Argomenti dell'insegnamento
• Introduction to FEM: the method of displacements applied to FEM
• Formal Procedure For FEM: discretization, Shape functions, displacement, strain, stress, stiffness matrix, solution, recovery of results.
• Bar, Simple Beam, 2D and 3D Beam Element. Property and limitations of beam elements
• Plane Elements, Plane stress and plane strain, linear and quadratic triangular and quadrilateral elements. Properties and limitations of plane elements
• Isoparametric elements. Properties, limitations
• Solid Elements, linear and quadratic tet and hex elements. Solid of Revolution. Properties, limitations.
• Theory of Plates and Shells. Finite elements for plates and shells
• Theory of composite laminate materials. Orthotropy. Finite elements for orthotropic laminated composite materials Nonlinear analyses, contact analysis, large deformation analysis, modal analysis and structural instability analysis will also be addressed.
Beside the theoretical part, students will apply the above-mentioned approaches to some simple benchmark at the beginning and to the design of real mechanical components and systems then
In particular a practical case study will be developed by the students in the application part and a report will be issued. The report will be object of discussion in the oral exam.
Modalità di insegnamento
Frontal lectures, exercises, labs, projects, etc.