
Mechanical engineering, the oldest and broadest of engineering disciplines, involves the design, analysis, and manufacturing of mechanical, thermal or electronic systems. The diversity of the field has made the work of mechanical engineers critical to problem solving in virtually every field of technology.
Purdue’s mechanical engineering program balances theory and practice. Our strong curriculum gives students a solid grounding in the theory behind traditional and emerging areas in mechanical engineering and provides a strong hands-on component through labs, design and build activities, and student machine shops. Students also can apply what they have learned through one-on-one research with a faculty member in their chosen area of interest. Our graduates depart with a rich understanding of engineering theories, along with an ability to apply these theories to real-life problems in real-life situations.
The school's extensive facilities include two major satellite research laboratories: The Ray W. Herrick Laboratories provide facilities for research in mechanical vibrations, noise control, acoustics, fluid mechanics, and heat transfer for energy utilization. The Zucrow Laboratories, named after their founder, started out in 1948 as one of the country's first liquid-rocket test facilities. Research in the laboratories, located next to the Purdue Airport, has expanded into combustion, propulsion, and fluid dynamics.
Research in the School of Mechanical Engineering impacts both fundamental concepts and real-world applications. The fundamental areas of ME research include: design and manufacturing; dynamics and vibration; fluid mechanics; heat and mass transfer; solid mechanics; systems, measurements, and controls; and thermodynamics. These fundamentals are applied in a wide variety of areas, including acoustics and noise control; advanced materials; biomedical engineering; combustion; computational engineering; convergent manufacturing; high-performance buildings; human-machine interaction; micro and nanotechnology; propulsion; robotics; semiconductors; sustainable energy; and transportation.
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