Friction; transmission of frictional tractions in rolling; fretting; normal and oblique impact. Prerequisite: graduate standing; permission of the instructor who will guide the work; mandatory satisfactory/unsatisfactory. CHE 405 (ENGR 405). Modeling, analysis and control of vehicles with electrified propulsion systems, including electric vehicles, hybrid vehicles, plug-in and fuel cell vehicles. (4 credits) Mechanical Engineering. Fundamental concepts and methods of fluid mechanics; inviscid flow and Bernoulli theorems; potential flow and its application; Navier-Stokes equations and constitutive theory; exact solutions of the Navier-Stokes equations; boundary layer theory; integral momentum methods; introduction to turbulence. 17 undergraduate programs of study lead to a Bachelor of Science in Engineering (B.S.E.) (Course Profile), Prerequisite: (Math 116 or Math 121 or MATH 156) and (ENGR 101 or EECS 183 or ENGR 151). Heat transfer mechanisms. (3 credits) Selected topics pertinent to mechanical engineering. Fundamental concepts of laser/material interaction. Mathematical modeling of engineering design problems as discrete optimization problems, integer programming, dynamic programming, graph search algorithms, and introduction to NP completeness. 2019-20 … (Course Profile), Prerequisite: Physics 140 &141, and preceded or accompanied by (Math 216 or Math 156.) A broad treatment of stress, strain and strength with reference to engineering design and analysis. (3 credits) Specific topics include automotive structures, suspension steering, brakes and driveline. Add “top ranked” to your resume with a graduate degree from the nation’s number one public research institution. Basic integrated circuit (IC) manufacturing processes; electronics devices fundamentals; microelectromechanical systems fabrications including surface micromachining, bulk micromachining, LIGA and others. (Course Profile), Prerequisite: MECHENG 490, permission of instructor; mandatory pass/fail. Theoretical and computational aspects of finite element methods. (Course Profile), Prerequisite: MECHENG 382. Introduction to structural-acoustic coupling. Fundamentals of radiation heat transfer including; blackbody radiation, radiative properties, view factors, radiative exchange between ideal and non-ideal surfaces. The influences of time and temperature on behavior. Thermal and thermoelastic effects in sliding and static contact. (3 credits) consists of three integrated courses in Design and Manufacturing, two Laboratory courses, and several redesigned courses in the Engineering Sciences. Green's functions; boundary element and finite element methods. (Course Profile), Prerequisite: MECHENG 382. Assembly representation. (Course Profile), Prerequisite: MECHENG 211, MECHENG 240, Math 216. (3 credits) MATSCIE 890 – Colloquium in Materials Science and Engineering. Basics of mechanical design: visual thinking, engineering drawing and machine anatomy. Case studies: sustainable design of consumer products, manufacturing and infrastructure systems. Dissertation work by doctoral student not yet admitted to status as candidate. Analytical approach to the engineering problem and performance analysis of internal combustion engines. Prerequisite: MECHENG 320. Truncation errors, stability, conservation and monotonicity. Fax: (734) 647-9379, The Regents of the University of Michigan, Computational & Data-Driven Methods in Engineering, Fundamentals of Renewable Energy Processes, Professional Skills for Graduate Student Success, Residual Stresses & Distortions in Modern Manufacturing, Instrumentation and Experimental Techniques, Self-Driving Cars: Perception and Control, Additive Manufacturing: Theory and Practice, Defects in Materials & Fundamentals of Atomistic Modeling, Dyanmics and Control of Connected Vehicles. (3 credits) Computer assignments. Bases, subspaces, eigenvalues and eigenvectors, canonical forms. (3 credits) Variational methods of approximation: Bubnov-Galerkin. (3 credits) Two hour lecture and one hour lab. Mechanical behavior and environmental degradation of polymeric-, metal- and ceramic-matrix composites; manufacturability of advanced engineering materials; use of composite materials in novel engineering designs. (Course Profile), Prerequisite: Math 216 or Physics 240. Overview of tissue adaptation and the interaction between tissue mechanics and physiology. Minimum grade of "C" required for enforced prerequisites. Advanced treatment of fundamental combustion processes. Topics include: Structure of matter and interatomic potentials; High-performance computing; Electronic structure methods; Molecular dynamics; Monte Carlo; Transition state theory; Accelerated dynamics and multi-scale modeling. (2-3 credits) (1-8 credits); (1-4 credits) Regular perturbation solutions; suppression of secular terms; method of multiple scales; boundary layer and low Reynolds number flows by inner and outer expansions; phenomena in rotating flows. Prerequisite: MECHENG 311 or MECHENG 412, or MECHENG 511 or equivalent. ME Courses | Mechanical Engineering Top me.engin.umich.edu Individual or group project work where student(s) must apply mechanical engineering principles to research, innovation, service or entrepreneurship projects. Linear free and forced responses of one and two degree of freedom systems and simple continuous systems. Customized, personalized and reconfigurable products. Precision-point Burmester theory for dimensional synthesis of linkages. 4 6-9 credits of electives, depending on the number of cognate courses completed, (3 credits) Courses, by research area Autonomous Systems and Control Fundamental courses. MECHENG 382 – Mechanical Behavior of Materials. Minimum grade of "C" required for enforced prerequisites. The student(s) submits proposal and presents poster at ME Undergraduate Symposium.) Vibrating systems; acoustic wave equation; plane and spherical waves in fluid media; reflection and transmission at interfaces; propagation in lossy media; radiation and reception of acoustic waves; pipes, cavities and waveguides; resonators and filters; noise; selected topics in physiological, environmental and architectural acoustics. Maxwell's relations. Kinematics of large motions and deformations; stress tensors; conservation of mass, momentum and energy; constitutive equations for elasticity, viscoelasticity and plasticity; applications to simple boundary value problems. Design strategies for power systems are described, in the context of growing global demand for power and energy. (Course Profile), Prerequisite: permission of instructor. Vector description of force, position, velocity and acceleration in fixed and moving reference frames. An introduction to the theory of hydrodynamic stability with applications to stability of thermal flows, rotating and curved flows, wallbounded and free shear flows. Introduction to theory and practice of the finite element method. Mechanics of deformable bodies: stress/strain, classification of material behavior, generalized Hooke's law. Active participation in the discussions that follow all presentations is also required for a grade. (4 credits) Welcome to the Engineering Advising Center! Introduction to the challenges of power generation for a global society using the thermodynamics to understand basic principles and technology limitations. 400 Level Courses. Students propose design term projects from various disciplines and apply course methodology to optimize designs. Design projects. Dynamics of muscle and tendon, models of muscle contraction. Topics may be chosen from any of the areas of mechanical engineering. Prerequisite: candidate status in the mechanical sciences. (Course Profile), Prerequisite: MECHENG 235. (3 credits) Enterprise globalization strategies. Overlaps with IOE 310, 410, 510 (a series of courses on optimization), but is also very different from them. (3 credits) (to be arranged) Applications to separated, turbulent and two-phase flows, flow control and flows involving heat transfer. Human factor considerations such as driver interfaces. (Course Profile), Prerequisites: PHYS 240, and PHYS 241, and MECHENG 211, and MECHENG 235, and MECHENG 240; preceded or accompanied by MECHENG 320, and MECHENG 382. Prerequisite: MECHENG 382. Topics include: complex analysis (functions of complex variables, contour integrals, conformal mappings), linear operator theory (vector spaces, linear algebra), ordinary differential equations (series solutions, Laplace and Fourier transforms, Green's functions). Four lecture classes per week. (3 credits) (Course Profile), Prerequisite: MECHENG 211, MECHENG 240, MECHENG 250. Chain reactions, ignition, quenching and flammability limits, detonations, deflagrations and flame stability. Kinematics and dynamics of the human body, methods for generating equations of motion. Prerequisite: MECHENG 440. Courses: Mechanical Behavior of Materials, Atomistic Computer Modeling of Materials, Contact Mechanics, Friction & Wear Thermal and Fluid Sciences Follow fluid flow and heat transfer and apply mathematical methods and physics to better understand how energy is carried. Approximate techniques for nonlinear stochastic response. Robust design. Applications to engineering systems involving vibration isolation, rotating imbalance and vibration absorption. Brown Laboratory Introduction to engineering thermodynamics. Auto body assembly case studies. Application of course techniques to engine research projects. (3/6 credits) Mathematical representations: state equations, transfer functions, impulse response, matrix fraction and polynomial descriptions. Traditional manufacturing systems. Design projects. Review of experimental results on the statistics and structure of turbulent flows. (3 credits) (3 credits) I ’ m a PhD Candidate in Mechanical Engineering. Case studies. Motion planning including obstacle avoidance is also covered. Analysis and design using root locus, frequency response and state space techniques. Introduction to mesh generation, numerical discrimination, stability, convergence, and accuracy of numerical methods. Examples from areas of thermal diffusion, potential/irrotational flows, lubrication, structural mechanics, design of machine components, linear elasticity and Navier-Stokes flows problems. Weekly lectures and extended experimental projects designed to demonstrate experimental and analytical methods as applied to complex mechanical systems. Prerequisite: EECS 460 or MECHENG 461. (4 credits) (3 credits) Services include academic advising, personal counseling, career exploration, goal setting and workshops to facilitate student success. kaingr@umich.edu. (Course Profile), Prerequisite: MECHENG 211, Math 216. Regression analysis. (3 credits) (3 credits) (3 credits) Describes the core methods used to simulate matter at the atomic scale. It is also one of the broadest in scope, for it is not restricted to any particular technology or particular device. Nonlinear Systems and Control; AEROSP 552. Election for dissertation work by a doctoral student who has been admitted to candidate status. Newton/Euler and Lagrangian formulations for three-dimensional motion of particles and rigid bodies. (3 credits) Elastic and plastic stress-strain relations; yield criteria and flow rules; analyses of various plastic forming operations. Prerequisite: MECHENG 595; mandatory satisfactory/unsatisfactory. Applied mathematics for mechanical engineering with an emphasis on mathematical principles and analytical methods. (1-3 credits) (3 credits)  Materials Science and Engineering Courses; Mechanical Engineering Courses; Military Officer Education Program; Naval Architecture and Marine Engineering Courses; Nuclear Engineering and Radiological Sciences Courses; Robotics Courses; Technical Communications Courses; UARTS Courses; Academic Rules. Minimum grade of "C" required for enforced prerequisites. The Rackham Graduate School works together with faculty in the schools and colleges of the University to provide more than 180 graduate degree programs and to sustain a dynamic intellectual climate … (YR). Automotive and other applications considered. IC CAD tools to design microelectromechanical structures using MCNC MUMPs service. Seismic behavior of buildings and the basis of seismic building codes. Prerequisite: MECHENG 320 or equivalent background in fluid mechanics and heat transfer. (Course Profile), Prerequisite: MECHENG 320. This course covers battery modeling, control and diagnostic methodologies associated to battery electric and battery hybrid electric vehicles. Basic concepts. (4 credits) Prerequisites: MECHENG 481 and MECHENG 401 or equivalent. Machining process simulation. Equipment previously used in auto emissions testing highlights risks. Prerequisite: Graduate School authorization for admission as a doctoral candidate. Typical power producing cycles and refrigerators. I’m especially interested in adding the “human in the loop” and studying how humans interact w ith these robotic systems. The student(s) submits proposal and presents poster at ME Undergraduate Symposium. Introduction to linear feedback control techniques. Students work in team design projects from concept generation to prototyping and design verification. For the most complete and up-to-date information regarding courses available, class times and locations, check the U-M Office of the Registrar’s official Class Schedule . (to be arranged) Prerequisite: one 400-level MFG or DES or BUS class. Prerequisite: senior or graduate standing. (3 credits) Graduate standing or special permission. Methods of data analysis and empirical modeling. (3 credits) The redesigned program provides students ... degree in Mechanical Engineering at the University of Michigan in July 2001 Journal of Engineering Education 437 The New Mechanical Engineering Program development and modification are expected as well as learning the use of existing codes. Modeling and identification. (3 credits) (3 credits) Datum flow chain. (3 credits) Prerequisite: Math 454. This course may be used as part of the IVHS certification program. Dr. Lattuca studies students’ experiences in engineering courses and programs with the goal of improving curricula, teaching, and learning and broadening participation of marginalized students. Aerospace Information Systems; AEROSP 573. Integration of economic indicators with life cycle environmental and social metrics for evaluating technology systems. System configuration analysis. The global integrated enterprise. Ann Arbor MI 48109, Phone: (734) 764-2694 Averaged and spectral properties. Non self-adjoint systems. Every Ph.D. student in the field of mechanical sciences is asked to present a one-hour seminar about his/her research, and lead a one-hour follow-up discussion. First law, second law, system and control volume analyses; properties and behavior of pure substances; application to thermodynamic systems operating in a … This course will focus on scientific understanding and computational techniques. Assembly sequence. Classification of partial differential equations and solution techniques. As chair of the University of Michigan Department of Mechanical Engineering (U-M ME), I have been privileged to witness their remarkable commitment and resilience in so many ways... read more Spotlight. (3 credits) Also considered are deflection, post-yield behavior, residual stresses, temperature and corrosion effects. Design of artifacts is addressed from a multidisciplinary perspective that includes engineering, art, psychology, marketing and economics. I hope this message finds you safe and well. Concept of statistical process control (SPC). 2350 Hayward (3 credits) Thermoelasticity. Energy and power densities previously unattainable in environmentally-friendly energy technologies have been achieved through use of novel materials. The defense of the dissertation, that is, the final oral examination, must be held under a full-term candidacy enrollment. Modern analytical approach to the design and performance analysis of advanced internal combustion engines. Controllers are designed for driver assistance and vehicle automation. Fixturing. Unified treatment of thermal energy storage, transport and conversion, by principal carriers: phonon, electron, fluid particle and photon. Below you can find the College of Engineering Sample Schedules (for entire department information please visit The Department & Programs Overview page).The guides provide a general overview of the curriculum and are not a replacement for meeting with your assigned professional and … Practical application of solid/structural mechanics is considered to design automotive bodies for global bending, torsion, vibration, crashworthiness, topology, material selection, packaging and manufacturing constraints. Process costs and limits; influence of processes on the final mechanical properties of the product. Basics of manufacturing: processes, materials and thermofluid aspects. (Course Profile), Prerequisite: (Math 215 or Math 255), MECHENG 235, and MECHENG 240. (3 credits) Use of computers in various phases of design and manufacturing. Prerequisite: senior or graduate standing. Applications of these methods are illustrated in hands-on laboratories involving research-caliber simulation tools. The mathematical tools required to describe spatial motion of a rigid body will be presented in full. Free vibration eigenvalue problem. Modern analytical rigid body dynamics equation formulation and computational solution techniques applied to mechanical multibody systems. Undamped system response. Stresses and deformations in layered materials; energy-release rates and delamination; fracture mechanics of layered materials; spalling; interfacial fracture mechanics; mixed-mode fracture; buckling-driven delamination; cracking of thin films; effects of plasticity on fracture; stress-relaxation mechanisms in multi-layered materials; adhesion and fracture tests. (4 credits) May not be taken concurrently with MECHENG 455 or MECHENG 495. Cutting tools and tool wear mechanisms. Individual or group study or design in an area of Mechanical Engineering under the supervision of a member of the graduate faculty. Definitions and scope of thermodynamics; first and second laws. Case studies (heat treatment; welding; polymer extrusion and molding; various metal casting processes; crystal growth). Prerequisite: MECHENG 520. Fractional factorial experiments. Energy formulation for nonconservative gyroscopic systems. (3 credits) Application to problems of bending, torsion, plane strain and plane stress, technological problems. This course will cover theoretical aspects of smart materials, sensors and actuator technologies. Mechatronics is the synergistic integration of mechanical disciplines, controls, electronics and computers in the design of high-performance systems. Mechanical Engineering Courses; Contacts; Naval Architecture and Marine Engineering. Emphasizes systems approach to automotive design. Design and optimization of thermal systems. Modeling of processes, microstructure and mechanical properties of processed materials. Minimum grade of "C" required for enforced prerequisites. Quantization and other nonlinearities. Ideal gas mixtures and moist air applications. Fundamentals of plasticity; stress-strain relations, yield criteria and the general behavior of metals and nonmetals beyond proportional limit in the light of experimental evidence. 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Matched expansions extensive use of commercial CFD packages for Solving realistic fluid mechanics and physiology in! 890 – Colloquium in materials Science and engineering steering, brakes and driveline a of.

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