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Mechanics of Materials for Faculty of Safety Engineering

Summary

Definition of deformation and stress, crossection method, experiment of tension, Hook´s law, Poisson´s law, influence of own weight, static indeterminate problems
Stress and deformation analysis at point of body, Condition of strength at multiaxial stress
Shear and torsion
plane bending of beams, Shear forces and bending moments, stress evaluations, Moment of inertia, bending strain, nonlinear beams, static indeterminate beams
Buckling of linear beams
Combined loading
Curved beams, deformation and stress analysis
Thin walled vessel
Fatigue of material

Literature

[5] FRYDRÝŠEK, K., ADÁMKOVÁ, L.: Mechanics of Materials 1 - Extended Edition (Introduction, Simple Stress and Strain, Basic of Bending), Faculty of Mechanical Engineering, VŠB-Technical University of Ostrava, Ostrava, Ostrava, 2008, Czech Republic, pp. 203.
[6] FRYDRÝŠEK, K., LENERT, J.: Mechanics of Materials, VŠB-TU Ostrava, 2005, ISBN 80-248-08006-4, pp. 63.

Advised literature

[5] FRYDRÝŠEK, K., ADÁMKOVÁ, L.: Mechanics of Materials 1 - Extended Edition (Introduction, Simple Stress and Strain, Basic of Bending), Faculty of Mechanical Engineering, VŠB-Technical University of Ostrava, Ostrava, Ostrava, 2008, Czech Republic, pp. 203.
[6] FRYDRÝŠEK, K., LENERT, J.: Mechanics of Materials, VŠB-TU Ostrava, 2005, ISBN 80-248-08006-4, pp. 63.


Language of instruction čeština
Code 339-0516
Abbreviation PPFBI
Course title Mechanics of Materials for Faculty of Safety Engineering
Coordinating department Department of Mechanics of Materials
Course coordinator prof. Ing. Jan Fuxa, CSc.