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Shobhit Pratap Singh
Shobhit Pratap Singh
Federal Institute for Materials Research and Testing (BAM), Berlin,Germany
Verified email at bam.de
Title
Cited by
Cited by
Year
Cu-Bi alloys with high volume fraction of Bi: A material potentially suitable for thermal surge protection and energy storage
SP Singh, BKD Barman, P Kumar
Materials Science and Engineering: A 677, 140-152, 2016
152016
High throughput determination of creep behavior of additively manufactured AlSi10Mg alloy
SP Singh, V Jayaram, D Srinivasan, P Kumar
Additive Manufacturing 58, 103049, 2022
92022
Effect of High‐Pressure Torsion on Hardness and Electrical Resistivity of Commercially Pure Cu
A Rijal, SP Singh, JK Han, M Kawasaki, P Kumar
Advanced Engineering Materials 22 (1), 1900547, 2020
82020
Processing and mechanical behavior of Cu-Bi alloys with high volume fraction of Bi: Suitability for high temperature soldering application
BKD Barman, SP Singh, P Kumar
Materials Science and Engineering: A 666, 339-349, 2016
72016
Assessment of the dislocation density using X-ray topography in Al single crystals annealed for long times near the melting temperature
SP Singh, XR Huang, P Kumar, ME Kassner
Materials Today Communications 21, 100613, 2019
62019
The low-stress and high-temperature creep in LiF single crystals: An explanation for the So-called Harper-Dorn creep
SP Singh, P Kumar, ME Kassner
Materialia 13, 100864, 2020
42020
Frustration of the dislocation density in NaCl and its implication on “Harper-Dorn” creep
SP Singh, P Kumar, ME Kassner
Materials Science and Engineering: A 799, 140360, 2021
12021
Effect of HPT processing followed by long term natural ageing on mechanical and electrical properties of commercially pure Cu
A Rijal, SP Singh, J Han, M Kawasaki, P Kumar
Letters on Materials 9 (4s), 561-565, 2019
12019
Direct Observation of Grain Boundary Sliding in Forsterite Bicrystals
SP Singh, C Thom, L Hansen, K Marquardt, J Wheeler, E Mariani, ...
EGU23, 2023
2023
Effect of high-pressure torsion on high cycle fatigue of commercially pure Cu: Some insights from formation of surface micro-cracks
SP Singh, A Rijal, T Straub, JK Han, T Kennerknecht, C Eberl, ...
Materials Characterization 190, 112059, 2022
2022
Evaluation of Low-stress High-temperature Creep: Insights into the Harper-dorn Creep
SP Singh
Indian Institute of Science, 2021
2021
Erratum to “The low-stress and high-temperature creep in LiF single crystals: An explanation for the So-called Harper-Dorn creep”[Materialia 13 (2020) 10086]
SP Singh, P Kumar, ME Kassner
Materialia 14, 100893, 2020
2020
Creep of Cu-Bi Alloys with High Bi Content Near and Above Melting Temperature of Bi
SP Singh, D Sonawane, P Kumar
Metallurgical and Materials Transactions A 50, 2690-2701, 2019
2019
Relationship between exhaustion of dislocation density and observation of classical Harper-Dorn creep in LiF single crystals
SP Singh, P Kumar
Proceedings of the 7th International Conference on Creep, Fatigue and Creep …, 2016
2016
Critical Evaluation of Creep of Additively Manufactured AlSi10Mg Alloy
SP Singh, V Jayaram, D Srinivasan, P Kumar
Available at SSRN 4083942, 0
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