Durability of micro-cracked UHPC subjected to coupled freeze-thaw and chloride salt attacks
Rui Zhong
1, 2, 3
,
Xianbing Ai
1
,
Mingyang Pan
1
,
Mingyan Pan
1
,
Yiming Yao
1
,
Cheng Zhao
1
,
Cheng Zhao
1
,
Peng Xin
1
,
Xin Peng
1
,
Jing-Quan Wang
1, 4
,
Wei Zhou
2
,
Wei Zhou
2
Тип публикации: Journal Article
Дата публикации: 2024-04-01
scimago Q1
wos Q1
БС1
SJR: 4.446
CiteScore: 22.5
Impact factor: 13.1
ISSN: 09589465, 1873393X
General Materials Science
Building and Construction
Краткое описание
The durability of ultra-high performance concrete (UHPC) with initial micro-cracking subjected to coupled freeze-thaw and chloride salt (FT-CS) attacks was investigated. The initial micro-cracking was introduced under controlled condition in the laboratory by pre-tensioning the dog-bone specimens and unloading them at a target strain of 1500 με. The micro-cracked UHPC specimens were then submerged in a sodium chloride solution with the concentration of 4 wt% and subjected to freeze-thaw (F-T) cycles. The micro-cracked UHPCs exhibited excellent chloride penetration resistance as evidenced by the consistently low chloride ion concentration (generally less than 0.5%) and the limited penetration depth (not exceeding 6 mm) even after undergoing 300 cycles of the coupled FT-CS attacks. The tensile strength and compressive strength of the micro-cracked UHPC were improved by 28.0% and 18.3% at 200 F-T cycles, respectively. The improvement in the mechanical properties can be attributed to the self-healing effect which densified the fiber-matrix interface and the matrix. Secondary hydration and carbonation were confirmed quantitatively by thermogravimetric test and qualitatively by scanning electron microscopy test. However, the detrimental effects stemming from the coupled FT-CS attacks outweighed the beneficial effect of self-healing at 300 F-T cycles, resulting in a decline in mechanical performance.
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ГОСТ
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Zhong R. et al. Durability of micro-cracked UHPC subjected to coupled freeze-thaw and chloride salt attacks // Cement and Concrete Composites. 2024. Vol. 148. p. 105471.
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Zhong R., Ai X., Pan M., Pan M., Yao Y., Zhao C., Zhao C., Xin P., Peng X., Wang J., Zhou W., Zhou W. Durability of micro-cracked UHPC subjected to coupled freeze-thaw and chloride salt attacks // Cement and Concrete Composites. 2024. Vol. 148. p. 105471.
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TY - JOUR
DO - 10.1016/j.cemconcomp.2024.105471
UR - https://linkinghub.elsevier.com/retrieve/pii/S095894652400043X
TI - Durability of micro-cracked UHPC subjected to coupled freeze-thaw and chloride salt attacks
T2 - Cement and Concrete Composites
AU - Zhong, Rui
AU - Ai, Xianbing
AU - Pan, Mingyang
AU - Pan, Mingyan
AU - Yao, Yiming
AU - Zhao, Cheng
AU - Zhao, Cheng
AU - Xin, Peng
AU - Peng, Xin
AU - Wang, Jing-Quan
AU - Zhou, Wei
AU - Zhou, Wei
PY - 2024
DA - 2024/04/01
PB - Elsevier
SP - 105471
VL - 148
SN - 0958-9465
SN - 1873-393X
ER -
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BibTex (до 50 авторов)
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@article{2024_Zhong,
author = {Rui Zhong and Xianbing Ai and Mingyang Pan and Mingyan Pan and Yiming Yao and Cheng Zhao and Cheng Zhao and Peng Xin and Xin Peng and Jing-Quan Wang and Wei Zhou and Wei Zhou},
title = {Durability of micro-cracked UHPC subjected to coupled freeze-thaw and chloride salt attacks},
journal = {Cement and Concrete Composites},
year = {2024},
volume = {148},
publisher = {Elsevier},
month = {apr},
url = {https://linkinghub.elsevier.com/retrieve/pii/S095894652400043X},
pages = {105471},
doi = {10.1016/j.cemconcomp.2024.105471}
}