Faculty of Technical Sciences

Subject: Forming of biomedical materials (17.BMIM4B)

Native organizations units: Department of Production Engineering
General information:
 
Category Scientific-professional
Scientific or art field Tehnologije plastičnog deformisanja, aditivne i virtuelne tehnologije
ECTS 6

The objective of the course is to acquire theoretical and practical knowledge related to advanced forming technologies and their application in the fields of medicine and dentistry.

Mastering the theory and training of students at basic level (basic engineering) regarding process design and application of shaping methods for manufacturing medical and dental components, restorations, implants, equipment, etc.

1. Biocompatible metals, requirements and limitations. 2. Theoretical basis of plastic deformation 3. Formability of metal materials 4. Analytical methods in metal forming 5. Modeling and numerical simulation of metal forming processes 6. Methods for cold forming of biocompatible metals 7. Methods for warm forming of biocompatible metals 8. Precision forming of metals 9. Microforming of biocompatible metals 10. The application of metallic powder in biomedical engineering 11. Methods of sintering biocompatible metal powder 12. Biocompatible polymers 13. Theoretical basis of polymer processing 14. Polymer rheology 15. Polymer processing methods, classification and basic characters 16. Continuous methods of polymer shaping 17. Cyclic methods of polymer shaping. 18. Numerical simulations of polymer processing.

Teaching is done interactively in the form of lectures, laboratory and computer exercises. On the lectures theoretical bases of different methods for shaping biomedical materials are given. Also, guidelines for the design of manufacturing processes and characteristic examples of application of forming technologies in the field of medicine and dentistry are provided. Within the laboratory exercises, the presentation of appropriate machines and tools is carried out, as well as calculation of the basic parameters of the process of metal forming and injection molding followed by experimental check. On computer exercises, students are introduced with software packages for simulation of metal forming process (Simufact.Formig) and injection molding (MOldex3D) process. Consultations are held as well.

Authors Title Year Publisher Language
Richard V. Curtis and Timothy F. Watson Dental Biomaterials: Imaging, Testing and Modelling 2008 Woodhead Publishing Limited English
Strong, B.A. Plastics: Materials and Processing 2000 New Jersey: Prentice Hall, New Jersey English
Course activity Pre-examination Obligations Number of points
Final exam - part two No No 25.00
Exercise attendance Yes Yes 5.00
Written part of the exam - tasks and theory No Yes 50.00
Final exam - part one No No 25.00
Lecture attendance Yes Yes 5.00
Complex exercises Yes Yes 40.00
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Prof. Milutinović Mladomir

Full Professor

Lectures
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Assoc. Prof. Movrin Dejan

Associate Professor

Lectures
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Assoc. Prof. Movrin Dejan

Associate Professor

Laboratory classes
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Prof. Milutinović Mladomir

Full Professor

Computational classes

Faculty of Technical Sciences

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© 2024. Faculty of Technical Sciences.