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On the keyboard, press CTRL + to zoom in, CTRL - to zoom out or CTRL 0 to reset. MCG 4329 Reliability and Maintainability in Engineering Design (3 units) Reliability and maintainability engineering history and current trend. The bathtub hazard rate concept. Equipment hazard rate models. Static and dynamic redundant configurations to improve product reliability during the design phase. Equipment reliability evaluation techniques.
Mechanical component reliability evaluation methods. Queen of pain responses. Failure modes and effect analysis: a useful engineering design tool. Design for product maintainability. Mechanical equipment replacement policies. Course Component: Lecture Prerequisites:,. MCG 5106 Advanced Topics in Elasticity (3 units) Algebraic computation software. Curved solids.
Governing equations of planar elastostatics in Cartesian coordinates. Linear elastostatics in curvilinear coordinates. Governing equations of plates. Linear shell theory in curvilinear coordinates. Introduction to non-linear elastostatics. Non-linear shell theory. Instability of cylindrical shells.
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Thick and thin shell elastodynamics. This course is equivalent to MAAJ 5006 at Carleton University. Course Component: Lecture. MCG 5107 Advanced Dynamics With Applications (3 units) Review of Euler/Newton and D'Alembert formulation, Euler Angles, gyrodynamics, rotating machinery. Lagrangian dynamics, generalized co-ordinates, virtual work, generalized forces and the power function.
Systems constraint forces and equilibrium. Modelling and formulation of multi-degree of freedom vibrational, electro-mechanical, dissipative systems, and other engineering applications. This course is equivalent to MAAJ 5007 at Carleton University. Course Component: Lecture. MCG 5108 Finite Element Analysis (3 units) Review of matrix algebra and structural mechanics.
Fundamentals of the finite element method. Analysis of two-dimensional trusses and the elastic continuum. Finite element program development, commercial programs, pre and post processers. Isoparametric concept, modelling issues. Steady-state field problems, axisymmetric analysis.
Applications in mechanical engineering. This course is equivalent to MAAJ 5008 at Carleton University. Course Component: Lecture. MCG 5117 Introduction to Composite Materials (3 units) Constituent materials fibres, resins, industrial reinforcements, prepregs.
Manufacturing processes: preforming, fibre placement, liquid moulding, pultrusion, resin film infusion, in-autoclave and out-of-autoclave consolidation. Design for composites.
Micromechanics, strength, classic theory of laminates. Practical case studies. Courses, MCG 4117 cannot be combined for units. This course is equivalent to MAAJ at Carleton University. Course Component: Lecture Exclusion: May not be taken for credit with MCG 4117. MCG 5122 Smart Structures (3 units) Structural dynamics principles: modal analysis and wave propagation.
Linear time invariant systems: feedback, feedforward, SISO, MIMO, digital and adaptive filters. 'Smart' Structures: multifunctional materials, collocation principles, geometric filtering and control authority. Applications in aero-acoustics and aeroelasticity. Courses, MCG 5387 (MECH 5807) cannot be combined for units. This course is equivalent to MECH 5202 at Carleton University. Course Component: Lecture. MCG 5144 Superalloys and Ceramix-Metal Matrix Composites (3 units) Manufacture and properties of superalloys and ceramic-metal matrix composites used in aerospace, turbine, mining and energy applications.
Powder metallurgy, phase diagrams, mechanical alloying, deformation, creep, fatigue, fracture mechanics, wear and corrosion. Physics-based modelling of materials' strength including the contribution of solid solution, precipitation and ceramic particle strengthening as a function of application temperature. Course Component: Lecture. MCG 5157 Numerical Computation of Fluid Dynamics and Heat Transfer (3 units) Governing equations. Explicit, implicit, finite difference and control volume procedures for approximating the parabolic and elliptic sets of partial differential equations and boundary conditions.
Numerical solution by direct and iterative Gauss-Seidel relaxation methods. Considerations of stability, convergence, and numerical diffusion.
Computational problems. This course is equivalent to MAAJ 5507 at Carleton University. Course Component: Lecture. MCG 5300 Fundamentals of Fluid Dynamics (3 units) Differential equations of motion. Viscous and inviscid regions. Potential flow: superposition; thin airfoils; finite wings; compressibility corrections.
Viscous flow: thin shear layer approximation; laminar layers; transition; turbulence modelling. Convective heat transfer: free versus forced convection; energy and energy integral equations; turbulent diffusion. This course is equivalent to MECH 5000 at Carleton University. Course Component: Lecture.