Course detail

Structure and Properties of Metallic Materials

FSI-9SVKAcad. year: 2026/2027

The specific content of the course is adapted to the student’s doctoral research topic and aims to deepen understanding of phenomena relevant to the dissertation work. Emphasis is placed on interpreting the behavior and underlying mechanisms of high-value materials, including conventional metallic systems (steels, cast irons, titanium, copper, aluminum, magnesium, etc.) as well as emerging classes of materials such as high-entropy alloys, intermetallics, metal-matrix composites, superconductors, and materials produced by unconventional or additive manufacturing methods.

Language of instruction

Czech, English

Assignment to study programme types

Doctoral

Mode of study

Not applicable.

Entry knowledge

The course is a follow-up to the following courses: "Introduction to Material Science", "Structure and Properties of Materials" and "Non- ferrous Materials". It is intended to deepen and widen the acquired knowledge in the area of research applications.

Rules for evaluation and completion of the course

The written part is focused on materials topics linked to the dissertation topic of the student. In the oral part of the exam a doctor answers additional and complementary questions.

Aims

Study aids

Not applicable.

Prerequisites and corequisites

Not applicable.

Basic literature

Ashby,F.M.-Jones,D.F. : Engineering Materials I,II. Pergamon press, Ltd.,Editors
Ohring, M.: Engineering Materials Science Academie Press, New York, 1995
W.Callister, Jr. : Materials Science and Engineering. John Wiley and sons,Inc.1994

Recommended reading

Dorazil, E. : Kovové materiály. VUT, 1990, Brno
Fremunt,P.-Krejčík,J.-Podrábský,T.: _: Nástrojové oceli. Dům techniky1994
Fremunt,P.-Podrábský,T:: Konstrukční oceli. CERM Brno

Classification of course in study plans

  • Programme D-MAT-P Doctoral 1 year of study, winter semester, compulsory-optional

Type of course unit

 

Lecture

20 hours, optionally

Teacher / Lecturer

Syllabus

Pokročilé konstrukční, vysokopevné oceli.
Aktuální materiály na bázi neželezných kovů,  --  Superslitiny, HEA slitiny, Immiscible slitiny, Heterogenní  a metamateriálové struktury.

Další pokročilé materiály dle zaměření doktorandů