定了干燥收缩值和耐久性性能,包括氯离子渗透性、氯离子渗透深度以及加速碳化和自然碳化速率。研究结果表明,使用CEM III/B制备的RAC,包括由60%粗再生骨料和20%细再生骨料制成的混合物,具有较低的氯离子渗透性(高达850库仑),并且表现出最低的氯离子扩散系数,约为7×10。此外,用CEM II/AS制成的RAC-C60-F20混凝土被证明适用于XC3和XC4暴露环境,根据自然碳化速率保证了50年和100年的使用寿命。此外,用CEM II/AL水泥制成的RAC-C60-F20混凝土在XC4环境中表现出足够的自然碳化速率,比加速碳化速率高1.6至2.4个单位。这项工作验证了RAC在XC环境(碳化引起的腐蚀)和XS1环境(海水氯化物引起的腐蚀)中的使用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2845/11818246/00bdd6d25cdb/materials-18-00587-g003.jpg

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