INORGANIC MATERIALS AND CERAMIC MATRIX COMPOSITES |
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Research Progress on Compressive Strength and Durability of Recycled Concrete Based on Literature Cluster Analysis |
HAI Ran1, CUI Li2,*, ZHAI Shengtian2, LIU Junxia3, HUI Cun3, WANG Chaosheng2
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1 School of Materials Science and Engineering, Henan University of Science and Technology, Luoyang 471000, Henan, China 2 School of Civil Engineering and Architecture, Henan University of Science and Technology, Luoyang 471000, Henan, China 3 School of Civil Engineering, Zhongyuan University of Technology, Zhengzhou 451191, China |
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Abstract With the continuous renewal of research methods, the research achievements in the field of recycled aggregate concrete have accumulated rapidly, but the contradiction between this and the current application of recycled aggregate concrete in service based on the lag theory is increasingly intensified. Based on this, this paper searches the latest research results on mechanical properties and durability of recycled aggregate concrete at home and abroad, with a time span of 2019—2024, conducts cluster analysis on high-frequency co-occurrence keywords. It is found that recycled aggregate concrete is still an effective means of solid waste treatment and carbon emission reduction, and the current studies mainly focus on compressive strength and durability, meanwhile recycled ultra-high performance concrete has gradually become a research focus. This paper further summarizes the latest research on the effects of aggregate source and replacement rate, mineral admixtures, interface transition zone on compressive strength, and the research progress of freeze-thaw cycle effect, carbonization, chloride ion permeability on durability as well. Finally, based on the literature search results and main research results, the possible future research trends in the field of recycled aggregate concrete are given. The research results aim to accelerate the transformation of the latest research results on mechanical properties of recycled aggregate concrete to its application, and provide a fundamental basis for realizing the strategic goal of “double carbon”.
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Published:
Online: 2025-08-28
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