Logo ČVUT
Loading...
CZECH TECHNICAL UNIVERSITY IN PRAGUE
STUDY PLANS
2011/2012

Strength of Materials I.

Login to KOS for course enrollment Display time-table
Code Completion Credits Range Language
2111001 Z,ZK 8 4+3 Czech
Lecturer:
Zdeněk Kuliš (gar.), Milan Růžička (gar.), Jan Řezníček (gar.), Miroslav Sochor (gar.), Karel Doubrava, Stanislav Holý, Zbyněk Hrubý, Tomáš Mareš, Ctirad Novotný, Miroslav Španiel, Karel Vítek
Tutor:
Zdeněk Kuliš (gar.), Milan Růžička (gar.), Jan Řezníček (gar.), Miroslav Sochor (gar.), Karel Doubrava, Milan Dvořák, Petr Heralt, Aleš Hodr, Zbyněk Hrubý, Lukáš Jiran, Radim Korsa, Ladislav Kučera, Viktor Kulíšek, Jiří Kuželka, René Marek, Tomáš Mareš, Miloš Moravec, Martin Nesládek, Ctirad Novotný, Zdeněk Padovec, Slavomír Parma, Vít Sháněl, Miroslav Španiel, Karel Vítek
Supervisor:
Department of Mechanics, Biomechanics and Mechatronics
Synopsis:

This course is to provide the ability to comprehend and analyze basic types of loading of simple machine members in order to determine their stress states and deformations. This provides tools for dimensioning the members and/or determining their allowable loading. This subject also provides the prerequisite for other advanced and special courses concerning the theory of elasticity and plasticity. Seminars are devoted to practical design and computation of simple machine elements.

Requirements:

Main therms of Statics

Syllabus of lectures:

1. Tension and compression.

2. Trusses both statically determinate and indeterminate

3. 2D- and 3D-stress state (principal stresses and planes and maximum shearing stress).

4. Strain energy for multiaxial stress state.

5. Theories of failure.

6. Torsion of circular bars.

7. Centroids, second moments of area, and products of inertia of plane areas.

8. Bending of beams (shearing force, bending moment, normal and shearing stresses in beams).

9. Deflection of beams.

10. Statically indeterminate beams.

11. Combined loading (unsymmetrical bending; bars with axial loads; bending and torsion; torsion and tension; bending and shear).

12. Design for fatigue strength (cyclic loading; S-N diagram; Smith's and High's fatigue diagrams)

13. Safety factors for fatigue strength; stresses due to combined loading.

14. Thin-walled rotational membranes.

Syllabus of tutorials:

1. Tension and compression.

2. Trusses both statically determinate and indeterminate

3. 2D- and 3D-stress state (principal stresses and planes and maximum shearing stress).

4. Strain energy for multiaxial stress state.

5. Theories of failure.

6. Torsion of circular bars.

7. Centroids, second moments of area, and products of inertia of plane areas.

8. Bending of beams (shearing force, bending moment, normal and shearing stresses in beams).

9. Deflection of beams.

10. Statically indeterminate beams.

11. Combined loading (unsymmetrical bending; bars with axial loads; bending and torsion; torsion and tension; bending and shear).

12. Design for fatigue strength (cyclic loading; S-N diagram; Smith's and High's fatigue diagrams)

13. Safety factors for fatigue strength; stresses due to combined loading.

14. Thin-walled rotational membranes.

Study Objective:

This course is to provide the ability to comprehend and analyze basic types of loading of simple machine members in order to determine their stress states and deformations. This provides tools for dimensioning the members and/or determining their allowable loading. This subject also provides the prerequisite for other advanced and special courses concerning the theory of elasticity and plasticity. Seminars are devoted to practical design and computation of simple machine elements.

Study materials:

1. Sochor, M.: Strength of Materials I, CTU Publishing House, Prague, 1998, 2. Nash, W.A.: Strength of Materials, Schaum's outline series, 2nd edition, McGraw-Hill, INC, 1998

Note:
Time-table for winter semester 2011/2012:
Time-table is not available yet
Time-table for summer semester 2011/2012:
06:00–08:0008:00–10:0010:00–12:0012:00–14:0014:00–16:0016:00–18:0018:00–20:0020:00–22:0022:00–24:00
Mon
roomKN:A-404
Vítek K.
08:00–09:45
(lecture parallel4)
Karlovo nám.
Poslucharna KA404 (A42)
roomT4:C2-337
Mareš T.
10:45–12:15
(lecture parallel3)
Dejvice
Poslucharna 337
roomT4:A1-306
Vítek K.
14:15–16:45
(lecture parallel2
parallel nr.201)

Dejvice
Ucebna 306
roomKN:A-312
Řezníček J.
09:00–10:30
(lecture parallel2)
Karlovo nám.
Poslucharna KA312 (A25)
roomKN:A-404
Vítek K.
10:45–13:15
(lecture parallel4
parallel nr.401)

Karlovo nám.
Poslucharna KA404 (A42)
roomT4:A1-307a
Kulíšek V.
14:15–16:45
(lecture parallel2
parallel nr.202)

Dejvice
Ucebna 307
roomKN:A-404
Vítek K.
09:00–10:30
(lecture parallel4)
Karlovo nám.
Poslucharna KA404 (A42)
Tue
roomT4:D1-266
Řezníček J.
07:15–08:45
(lecture parallel2)
Dejvice
Poslucharna 266
roomT4:C2-337
Španiel M.
10:45–12:15
(lecture parallel1)
Dejvice
Poslucharna 337
roomT4:A1-307a
Parma S.
16:00–18:30
(lecture parallel1
parallel nr.107)

Dejvice
Ucebna 307
roomT4:A1-306
Kučera L.
Mareš T.

16:00–18:30
(lecture parallel1
parallel nr.108)

Dejvice
Ucebna 306
Fri
roomT4:A1-307a
Moravec M.
07:15–09:45
(lecture parallel3
parallel nr.301)

Dejvice
Ucebna 307
roomT4:A1-307a
Marek R.
09:45–12:15
(lecture parallel3
parallel nr.303)

Dejvice
Ucebna 307
roomT4:A1-307a
Hodr A.
12:30–15:00
(lecture parallel3
parallel nr.305)

Dejvice
Ucebna 307
roomT4:A1-307a
Hodr A.
16:00–18:30
(lecture parallel2
parallel nr.208)

Dejvice
Ucebna 307
roomT4:A1-306
Heralt P.
07:15–09:45
(lecture parallel3
parallel nr.302)

Dejvice
Ucebna 306
roomT4:A1-306
Jiran L.
09:45–12:15
(lecture parallel3
parallel nr.304)

Dejvice
Ucebna 306
roomT4:A1-306
Kuželka J.
12:30–15:00
(lecture parallel3
parallel nr.306)

Dejvice
Ucebna 306
roomT4:A1-306
Jiran L.
16:00–18:30
(lecture parallel2
parallel nr.209)

Dejvice
Ucebna 306
roomT4:C2-337
Španiel M.
10:45–12:15
(lecture parallel1)
Dejvice
Poslucharna 337
Thu
roomT4:A1-306
Hrubý Z.
08:00–10:30
(lecture parallel2
parallel nr.203)

Dejvice
Ucebna 306
roomT4:A1-307a
Sháněl V.
Doubrava K.

10:45–13:15
(lecture parallel1
parallel nr.109)

Dejvice
Ucebna 307
roomT4:A1-307a
Novotný C.
13:15–15:45
(lecture parallel2
parallel nr.206)

Dejvice
Ucebna 307
roomT4:A1-307a
Doubrava K.
08:00–10:30
(lecture parallel2
parallel nr.204)

Dejvice
Ucebna 307
roomT4:A1-306
Řezníček J.
10:45–13:15
(lecture parallel2
parallel nr.205)

Dejvice
Ucebna 306
roomT4:A1-306
Dvořák M.
13:15–15:45
(lecture parallel2
parallel nr.207)

Dejvice
Ucebna 306
roomT4:C2-337
Mareš T.
09:00–10:30
(lecture parallel3)
Dejvice
Poslucharna 337
Fri
roomT4:A1-307a
Padovec Z.
07:15–09:45
(lecture parallel1
parallel nr.102)

Dejvice
Ucebna 307
roomT4:A1-307a
Padovec Z.
09:45–12:15
(lecture parallel1
parallel nr.103)

Dejvice
Ucebna 307
roomT4:A1-307a
Nesládek M.
12:30–15:00
(lecture parallel1
parallel nr.105)

Dejvice
Ucebna 307
roomT4:A1-306
Korsa R.
Vítek K.

09:45–12:15
(lecture parallel1
parallel nr.104)

Dejvice
Ucebna 306
roomT4:A1-306
Vítek K.
12:30–15:00
(lecture parallel1
parallel nr.106)

Dejvice
Ucebna 306
The course is a part of the following study plans:
Generated on 2012-7-9
For updated information see http://bilakniha.cvut.cz/en/predmet10400902.html