Physics based modeling approach at different scale

Total Lectures


Lec 3: Physics based modeling approach at different scale


Lec 3: Physics based modeling approach at different scale
Lec 4: Evaluation of properties and process modelling
Lec 5: Thermofluid and electromagnetic analysis
Lec 8: Meltiing, solidification and additive manufacturing
Lec 11: Heat transfer analysis
Lec 1: Materials and manufacturing Processes-1
Lec 14: Mechanics of bulk metal forming
Lec 17: Heat transfer and thermomechanical processing
Lec 20: Physics of welding and metal transfer
Lec 21: Heat source model in fusion welding
Lec 2: Materials and manufacturing Processes-2
Lec 22: Heat transfer and material flow
Lec 27: Hybrid welding,residual stress and distortion
Lec 28: Cooling and solidification at different casting processes
Lec 29: Powder metallurgy
Lec 30: Principle of surface and coating technologies
Lec 33: Fundamentals of heat treatment
Lec 34: Evaluation of microstructural properties and residual stress
Lec 35: Down-scaling of conventional manufacturing processes and Micro-to-nano manufacturing
Lec 36: Packaging, micro-finishing and micro-manufacturing processes
Lec 37: Processing and shaping of non-metals and bio-materials
Lec 38: Principle of glass and ceramics processing and their shaping
Lec 6: Solid-state deformation and residual stress-1
Lec 7: Solid-state deformation and residual stress-2
Lec 9: Force and velocity diagram-1
Lec 10: Force and velocity diagram-2
Lec 12: Principal and mechanism at different processes-1
Lec 13: Principal and mechanism at different processes-2
Lec 15: Mechanics of sheet metal forming-1
Lec 16: Mechanics of sheet metal forming-2
Lec 19: Fusion welding processes -2
Lec 23: Solidification in welding 1
Lec 24: Solidification in welding 2
Lec 25: Solid state welding 1
Lec 26: Solid state welding 2
Lec 31: Principle and development of additive manufacturing technologies-1
Lec 32: Principle and development of additive manufacturing technologies-2
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