course aims in Estonian
Anda laiendatud teadmisi materjalide tugevdamistehnoloogiatest (termotöötlus ja pinnatehnoloogia), komposiitmaterjalidest ning materjalide uurimis- ja katsemeetoditest ning nende valikust.
course aims in English
To give broader knowledge on material strengthening Technologies (heat treatment and surface engineering), composite materials and material characterisation methods and their selection.
learning outcomes in the course in Est.
- omama laiendatud teadmisi materjalide erinevatest tugevdamise moodustest: mikrostruktuurne, legeerimine, armeerimine;
- omama laiendatud teadmisi põhilistest tugevdatavatest tehnoloogiatest: termotöötlus, pindamine, pinnatehnoloogia, pulbermetallurgia, armeerimine;
- omama laiendatud teadmisi maatriksi ja armeeriva faasi sisalduse, tüübi ja kuju mõjust komposiitmaterjali omadustele;
- omama laiendatud teadmisi erinevatest komposiitmaterjalidest: metallmaatriks-, keraamikamaatriks-, polümeermaatrikskomposiidid; omadused ja saamine;
- omama laiendatud teadmisi materjalide uurimis- ja mehaanilistest katsetusmeetoditest, katsestandarditest ja oskama valida sobivaim meetod.
learning outcomes in the course in Eng.
- To have extended knowledge of various mechanisms of strengthening materials: microstructural, alloying, reinforcement;
- To have extended knowledge of the main reinforced technologies: heat treatment, coating, surface technology, powder metallurgy, reinforcement;
- To have extended knowledge about the effect of the type, shape and proportion of the reinforcing phase on the properties of composite material;
- To have extended knowledge of various composite materials: metal matrix, ceramic matrix, polymer matrix of their properties and their receipt;
- To have extended knowledge of the standards of material charecterisation and mechanical testing, their requirements and the ability to choose the most appropriate method.
brief description of the course in Estonian
Materjali tugevdamise moodused: tera peenendamine, legeerimine, mitmefaasiline struktuur, dispersioon tugevdamine, kalestumine, termotöötlus.
Termotöötlus: terase termotöötluse viisid (konstruktsioonterased, tööriistaterased), mitterauasulamite termotöötlus.
Komposiitmaterjalid: metallmaatriks, keraamikamaatriks, polümeermaatrikskomposiidid.
Pinnatehnoloogiad: aursadestuspinded, pihustuspinded, galvaanpinded, värvpinded.
Materjalide uurimis- ja mehaanilise katsemeetodid: standardid ja katsemeetodi valik.
brief description of the course in English
Material strengthening methods: grain refinement, alloying, multiphase structure, dispersion strengthening, work hardening, heat treatment.
Heat treatment of steel: main methods (structural and tool steels) and non-ferrous alloys.
Composite materials: metal matrix, ceramic matrix, polymer matrix.
Surface engineering: vapour deposition, hardfacings, galvanizing, painting.
Materials charactarisation and mechanical testing methods; selection of suitable method.
type of assessment in Estonian
Eksamitöö
type of assessment in English
Examination
independent study in Estonian
- valmistumine praktikumideks
- valmistumine testideks
- valmistumine eksamiks
independent study in English
- Preparation for practical work
- Preparation for tests
- Preparation for exam
study literature
1. P. Kulu, R. Tarbe, A. Surženkov. Teraste termotöötlus, e-õpik, TTÜ 2018.
2. F.-W. Bach, A. Laarmann, T. Wenz. Modern surface technology, Wiley 2004.
3. D. Arensburger. Komposiitmaterjalid, TTÜ 2005.
study forms and load
daytime study: weekly hours
4.0
session-based study work load (in a semester):
practices
1.0
practices
12.0