Faculty Directory | University of Michigan-Dearborn Research Interests: Estimation and control of internal combustion engines and electrochemical processes such as fuel cells and batteries. 1221 Beal Ave. Ann Arbor, MI 48109-2102 +1 (734) 647-7000 . With the passage of the Infrastructure law and the inflation reduction act, the US now has several instruments in place to support the construction and operation of new production plants. Contact: syadaval@umich.edu. SROP is supported by the Committee on Institutional Cooperation, a consortium of the Big Ten member universities and the University of Chicago. Research Interests: (1) High-speed method for directly joining plastics directly to metals for manufacture of multi-materials lightweight structures; (2) solid-state rapid deposition technique for additive manufacture of bimetal components without introducing detrimental intermetallic compounds; (3) Fracture mechanics modeling of randomly distributed defects in additively-manufactured metal components; (4) smart modular design for manufacturing and assembly methods for advanced lightweight marine structures. Physics-informed AI for structural and assembly optimization. He is particularly interested in the development of tethered systems for harnessing wind and marine hydrokinetic energy, the development of persistent mission planning algorithms for renewably powered robotic networks, and the use of connected and autonomous vehicles to realize substantial fuel economy improvements over conventional vehicles. NSF Engineering Research Center for Reconfigurable Manufacturing Systems Developing innovative systems to build high-quality, high-performance products I am a Ph.D. candidate at the University of Michigan, with extensive research experience in Deep Reinforcement Learning, Strategic Planning in Multiagent Systems, and Human-Autonomy Collaboration. 0 0. . Control of Hybrid Electric Powertrains. Research Interests: Energy justice and equity, sustainable energy and mobility systems, human-centered design methods, design needfinding, socially-engaged design, community engagement, optimization, cost modeling, agent-based modeling, uncertainty quantification, multi-attribute decision making, energy policy. Motivating applications range from biomedical (cavitation-bubble dynamics in therapeutic ultrasound or traumatic brain injury) to energy (interfacial instabilities in inertial confinement fusion), from transportation (droplets dynamics in hypersonics, cavitation erosion in naval hydrodynamics) to astrophysics (vortex rings in supernovae).Research Mode: In-Lab, Remote, or Hybrid, ME Project #10: Shape Memory Alloys for Gripping Middle Ear ProsthesesFaculty Mentor: Karl Grosh, grosh@umich.edu, Project Description: The middle ear bones are the smallest bones in the human body (1 millimeter in diameter and ~10 millimeters long). Product development. Research Interests: Computational mechanics; finite element methods; structural dynamics; flexible multibody dynamics; dynamic response of composites; vehicle dynamics; engineering mechanics education. Research Interests: Heat transfer, thermodynamics, solar energy, solar thermal processes, solar systems design, economics, multi-phase systems, thermal recovery heat exchangers. Our campus is home to the worlds most powerful laser, ZEUS, a 32-acre proving ground for driverless technology, a two story earthquake lab, a robot playground and a 18,000 sq. Mechanical Engineering. Please visit the SROP website to learn more about the research opportunities and how to apply. Examples include creating novel mechano-chemical dynamic models of nanoscale intracellular transport processes, developing the next generation of highly-sensitive diagnosis and monitoring techniques, discovering novel methods for forecasting tipping points in complex systems such as disease epidemics and ecological systems, developing innovative reduced order models of multi-physics systems such as Li-ion batteries and complex structures, creating advanced system identification and control methodologies for smart structures and fluid-structural systems. Research Interests: Development and use of quantitative nuclear magnetic resonance techniques to explore and constrain the physics of displacements (1) in full volume non-linear elasticity in soft tissues, tendons, ligaments, polymers, elastomers; (2) in Newtonian and non-Newtonian fluid flow and tracer transport within natural and manufactured porous media. Research Interests: Control theory and applications; logic control for manufacturing systems including diagnostics, fault handling, and recovery; modular control systems; networked control systems; performance management of computing systems; web-based tutorials for controls education. MLibrary Browse | U-M Library - University of Michigan There are significant technical, financial, and regulatory barriers to overcome to build up the associated industry. Dearborn, MI 48128. Research Interests: Advanced Nanofabrication, Nanomanufacturing, and Microsystem Technologies, and Their Applications in Nanoelectronics, Nanophotonics, Integrated Biosensing Systems, and Airborne Sensing Systems Based on Microdrones. Assembly and materials joining: Assembly system design, variation propagation analysis, joint design, joining/welding methods Sheet Metal forming: stamping, hydroforming Engineering statistics: statistical process control and monitoring, robust design, Research Interests: Uncertainty quantification, data-driven modeling, numerical optimization, optimal experimental design, Bayesian analysis, machine learning. DEPTH. Developing and applying optical measurement techniques to diagnose diseases of the human eye. Research Interests: Adera earned his Ph. Research Interests: My research interests lie in the field of deployable and reconfigurable structural systems. Research Interests: Polymer-based photonic sensors and photoacoustics, organic and hybrid photovoltaics and photodetectors, flexible transparent conductors, nanophotonics & structural colors, nanomanufacturing technologies and applications. Education: Ph.D. in Materials Engineering, Brown University (2021) B-Tech and M-Tech in Metallurgical and Materials Engineering, Indian Institute of Technology Madras (2016) Research Focus: Photovoltaics, Solid-state Batteries. Research Interests: Manufacturing systems engineering. Research Interests: My research has two primary aims: (1) to apply engineering design to improve global health equity; and(2) to advance the methods and tools of equitable engineering design. Most mechanical engineering courses are worth 3 credits and on-campus sections are offered in the evening from 6-8:45 p.m. All classes are held Monday-Thursday. University of Michigan hiring Postdoctoral Researcher in Ann Arbor Such systems will have profound implications in the future development of cell-based therapy. NSF Engineering Research Center for Reconfigurable Manufacturing Systems Research Interests: Nano mechanics, electron microscopy, laser processed metallic alloys, metallic thin films, Research Interests: Dynamics of terrestrial locomotion, arrhythmic and transient locomotion, bio-inspired design, bio-inspired robotics, soft robotics, animal-robot interaction. Research Interests: Gender and Sexuality; Inequalities and Stratification; Sociology of Culture; Theory, Knowledge, and Science; Work, Economy, and Organizations; Mixed Methods; Sociology; Administration, Professor Emeritus, Mechanical Engineering. SURE offers summer research internships to outstanding current U-M undergraduate students who have completed their sophomore or junior year (preference will be given to those who have completed three years of study) by the time of their internship. SM Wu Research Center and Ph.D. degrees in 2006 and 2010, respectively. All schools and colleges at U-M actively participate in UROP, so your research possibilities span the breadth of the entire university. Jun 2021 - Aug 20221 year 3 months. Skilled in Advanced Product Quality Planning (APQP), Continuous Improvement, Team Building . 8 /10 . Research Interests: Wearable Robots, Legged Robots, Prosthetics & Orthotics, Bipedal Locomotion, Nonlinear Control Theory, Rehabilitation Engineering. Interiors Engineer, Aircraft Services. G.G. The University of Michigan is the best public school in the state and offers one of the best mechanical engineering programs in the country as a public school. degree in Mechanical Engineering from the University of Colorado at Boulder in 2001. People - Biomedical Engineering at the University of Michigan Research Interests: Fluid mechanics, with an emphasis on multiphase flow, cavitation and bubble dynamics, computational fluid dynamics, high-speed flow and shock waves, turbulence and mixing, interfacial instabilities, plasmas, and high-performance computing. Michigan Robotics | University of Michigan Work together. Basic knowledge in chemistry and molecular biology is a plus.Research Mode: In-Lab, ME Project #5: Design and Testing Optimization of a Salt Hydrate ReactorFaculty Mentor: Bala Chandran, Rohini, rbchan@umich.eduPrerequisites: Thermo-dynamics, Introduction to ProgrammingDesirable Pre-requisites: Intro to Heat Transfer, SolidWorks/CAD, MATLAB, COMSOL, Arduino, Desire to do hands-on experimentsProject Description: Salt hydrates offer the ability to store thermal energy to enable deeper penetration of renewables. ME professor named Faculty Director at the Center for Entrepreneurship, ME professor receives Adhesion Society Award for Excellence, New NAE members developed low-cost surgical device and transformational approach to design, Office of the Vice President for Communications. 1221 Beal Ave. Ann Arbor, MI 48109-2102 Here at Michigan Engineering, we began a journey several years ago to incorporate teaching an equity-based framework developed by the Center for Socially Engaged Design, which was founded by faculty members Steve Skerlos, Shanna Daly and Kathleen Sienko, into our undergraduate curriculum. Research Interests: Mechanical behavior of materials including polymers, elastomers and soft tissue; tissue engineering of tendon and muscle constructs; constitutive modeling of growth, remodeling and functional adaptation in soft tissue; deformation mechanisms in polymers; crystal transformation mechanisms in semi-crystalline polymers; split Hopkinson pressure bar testing of polymers and elastomers for high strain rate applications including crashworthiness in automotive applications. As the freezing front moves away from the cold plate, the temperature gradient and cooling rate at the freezing front are reduced, causing the porous microstructure to gradually change. Research Interests: Design optimization; large scale system synthesis; automotive systems design, including hybrid vehicles; eco-design; product design. This unique experience teaches students to holistically connect all aspects of their UM life including coursework, co-curricular activities, and community to make a lasting difference in the world. Research Interests: Computational mechanics including flexible multibody dynamics, structural optimization, structural dynamics and structural acoustics; development of numerical tools for the evaluation and analysis of rattle noise. Contact modeling based on computed tomography (CT) or 3D scanning images will be developed to design the geometry.Research Mode: In-Lab, ME Project #8: Freeze Casting with Improved Thermal ControlFaculty Mentor: Wenda Tan, wendatan@umich.eduPrerequisites: design, manufacturing, mechatronicsProject Description: Freeze casting is a cost-effective way to fabricate directional porous ceramics materials (https://en.wikipedia.org/wiki/Freeze-casting). Research Interests: My research is focused on investigation 2 key areas of manipulating cell behavior for cartilage tissue regeneration: 1) genetic reprogramming of cells; and 2) cell-matrix interactions. BLUELab, Multidisciplinary Design Program, International Programs or the College of Engineering Honors Program). Michigan Engineering. Research Interests: Combustion, focusing primarily on automotive engines. Design theory and methodology. More Databases (41) Research Guides Mechanical Engineering Provides a starting point for research in mechanical engineering. Research Interests: Stem Cell Bioengineering, Developmental Bioengineering, Mechanobiology, and BioMEMS, Research Investigator, Mechanical Engineering. This project will analyze an example production process and how its success will depend on the availability of suitable policy support. Ann Arbor MI 48109 Our Faculty & Research | University of Michigan-Dearborn Candidates with interests in biology and hands-on lab work are highly desirable. Current research topics include the exploration of novel sensing and control techniques for improving the coordination and precision motion control of multiple systems. James Ashton-Miller - Biomedical Engineering at the University of Michigan Research Interests: Sustainable and renewable energy, power and propulsion systems; combustion, fluid mechanics and thermodynamics; pollution mitigation; high-efficiency, low-resource consumption energy systems; reaction kinetics; aerosol formation, transport and impact; optical diagnostics; gas dynamics. Mechanical Engineering - University of Michigan Library Library Webpages 2023 Research Projects. MI Hydrogen - U-M Research COLLABORATION. We share a campus with leaders in business, medical and liberal arts, whose expertise elevates our engineering research. His research interests include heat and mass transfer, phase-change (evaporation, condensation, freezing), water/fog harvesting, micro/nanoengineering, and fluid-structure interactions. Research Interests: Thermal sciences, power systems, cryogenics, boiling heat transfer, superconducting power transmission. Departments & programs - Michigan Engineering With over 5 years of experience in the field, Mohammed has developed a . Upcoming Events - Mechanical Engineering - me.engin.umich.edu Our theoretical and experimental investigations are aimed at reducing the incidence of unintentional injuries in the population. Multi-material, multi-process, multi-component structural topology optimization (M^3 TO). SURE - Summer Undergraduate Research in Engineering
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