Suivre
Jay Airao
Jay Airao
Postdoctoral Researcher at Aarhus University
Adresse e-mail validée de mpe.au.dk
Titre
Citée par
Citée par
Année
Sustainable cooling strategies to reduce tool wear, power consumption and surface roughness during ultrasonic assisted turning of Ti-6Al-4V
J Airao, CK Nirala, R Bertolini, GM Krolczyk, N Khanna
Tribology International 169, 107494, 2022
782022
An experimental study of surface roughness variation in end milling of super duplex 2507 stainless steel
J Airao, B Chaudhary, V Bajpai, N Khanna
Materials Today: Proceedings 5 (2), 3682-3689, 2018
452018
Novel sustainable cryo-lubrication strategies for reducing tool wear during ultrasonic-assisted turning of Inconel 718
N Khanna, J Airao, CK Nirala, GM Krolczyk
Tribology International 174, 107728, 2022
412022
Optimization of power consumption associated with surface roughness in ultrasonic assisted turning of Nimonic-90 using hybrid particle swarm-simplex method
N Khanna, J Airao, MK Gupta, Q Song, Z Liu, M Mia, R Maruda, ...
Materials 12 (20), 3418, 2019
342019
Comprehensive experimental analysis and sustainability assessment of machining Nimonic 90 using ultrasonic-assisted turning facility
J Airao, N Khanna, A Roy, H Hegab
The International Journal of Advanced Manufacturing Technology 109, 1447-1462, 2020
302020
Novel use of ultrasonic-assisted turning in conjunction with cryogenic and lubrication techniques to analyze the machinability of Inconel 718
J Airao, CK Nirala, N Khanna
Journal of Manufacturing Processes 81, 962-975, 2022
262022
Tool wear reduction in machining Inconel 718 by using novel sustainable cryo-lubrication techniques
J Airao, N Khanna, CK Nirala
Tribology International 175, 107813, 2022
232022
Tool wear analysis during ultrasonic assisted turning of nimonic-90 under dry and wet conditions
J Airao, CK Nirala, LNL Lacalle, N Khanna
Metals 11 (8), 1253, 2021
212021
Sustainability analysis of new hybrid cooling/lubrication strategies during machining Ti6Al4V and Inconel 718 alloys
N Khanna, J Airao, G Kshitij, CK Nirala, H Hegab
Sustainable Materials and Technologies 36, e00606, 2023
182023
Machinability of Ti-6Al-4V and Nimonic-90 in ultrasonic-assisted turning under sustainable cutting fluid
J Airao, CK Nirala
Materials Today: Proceedings 62, 7396-7400, 2022
182022
Machinability analysis of Titanium 64 using ultrasonic vibration and vegetable oil
J Airao, CK Nirala
Materials and Manufacturing Processes 37 (16), 1893-1901, 2022
172022
Comparative analysis of tool wear in micro-milling of wrought and selective laser melted Ti6Al4V
J Airao, H Kishore, CK Nirala
Wear 523, 204788, 2023
152023
Measurement and analysis of tool wear and surface characteristics in micro turning of SLM Ti6Al4V and wrought Ti6Al4V
J Airao, H Kishore, CK Nirala
Measurement 206, 112281, 2022
132022
Analytical Modeling of Machining Forces and Friction Characteristics in Ultrasonic Assisted Turning Process
J Airao, CK Nirala
Journal of Manufacturing Science and Engineering 144 (2), 021014, 2021
132021
Tool Wear Behavior in μ-turning of Nimonic 90 Under Vegetable Oil-Based Cutting Fluid
J Airao, H Kishore, CK Nirala
Journal of Micro and Nano-Manufacturing 9 (4), 041003, 2021
102021
Finite element modeling of ultrasonic assisted turning with external heating
J Airao, CK Nirala
Procedia CIRP 102, 61-66, 2021
92021
Experimental comparison of TIG and friction stir welding process for AA6063-T6 aluminum alloy
N Khanna, B Chaudhary, J Airao, G Dak, VJ Badheka
Innovations in infrastructure: proceedings of ICIIF 2018, 619-628, 2019
72019
Finite Element Modeling and Experimental Validation of Tool Wear in Hot-Ultrasonic-Assisted Turning of Nimonic 90
J Airao, CK Nirala
Journal of Vibration Engineering & Technologies 11, 3687–3705, 2022
62022
Effect of microstructure on tool wear in micro-turning of wrought and selective laser melted Ti6Al4V
J Airao, CK Nirala
Materials Letters 327, 133078, 2022
52022
Surface integrity in ultrasonic-assisted turning of Ti6Al4V using sustainable cutting fluid
J Airao, CK Nirala, J Outeiro, N Khanna
Procedia CIRP 108, 55-60, 2022
52022
Le système ne peut pas réaliser cette opération maintenant. Veuillez réessayer plus tard.
Articles 1–20