Light Metal Alloys - NFPL306
Title: Slitiny lehkých kovů
Guaranteed by: Department of Physics of Materials (32-KFM)
Faculty: Faculty of Mathematics and Physics
Actual: from 2020
Semester: both
E-Credits: 3
Hours per week, examination: 2/0, Ex [HT]
Capacity: unlimited
Min. number of students: unlimited
4EU+: no
Virtual mobility / capacity: no
State of the course: taught
Language: Czech
Teaching methods: full-time
Note: you can enroll for the course repeatedly
you can enroll for the course in winter and in summer semester
Guarantor: prof. RNDr. Miloš Janeček, CSc.
RNDr. Jitka Stráská, Ph.D.
doc. RNDr. Peter Minárik, Ph.D.
Teacher(s): prof. RNDr. Miloš Janeček, CSc.
doc. RNDr. Peter Minárik, Ph.D.
RNDr. Jitka Stráská, Ph.D.
doc. PhDr. RNDr. Josef Stráský, Ph.D.
RNDr. Jana Šmilauerová, Ph.D.
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Annotation -
This course focuses on the physics of magnesium and titanium alloys. - fabrication of pure metals and alloys - physical and mechanical properties of main alloys - phase transformations, hardening mechanisms in Mg and Ti alloys - ultra-fine grained Mg and Ti alloys - experimental characterization - commercial use
Last update: Pešička Josef, doc. RNDr., CSc. (13.04.2015)
Course completion requirements - Czech

Předmět je zakončen úspěšným složením zkoušky.

Last update: Stráská Jitka, RNDr., Ph.D. (14.06.2019)
Literature - Czech

Lutjering G., Williams J.C., Titanium, Springer, 2007

Gupta M., Sharon N.M.L., Magnesium, Magnesium Alloys, and Magnesium Composites, Wiley, 2011

Last update: Pešička Josef, doc. RNDr., CSc. (23.04.2014)
Requirements to the exam - Czech

Požadavky ke zkoušce odpovídají anotaci a sylabu předmětu.

Zkouška se skládá z písemné části (test) a ústní části.

Last update: Stráská Jitka, RNDr., Ph.D. (14.06.2019)
Syllabus -

Magnesium

  • fabrication, forming techniques
  • main alloys, composition, intermetallic phases and their role in hardening,

mechanical properties of alloys

  • fabrication of ultra-fine grained alloys
  • peculiarities of microstructural observations
  • microstructural stability, recovery and recrystallization
  • corrosion processes and corrosion resistance of Mg alloys
  • application of Mg alloys, including application for biodegradable implants

Titanium

  • fabrication of pure metal and alloys
  • prominent physical and mechanical properties
  • alpha and beta phases, alloys division, metastable phases in Ti alloys
  • diffusion and displacive transformations and methods of their investigations
  • homogeneous and heterogeneous nucleation, particle growth, hardening

mechanisms

  • thermal and thermomechanical treatment of Ti alloys
  • ultra-fine grained Ti alloys and methods of their investigation
  • Ti6Al4V alloy, high strength metastable beta alloys, high temperature creep

resistant alloys, biocompatible alloys: properties and applications

Last update: Pešička Josef, doc. RNDr., CSc. (13.04.2015)