收缩率
骨料(复合)
材料科学
复合材料
期限(时间)
量子力学
物理
作者
Hanghua Zhang,Jianzhuang Xiao,Yuxiang Tang,Zhenhua Duan,Chi Sun Poon
标识
DOI:10.1016/j.cemconcomp.2022.104527
摘要
To advance the research on recycled concrete (RC), recycled coarse aggregate (RCA), recycled fine aggregate (RFA) and recycled powder (RP) were used in preparing fully recycled aggregate concrete (FRAC), which lead to more comprehensive usage in the recycling of concrete waste. Recycled aggregates were studied as types of aggregate combinations instead of partial substitutes, and four aggregate combinations were designed with the use of natural and recycled aggregates in this study. The effects of different aggregate combinations on the long-term mechanical and shrinkage properties of concrete were examined. Furthermore, the effects of using RP on the properties of FRAC were studied. The results showed that using fully recycled aggregate (FRA) combinations had negative effects on the long-term mechanical and shrinkage properties of concrete, which were consistent with previous research on recycled concrete. However, the effect caused by FRA combination were found to be higher than the sum of that caused by fully recycled coarse aggregate and fully recycled fine aggregate combination. Moreover, RP decreased the mechanical properties of FRAC by 5%–17% whereas the shrinkage strain of FRAC in 180 days were decreased by 3%–13% with the increase of RP content from 10% to 30%. A long-term shrinkage model suitable for FRAC was derived by adding modification coefficients for aggregate combinations and RP contents to the current models. • Fully recycled concrete (FRC) is developed with recycled aggregate and powder. • Long-term mechanical and shrinkage properties of FRC are experimental studied. • Models for long-term shrinkage of FRC are developed and evaluated.
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