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Nagarjuna Remalli
Nagarjuna Remalli
Materials Scientist at German Aerospace Center (DLR)
Verified email at dlr.de
Title
Cited by
Cited by
Year
Dragon's blood-aided synthesis of Ag/Ag 2 O core/shell nanostructures and Ag/Ag 2 O decked multi-layered graphene for efficient As (III) uptake from water and antibacterial …
MA Armani, A Abu-Taleb, N Remalli, M Abdullah, VVSS Srikanth, ...
RSC advances 6 (50), 44145-44153, 2016
212016
Ni nanoparticles prepared by simple chemical method for the synthesis of Ni/NiO-multi-layered graphene by chemical vapor deposition
M Ali, N Remalli, V Gedela, B Padya, PK Jain, A Al-Fatesh, UA Rana, ...
Solid State Sciences 64, 34-40, 2017
102017
Picosecond laser induced fragmentation of coarse Cu2O particles into nanoparticles in liquid media
M Ali, N Remalli, F Yehya, AK Chaudhary, VVSS Srikanth
Applied Surface Science 357, 1601-1605, 2015
72015
Simple combustion synthesis of MgO and NiO decorated graphenaceous composite
NK Rotte, N Remalli, VVSS Srikanth
Materials Letters 183, 251-254, 2016
52016
On the low temperature creep controlling mechanism in a high strength spring steel
N Remalli, M Münch, M Hasan, KN Kishore, F Stern, N Baak, F Walther, ...
journal of materials research and technology 21, 2309-2315, 2022
22022
Pivotal role of retained austenite as a low temperature creep controlling mechanism in a martensitic spring steel
N Remalli, M Hasan, KN Kishore, G Rajavel, M Münch, M Sambandam, ...
Materials Science and Engineering: A 887, 145751, 2023
12023
Effect of austenitisation and tempering treatments on the mechanical properties of advanced high strength spring steel SAE 9254
M Hasan, KN Kishore, N Remalli, G Rajavel, R Brandt, S Klapprott, ...
Materials Today Communications, 108812, 2024
2024
An investigation of low temperature creep controlling mechanisms in a martensitic spring steel
N Remalli
Institut für Werkstofftechnik, Universität Siegen, 2023
2023
A Verification of Mechanism Based Theories for Low Temperature Creep of High Strength Steel
M Münch, R Brandt, N Remalli
Ilmenauer Federntag 2021, 1-11, 2021
2021
An Insight into the Low Temperature Creep Mechanism in High Strength Steel
N Remalli
Indo-German Workshop on Advanced Automotive Steels (IGWAAS-2021), 2021
2021
Low Temperature Creep of Martensitic Steels under Tensile Loading
M Münch, N Remalli, R Brandt
ECCC 2017, 2017
2017
Picosecond laser induced fragmentation of coarse Cu
M Ali, N Remalli, F Yehya, AK Chaudhary, VVSS Srikanth
2015
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