Metallurgy

Program objective and conception

The objective of the program leading to the Master’s degree in Engineering and Technology is to prepare highly qualified specialists in the field of agglomeration, blast furnace and steelmaking production, who will be able to work creatively in the field of research and metallurgical process modeling, advanced foundry metallurgy and technology improvement of castings production. The basis of this program is computer modeling methodology of iron and steel production processes, and the ability to use it as a tooling for scientific and applied tasks solution of radical enhancement of the efficiency of existing processing, as well as the development of new engineering processes. The distinctive feature of the program leading to the Master’s degree in Engineering and Technology is a creative participation of graduates in the development of modern software systems of computer-aided design and simulation processes of metallurgic production.

As a graduate of Master's Degree Program in Metallurgy, you will be prepared to demonstrate the ability to:

  • formulate and solve problems arising in the course of research and teaching activities and requiring deepen professional knowledge,
  • modify existing and develop new methods of research, including computer models and mathematical modeling methods,
  • evaluate the scientific and engineering solutions from the standpoint of achieving product quality, resource conservation and environmental protection.

A graduate is prepared for activities, which require extend fundamental and training preparation, involving research and research-production work experience.

Program Structure

The master's degree program consists of 4 semesters:

  • four core subjects in the first semester;
  • three modules in the 2 and 3semesters;
  • research activity in the last semester.

Study conditions

The course lasts two years. Full-time education.

The curriculum includes a number of specialized disciplines, forming the professional qualifications of a graduate in the field of computer analysis and of metallurgical processes and technologies optimization: Applied Thermodynamics and Kinetics of Metallurgical Processes; Organization and Mathematical Planning of Experiment; Innovation Management; Manufacturing Process Modeling and Optimization; Information Technology in Metallurgy; Iron Production Processing Theory; Theory of Smelting and Steel Ladle Processing.

In addition to enumerated courses the program focuses on teaching the modern concepts of the regularities of cast iron and steel quality formation on the basis of the physical and mathematical models definition for the set of phenomena, taking place in the blast furnace and steelmaking units, as well as the methodology of processes mathematical modeling, occurring in the secondary treatment units and cast iron steel.

 

Admission Requirements

Applicants to a Master's Degree in Materials Science program should hold a Bachelor's degree in a related subject with good results.

Master's entrance examination is carried out in written form.

 

Masters training

Course – Metallurgy

Major: Metallurgy

 

1st YEAR
1st semester 2nd semester
COURSE TITLE ECTS COURSE TITLE ECTS
Business Foreign Language 4 Philosophical Issues of Science and Engineering 4
Quality Management 2 Research Methodology 2
Innovation Management 2 Technological innovations in scientific research and education 3
Intellectual Property Protection 3 Metallurgical facilities design 3
Innovation Management 1 Modeling and Optimization of Engineering Processes 4
Quality Management 2 The Theory of Cast Iron Processing 3
Contemporary Issues of Metallurgy and Materials Science 3 New metallurgical processes 6
Information Technologies in Industry 3 Metallurgy and Mechanical Engineering Waste Recycling 6
Applied Thermodynamics and Kinetics 3 Practical Work Experience 12
The Theory of  Cast Iron Processing 3    
2nd YEAR
3rd  semester 4th semester
COURSE TITLE ECTS COURSE TITLE ECTS
Organization and Mathematical Design of Experiment 3 Research 12
Technological innovations in scientific research and education 4    
Metallurgical facilities design 4    
Theory of Melting and Steel Ladle Treatment Processes 6    
Theory of Casting and Steel Crystallization 3    
Practical Work Experience 12    

 

Masters training

Course – Metallurgy

Major:  Metalware Production

 

1st YEAR
1st semester 2nd semester
COURSE TITLE ECTS COURSE TITLE ECTS
Business Foreign Language 4 Philosophical Issues of Science and Engineering 4
Quality Management 4 Research Methodology 2
Contemporary Issues of Metallurgy and Materials Science 3 Modern Methods of Materials Research 4
Information Technologies in Industry 3 Substance Control and Analysis Methods 4
Applied Thermodynamics and Kinetics 3 Modeling and Optimization of Engineering Processes 4
Methods of Research Processes and Objects in Metal Pressure Treatment (MPT) Processes 3 Fundamentals   of Engineering Design 6
Innovative Processes in  Metalware Production 4 Practical Work Experience 12
Technological Inheritance in Metallurgy 4    
Software Applications in Technological Problems Solving 4    
  2nd YEAR
3rd  semester 4th semester
COURSE TITLE ECTS COURSE TITLE ECTS
Organization and Mathematical Design of Experiment 3 Research 12
Innovation Management 4    
Intellectual Property Protection 3    
Labor Laws 3    
Fundamentals  of  Labor Laws and Regulations   3    
Environmental Problems in Steel Industry 3    
Ecology of Metallurgy Enterprises 3    
Practical Work Experience 12    

 

Masters training

Course – Metallurgy

Major: Rolling

 

1st YEAR
1st semester 2nd semester
COURSE TITLE ECTS COURSE TITLE ECTS
Business Foreign Language 4 Philosophical Issues of Science and Engineering 4
Quality Management 4 Research Methodology 2
Fundamentals of Functioning of Hydro-Pneumatic Systems of Metallurgical Equipment 3 Describing and Analyzing  Methods of Metals and Alloys Forming 4
Hydro-Pneumatic Drives of Modern Metallurgical Equipment 3 Modeling and Optimization of Engineering Processes 4
Contemporary Issues of Metallurgy and Materials Science 3 Effective Methods of  Metals and Alloys  Structure and  Properties Identifying and Analyzing 4
Information Technologies in Industry 3 Processes, Materials and Testing Methods Review 2
Applied Thermodynamics and Kinetics 3 New Production Lines Equipment in MPT Processes 2
Automation Technological Systems and Computer-Based Control Systems 3 Rolling Mills Engineering Design  2
Innovative Methods of Engineering Problems  Solving 3 Practical Work Experience 12
New Technological Solutions in Metal Pressure Treatment (MPT) Processes 3    
  2nd YEAR
3rd  semester 4th semester
COURSE TITLE ECTS COURSE TITLE ECTS
Organization and Mathematical Design of Experiment 3 Research 12
Innovation Management 4    
Labor Laws 3    
Fundamentals  of  Labor Laws and Regulations   3    
Industrial Ecological Problems and Environmental Protection 3    
Patentability and Technical Level of Development 3    
Practical Work Experience 12    

Power Engineering and Electrical Engineering

Currently, electric power and electrical engineering are rapidly developing areas of science and technology, with a focus on studies of electricity production methods, transmission, transformation and distribution and power and energy flow management, as well as the development of components, devices, and systems, which implement these methods. This area of science is important for the industry and society in general. Therefore, it is necessary to provide the training of highly qualified personnel in this field.

NosovMagnitogorskStateTechnicalUniversityoffers a master's degree for students interested in Power and Electrical Engineering.

This education program is aimed at:

  • providing the graduates with the knowledge in the professional area;
  • providing the graduates with the ability to carry out research independently in order to solve research and production tasks using modern equipment and methods for studying the materials and finished products properties, in carrying out the research in the field of electricity and electrical engineering;
  • providing the graduates with the ability to analyze and systematize knowledge;
  • providing the students with teaching skills;
  • providing the graduates with the ability to make practical decisions based on the understanding of academic content and processes, as well as practical experience;
  • providing the graduates with the ability to work under conditions, requiring personal responsibility and initiative, in sophisticated and often unpredictable situations.

As a graduate of Master's Degree Program in Power and Electrical Engineering, you will be prepared to demonstrate the ability in:

  • design;
  • industry and engineering;
  • organization and management;
  • research activity;
  • installation and debugging;
  • service and operation;
  • teaching. 

Education Program Structure:

The course lasts two years (4 terms).

  • eight core subjects in the first semester, four of which are compulsory and one is elective subject with a specific focus on general academic cycle; two required subjects and one elective subject with a specific focus on professional cycle;
  • five subjects in the second semester, one of them is compulsory with a specific focus on general scientific cycle; three are mandatory subjects and one is elective with a specific focus on professional cycle;
  • three core subjects with a specific focus on professional cycle in the third semester and teaching activity;
  • the fourth semester includes industrial work experience, passing the graduate examination, preparing graduate thesis.

During the education students are engaged in research activity resulted in graduate thesis. 

Admission Requirements

Applicants to a Master's Degree in Power and Electrical Engineering program should hold a Bachelor's degree in a related subject, professional experience in the field of electricity and electronics.

21 years of age.

MasterTraining

Cause - Power Engineering and Electrical Engineering

Major: Electric Drive and Automation 

1st YEAR
1st semester 2nd semester
COURSE TITLE ECTS COURSE TITLE ECTS
Philosophy of Engineering Sciences 3 Foreign Language 4
Computer, Network and Information Technology 4 Variable Speed DC Drives 5
Foreign Language 3 History and Methodology of Science and Production (Electrical Engineering) 2
Additional Mathematical Chapters in Power and Electrical Engineering 3 Microprocessors as Part of Electric Drives and Processing Plants 6
Special Mathematics Chapters 3 Experiment Design 3
Electric Drives and Automation Systems Engineering 6 Fundamentals of Engineering Experiment 3
Intellectual Property Protection 2 Research 9
Patent Science 2    
Contemporary Issues of Science and Manufacturing (Electrical Engineering) 4    
The Issues of Today’s Science and Production (Power Engineering) 4    
Research 6    
2ndYEAR
3rd  semester 4th semester
COURSE TITLE ECTS COURSE TITLE ECTS
Variable Frequency AC Drives 5 Practical Work Experience 18
Energy and Resource Conservation by Means of Automatic Electric Drive 4 Research 12
Energy Audit 3    
Power Management 3    
Practical Work Experience 9    
Research 6    

 

Master Degree

Course - Power and Electrical Engineering

Major:  Electric Power Supply 

1st YEAR
1st semester 2nd semester
COURSE TITLE ECTS COURSE TITLE ECTS
Philosophy of Engineering Sciences 3 Optimal Modes of Power Supply Systems 4
Computer, Network and Information Technologies 3 Stability of Power Supply Systems 4
The Issues of Today’s Science and Industry (Power Engineering) 3 Control, Protection and Automation of Power Supply and Distribution Networks 6
Patents and Intellectual Property Protection 2 Power Supply System Software 7
Additional Mathematical Chapters in Power and Electrical Engineering 2 Analyses and Modeling of  Power Supply Systems 7
Electromagnetic Compatibility in Electric Power Engineering 3 Research Project 9
Theoretical Fundamentals of Automatic Control 3    
Modelling of Electrical Power Systems 4    
Energy Saving and Energy Management 4    
Analysis of Power Consumption and Power Management 4    
Research Project 6    
  2nd YEAR
3rd  semester 4th semester
COURSE TITLE ECTS COURSE TITLE ECTS
Operating Modes of Power Supply Systems 4 Practical Training 18
Special Issues of Electric Power Supply. Part 1 4 Research Project 12
Special Issues of Electric Power Supply. Part 2 4    
Practical Training 9    
Research Project 6    

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