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创新再生骨料透水混凝土关键性能及模型建立研究

Study on Key Properties and Model Establishment of Innovative Recycled Aggregate Pervious Concrete.

作者信息

Zhao Panfeng, Zhou Jingfei, Zhang Zhengnan, Chen Shoukai

机构信息

Sinohydro Foundation Engineering Co., Ltd., Tianjin 301700, China.

School of Water Conservancy, North China University of Water Resources and Electric Power, Zhengzhou 450046, China.

出版信息

Materials (Basel). 2024 Jul 17;17(14):3535. doi: 10.3390/ma17143535.

Abstract

In order to meet the needs of low-impact development and sustainable development, there is an urgent desire to develop an innovative recycled aggregate pervious concrete (I-RAPC) that is of high strength and permeability. In this study, I-RAPC was prepared based on response surface methodology (RSM) using recycled aggregate, river sand, and different types of pipes as the materials, and the effects of different pipe parameters (number, diameter, material, and distribution form) on the performance of I-RAPC were investigated. In addition, the calculation model of the compressive strength and the permeability coefficient of I-RAPC were proposed. The results showed that the frontal- and lateral-compressive strengths of I-RAPC were 39.8 MPa and 42.5 MPa, respectively, when the pipe material was acrylic, the position was 1EM, and the diameter was 10 mm-at which time the permeability coefficient was 3.02 mm/s, which was the highest in this study. The maximum relative errors of the compressive strength calculation model and the permeability coefficient calculation model were only 7.52% and 4.42%, respectively, as shown by the post hoc test. Therefore, I-RAPC has the advantages of high strength and permeability and is expected to be applied in low-impact development in cities with heavy surface sediment content and rainfall.

摘要

为满足低影响开发和可持续发展的需求,迫切需要开发一种具有高强度和高渗透性的创新型再生骨料透水混凝土(I-RAPC)。在本研究中,基于响应面法(RSM),以再生骨料、河砂和不同类型的管材为原料制备了I-RAPC,并研究了不同管材参数(数量、直径、材料和分布形式)对I-RAPC性能的影响。此外,还提出了I-RAPC抗压强度和渗透系数的计算模型。结果表明,当管材为丙烯酸、位置为1EM、直径为10mm时,I-RAPC的正面抗压强度和侧面抗压强度分别为39.8MPa和42.5MPa,此时渗透系数为3.02mm/s,为该研究中的最高值。事后检验结果表明,抗压强度计算模型和渗透系数计算模型的最大相对误差分别仅为7.52%和4.42%。因此,I-RAPC具有高强度和高渗透性的优点,有望应用于地表沉积物含量大且降雨量大的城市的低影响开发中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7cd5/11278775/8280c8f02742/materials-17-03535-g001.jpg

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