4.6 Article

Effect of Manufactured Sand with Different Quality on Chloride Penetration Resistance of High-Strength Recycled Concrete

期刊

MATERIALS
卷 14, 期 22, 页码 -

出版社

MDPI
DOI: 10.3390/ma14227101

关键词

manufactured sand; chloride penetration resistance; recycled aggregate concrete; high-strength concrete

资金

  1. National Natural Science Foundation of China [52108190]
  2. Prospective Joint Research Project of Jiangsu Province [BY2020471]

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The study investigated the variation laws of compressive strength and chloride penetration resistance in high-strength MSRAC with different qualities of manufactured sand. It was found that high-quality manufactured sand can effectively enhance the compressive strength of concrete.
High-strength manufactured sand recycled aggregate concrete (MSRAC) prepared with manufactured sand (MS) and recycled coarse aggregate (RCA) is an effective way to reduce the consumption of natural aggregate resources and environmental impact of concrete industry. In this study, high-, medium- and low-quality MS, which were commercial MS local to Changzhou and 100% by volume of recycled coarse aggregate, were used to prepare MSRAC. The quality of MS was determined based on stone powder content, methylene blue value (MBV), crushing value and soundness as quality characteristic parameters. The variation laws of compressive strength and chloride penetration resistance of high-strength MSRAC with different rates of replacement and different qualities of MS were explored. The results showed that for medium- and low-quality MS, the compressive strength of the MSRAC increased first and then decreased with increasing rate of replacement. Conversely, for high-quality MS, the compressive strength gradually increased with increasing rate of replacement. The chloride diffusion coefficient of MSRAC increased with decreasing MS quality and increasing rate of replacement. The chloride diffusion coefficient of MSRAC basically met the specifications for 50-year and 100-year design working life when the chloride environmental action was D and E. To prepare high-strength MSRAC, high-quality MS can 100% replace RS (river sand), while rates of replacement of 50-75% for medium-quality MS or 25-50% for low-quality MS are proposed. Scanning Electron Microscope (SEM) images indicated that an appropriate amount of stone powder is able to improve the compressive strength of RAC, but excessive stone powder content and MBV are unfavorable to the compressive strength and chloride penetration resistance of RAC.

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