Theory of Elasticity
BASIC DATA
course listing
A - main register
course code
EMD5030
course title in Estonian
Elastsusõpetus
course title in English
Theory of Elasticity
course volume CP
-
ECTS credits
6.00
to be declared
yes
assessment form
Examination
teaching semester
spring
language of instruction
Estonian
English
Prerequisite(s)
Prerequisite 1
Strength of Materials II (EMD5012)
Study programmes that contain the course
code of the study programme version
course compulsory
EAEI02/25
no
EATI02/25
no
Structural units teaching the course
EA - Department of Civil Engineering and Architecture
ET - Tartu College
Course description link
Timetable link
View the timetable
Version:
VERSION SPECIFIC DATA
course aims in Estonian
Elastsusteooria on mehaanika osa, mis uurib elastsete kehade ja keskkondade deformatsioone ja liikumist. Kursuse eesmärgiks on anda ülevaade lineaarses elastsusteooras kasutatavatest printsiipidest, hüpoteesidest ja meetoditest ning õpetada lahendama mitmeid klassikalisi elastsusteooria ülesandeid.
course aims in English
Theory of elasticity is a branch of mechanics that deals with the analysis of deformation and kinetics of elastic bodies and media. The goal of the course is to give knowledge about principles, hypothesis, methods and equations of linear elasticity and methods of solutions of classical problems of linear elasticity.
learning outcomes in the course in Est.
Aine läbinud üliõpilane:
- tunneb lineaarse elastsusteooria põhiprintsiipe, hüpoteese ja ülesannete lahendusmeetodeid;
-oskab eristada lineaarses elastsusteoorias ja tugevusõpetuses kasutatavaid hüpoteese;
- oskab määrata pingeid, deformatsioone ja läbipaindeid varrastes ja õhukestes plaatides vastavalt lineaarsele elastsusteooriale.
learning outcomes in the course in Eng.
Student:
- know basic principles, hypothesis and methods of solution of problems;
- can distinct between hypothesis used in linear elasticity and strength of materials;
- can calculate stresses, stains and deflections in beams and thin plates according to linear elasticity.
brief description of the course in Estonian
Lineaarse (klassikalise) elastsusteooria põhihüpoteesid, printsiibid ning ülesanded. Elastsusteooria seos pideva keskkonna mehaanika, tugevusõpetuse ja tehnilise mehaanikaga. Pinge, tasakaaluvõrrandid, peapinged. Deformatsioon, Cauchy avaldised, peadeformatsioonid, üldistatud Hooke’i seadus, pidevustingimused. Elastsusteooria põhivõrrandid, nende lahendusmeetodid ja lihtsamad ruumilised ülesanded. Elastsusteooria tasandülesanne. Tasapinnaline deformatsioon, tasapinnaline pinge, pingefunktsiooni kasutamine tasapinnaliste ülesannete lahendamiseks. Tasandülesanne ristkoordinaatides. Tasandülesanne polaarkoordinaatides, telgsümmeetrilised ülesanded. Õhukeste plaatide paine. Plaadi elastse pinna võrrand ja selle lahendusmeetodid. Ristkülikplaatide paindeülesande lahendamine. Telgsümmeetrilised pinged ja deformatsioonid pöördkehades. Ümar- ja rõngasplaatide paindeülesanded. Plaatide stabiilsus.
brief description of the course in English
Hypothesis, principles, methods and problems of linear (classical) elasticity. Relations between linear elasticity, continuum mechanics and strength of materials. Stress, equilibrium equations, principal stresses. Strain, Cauchy relations (between displacements and strains), principal strains, Hook’s law, compatibility conditions. Governing equations in elasticity, methods of solutions, simple 3D problems. Plain problems, plain strain, plain stress, application of stress function for solving plain problems. Plain problems in Cartesian coordinates. Plain problems in polar coordinates, axisymmetrical problems. Bending of thin plates, equation of elastic surface and corresponding methods of solution. Bending of rectangular, circular and annular plates. Stability of plates.
type of assessment in Estonian
Eksami tulemus saadakse kodutööde ja teooriatöö tulemuste kaalutud keskmisena.
type of assessment in English
The final grade is calculated as a weighted mean of results for homeworks and for the theory test.
independent study in Estonian
Kolm kodutööd
1. Peapinged
2. Tasandpingus
3. Plaatide paine
independent study in English
Three homeworks
1. Principal stresses
2. Plain stress
3. Bending of plates
study literature
A. Salupere. Elastsusõpetus. Loengukonspekt. http://www.ioc.ee/~salupere/loko.html).
R. Eek, L. Poverus. Ehitusmehaanika. 2. osa, Tallinn, Valgus, 1967.
study forms and load
daytime study: weekly hours
4.0
session-based study work load (in a semester):
lectures
2.0
lectures
-
practices
0.0
practices
-
exercises
2.0
exercises
-
lecturer in charge
-
LECTURER SYLLABUS INFO
semester of studies
teaching lecturer / unit
language of instruction
Extended syllabus
2024/2025 spring
Madis Ratassepp, EA - Department of Civil Engineering and Architecture
English, Estonian
    EMD5030 hk_eng.pdf 
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    2023/2024 spring
    Madis Ratassepp, EA - Department of Civil Engineering and Architecture
    English, Estonian
      2022/2023 spring
      Madis Ratassepp, EA - Department of Civil Engineering and Architecture
      English, Estonian
        2021/2022 spring
        Madis Ratassepp, EA - Department of Civil Engineering and Architecture
        English, Estonian
          EMD5030 hk_eng.pdf 
          Course description in Estonian
          Course description in English