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Faculties & Institutes
INSTITUTE OF AP... [10]
Authors
LI ZONGJIN [8]
SUN GUOXING [3]
CHEN BINMENG [2]
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Journal article [26]
Date Issued
2023 [2]
2022 [2]
2019 [1]
2018 [1]
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2016 [2]
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英語English [26]
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Construction and... [7]
CONSTRUCTION AND... [4]
Cement and Concr... [3]
CEMENT & CONCRET... [2]
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Cement and Concr... [1]
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Yield stress of in-situ polymerization modified cement paste
Journal article
Sun, Zhaoyang, Li, Yunjian, Ming, Xing, Liu, Qing, Li, Zongjin, Chen, Binmeng. Yield stress of in-situ polymerization modified cement paste[J]. Cement and Concrete Research, 2023, 174, 107346.
Authors:
Sun, Zhaoyang
;
Li, Yunjian
;
Ming, Xing
;
Liu, Qing
;
Li, Zongjin
; et al.
Favorite
|
TC[WOS]:
9
TC[Scopus]:
12
IF:
10.9
/
14.4
|
Submit date:2024/01/02
Adsorption (c)
Cement Paste (d)
In-situ Polymerization
Rheology (a)
Enhancing anti-washout behavior of cement paste by polyacrylamide gelation: from floc properties to mechanism
Journal article
Zhaoyang, Sun, Yunjian, Li, Xing, Ming, Binmeng, Chen, Zongjin, Li. Enhancing anti-washout behavior of cement paste by polyacrylamide gelation: from floc properties to mechanism[J]. Cement and Concrete Composites, 2023, 136, 104887.
Authors:
Zhaoyang, Sun
;
Yunjian, Li
;
Xing, Ming
;
Binmeng, Chen
;
Zongjin, Li
Favorite
|
TC[WOS]:
23
TC[Scopus]:
28
IF:
10.8
/
11.2
|
Submit date:2023/02/22
Anti-washout Admixture
Gelation
Cement Paste
Floc Properties
Light Scattering Method
Effect of super water absorbing polymer based anti-washout admixtures on the properties of seawater-mixed cement paste
Journal article
Guo, Hongda, Xu, Jianyu, Tang, Ziqing, Liu, Qing, Wang, Miaomiao, Liang, Rui, Sun, Guoxing. Effect of super water absorbing polymer based anti-washout admixtures on the properties of seawater-mixed cement paste[J]. MATERIALS AND STRUCTURES, 2022, 55(2), 59.
Authors:
Guo, Hongda
;
Xu, Jianyu
;
Tang, Ziqing
;
Liu, Qing
;
Wang, Miaomiao
; et al.
Favorite
|
TC[WOS]:
15
TC[Scopus]:
16
IF:
3.4
/
4.0
|
Submit date:2022/03/28
Anti-washout Cement Paste
Hydrogen Bond
Hydroxypropyl Methylcellulose (Hpmc)
Seawater-mixed Cement Paste
Viscosity
Washout Loss
Early-age properties of cementitious pastes made with seawater
Journal article
Parthasarathy, Pavithra, Hanif, Asad, Li, Zongjin. Early-age properties of cementitious pastes made with seawater[J]. Materials Today: Proceedings, 2022, 65, 707-714.
Authors:
Parthasarathy, Pavithra
;
Hanif, Asad
;
Li, Zongjin
Favorite
|
TC[WOS]:
5
TC[Scopus]:
5
|
Submit date:2022/05/17
Cement Paste
Early-age Properties
Hydration
Microstructure
Seawater
Aggregation size effect of graphene oxide on its reinforcing efficiency to cement-based materials
Journal article
Lu,Zeyu, Chen,Binmeng, Leung,Christopher K.Y., Li,Zongjin, Sun,Guoxing. Aggregation size effect of graphene oxide on its reinforcing efficiency to cement-based materials[J]. Cement and Concrete Composites, 2019, 100, 85-91.
Authors:
Lu,Zeyu
;
Chen,Binmeng
;
Leung,Christopher K.Y.
;
Li,Zongjin
;
Sun,Guoxing
Favorite
|
TC[WOS]:
72
TC[Scopus]:
77
IF:
10.8
/
11.2
|
Submit date:2021/03/09
Aggregation Size
Cement Paste And Mortar
Graphene Oxide (Go)
Mechanical Properties
Highly dispersed graphene oxide electrodeposited carbon fiber reinforced cement-based materials with enhanced mechanical properties
Journal article
Lu, Zeyu, Hanif, Asad, Sun, Guoxing, Liang, Rui, Parthasarathy, Pavithra, Li, Zongjin. Highly dispersed graphene oxide electrodeposited carbon fiber reinforced cement-based materials with enhanced mechanical properties[J]. CEMENT & CONCRETE COMPOSITES, 2018, 87, 220-228.
Authors:
Lu, Zeyu
;
Hanif, Asad
;
Sun, Guoxing
;
Liang, Rui
;
Parthasarathy, Pavithra
; et al.
Favorite
|
TC[WOS]:
124
TC[Scopus]:
141
IF:
10.8
/
11.2
|
Submit date:2018/10/30
Graphene Oxide
Carbon Fiber
Electrophoretic Depositing Method
Mechanical Properties
Cement Paste
A novel early-age shrinkage measurement method based on non-contact electrical resistivity and FBG sensing techniques
Journal article
Pei, Huafu, Shao, Hongyu, Li, Zongjin. A novel early-age shrinkage measurement method based on non-contact electrical resistivity and FBG sensing techniques[J]. CONSTRUCTION AND BUILDING MATERIALS, 2017, 156, 1158-1162.
Authors:
Pei, Huafu
;
Shao, Hongyu
;
Li, Zongjin
Favorite
|
TC[WOS]:
15
TC[Scopus]:
15
IF:
7.4
/
8.0
|
Submit date:2018/10/30
Fiber Bragg Grating
Non-contact Electric Resistivity
Shrinkage
Cement Paste
Critical features of microstructure development of early-age cement paste revealed by non-contact electrical resistivity measurement
Journal article
Chen, Jun, Li, Zongjin, Jin, Xianyu. Critical features of microstructure development of early-age cement paste revealed by non-contact electrical resistivity measurement[J]. CONSTRUCTION AND BUILDING MATERIALS, 2017, 154, 1121-1129.
Authors:
Chen, Jun
;
Li, Zongjin
;
Jin, Xianyu
Favorite
|
TC[WOS]:
22
TC[Scopus]:
25
IF:
7.4
/
8.0
|
Submit date:2018/10/30
Cement Paste
Early-age
Microstructure
Non-contact Electrical Methods
Modelling
Early-age interaction mechanism between the graphene oxide and cement hydrates
Journal article
Lu, Zeyu, Li, Xiangyu, Hanif, Asad, Chen, Binmeng, Parthasarathy, Pavithra, Yu, Jinguang, Li, Zongjin. Early-age interaction mechanism between the graphene oxide and cement hydrates[J]. CONSTRUCTION AND BUILDING MATERIALS, 2017, 152, 232-239.
Authors:
Lu, Zeyu
;
Li, Xiangyu
;
Hanif, Asad
;
Chen, Binmeng
;
Parthasarathy, Pavithra
; et al.
Favorite
|
TC[WOS]:
143
TC[Scopus]:
167
IF:
7.4
/
8.0
|
Submit date:2018/10/30
Early-age Interaction
Graphene Oxide (Go)
Cement Paste
Hydration
Microstructures
Drying Shrinkage
Effects of graphene oxide aggregates on hydration degree, sorptivity, and tensile splitting strength of cement paste
Journal article
Li X., Lu Z., Chuah S., Li W., Liu Y., Duan W.H., Li Z.. Effects of graphene oxide aggregates on hydration degree, sorptivity, and tensile splitting strength of cement paste[J]. Composites Part A: Applied Science and Manufacturing, 2017, 100, 1-8.
Authors:
Li X.
;
Lu Z.
;
Chuah S.
;
Li W.
;
Liu Y.
; et al.
Favorite
|
TC[WOS]:
165
TC[Scopus]:
190
|
Submit date:2019/04/08
Aggregates
Cement Paste
Graphene Oxide
Hydration
Sorptivity
Tensile Strength