Crossref Citations
This article has been cited by the following publications. This list is generated based on data provided by Crossref.
Levita, G
Marchetti, A
Gallone, G
Princigallo, A
and
Guerrini, G.L
2000.
Electrical properties of fluidified Portland cement mixes in the early stage of hydration.
Cement and Concrete Research,
Vol. 30,
Issue. 6,
p.
923.
Polder, Rob B
2001.
Test methods for on site measurement of resistivity of concrete — a RILEM TC-154 technical recommendation.
Construction and Building Materials,
Vol. 15,
Issue. 2-3,
p.
125.
Ferreira, Rui Miguel
and
Jalali, Said
2010.
NDT measurements for the prediction of 28-day compressive strength.
NDT & E International,
Vol. 43,
Issue. 2,
p.
55.
Leroux, Fabrice
Russias, Julie
Cau-dit-Coumes, Celine
Frizon, Fabien
and
Renaudin, Guillaume
2011.
Low-to-Medium-Frequency AC Impedance Spectroscopy Investigations of Nanocrystalline Calcium Silicate Hydrate Dried Powders.
Journal of the American Ceramic Society,
Vol. 94,
Issue. 8,
p.
2680.
2013.
Corrosion of Steel in Concrete.
p.
287.
Bertolini, L.
Carsana, M.
Daniotti, B.
and
Marra, E.
2013.
Durability of Building Materials and Components.
Vol. 3,
Issue. ,
p.
229.
2013.
Corrosion of Steel in Concrete.
p.
21.
Angst, Ueli M.
and
Elsener, Bernhard
2014.
On Applicability of Wenner Method for Resistivity Measurements of Concrete.
ACI Materials Journal,
Vol. 111,
Issue. 6,
Carsana, Maddalena
Marra, Eleonora
and
Bertolini, Luca
2015.
Corrosion behaviour of metal inserts in simulated ancient masonry mortars.
Construction and Building Materials,
Vol. 95,
Issue. ,
p.
457.
Nóvoa, X. R.
2016.
Electrochemical aspects of the steel‐concrete system. A review.
Journal of Solid State Electrochemistry,
Vol. 20,
Issue. 8,
p.
2113.
Otieno, M.
Beushausen, H.
and
Alexander, M.
2016.
Resistivity-based chloride-induced corrosion rate prediction models and hypothetical framework for interpretation of resistivity measurements in cracked RC structures.
Materials and Structures,
Vol. 49,
Issue. 6,
p.
2349.
Rovnaník, Pavel
Míková, Maria
Kusák, Ivo
and
Bayer, Patrik
2018.
Differences in Electrical Properties of Portland Cement and Alkali-Activated Slag Mortars.
Solid State Phenomena,
Vol. 276,
Issue. ,
p.
15.
Yoon, In-Seok
and
Chang, Chun-Ho
2020.
Effect of Chloride on Electrical Resistivity in Carbonated and Non-Carbonated Concrete.
Applied Sciences,
Vol. 10,
Issue. 18,
p.
6272.
Nikookar, Mohammad
Brake, Nicholas A.
Asli, Hossein Hariri
Adesina, Mubarak
Rahman, Ashiqur
Selvaratnam, Thinesh
and
Bradley, Robert K.
2023.
Durability, workability, and setting time of cementitious systems containing chloride-rich oil and gas production wastewater.
Construction and Building Materials,
Vol. 403,
Issue. ,
p.
132862.
Wang, He
Wu, Tao
Tang, Shengwen
She, Jinhua
Wang, Feng
and
Zhao, Juan
2023.
Non-Contact Multiple-Frequency AC Impedance Instrument for Cement Hydration Based on a High-Frequency Weak Current Sensor.
Actuators,
Vol. 12,
Issue. 1,
p.
26.
Montazerian, Arman
Tagarielli, Vito
Pinho, Silvestre
Øverli, Jan Arve
and
Goutianos, Stergios
2024.
Electrical conductivity of multifunctional cementitious composites reinforced by graphene derivatives: A finite element-based computational micromechanics model.
Construction and Building Materials,
Vol. 438,
Issue. ,
p.
137162.
Perka, Bogdan
Suproniuk, Marek
Piwowarski, Karol
Paziewski, Piotr
and
Rechlicz, Patrycja
2024.
The effect of moisture on the electrical resistivity of building structures.
p.
1.