Experimental Study on the Mechanical Properties and Compression Size Effect of Recycled Aggregate Concrete
To explore the basic mechanical properties and size effects of recycled aggregate concrete (RAC) with different substitution ratios of coarse recycled concrete aggregates (CRCAs) to replace natural coarse aggregates (NCA), the failure modes and mechanical parameters of RAC under different loading co...
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doaj-9df2abafc6e744c390aa4dba08429ffb2021-04-29T23:07:06ZengMDPI AGMaterials1996-19442021-04-01142323232310.3390/ma14092323Experimental Study on the Mechanical Properties and Compression Size Effect of Recycled Aggregate ConcreteYubing Du0Zhiqing Zhao1Qiang Xiao2Feiting Shi3Jianming Yang4Peiwei Gao5Department of Civil and Airport Engineering, College of Civilaviation (College of Flight), Nanjing University of Aeronautics and Astronautics, Nanjing 210016, ChinaGlobal Institute of Software Technology, School of Art and Architecture, Suzhou 215163, ChinaJiangsu Water Conservancy Construction Engineering Co. Ltd., Yangzhou 225004, ChinaCollege of Civil Engineering, Yancheng Institute of Technology, Yancheng 224051, ChinaCollege of Civil Engineering, Yancheng Institute of Technology, Yancheng 224051, ChinaDepartment of Civil and Airport Engineering, College of Civilaviation (College of Flight), Nanjing University of Aeronautics and Astronautics, Nanjing 210016, ChinaTo explore the basic mechanical properties and size effects of recycled aggregate concrete (RAC) with different substitution ratios of coarse recycled concrete aggregates (CRCAs) to replace natural coarse aggregates (NCA), the failure modes and mechanical parameters of RAC under different loading conditions including compression, splitting tensile resistance and direct shear were compared and analyzed. The conclusions drawn are as follows: the failure mechanisms of concrete with different substitution ratios of CRCAs are similar; with the increase in substitution ratio, the peak compressive stress and peak tensile stress of RAC decrease gradually, the splitting limit displacement decreases, and the splitting tensile modulus slightly increases; with the increase in the concrete cube’s side length, the peak compressive stress of RAC declines gradually, but the integrity after compression is gradually improved; and the increase in the substitution ratio of the recycled aggregate reduces the impact of the size effect on the peak compressive stress of RAC. Furthermore, an influence equation of the coupling effect of the substitution ratio and size effect on the peak compressive stress of RAC was quantitatively established. The research results are of great significance for the engineering application of RAC and the strength selection of RAC structure design.https://www.mdpi.com/1996-1944/14/9/2323aggregate substitution ratiorecycled aggregate concretebasic mechanical propertiessize effectexperimental study |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Yubing Du Zhiqing Zhao Qiang Xiao Feiting Shi Jianming Yang Peiwei Gao |
spellingShingle |
Yubing Du Zhiqing Zhao Qiang Xiao Feiting Shi Jianming Yang Peiwei Gao Experimental Study on the Mechanical Properties and Compression Size Effect of Recycled Aggregate Concrete Materials aggregate substitution ratio recycled aggregate concrete basic mechanical properties size effect experimental study |
author_facet |
Yubing Du Zhiqing Zhao Qiang Xiao Feiting Shi Jianming Yang Peiwei Gao |
author_sort |
Yubing Du |
title |
Experimental Study on the Mechanical Properties and Compression Size Effect of Recycled Aggregate Concrete |
title_short |
Experimental Study on the Mechanical Properties and Compression Size Effect of Recycled Aggregate Concrete |
title_full |
Experimental Study on the Mechanical Properties and Compression Size Effect of Recycled Aggregate Concrete |
title_fullStr |
Experimental Study on the Mechanical Properties and Compression Size Effect of Recycled Aggregate Concrete |
title_full_unstemmed |
Experimental Study on the Mechanical Properties and Compression Size Effect of Recycled Aggregate Concrete |
title_sort |
experimental study on the mechanical properties and compression size effect of recycled aggregate concrete |
publisher |
MDPI AG |
series |
Materials |
issn |
1996-1944 |
publishDate |
2021-04-01 |
description |
To explore the basic mechanical properties and size effects of recycled aggregate concrete (RAC) with different substitution ratios of coarse recycled concrete aggregates (CRCAs) to replace natural coarse aggregates (NCA), the failure modes and mechanical parameters of RAC under different loading conditions including compression, splitting tensile resistance and direct shear were compared and analyzed. The conclusions drawn are as follows: the failure mechanisms of concrete with different substitution ratios of CRCAs are similar; with the increase in substitution ratio, the peak compressive stress and peak tensile stress of RAC decrease gradually, the splitting limit displacement decreases, and the splitting tensile modulus slightly increases; with the increase in the concrete cube’s side length, the peak compressive stress of RAC declines gradually, but the integrity after compression is gradually improved; and the increase in the substitution ratio of the recycled aggregate reduces the impact of the size effect on the peak compressive stress of RAC. Furthermore, an influence equation of the coupling effect of the substitution ratio and size effect on the peak compressive stress of RAC was quantitatively established. The research results are of great significance for the engineering application of RAC and the strength selection of RAC structure design. |
topic |
aggregate substitution ratio recycled aggregate concrete basic mechanical properties size effect experimental study |
url |
https://www.mdpi.com/1996-1944/14/9/2323 |
work_keys_str_mv |
AT yubingdu experimentalstudyonthemechanicalpropertiesandcompressionsizeeffectofrecycledaggregateconcrete AT zhiqingzhao experimentalstudyonthemechanicalpropertiesandcompressionsizeeffectofrecycledaggregateconcrete AT qiangxiao experimentalstudyonthemechanicalpropertiesandcompressionsizeeffectofrecycledaggregateconcrete AT feitingshi experimentalstudyonthemechanicalpropertiesandcompressionsizeeffectofrecycledaggregateconcrete AT jianmingyang experimentalstudyonthemechanicalpropertiesandcompressionsizeeffectofrecycledaggregateconcrete AT peiweigao experimentalstudyonthemechanicalpropertiesandcompressionsizeeffectofrecycledaggregateconcrete |
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1721499997443194880 |