Keyword search (4,163 papers available)

"impact" Keyword-tagged Publications:

Title Authors PubMed ID
1 From water to sediment: A meta-analysis of microplastic distribution and the impact of dams in reservoir ecosystems Gao W; Zhang P; Wang H; Yang X; An C; 41215774
ENCS
2 Exposure to hate in online and traditional media: A systematic review and meta-analysis of the impact of this exposure on individuals and communities Madriaza P; Hassan G; Brouillette-Alarie S; Mounchingam AN; Durocher-Corfa L; Borokhovski E; Pickup D; Paillé S; 39822240
CONCORDIA
3 An integrated environmental and economic assessment for the disposal of food waste from grocery retail stores towards resource recovery Zhou S; Chen Z; Huang X; Yang X; Lyu L; An C; Peng H; 39480576
ENCS
4 Relational conflicts during COVID-19: Impact of loss and reduction of employment due to prevention measures and the influence of sex and stress (in the iCARE study) Tremblay N; Leger C; Deslauriers F; Hébert-Auger L; Gosselin-Boucher V; Bacon SL; Dialufuma MV; Lavoie KL; 39148311
HKAP
5 The impact of COVID-19 on the lives of Canadians with and without non-communicable chronic diseases: results from the iCARE Study Deslauriers F; Gosselin-Boucher V; Léger C; Vieira AM; Bacon SL; Lavoie KL; 37884921
HKAP
6 System Approach for Characterizing and Evaluating Factors for Occupational Health Impacts Due to Nonfatal Injuries and Illnesses for the Use in Life Cycle Assessment Huang Z; Kijko G; Scanlon K; Lloyd S; Henderson A; Fantke P; Jolliet O; Li S; 37490771
ENCS
7 Impact Behaviour of Steel-Fibre-Reinforced Alkali-Activated Slag Concrete Exposed to Elevated Temperatures Abubakr A; Soliman A; 37297228
ENCS
8 Construction, renovation, and demolition waste in landfill: a review of waste characteristics, environmental impacts, and mitigation measures Chen Z; Feng Q; Yue R; Chen Z; Moselhi O; Soliman A; Hammad A; An C; 35508848
ENCS

 

Title:Impact Behaviour of Steel-Fibre-Reinforced Alkali-Activated Slag Concrete Exposed to Elevated Temperatures
Authors:Abubakr ASoliman A
Link:https://pubmed.ncbi.nlm.nih.gov/37297228/
DOI:10.3390/ma16114096
Publication:Materials (Basel, Switzerland)
Keywords:A A S CU S P Vimpactmechanical propertiesresidual propertiessteel fibre
PMID:37297228 Category: Date Added:2023-06-10
Dept Affiliation: ENCS

Description:

Concrete protective structures are mainly meant to withstand impact loads. However, fire events weaken concrete and reduce its impact resistance. This study investigated the impact behaviour of steel-fibre-reinforced alkali-activated slag (AAS) concrete before and after exposure to elevated temperatures (i.e., 200 °C, 400 °C, and 600 °C). Hydration products' stability under elevated temperatures, their effects on the fibre-matrix bond, and, consequently, AAS's static and dynamic responses were investigated. The results reveal that adopting the performance-based design concept to achieve a balance between AAS mixtures' performance under ambient and elevated temperatures is a crucial designing aspect. Advancing hydration products' formation will increase the fibre-matrix bond at ambient temperature while negatively affecting it at elevated temperatures. High amounts of formed and, eventually, decomposed hydration products at elevated temperatures reduced the residual strength due to lowering the fibre-matrix bond and developing internal micro-cracks. Steel fibre's role in reinforcing the hydrostatic core formed during impact loads and delaying crack initiation was emphasized. These findings highlight the need to integrate material and structure design to achieve optimum performance and that low-grade materials can be desired based on the targeted performance. A set of empirical equations for the correlation between steel fibre content in the AAS mixture and corresponding impact performance before and after fire exposure was provided and verified.





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