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Ankit Agrawal
Ankit Agrawal
Seeking Structural Fire Engineering Opportunities
Verified email at msu.edu
Title
Cited by
Cited by
Year
An approach for evaluating residual capacity of reinforced concrete beams exposed to fire
VKR Kodur, A Agrawal
Engineering Structures 110, 293-306, 2016
1812016
Effect of temperature induced bond degradation on fire response of reinforced concrete beams
VKR Kodur, A Agrawal
Engineering Structures 142, 98-109, 2017
992017
Analysis of flexural and shear resistance of ultra high performance fiber reinforced concrete beams without stirrups
V Kodur, R Solhmirzaei, A Agrawal, EM Aziz, P Soroushian
Engineering Structures 174, 873-884, 2018
852018
Critical factors governing the residual response of reinforced concrete beams exposed to fire
VK Kodur, A Agrawal
Fire Technology 52 (4), 967-993, 2016
432016
Residual response of reinforced concrete columns exposed to design fires
V Kodur, D Hibner, A Agrawal
Procedia Engineering 210, 574-581, 2017
402017
Residual response of fire‐damaged high‐strength concrete beams
A Agrawal, V Kodur
Fire and Materials 43 (3), 310-322, 2019
322019
A Novel Experimental Approach for Evaluating Residual Capacity of Fire Damaged Concrete Members
A Agrawal, VKR Kodur
Fire Technology 56, 715–735, 2020
272020
Estimating Postfire Residual Capacity of Heavily Damaged Concrete Members
VKR Kodur, A Agrawal
Journal of Performance of Constructed Facilities 35 (2), 04020151, 2021
72021
A numerical approach for evaluating residual capacity of fire damaged concrete members
AA V. Kodur
Advances in Science and Technology of Concrete, 1-9, 2018
62018
Structural behaviour of R/C beams exposed to natural fires
N Kalaba, V Kodur, A Agrawal, P Bamonte
Proceedings of the 10th International Conference on Structures in Fire-SiF …, 2018
22018
Residual Response of Reinforced Concrete Beams following Fire Exposure
A Agrawal
PQDT-UK & Ireland, 2020
12020
Quantifying the Effect of Temperature Induced Bond Degradation on Fire Resistance of RC Beams
A Agrawal, VKR Kodur
Structures in Fire, 2016
12016
Effect of Temperature Induced Bond Degradation on Fire Response of Reinforced Concrete Beams
A Agrawal, VKR Kodur
Response of Structures Under Extreme Loading (PROTECT 2015), 2015
12015
Forensic Investigation of Fire-Induced Collapse of a Steel Building
M Eslami, KM Mosalam, A Agrawal, A Kasalanati, S Marjanishvili, V Kodur
Structures Congress 2022, 312-329, 2022
2022
Fire-induced Structural Collapse on Pier 45, at Fisherman’s’ Wharf, San Francisco on May 23, 2020
A Eslami, M., Mosalam, K., Agrawal, A., and Kasalnati
PEER Report No. 2021/01, Pacific Earthquake Engineering Research Center …, 2021
2021
Uma abordagem numérica para avaliar a capacidade residual de elementos de concreto submetidos a incêndio
VKR Kodur, A Agrawal
Revista ALCONPAT 10 (2), 230-242, 2020
2020
Approach for assessment of fire damaged concrete structures
V. Kodur, A. Agrawal
Applications of Structural Fire Engineering ASFE’19, 1-9, 2019
2019
Designing for combined effects of air-blast, fragments, and fires
A Agrawal, K Haas, F Jorgensen, M Eslami, S Marjanishvili
2019
An approach for ascertaining residual capacity of reinforced concrete beams exposed to fire
VKR Kodur, A Agrawal, MM Rafi
Proceedings of the Structural Engineering Convention 2014, 4634-4646, 2014
2014
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