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Course detail
FSI-WUFAcad. year: 2026/2027
The purpose of the course „Introduction to physics of materials“ is to give to students necessary theoretical basis for solution problems in materials engineering. The main issues of the course are fundamental physicallaws governing the properties and manufacturing processes of the materials. Beside the metallic materials, it covers also basics of ceramics and polymers, their properties and processing. In this way, it creates cross-disciplinary bonds between various types of material.
Language of instruction
Number of ECTS credits
Mode of study
Guarantor
Department
Entry knowledge
Rules for evaluation and completion of the course
Students have to take part in all practices, to give over all protocols of laboratory practices, which have to meet commensurate scientific and graphic level. Students has to successfully two semestral tests. Knowledges of given topics are to be checked at the exam mainly by written form. List of topics will be notified to students at the beginning of the course. At the verbal part of the exam students will answer questions for other knowledges verification. Final classification includes: protocols evaluation, final thesis evaluation and results of the written and verbal parts of the exam.Participation in practices is mandatory, must be properly excused absence. Attendance in practices will be checked, non-participation has to be duly excused. Basic credit conditions are continuous giving over protocols. Knowledges of lectured topics will be checked by two semestral tests. In the case of sick leave in practice given topic will be supplied by individual submission.
Aims
Study aids
Prerequisites and corequisites
Basic literature
Recommended reading
Classification of course in study plans
specialization MTI , 2 year of study, summer semester, compulsory
Lecture
Teacher / Lecturer
Syllabus
1. Elements and their properties. Types of interatomic bonds 2. Inner arrangement of metallic and non-metallic materials3. Electron theory of metals and its application – electrical conductivity, magnetism, cohesion.4. Imperfections of inner structure of materials, their exhibitions and importance5. Thermodynamics of chemical elements, pure materials, solutions and intermediary phases 6. Kinetics of phase transformations7. Crystallization of metals and alloys8. Diffusion and no diffusion transformations in metal systems9. Thermal, electrical and magnetic properties of matters
10. Corrosion
Laboratory exercise
1. Structure of atoms2. Crystal structures – lattice defects, x-ray diffraction3. Thermodynamics of pure materials4. Thermodynamics of solutions5. Enthalpy diagrams for common equilibrium phase diagrams6. Enthalpy diagrams for Fe – C system7. Formation of proeutectoid ferrite8. Construction of kinetic diagrams9. Quantitative methods of classification material structure and their utilization in thermodynamics10. Determination of Gibb’s energy of austenite grain growth11. Diffusion I – solving of the basic problems12. Diffusivity of carbon during cementation // Carbon diffusivity during cementation13. Advanced plastics