Course: Strength of Materials I

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Course title Strength of Materials I
Course code KMMCS/PP1CK
Organizational form of instruction Lecture
Level of course Bachelor
Year of study not specified
Semester Summer
Number of ECTS credits 8
Language of instruction Czech
Status of course Compulsory
Form of instruction Face-to-face
Work placements This is not an internship
Recommended optional programme components None
Lecturer(s)
  • Menčík Jaroslav, prof. Ing. CSc.
  • Tomek Petr, doc. Ing. Ph.D.
Course content
Stress, strain, Hooke's law. Uniaxial load. Strain energy. Statically determinate and indeterminate problems. Thermal stresses. Shear. Plane stress. Thin-walled cylindrical pressure vessel. Stresses in an inclined plane. Mohr´s circle, principal stresses. Strain gauges. Triaxial state of stress. Theories of brittle and ductile failure under combined load. Torsion of bars and thin-walled profiles. Free and constrained torsion. Pure bending, determination of stresses. Section characteristics, principal axes. Transverse bending, shear stresses. massive and thin-walled profiles. Combined load, eccentric tension (compression), oblique bending. Deflection of thin beams, differential equation, solution for various cases. Elastic stability of compressed beams. Critical load. Imperfections. Failure of components and structures. Stress concentration. Brittle fracture. Fatigue, causes and stages. Woehler curve, dimensioning for demanded lifetime.

Learning activities and teaching methods
Monologic (reading, lecture, briefing), Dialogic (discussion, interview, brainstorming)
Learning outcomes
The aim of the course unit is to explain basic kinds of loading and failure of components, to teach the students to determine stresses and deformations in simpler cases (bars and beams loaded in tension, compression, bending and torsion and their combinations, buckling and fatigue), and to evaluate the safety of a component or to propose the cross-section dimensions for given load and demanded degree of safety.
After having absolved Strength of materials I, student understands basic kinds of loading and failure of components. He/she is able to calculate stresses and deformations in simpler cases (bars and beams loaded in tension, compression, bending and torsion and their combinations, buckling and fatigue). He is able to evaluate the safety of a component or to propose the cross-section dimensions for given load and demanded degree of safety.
Prerequisites
Knowledge of Mechanics ? Statics (successful examination) and principles of Calculus.

Assessment methods and criteria
Oral examination, Written examination

The requirements will be defined by lecturer.
Recommended literature
  • J. Michalec a kol. Pružnost a pevnost I. Vydavatelství ČVUT (fakulta strojní), 2001. ISBN 80-01-01333-2.


Study plans that include the course
Faculty Study plan (Version) Category of Branch/Specialization Recommended year of study Recommended semester
Faculty: Faculty of Transport Engineering Study plan (Version): Transport Structures (2013) Category: Construction industry, geodesy and cartography 3 Recommended year of study:3, Recommended semester: Summer
Faculty: Faculty of Transport Engineering Study plan (Version): Transport Structures (2016) Category: Construction industry, geodesy and cartography 3 Recommended year of study:3, Recommended semester: Summer
Faculty: Faculty of Transport Engineering Study plan (Version): Transport Structures (2014) Category: Construction industry, geodesy and cartography 3 Recommended year of study:3, Recommended semester: Summer