Welding technology
BASIC DATA
course listing
A - main register
course code
MTT0090
course title in Estonian
Keevitustehnoloogia
course title in English
Welding technology
course volume CP
-
ECTS credits
6.00
to be declared
yes
assessment form
Examination
teaching semester
spring
language of instruction
Estonian
English
Study programmes that contain the course
code of the study programme version
course compulsory
MATM02/25
yes
Structural units teaching the course
EM - Department of Mechanical and Industrial Engineering
Course description link
Timetable link
View the timetable
Version:
VERSION SPECIFIC DATA
course aims in Estonian
- anda alusteadmisi metallide tähtsamatest keevitusprotsessidest, seadmetest ja kasutusaladest;
- anda alusteadmisi teraste keevisliidete mehaanilisi omadusi mõjutatavatest metallurgilistest ja tehnoloogilistest teguritest, konstruktsiooniteraste, roostevaba terase ja alumiiniumi sulamite keevitatavusest, keevitusdefektidest, keevitusdeformatsioonidest ja keevitustootmise kvaliteeditagamisest:
– anda esmaseid oskusi valida keevitusprotsessi ja selle põhiparameetreid silmas pidades toote konstruktsiooni, materjali keevitatavust ning tootmise majanduslikke ja keskkonnaga seotud aspekte.
– Anda teadmisi keevisliidete projekteerimisest, arvutusmudelitest ja optimaalsetest lahendustest.Osata teostada keevisliidete tugevusarvutusi.
course aims in English
- to give the basics on main industrial welding processes of metals, equipment and process applications;
- to provide basic knowledge and primary practical skills on welding metallurgy of steels, aluminium alloys, mechanical properties of joints, weldability, welding defects, welding distortions and quality assurance;
- to provide basic skills for principles of selection of welding processes and process parameters for manufacturing steel constructions, welded joint design, material weldability, economical and environmental aspects of joining process.
- to provide basic knowledge of design, simulation and calculation of welded joints, requirements on design and calculation of joints with static and cyclic loads.Practical exercises.
learning outcomes in the course in Est.
- teab metallide keevitamisese ja jootmise põhiprotsesse, seadmeid, keevisliidete arvutusmeetodeid ja projekteerimise aluseid;
- omab alusteadmisi teraste ja alumiiniumi keevisliidete mehaanilisi omadusi mõjutavatest teguritest ja nähtustest seostatuna metallurgiaprotsesside ja keevitatavusega, keevitusdefektidega ja keevitusdeformatsioonidega;
- oskab rakendada teadmisi keevitustehnoloogiast erinevate liidete keevitamiseks etteantud mehaaniliste omaduste saavutamiseks koos põhiliste parameetrite määramisega, teostada keevisliidete tugevusarvutusi;
- omab esmaseid praktilisi oskusi analüüsida keeviskonstruktsioone liidete tüüpide, rakendatud koormuste, konstruktiivsete lahenduste ja piirangute põhjal ja kvaliteedinõuete osas, hinnata materjalide keevitatavust ja konstruktsiooni tehnoloogilisust, teha tehniliselt ja majanduslikult põhjendatud valikuid keevitusprotsessi, keevitusdeformatsioonide ohjamise, keevisliidete mittepurustava kontrolli ja keevitustööde kvaliteeditagamise osas.
learning outcomes in the course in Eng.
- know main welding processes of metals, equipment and their applications;
- show basic knowledge and terms to give mechanical strength of welded joints related to welding metallurgy, weldability , weld defects, welding distortions, welding quality assurance tehniques;
- able to apply knowledge on welding technology for manufacturing welded joints with predicted mechanical properties, optimized selection of welding process and determination of the main process parameters;
- have a basic practical capability to analyze technical drawings of welded structures, demands on weld quality, access for welding, needs for preaheating and heat treatment, choise economically justified welding process, control of welding distortions, non destructive testing of welds, quality assurance procedures;
- to perform design calculations and stress simulations on a welded structures.
brief description of the course in Estonian
Keevitamise alused: keevisliidete tüübid ja tähistus joonistel, liite kriitilised osad, kvaliteedi kriteeriumid. Keevitamise kaasnähtused: soojuslevi ja soojussisestus, mõju struktuurile ja mehaanilistele omadustele, liite jahtumisaja t8/5 kontseptsioon.
Metallide keevitatavus: kriteeriumid, pragunemisnähtused, külmpragude ja kuumpragude riski arvutuslik hindamine, süsinikekvivalent, ettekuumutus ja järeltermotöötlus, roostevaba terase jaiiniumi sulamite keevitatavus ja kasutatavad diagrammid .
Keevitusprotsessid: kaarkeevitus (käsikaarkeevitus, kaitsegaaskaarkeevitus, räbustikaarkeevitus), gaaskeevitus, otshõõrdkeevitus. Lisamaterjali ja parameetrite leidmine. Kõvajoodisjootmise ja jootekeevituse tehnoloogia.
Keevisliidete projekteerimine: liidete simuleerimine, soojuslevi mudelid, staatilised ja tsüklilised koormused, piirangud ja soovitused liidete projekteerimisel ,riskide analüüs, arvutusmeetodid.
Keevitustootmise kvaliteedisüsteemi alused ja keevisliidete kontroll: standardid, keevitaja kvalifikatsioon ja keevitusprotseduur. Keevisliidete purustuskatsetamine ja mittepurustav katsetamine. Ohutushoid ja keevitustööde ökonoomika.
brief description of the course in English
Basics of welding. Types and symbolic representation of welds on drawings, quality levels. Welded joint zones, structure and properties of heat affected zone. Effects of temperature, cooling rate and heat input on structure of joint, t8/5 concept.
Weldability of materials. Cracking phenomena in steels, cold (hydrogen), hot reaheat cracking, lamellar tearing. Calculation of risks of cracking, carbon equivalent, preaheating and post weld heat treatment. Weldability of stainless steel and and prediction of structure using different diagrams. Welding of aluminium alloys.
type of assessment in Estonian
Eksamitöö
type of assessment in English
Examination
independent study in Estonian
Ettevalmistus kohapealseteks praktikumideks
Kodutööde vormistamine
Valmistumine eksamiks
independent study in English
Preparation for practical works
Home works
Preparation for examination
study literature
1) Laansoo, A., Keevitustehnoloogia, TTÜ Kirjastus,Tln, 2011;
2) Cary H.B., Modern welding technology, Prentice Hall, New Jersey, 2005;
3) Weman, K., Welding processes handbook. Woodhead Publishing Ltd, Cambridge, 2003, 2012;
4) Althause, A., Tunquist, S., Modern welding, The Goodheart-Willcox Company, Tinley park, 2013.
study forms and load
daytime study: weekly hours
4.0
session-based study work load (in a semester):
lectures
2.0
lectures
16.0
practices
1.5
practices
6.0
exercises
0.5
exercises
8.0
lecturer in charge
-
LECTURER SYLLABUS INFO
semester of studies
teaching lecturer / unit
language of instruction
Extended syllabus
2025/2026 spring
Mart Kolnes, EM - Department of Mechanical and Industrial Engineering
Estonian
    MTT0090 Hindamine Ingl.pdf 
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    2024/2025 spring
    Mart Kolnes, EM - Department of Mechanical and Industrial Engineering
    Estonian
      MTT0090 Hindamine Ingl.pdf 
      2023/2024 spring
      Martin Eerme, EM - Department of Mechanical and Industrial Engineering
      Estonian
        2022/2023 spring
        Martin Eerme, EM - Department of Mechanical and Industrial Engineering
        Estonian
          2021/2022 spring
          Martin Eerme, EM - Department of Mechanical and Industrial Engineering
          Estonian
            MTT0090 Hindamine Ingl.pdf 
            2020/2021 spring
            Martin Eerme, EM - Department of Mechanical and Industrial Engineering
            Estonian
              MTT0090 Hindamine Ingl.pdf 
              2019/2020 spring
              Andres Laansoo, EM - Department of Mechanical and Industrial Engineering
              Estonian
                MTT0090 Hindamine Ingl.pdf 
                2018/2019 spring
                Andres Laansoo, EM - Department of Mechanical and Industrial Engineering
                Estonian
                  MTT0090 Hindamine Ingl.pdf 
                  Course description in Estonian
                  Course description in English