Course details
International Exchange
Course details
Polymers
- Teaching: Completely taught in English
- ECTS: 6
- Level: Undergraduate
- Semester: Winter
- Prerequisites:
- Materials 2
- Load:
Lectures Exercises Laboratory exercises Project laboratory Physical education excercises Field exercises Seminar Design exercises Practicum 45 15 0 0 0 0 0 0 - Course objectives:
- Relating structure and properties of polymers and composites. Developing analytical thinking related to the expectation of polymer behaviour in different thermal and mechanical conditions, and in different media. Introduction to polymer additives. Relating the structure and properties of polymers. Developing critical view related to infodemia in the field of materials. Introduction to current material development.
- Student responsibilities:
- Attending lectures, laboratory tests and evaluation of the results. Preparation of the test report. Preparation of a seminar.
- Grading and evaluation of student work over the course of instruction and at a final exam:
- Up to 5% on five-minute periodic tests in class. Up to 5% for the written and defended test report Up to 5% on seminar work Up to 85% on the written exam (alternative passing 2 colloquia).
- Upon successful completion of the course, students will be able to (learning outcomes):
- 1 . Relate the structure and properties of polymers, with special emphasis on mechanical and thermal properties.
- 2 . Predict the impact of processing on the structure of polymeric materials and relate it to the behaviour in exploitation.
- 3 . Predict the behaviour of polymers in different thermal-mechanical conditions.
- 4 . Predict the behaviour of polymers in different media.
- 5 . Relate the properties and application of basic and advanced polymeric materials.6. Develop critical view towards application of polymers and development of new materials
- 6 . Develop critical view towards application of polymers and development of new materials
- 7 . Interpret supporting material documentation
- Lectures
- 1. Introduction to polymers - definition, basic concepts and systematization
- 2. Relating structure and properties of polymers
- 3. Mechanisms of polymerization reactions, soft condensed matter
- 4. Solidification - semi-crystalline and amorphous structure
- 5. Rheological properties of polymers and viscoelasticity
- 6. Polymer mixing and phase transitions
- 7. Types of polymer decomposition according to the type of impact (thermal, oxidative, ozonation, photooxidation, ionization, chemical, mechanical, aging, biodegradation).
- 8. Chemical resistance of polymers (swelling, degree of swelling, dissolution, diffusion), biodegradation of polymers
- 9. Preliminary exam 1 / Mechanical properties of polymers
- 10. Other properties of polymers and analysis of defects in the material
- 11. Overview of thermoplastics, their properties and application
- 12. Overview of thermosets and elastomers, their properties and applications
- 13. Advanced polymers and biopolymers
- 14. Selection of materials during construction
- 15. Preliminary exam 2
- Exercises
- 1. Characterisation and identification of polymers
- 2. Characterisation and identification of polymers
- 3. Characterization of polymers
- 4. Characterization of polymers
- 5. Viscoelasticity
- 6. Viscoelasticity
- 7. Dynamic-mechanical analysis of polymers
- 8. Dynamic-mechanical analysis of polymers
- 9. Chemical resistance of polymers
- 10. Chemical resistance of polymers
- 11. Mechanical properties of polymers
- 12. Testing of mechanical properties of polymers
- 13. Analysis of student reports on material testing
- 14. Criteria for material selection
- 15. Criteria for material selection
- Compulsory literature:
- Recommended literature:
- 1. Soft Condensed Matter, 2002., Jones, R.A.L, Oxford University Press, 2002, p. 1-45
- 2. Viscoelasticity of Polymers, Ferry, J.D., Wiley , 1980, p. 0-0
- 3. Handbook of Plastics Testing and Failure Analysis, Shah, V., Wiley , 2007, p. 1-116