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Shirish V Deo
Shirish V Deo
HoD and Associate Professor, Civil Department, NIT Raipur
Bestätigte E-Mail-Adresse bei nitrr.ac.in
Titel
Zitiert von
Zitiert von
Jahr
Bacteria based self healing concrete–A review
K Vijay, M Murmu, SV Deo
Construction and building materials 152, 1008-1014, 2017
5282017
Utilization of waste from steel and iron industry as replacement of cement in mortars
R Palod, SV Deo, GD Ramtekkar
Journal of Material Cycles and Waste Management 21, 1361-1375, 2019
442019
Effect of fly ash and rice husk ash on strength and durability of binary and ternary blend cement mortar
VN Kanthe, SV Deo, M Murmu
Asian Journal of Civil Engineering 19, 963-970, 2018
422018
Comparative long term study of concrete mix design procedure for fine aggregate replacement with fly ash by minimum voids method and maximum density method
AD Pofale, SV Deo
KSCE Journal of Civil Engineering 14, 759-764, 2010
422010
Autonomous healing in concrete by crystalline admixture: A review
M Nasim, UK Dewangan, SV Deo
Materials Today: Proceedings 32, 638-644, 2020
392020
Effect on mechanical performance, early age shrinkage and electrical resistivity of ternary blended concrete containing blast furnace slag and steel slag
R Palod, SV Deo, GD Ramtekkar
Materials Today: Proceedings 32, 917-922, 2020
382020
Combine use of fly ash and rice husk ash in concrete to improve its properties (research note)
V Kanthe, S Deo, M Murmu
International Journal of Engineering 31 (7), 1012-1019, 2018
382018
Durable glass fiber reinforced concrete with supplimentary cementitious materials
B Rath, S Deo, G Ramtekkar
International Journal of Engineering 30 (7), 964-971, 2017
372017
Effect of crystalline admixture, fly ash, and PVA fiber on self-healing capacity of concrete
M Nasim, UK Dewangan, SV Deo
Materials Today: Proceedings 32, 844-849, 2020
342020
Estimating the concrete compressive strength using hard clustering and fuzzy clustering based regression techniques
NK Nagwani, SV Deo
The Scientific World Journal 2014 (1), 381549, 2014
302014
Parametric study for replacement of sand by fly ash for better packing and internal curing
SV Deo, AD Pofale
Open Journal of Civil Engineering 5 (01), 118, 2015
212015
Review and suggestions on use of steel slag in concrete and its potential use as cementitious component combined with GGBS
R Palod, SV Deo, GD Ramtekkar
International Journal of Civil Engineering and Technology 8 (4), 1026-1035, 2017
202017
Effect of natural organic materials as admixture on properties of concrete
GK Patel, SV Deo
Indian Journal of Science and Technology 9 (37), 1-5, 2016
202016
Sustainable Approach for Linz‐Donawitz Slag Waste as a Replacement of Cement in Concrete: Mechanical, Microstructural, and Durability Properties
R Palod, SV Deo, GD Ramtekkar
Advances in Civil Engineering 2020 (1), 5691261, 2020
172020
A proposed mix design of concrete with supplementary cementitious materials by packing density method
B Rath, S Deo, G Ramtekkar
Iranian Journal of Science and Technology, Transactions of Civil Engineering …, 2020
162020
Effect on autogenous healing in concrete by fly ash and rice husk ash
V Kanthe, S Deo, M Murmu
Iranica Journal of Energy & Environment 10 (2), 154-158, 2019
152019
A parametric study on effect of fly ash together with fiber for sustainable concrete
MV Raut, SV Deo
International journal of civil engineering and technology 8 (3), 100-110, 2017
152017
Mechanism and Benefits of Internal Curing Of Concrete Using Light Weight Aggregates and Its Future Prospects in Indian Construction Industry
N Yadav, DSV Deo, GD Ramtekkar
International Journal of Civil Engineering & Technology 8 (5), 323-334, 2017
152017
An experimental study on strength and durability of glass fiber reinforced cement concrete with partial replacement of cement and sand with coal ashes available in central …
B Rath, S Deo, G Ramtekkar
Current Applied Science and Technology, 10.55003/cast. 2022.01. 22.010 (28 …, 2022
142022
Modification of ACI209R-92 concrete shrinkage model for partial replacement of cement with fly ash and sand with pond ash
B Rath, S Deo, G Ramtekkar
Advances in Civil Engineering Materials 9 (1), 602-620, 2020
142020
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