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Mohammad Afzal
Mohammad Afzal
Verifierad e-postadress på kth.se
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An analytical calculation of the Jacobian matrix for 3D friction contact model applied to turbine blade shroud contact
M Afzal, IL Arteaga, L Kari
Computers & Structures 177, 204-217, 2016
512016
Numerical analysis of multiple friction contacts in bladed disks
M Afzal, IL Arteaga, L Kari
International Journal of Mechanical Sciences 137, 224-237, 2018
242018
Adaptive control of normal load at the friction interface of bladed disks using giant magnetostrictive material
M Afzal, L Kari, I Lopez Arteaga
Journal of Intelligent Material Systems and Structures 31 (8), 1111-1125, 2020
62020
On efficient and adaptive modelling of friction damping in bladed disks
M Afzal
KTH Royal Institute of Technology, 2017
62017
Numerical modelling and analysis of friction contact for turbine blades
M Afzal
KTH Royal Institute of Technology, 2015
32015
A formulation of the Jacobian matrixfor 3D numerical friction contact model applied to turbine blade shroud contact
M Afzal, I Lopez Arteaga, L Kari
Journal of Sound and Vibration, 2015
12015
Investigation of damping potential of shroud contacts and strip dampers on a real turbine blade
M Afzal, IL Arteaga, V Karhyton, L Kari
ASME TurboExpo2016, 26-29 June 2016, Seoul, South Korea, 2016
2016
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Artiklar 1–7