Correlations among physical properties of pervious concrete with different aggregate sizes and mix proportions

Fuente: arXiv
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Auteurs principaux: Lyu, Qifeng, Dai, Pengfei, Chen, Anguo
Format: Preprint
Publié: 2024
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author Lyu, Qifeng
Dai, Pengfei
Chen, Anguo
author_facet Lyu, Qifeng
Dai, Pengfei
Chen, Anguo
contents Permeable pavement material can benefit urban environment. Here in this work, different aggregate sizes and mix proportions were used to manufacture pervious pavement concrete and investigate correlations among its properties. The porosity, permeability, compressive strength, inner structure, thermal conductivity, and abrasion resistance of the specimens were obtained. Results showed lower aggregate-to-cement ratios and higher water-to-cement ratios led to porosity reduction, which decreased the permeability coefficient but increased the compressive strength, thermal conductivity, and abrasion resistance of the pervious concrete. Compared to the mixes, the aggregate sizes affected the physical properties of pervious concrete less. However, the sizes of pores and cement in the pervious concrete were more affected by aggregate sizes than by mixes. Moreover, the porosity, permeability coefficient, and compressive strength of the pervious concrete can be correlated by the power law, whereas the correlation between the porosity and abrasion resistance index can be fitted by a linear law.
format Preprint
id arxiv_https___arxiv_org_abs_2406_04372
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Correlations among physical properties of pervious concrete with different aggregate sizes and mix proportions
Lyu, Qifeng
Dai, Pengfei
Chen, Anguo
Materials Science
Fluid Dynamics
Permeable pavement material can benefit urban environment. Here in this work, different aggregate sizes and mix proportions were used to manufacture pervious pavement concrete and investigate correlations among its properties. The porosity, permeability, compressive strength, inner structure, thermal conductivity, and abrasion resistance of the specimens were obtained. Results showed lower aggregate-to-cement ratios and higher water-to-cement ratios led to porosity reduction, which decreased the permeability coefficient but increased the compressive strength, thermal conductivity, and abrasion resistance of the pervious concrete. Compared to the mixes, the aggregate sizes affected the physical properties of pervious concrete less. However, the sizes of pores and cement in the pervious concrete were more affected by aggregate sizes than by mixes. Moreover, the porosity, permeability coefficient, and compressive strength of the pervious concrete can be correlated by the power law, whereas the correlation between the porosity and abrasion resistance index can be fitted by a linear law.
title Correlations among physical properties of pervious concrete with different aggregate sizes and mix proportions
topic Materials Science
Fluid Dynamics
url https://arxiv.org/abs/2406.04372