Course detail
Polymers
FSI-WPLAcad. year: 2023/2024
This subject deals with materials, which in many applications replace classical materials and together with technical glasses and ceramics create a new class of modern constructional materials. Attention is paid to: molecular structure and molecular weight of polymers, transition
temperatures; viscoelasticity, reological models, stress-strain behaviour, influences of strain rate, of temperature and of time on mechanical properties of polymers, time-temperature superposition, degradation and ageing; polymeric composites, anisotropy of their properties, production and applications; basic types of plastics, their properties and applications; technology of processing and principles of designing of plastic products; plastics and environment, resources of leavings, trends in waste recycling, recycling of plastics to polymers and low-molecular products, incineration of plastics.
Language of instruction
Number of ECTS credits
Mode of study
Guarantor
Entry knowledge
Rules for evaluation and completion of the course
Examination: The first; written; part: the orientation of student in the whole taken through subject matter is checked up by means of 30 questions. Every answer has rate of 5 points in the best occasion, so it is possible to gain 150 points maximally. Acquisition of less then 75 points means the failing. Student, who gains more then 76 points, passes to the second ; oral ; part of exam with rating ;sufficient/E in case of acquirement from 76 to 90 points, ;satisfactory/D from 91 to 105 points, good/C from 106 to 120 point, very good/B from 121 to 135 points and excellent/A from 136 to 150 point. In oral part of exam the student demonstrates the quality and depth of his knowledge in areas determined by examiner. Resulting evaluation of student considers his evaluation from practice and involves results from written and oral part of exam.
Conditions of credit landing: presence in all practical lessons and fulfilment of given tasks. In the case the student does not fulfill these conditions he can receive, in reasoned cases,compensatory conditions.
Aims
The students gain overview about relationship between composition, processing, structure and mechanical properties of polymers and composites with polymeric matrix. Gained knowledge permits the students to choose the most suitable material for given application, to estimate influence of service conditions on behaviour of polymeric materials and to predict the durability of structural parts made of plastics. The students are familiarized with possibilities of recycling of plastic materials.
Study aids
Prerequisites and corequisites
Basic literature
Ducháček V.: Polymery - výroba, vlastnosti, zpracování, použití. 2. vyd. Vysoká škola chemicko-technologická v Praze, Praha 2006. ISBN 80-7080-617-6 (CS)
JONES, D. R. H., ASHBY, M. F. Engineering Materials 1: An Introduction to Properties, Applications and Design. 4. Elsevier Science, 2011. ISBN 0080966659. (EN)
OHRING, M. Engineering Materials Science. San Diego: Academic Press, 1995, 827 s. ISBN 0-12- 524995-0. (EN)
Recommended reading
MEISSNER, B., ZILVAR, V. Fyzika polymerů: Struktura a vlastnosti polymerních materiálů. Praha: Státní nakladatelství technické literatury, 1987, 306 s. (CS)
OHRING, M. Engineering Materials Science. San Diego: Academic Press, 1995, 827 s. ISBN 0-12- 524995-0. (EN)
POKLUDA, J., KROUPA, F., OBDRŽÁLEK, L. Mechanické vlastnosti a struktura pevných látek: (kovy, keramika, plasty). Brno: PC-DIR, 1994, 385 s. ISBN 80-214-0575-9 (CS)
Elearning
Classification of course in study plans
Type of course unit
Lecture
Teacher / Lecturer
Syllabus
2.Reological models of mechanical behaviour of polymers, behaviour of polymers under the tensile stress, time – temperature superposition
3.Composites with polymeric matrix: classification of fillers and polymeric matrixes
4.Basic information about particle, short-fibrous and long-fibrous composites
5.Mechanical properties of composites
6.Processing of composites
7.Overview of polymers and composites with polymeric matrix-picked thermoplastics, their principal properties and applications
8.Overview of polymers and composites with polymeric matrix-thermosets, their principal properties and applications
9.Processing of plastics (compression molding, vacuum forming, transfer molding, extrusion)
10.Processing of plastics (blow molding, injection molding)
11.Bonding of plastics
12.Degradation of plastics (degradation due to mechanical stress, radiation and contact of polymer with liquid)
13.Waste management (trends in waste recycling, recycling of plastics to polymers or to low-molecular products, incineration of plastics)
Laboratory exercise
Teacher / Lecturer
Syllabus
2.Computational practice II
3.Experimental determination of dynamic fracture toughness
4.Excursion to specialised firm
5.Closing practice – questions and answers, discussion.
Elearning