Dec 10, 2019   0:55 a.m. Radúz
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Course syllabus NAMA01_6D - Materials Science (MTF - 2020/2021 - post-graduate studies)


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University: Slovak University of Technology in Bratislava
Faculty: Faculty of Materials Science and Technology in Trnava
Course unit title: Materials Science
Course unit code: NAMA01_6D
Mode of completion and Number of ECTS credits: Exam-PhD (6 credits)
 
Name of lecturer: prof. Ing. Peter Grgač, CSc. (instructor, lecturer, person responsible for course) - slovak, english
 
Learning outcomes of the course unit:
Graduate acquires knowledge of the basic course of Materials Science and of selected chapters oriented to the field of dissertation work.
 
Prerequisites and co-requisites: none
 
Course contents:
Materials classification. Atomic structure and interatomic bonds. Crystallisation of metals and metallic alloys. Diffusion in metals and its alloys. Dislocation theory and hardening mechanisms. Defects in materials. Phase diagrams. Phase transformations in metals. Thermal properties of metals and their alloys. Heat treatment of metallic alloys. Special metallic alloys. Production, structure and properties of ceramics. Production, structure and properties of polymers. Composites. Corrosion and degradation of materials. Physical properties of materials. Evaluation of technical materials with respect to economical and environmental aspects.
 
Recommended or required reading:
Basic:
CALLISTER, W D. Materials Science and Engineering: An Introduction. New York : John Wiley & Sons, 2000. 871 p. ISBN 0-471-32013-7.
SKOČOVSKÝ, P. Konštrukčné materiály. Žilina : Žilinská univerzita, 2000. 246 p. ISBN 80-7100-608-4.
HAZLINGER, M. -- MORAVČÍK, R. Degradačné procesy a predikcia životnosti. Trnava : AlumniPress, 2007. 162 p. ISBN 978-80-8096-031-5.
MORAVČÍK, R. -- HUDÁKOVÁ, M. -- HAZLINGER, M. -- MARTINKOVIČ, M. -- ČIČKA, R. Náuka o materiáloch I. Trnava : AlumniPress, 2010. 249 p. ISBN 978-80-8096-123-7.
Fyzikální metalurgie a mezní stavy materiálu. Praha : SNTL, 1987. 418 p.
PLUHAŘ, J. Nauka o materiálech. Praha : SNTL, 1989. 549 p.
VELES, P. Mechanické vlastnosti a skúšanie kovov. Bratislava : Alfa, 1989. 401 p.
PTÁČEK, L. Nauka o materiálu I. Brno : CERM, 2003. 516 p. ISBN 80-7204-283-1.
PTÁČEK, L. Nauka o materiálu II. Brno : CERM, 2002. 392 p. ISBN 80-7204-248-3.
PULC, V. -- HRNČIAR, V. -- GONDÁR, E. Náuka o materiáli. Bratislava : STU v Bratislave, 2008. 333 p. ISBN 978-80-227-2847-8.
STRNADEL, B. Řešené příklady a technické úlohy z materiálového inženýrství. Ostrava : Bohumír Strnadel, 1998. 334 p.
HRNČIAR, V. Materials Science. Bratislava : STU v Bratislave, 2009. 118 p. ISBN 978-80-227-3197-3.
SKOČOVSKÝ, P. -- BOKŮVKA, O. -- KONEČNÁ, R. -- TILLOVÁ, E. Náuka o materiáli pre odbory strojnícke. Žilina : Žilinská univerzita, 2006. 349 p. ISBN 80-8070-593-3.
JONES, D. -- ASHBY, M F. Engineering Materials 1: An Introduction to their Properties and Applications. Oxford : Butterworth - Heinemann, 1998. 306 p. ISBN 0 7506 3081 7.
JONES, D. -- ASHBY, M F. Engineering Materials 2: An Introduction to Microstructures and Design. Oxford : Butterworth - Heinemann, 1998. 367 p. ISBN 0 7506 4019 7.
ASHBY, M. -- JOHNSON, K. Materials and Design. Oxford: Butterworth Heinemann Elsevier, 2002. 336 p. ISBN 978-0-7506-5554-5.
ASHBY, M. Materials Selection in Mechanical Design. Oxford: Butterworth Heinemann Elsevier, 2005. 603 p. ISBN 978-0-7506-6168-3.
SHACKELFORD, J F. Introduction to materials science for engineers. New York : Macmillan Publishing Company, 1988. 732 p. ISBN 0-02-409730-6.
SEIDEL, W. Werkstofftechnik: Werkstoffe-Eigenschaften-Prüfung-Anwendung. Wien-München : Carl Hanser Verlag, 1993. 368 p. ISBN 3-446-17293-9.
HOSFORD, W F. Materials for engineers. New York : Cambridge University Press, 2008. 278 p. ISBN 978-0-521-89997-0.

Recommended:
Bhushan, B., Gupta, B.K.: Handbook of Tribology. Materials, Coatings and Surface Treatments. USA-N.Y : Mc Graw-Hill Inc., 1991
Buschow, K.H.J. a kol.: Encyclopedia of Materials. Pergamon Press (Elsevier), 1-11 Vol. Set, 2001, ISBN 0080431526
Metals Handbook. Properties and Selection. Nonferrous Allloys ans Special-Purpose Materials. USA : ASM, 1990
Ohring, M.: Materials Science of Thin Films. London : Academic Press, 2002

 
Planned learning activities and teaching methods: Materials classification. Atomic structure and interatomic bonds. Crystallisation of metals and metallic alloys. Diffusion in metals and its alloys. Dislocation theory and hardening mechanisms. Defects in materials. Phase diagrams. Phase transformations in metals. Thermal properties of metals and their alloys. Heat treatment of metallic alloys. Special metallic alloys. Production, structure and properties of ceramics. Production, structure and properties of polymers. Composites. Corrosion and degradation of materials. Physical properties of materials. Evaluation of technical materials with respect to economical and environmental aspects.
 
Assesment methods and criteria: Oral exam
 
Language of instruction: Slovak, English
 
Work placement(s): There is no compulsory work placement in the course unit.


Last modification made by Ing. Erika Kuracinová on 09/11/2019.

Type of output: