Course IC 2201 · Year II · Summer 2025-2026

Strength of Materials 2

Compulsory course in Architecture and town planning, taught by Adina Ana Muresan.

This course page is from 2025-2026 and is archived.
See this course for the current academic year

Overview

Lecturer
Adina Ana Muresan
Seminar tutor
Adina Ana Muresan
Type of course
Compulsory
Language of instruction
Romanian
Erasmus language
English
Domain
Civil Engineering
Field of study
Architecture and town planning
Form of education
Full-time
Form of instruction
Lecture
Credit awarded by
Grade
Teaching methods
Lecture, discussions, case studies, practical applications.
Entry requirements
Advanced Mathematics, Mechanics, Strenght of Materials 1

Aims

To know the behaviour and the analysis of structural elements under compound action.

To know the energetic theories and how to use them to determine general displacements.

The analysis of structural elements in post-elastic domain.

The analysis of the buckling of bars.

The analysis of the behaviour of structures under shock actions.

Course contents

1. Compund actions: the compund bending. 2. Compund actions: bending combined with axial force, cross sections which do not transmit tension. 3. Energetical measures used in the study of deformable body. 4. Energetical theories and principles. 5. Strenght theories. 6. Post-elastic actions: the properties of materials, the analysis of cross section in the post-elastic domain. 7. Post-elastic actions: the analysis of structures. 8. The buckling of bars under centric compression: types of equilibrium, Euler's formula. 9. Practical application of bars under centric compression. The influence of the shear force on the critical stress. 10. The buckling of bars with compound cross sections. 11. The lateral buckling of slender beams. Superior order theories. The second order analysis of beams under bending and centric compression. 12. Shock actions. 13. Variable actions and fatigue analysis. 14. Beams on elastic environment.

Learning outcomes

To establish the variation of stresses along the cross section for compound actions. To apply the energetical theorems and principles. To analyze structures in the post-elastic domain. To analyze the buckling behaviour of bars under centric compression. To analyze the behaviour of structural elements under shock and fatigue.

Assessment

Written examination: 40% of the final grade; Practical assignments during the semester: 60% of the final grade.

Recommended reading

Rezistența Materialelor II
Mircea Radeș
Editura Printech, 2010
Mechanics of Materials
J. Gere
Fifth edition, Brooks/Cole, Pacific Grove, 2001
Rezistența Materialelor
D. Popa
Seria Didactica, Alba Iulia, 2010