Type of studies | Title |
---|---|
Undergraduate Academic Studies | Industrial Engineering (Year: 4, Semester: Winter) |
Category | Professional-applicative |
Scientific or art field |
|
ECTS | 5 |
The goal of course is to master skills in the field of of dismantle technology, as well as in the field of recycling technologies and processes that enable the student to perform the procedure independently in practice. The aim of the course is that industrial engineering gain competence to apply advanced tools for disassembling of products and to design system for recycling.
Students will be able to select the optimal strategy for the disassembly of products at the end of life, that is the application of various methods of processing waste materials into products, materials and ingredients for the original or other purposes. Students gain competence in defining strategies of product management at the end of life cycle in the various processes of industrial engineering.
Introduction to the disassembly and recycling technologies. Environmental aspects of sustainable development.Strategies for the products at the end of life. Design for Excellence. The structure of products, materials and suitability for dismantling and recycling.Structuring of products.Analysis of the characteristics of the product at the end of life cycle.Defining the sequence of operations disassembly of products - network diagram.Determining the depth of disassembly. Select an optimum disassembly process. The level of specialization.Disassembly technology.Equipment and tools for disassembly. Design and production process for the disassembly of the system. The selection of materials, depending on the chosen strategy.Standard elements of the disassembly.Designing for disassembly of non-standard elements.Design of complex technological systems for disassembly.Selection of material handling and storage.Shaping the spatial structure of the system for disassembly.Handling of hazardous and harmful substances.Automatisation of dismantle operations. Introduction to recycling technologies.Legislation in the area of recycling. Mechanical recycling processes. Chemical recycling processes. Biological recycling processes. Paperrecycling.Glass recycling.Tires recycling.Plastic recycling.Recycling of metal waste.Vehicles recycling.Recycling of batteries and accumulators.Recycling of household appliances.Recycling an electric and electronic waste.Wood recycling.Recycling of medical waste.
Lessons includes lectures and computer and laboratory exercises. The lectures handle the theoretical aspects of the subject areas, accompanied by typical examples. Exercises are practice-oriented and geared toward mastery of specialized equipment and software tools. The exercises are performed in the laboratory and with the usage of computers.
Authors | Title | Year | Publisher | Language |
---|---|---|---|---|
2010 | English | |||
2005 | English |
Course activity | Pre-examination | Obligations | Number of points |
---|---|---|---|
Oral part of the exam | No | Yes | 20.00 |
Term paper | Yes | Yes | 20.00 |
Written part of the exam - tasks and theory | No | Yes | 30.00 |
Exercise attendance | Yes | Yes | 5.00 |
Test | Yes | Yes | 10.00 |
Test | Yes | Yes | 10.00 |
Lecture attendance | Yes | Yes | 5.00 |
Full Professor
Associate Professor
Assistant with PhD
Associate Professor
Intern Researcher
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