Faculty of Technical Sciences

Subject: Physical modeling and numerical simulations of metal forming processes (17.DP053)

General information:
 
Category Scientific-professional
Scientific or art field Tehnologije plastičnog deformisanja, aditivne i virtuelne tehnologije
ECTS 10

Acquiring knowledge on modern approaches in the field of physical modeling and numerical simulations of metal forming processes. Development of scientific competence, academic and practical skills in this domain. Development of competence required for application of different techniques and a broad spectrum of information technologies which are essential for physical modeling and numerical simulations of metal forming processes.

Fundamental knowledge of the subject of physical modeling and numerical simulation of metal forming processes. Gaining competences for autonomous solving of practical and theoretical problems, and application of scientific method in the subject domain. Mastering of creative approach towards developing new methods and approaches in the subject domain. Development of creative and independent problem solving in the field of physical modeling and numerical simulation of metal forming processes.

Modelling methods. Physical modelling of forming process. Theory of modelling. Deformation theory. Modelling materials. Determination of physical and mechanical properties of modelling materials. Friction and physical modelling. Numeric modelling and simulation of metal forming processes. Theoretical fundamentals of numeric modelling and simulation of plastic deformation. Application of Finite Element Method (FEM) in the field of plastic deformation. Modern software packages for simulation of metal forming processes. Computer Aded Enginering (CAE) in the field of bulk and sheet metal forming. Modelling and simulations of Net Shape Forming technologies. Analysis of elastic deformations of dies and other elements of working system. Application of different heuristic methods in the field of metal forming. Hard and soft computing.

Lectures, study research work and consultations. The lectures provide a theoretical part of the material using modern equipment and information and communication technologies. Through lectures, a student acquires and mastered contemporary scientific knowledge, scientific methods and procedures that enable him to become independent research work. In addition to lectures, consultations are also held regularly. Study research work includes all forms of teaching that are in the function of directly training a student for research, writing scientific papers and making a doctoral dissertation. Study research work includes active monitoring of primary scientific sources, organization and execution of numerical simulations and experimental research.

Authors Title Year Publisher Language
Ganesh Narayanan, Uday S. Dixit Technology and Process Modelling 2013 McGraw-Hill Education LLC English
Zienkiewicz, O. The finite element method 1977 McGraw-Hill, London English
Francisco Chinesta, Elias Cueto Advances in Material Forming 2007 Springer-Verlag English
Shiro Kobayashi, Soo-Ik Oh, Taylan Altan Metal forming and Finite Element Method 1989 John Wley and Sons English
Course activity Pre-examination Obligations Number of points
Oral part of the exam No Yes 50.00
Project Yes Yes 50.00
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Prof. Milutinović Mladomir

Full Professor

Lectures
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Assoc. Prof. Movrin Dejan

Associate Professor

Lectures

Assoc. Prof. Vilotić Marko

Associate Professor

Lectures
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Prof. Milutinović Mladomir

Full Professor

Study research work
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Assoc. Prof. Movrin Dejan

Associate Professor

Study research work

Assoc. Prof. Vilotić Marko

Associate Professor

Study research work

Faculty of Technical Sciences

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© 2024. Faculty of Technical Sciences.