Crossref Citations
This article has been cited by the following publications. This list is generated based on data provided by
Crossref.
Phair, John W.
2006.
Green chemistry for sustainable cement production and use.
Green Chemistry,
Vol. 8,
Issue. 9,
p.
763.
Smith, Richard L.
and
Fang, Zhen
2009.
Techniques, applications and future prospects of diamond anvil cells for studying supercritical water systems.
The Journal of Supercritical Fluids,
Vol. 47,
Issue. 3,
p.
431.
Chen, Jun
Jayapalan, Amal R.
Kim, Jin-Yeon
Kurtis, Kimberly E.
and
Jacobs, Laurence J.
2010.
Rapid evaluation of alkali–silica reactivity of aggregates using a nonlinear resonance spectroscopy technique.
Cement and Concrete Research,
Vol. 40,
Issue. 6,
p.
914.
Charpin, Laurent
and
Ehrlacher, Alain
2012.
A computational linear elastic fracture mechanics-based model for alkali–silica reaction.
Cement and Concrete Research,
Vol. 42,
Issue. 4,
p.
613.
Moon, Juhyuk
Speziale, Sergio
Meral, Cagla
Kalkan, Bora
Clark, Simon M.
and
Monteiro, Paulo J.M.
2013.
Determination of the elastic properties of amorphous materials: Case study of alkali–silica reaction gel.
Cement and Concrete Research,
Vol. 54,
Issue. ,
p.
55.
Leemann, A.
and
Lura, P.
2013.
E-modulus of the alkali–silica-reaction product determined by micro-indentation.
Construction and Building Materials,
Vol. 44,
Issue. ,
p.
221.
Wu, T.
Temizer, İ.
and
Wriggers, P.
2014.
Multiscale hydro-thermo-chemo-mechanical coupling: Application to alkali–silica reaction.
Computational Materials Science,
Vol. 84,
Issue. ,
p.
381.
Zheng, Kunpeng
Lukovic, Mladena
De Schutter, Geert
Ye, Guang
and
Taerwe, Luc
2016.
Elastic Modulus of the Alkali-Silica Reaction Rim in a Simplified Calcium-Alkali-Silicate System Determined by Nano-Indentation.
Materials,
Vol. 9,
Issue. 9,
p.
787.
Zhang, Chi
Sorelli, Luca
Fournier, Benoît
Duchesne, Josée
Bastien, Josée
and
Chen, Zhao
2017.
Stress-relaxation of crystalline alkali-silica reaction products: Characterization by micro- and nanoindentation and simplified modeling.
Construction and Building Materials,
Vol. 148,
Issue. ,
p.
455.
Guo, Shuaicheng
Dai, Qingli
Sun, Xiao
and
Xiao, Xianghui
2017.
X-ray CT characterization and fracture simulation of ASR damage of glass particles in alkaline solution and mortar.
Theoretical and Applied Fracture Mechanics,
Vol. 92,
Issue. ,
p.
76.
Gholizadeh-Vayghan, Asghar
Rajabipour, Farshad
Khaghani, Mehran
and
Hillman, Michael
2019.
Characterization of viscoelastic behavior of synthetic alkali–silica reaction gels.
Cement and Concrete Composites,
Vol. 104,
Issue. ,
p.
103359.
Li, Shagang
Deng, Ziming
Li, Chousheng
Chen, Da
and
Zhang, Yan
2020.
Modeling of flexural strength degradation induced by alkali-silica reaction.
Construction and Building Materials,
Vol. 234,
Issue. ,
p.
117397.
Sun, Lianfang
Zhu, Xingji
Zhuang, Xiaoying
and
Zi, Goangseup
2020.
Chemo-Mechanical Model for the Expansion of Concrete Due to Alkali Silica Reaction.
Applied Sciences,
Vol. 10,
Issue. 11,
p.
3807.
Strack, Cody M.
Barnes, Eftihia
Ramsey, Monica A.
Williams, Rekea K.
Klaus, Kyle L.
and
Moser, Robert D.
2020.
Impact of aggregate mineralogy and exposure solution on alkali-silica reaction product composition and structure within accelerated test conditions.
Construction and Building Materials,
Vol. 240,
Issue. ,
p.
117929.
Soltangharaei, Vafa
Anay, Rafal
Ai, Li
Giannini, Eric R.
Zhu, Jinying
and
Ziehl, Paul
2020.
Temporal Evaluation of ASR Cracking in Concrete Specimens Using Acoustic Emission.
Journal of Materials in Civil Engineering,
Vol. 32,
Issue. 10,
Saha, Arpita
Yi, Ruiqin
Fahrenbach, Albert C.
Wang, Anna
and
Jia, Tony Z.
2022.
A Physicochemical Consideration of Prebiotic Microenvironments for Self-Assembly and Prebiotic Chemistry.
Life,
Vol. 12,
Issue. 10,
p.
1595.
Sinha, Arkabrata
and
Wei, Jianqiang
2023.
Phase evolution and mechanical-hydroscopic properties of alkali-silica reaction gels modified by magnesium nitrate.
Cement and Concrete Composites,
Vol. 144,
Issue. ,
p.
105283.