TY - GEN
T1 - Reinforcement Corrosion Testing and Modeling of Chloride Ion Diffusion to Concrete in High Temperature and Humidity Environment
AU - Szweda, Zofia
AU - Skórkowski, Artur
AU - Buliński, Zbigniew
AU - Toboła, Przemysław
AU - Strzoda, Natalia
AU - Podgórny, Mateusz
AU - Widuch, Wojciech
AU - Taraur, Marek
AU - Bara, Maciej
AU - Eliasz, Piotr
N1 - Publisher Copyright:
© 2023, The Author(s), under exclusive license to Springer Nature Switzerland AG.
PY - 2023
Y1 - 2023
N2 - The article presents the results of selected research carried out as part of the PBL project entitled: Development and verification of a model of chloride diffusion and migration processes in concrete structures under the conditions simulating a changeable climate impact. This project was co-financed under the project: “Silesian University of Technology as a Center for Modern Education based on research and innovation” - POWR-03.05.00-00-Z098/17-00, from the European Social Fund. The project was implemented in cooperation with three faculties of the Silesian University of Technology. From the Faculty of Civil Engineering, the main supervisor: Zofia Szweda and students: Natalia Strzoda, Mateusz Podgórny, Przemysław Toboła. From the Faculty of Electrical Engineering: tutor Artur Skórkowski and students: Marek Taraur, Wojciech Widuch. From the Faculty of Energy and Environmental Engineering, tutor Zbigniew Buliński and students Maciej Bara and Piotr Eliasz. The project was implemented from March 1, 2022 to June 27, 2022. As part of the project, a system for measuring, visualizing and analyzing such physical quantities as temperature, relative air humidity and CO2 concentration level in a climatic chamber (purchased with project funds) for testing building materials was developed. The electrochemical impedance spectroscopy (EIS) method was used to check whether there were any changes caused by the development of corrosion in the tested samples stored inside and outside of the climatic chamber. A methodology for modeling transport phenomena in concrete was also developed.
AB - The article presents the results of selected research carried out as part of the PBL project entitled: Development and verification of a model of chloride diffusion and migration processes in concrete structures under the conditions simulating a changeable climate impact. This project was co-financed under the project: “Silesian University of Technology as a Center for Modern Education based on research and innovation” - POWR-03.05.00-00-Z098/17-00, from the European Social Fund. The project was implemented in cooperation with three faculties of the Silesian University of Technology. From the Faculty of Civil Engineering, the main supervisor: Zofia Szweda and students: Natalia Strzoda, Mateusz Podgórny, Przemysław Toboła. From the Faculty of Electrical Engineering: tutor Artur Skórkowski and students: Marek Taraur, Wojciech Widuch. From the Faculty of Energy and Environmental Engineering, tutor Zbigniew Buliński and students Maciej Bara and Piotr Eliasz. The project was implemented from March 1, 2022 to June 27, 2022. As part of the project, a system for measuring, visualizing and analyzing such physical quantities as temperature, relative air humidity and CO2 concentration level in a climatic chamber (purchased with project funds) for testing building materials was developed. The electrochemical impedance spectroscopy (EIS) method was used to check whether there were any changes caused by the development of corrosion in the tested samples stored inside and outside of the climatic chamber. A methodology for modeling transport phenomena in concrete was also developed.
KW - chloride diffusion
KW - concrete structures
KW - electrochemical impedance spectroscopy
KW - modeling transport
UR - https://www.scopus.com/pages/publications/85164726716
U2 - 10.1007/978-3-031-35173-0_41
DO - 10.1007/978-3-031-35173-0_41
M3 - Conference contribution
AN - SCOPUS:85164726716
SN - 9783031351723
T3 - Lecture Notes in Networks and Systems
SP - 441
EP - 450
BT - Advanced, Contemporary Control - Proceedings of the XXI Polish Control Conference, Volume 2
A2 - Pawelczyk, Marek
A2 - Bismor, Dariusz
A2 - Ogonowski, Szymon
A2 - Kacprzyk, Janusz
PB - Springer Science and Business Media Deutschland GmbH
T2 - 21st Polish Control Conference, PCC 2023
Y2 - 26 June 2023 through 29 June 2023
ER -