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作者:

Wang, Jiangang (Wang, Jiangang.) | Zhang, Jinxi (Zhang, Jinxi.) (学者:张金喜) | Cao, Dandan (Cao, Dandan.)

收录:

EI SCIE

摘要:

The influences and mechanisms of single and coupled effect of carbonation, dry-wet cycles and freeze–thaw cycles on the durability of three types of recycled aggregate concrete were studied. The compressive strength, chloride ion migration coefficient and micro pore parameters of recycled aggregate concrete were tested. The results showed that carbonation and dry-wet cycles can improve the pore tortuosity and reduce the connectivity of pores, while freeze–thaw cycles, coupling of carbonation and freeze–thaw cycles, and coupling of carbonation, dry-wet cycles and freeze–thaw cycles can significantly reduce the pore tortuosity and deteriorate the pore structure. The key reason for durability failure of recycled aggregate concrete in a complex environment is the increase of large pore volume fraction. When more factors are coupled, the increase in the pore volume fraction is greater. Based on the pore tortuosity and large pore volume fraction, an integrated pore index was proposed, and a prediction model of compressive strength and chloride ion migration coefficient of recycled aggregate concrete under complex environmental factors was established, which provided the basis to evaluate and maintain the durability of recycled aggregate concrete. © 2020 Elsevier Ltd

关键词:

Aggregates Carbonation Chlorine compounds Compressive strength Concrete aggregates Concretes Durability Pore structure Predictive analytics Recycling Thawing Volume fraction

作者机构:

  • [ 1 ] [Wang, Jiangang]Beijing Key Laboratory of Transportation Engineering, Beijing University of Technology, Beijing; 100124, China
  • [ 2 ] [Wang, Jiangang]Solid Waste R & D Center, Beijing Urban Green Source Environmental Protection Technology Co., Ltd, Beijing; 102601, China
  • [ 3 ] [Zhang, Jinxi]Beijing Key Laboratory of Transportation Engineering, Beijing University of Technology, Beijing; 100124, China
  • [ 4 ] [Cao, Dandan]Beijing Key Laboratory of Transportation Engineering, Beijing University of Technology, Beijing; 100124, China

通讯作者信息:

  • 张金喜

    [zhang, jinxi]beijing key laboratory of transportation engineering, beijing university of technology, beijing; 100124, china

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来源 :

Construction and Building Materials

ISSN: 0950-0618

年份: 2021

卷: 272

7 . 4 0 0

JCR@2022

ESI学科: MATERIALS SCIENCE;

ESI高被引阀值:8

被引次数:

WoS核心集被引频次: 0

SCOPUS被引频次: 42

ESI高被引论文在榜: 0 展开所有

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