L.104.13320 Engineering Mechanics 2 - mechanics of materials (Exercise)

Course offering details

Instructors: Prof. Dr. Gunter Kullmer

Event type: Exercise

Org-unit: Maschinenbau

Displayed in timetable as: TM2 (Übung)

Hours per week: 2

Language of instruction: German

Min. | Max. participants: - | -

Requirements and recommendations:
Basic knowledge of statics and mathematics

Aim of the event:
In this course practical exercises according to the lecture are given.

Contents:


  • stresses, strains, Hook formula

             normal and shear stresses
             deformations and strains
             relation of stress and deformation
             thermal expansion, thermal stress

  • statically determined and undetermined member trusses


  • flexion of beams

             bending stress,
             deflection
             statically undetermined frameworks

  • torsion of frameworks and machine parts


  • plane stress and plane strain state


  • buckling


  • strain energy, elastic energy

Contact person:
Prof. Dr.-Ing. G. Kullmer

Literature:
Richard, H. A.; Sander, M.: Technische Mechanik.Festigkeitslehre. Vieweg Verlag, Wiesbaden, 2013

Supplementary events:
Structural analysis
Strength optimised and fracture safe design
Finite element method 1
fatigue cracks

Small group(s)
This course is divided into the following small groups:
  • Engineering Mechanics 2 - mechanics of materials (Exercise) A

    Prof. Dr. Gunter Kullmer

    Tue, 7. Apr. 2015 [09:00]-Tue, 14. Jul. 2015 [11:00]

  • Engineering Mechanics 2 - mechanics of materials (Exercise) B

    Prof. Dr. Gunter Kullmer

    Tue, 7. Apr. 2015 [11:00]-Wed, 8. Jul. 2015 [15:00]

  • Engineering Mechanics 2 - mechanics of materials (Exercise) C

    Prof. Dr. Gunter Kullmer

    Tue, 7. Apr. 2015 [14:00]-Tue, 14. Jul. 2015 [16:00]

Appointments
Date From To Room Instructors
There are no appointments.
Connected courses
This course is connected with the following courses:
  • L.104.13120 Engineering Mechanics 2 - mechanics of materials

    Lehrveranstaltung

    Prof. Dr. Gunter Kullmer

    Tue, 7. Apr. 2015 [07:30]-Tue, 14. Jul. 2015 [09:00]

  • L.104.13320 Engineering Mechanics 2 - mechanics of materials (Exercise)

    Lehrveranstaltung

    Prof. Dr. Gunter Kullmer

    Time tbd

  • L.104.13820 Tutorial in Engineering Mechanics 2

    Lehrveranstaltung

    Prof. Dr. Gunter Kullmer

    Time tbd

Contained in modules
Module
M.104.1104 Technische Mechanik 1, 2 (WS 2008/09)
M.104.1104 Engineering Mechanics 1, 2 (FAM) (WS 2005/06)
M.104.1104 Engineering Mechanics 1, 2 (FAM) (SS 2006)
M.104.1104 Engineering Mechanics 1, 2 (FAM) (WS 2006/07)
M.104.1104 Engineering Mechanics 1, 2 (FAM) (WS 2006/07)
M.104.1104 Engineering Mechanics 1, 2 (FAM) (SS 2007)
M.104.1104 Engineering Mechanics 1, 2 (FAM) (SS 2008)
M.104.1104 Engineering Mechanics 1, 2 (FAM) (SS 2008)
M.104.1104 Engineering Mechanics 1, 2 (FAM) (WS 2008/09)
M.104.1104 Engineering Mechanics 1, 2 (FAM) (WS 2008/09)
M.104.1104 Engineering Mechanics 1, 2 (FAM) (SS 2009)
M.104.1104 Engineering Mechanics 1, 2 (FAM) (WS 2009/10)
M.104.1104 Engineering Mechanics 1, 2 (WS 2009/10)
M.104.1104 Engineering Mechanics 1, 2 (FAM) (WS 2009/10)
M.104.1104 Engineering Mechanics 1, 2 (FAM) (SS 2010)
M.104.1104 Engineering Mechanics 1, 2 (WS 2010/11)
M.104.1104 Engineering Mechanics 1, 2 (FAM) (WS 2010/11)
M.104.1104 Engineering Mechanics 1, 2 (FAM) (SS 2011)
M.104.1104 Engineering Mechanics 1, 2 (FAM) (SS 2011)
M.104.1104 Engineering Mechanics 1, 2 (FAM) (SS 2011)
M.104.1104 Engineering Mechanics 1, 2 (FAM) (WS 2011/12)
M.104.1104 Engineering Mechanics 1, 2 (FAM) (WS 2011/12)
M.104.1104 Engineering Mechanics 1, 2 (FAM) (WS 2011/12)
M.104.1104 Engineering Mechanics 1, 2 (FAM) (WS 2011/12)
M.104.1104 Engineering Mechanics 1, 2 (FAM) (SS 2012)
M.104.1104 Engineering Mechanics 1, 2 (FAM) (WS 2012/13)
M.104.1104 Engineering Mechanics 1, 2 (FAM) (SS 2013)
M.104.1104 Engineering Mechanics 1, 2 (FAM) (WS 2013/14)
M.104.1104 Engineering Mechanics 1, 2 (FAM) (SS 2014)
M.104.1104 Engineering Mechanics 1, 2 (FAM) (WS 2014/15)
Class session overview
Instructors
Prof. Dr. Gunter Kullmer