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Sangam Sangral
Sangam Sangral
Research Scholar
Verified email at iiti.ac.in
Title
Cited by
Cited by
Year
Fretting wear degradation behavior of Al-Si-Ni based cast Aluminum alloy under different environment
K Achyuth, M Patel, S Sangral, M Jayaprakash
Materials Today: Proceedings 15, 103-108, 2019
112019
Effect of fretting on fatigue behavior of Al alloys considering environmental effect
S Sangral, K Achyuth, M Patel, M Jayaprakash
Materials Today: Proceedings 15, 119-125, 2019
82019
Evaluating the effect of contact pad geometry on the fretting fatigue behavior of titanium alloy by experimental and finite element analysis
S Sangral, M Jayaprakash
Journal of Failure Analysis and Prevention 22 (2), 773-784, 2022
42022
Study on microstructure and mechanical properties of hybrid aluminium matrix composite with ZrO2 and Ni particle as reinforcement fabricated through FSP route
M Patel, S Sangral, J Murugesan
Advanced Composite Materials 32 (3), 460-476, 2023
32023
Fretting fatigue behavior of magnesium metal matrix composite fabricated through friction stir processing using nickel reinforced particles
S Sangral, M Patel, M Jayaprakash
Journal of Failure Analysis and Prevention 22 (3), 1107-1120, 2022
32022
Fretting Wear behavior of the hardfaced structural steel under corrosive environment
M Patel, S Sangral, K Achyuth, M Jayaprakash
Materials Today: Proceedings 15, 96-102, 2019
32019
Effect of friction stir processing on plain fatigue and fretting fatigue behaviour of the AA6063 alloys
M Patel, S Sangral, J Murugesan, Y Mutoh
Tribology International 186, 108642, 2023
12023
Experimental and Finite Element Analysis for Evaluating the Fretting Effect on Fatigue Behavior of IMI 834 Titanium Alloy
S Sangral, MP Paulraj, J Murugesan
Journal of Failure Analysis and Prevention 22 (2), 609-622, 2022
2022
Fretting Fatigue Behavior of Aluminum Alloy
M Jayaprakash, K Achyuth, M Patel, S Sangral
Structural Integrity Assessment: Proceedings of ICONS 2018, 683-690, 2020
2020
Enhancing the fretting fatigue strength of titanium alloys Ni based superalloys and magnesium alloys by reducing stress at contact and by making composites
S Sangral
Indore, 0
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