The Mechanical Engineering MS fuses solid mechanics, thermo-fluids, and robotics with AI-enabled design workflows. Students iterate topology-optimized heat exchangers in ANSYS, 3-D print composite turbine blades in the TechSpark lab, and validate hydrogen-fuel engine models on CMU’s transient dynamometer. Leadership seminars in product strategy and IP law accelerate the journey from lab prototype to commercial launch.
Fatigue-life prediction of lattice-structured EV battery enclosures
Bio-inspired flapping-wing MAV using shape-memory alloy actuators
Cryogenic H₂ pump CFD study minimizing cavitation at startup
Generative-design lightweight roll-cage validated with dynamic crash testing
PCM-embedded heat sink for edge-AI processors in harsh climates
Hybrid rocket engine injector plate optimized via DOE and CFD
Soft robotic grippers for delicate produce harvesting under field conditions
Micro wind-turbine array with diffusers for urban rooftop power
Solar thermal desalination rig using Fresnel lens concentrators
AI-tuned PID controller reducing oscillation in active suspension systems
Digital twin of HVAC in legacy campus buildings for demand-response
Finite-element study on additive-manufactured Inconel lattice knee implants
Passive bimetallic actuator for self-deploying space radiator panels
Hydro-kinetic river turbine design for micro-grid villages
Hypersonic vehicle leading-edge cooling with transpiration walls
Engineer resilient machines and energy solutions at CMU MechE.
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