The Master's program "Digital Design and Engineering of Mechanical Engineering Products" is designed to train specialists capable of developing and designing technological equipment for priority industries (mining, manufacturing, etc.). The program offers two training tracks: design engineer and strength engineer, which allows students to choose a direction that matches their interests and goals. The training includes studying the theory of strength, reliability and reverse engineering, as well as mastering modern methods of mathematical, physical and digital modeling. Students get the opportunity to participate in real R&D projects, fulfilling orders from industrial partners, which allows them to gain work experience and wages at the same time.
Main areas of study:
• Fundamentals of digital design and engineering.
• Computer modeling and analysis of structures.
• Application of modern CAD/CAE systems.
• Product lifecycle management (PLM).
• Fundamentals of computer-aided design (CAM).
• Virtual and augmented reality technologies in design.
• Project and team management.
The program is aimed at graduates of the bachelor's and specialist's degree programs with basic knowledge in th
Master's
Degree
Russian
Language
2 years
Duration
About the program
Learning outcomes
- Ability to develop digital models of products using modern CAD/CAE systems;
- Skills in analyzing and optimizing designs using computer modeling;
- Ability to manage projects and teams;
- Knowledge of product lifecycle management principles.
Career opportunities
Graduates of the program are in demand in various branches of mechanical engineering, including automotive, aerospace, shipbuilding and others. They can hold positions of designers, design engineers, product lifecycle management specialists, and project managers
Curriculum
1 semester
1 year
Educational practice: technological (project-technological) practiceNew structural materials and methods of their testingEnvironmental and industrial safetyAcademic WritingPhilosophy of ScienceProject managementMethods of rational use of production resourcesDesigning a system of personal and professional developmentForeign language for master's students
2 semester
1 year
Foreign language for master's studentsResearch SeminarProduct Lifecycle Management PDM/PLMTechnological efficiency of machine parts and its provision in productionEngineering design CADFundamentals of Numerical Methods and ModelingDevelopment and examination of design documentationFundamentals of designing process equipmentThe device of mechanisms of technological machinesPsychology and pedagogyIndustrial practice: technological (design and technological) practiceFundamentals of designing process equipmentThe device of mechanisms of technological machinesIndustrial practice: technological (design and technological) practiceFundamentals of designing process equipmentThe device of mechanisms of technological machinesIndustrial practice: technological (design and technological) practiceFundamentals of designing process equipmentThe device of mechanisms of technological machinesIndustrial practice: technological (design and technological) practiceFundamentals of designing process equipmentThe device of mechanisms of technological machinesFundamentals of designing process equipmentThe device of mechanisms of technological machinesFundamentals of designing process equipmentThe device of mechanisms of technological machinesFundamentals of designing process equipmentThe device of mechanisms of technological machinesIndustrial practice: technological (design and technological) practiceIndustrial practice: technological (design and technological) practiceFundamentals of designing process equipmentThe device of mechanisms of technological machinesFundamentals of designing process equipmentThe device of mechanisms of technological machinesIndustrial practice: technological (design and technological) practiceFundamentals of designing process equipmentThe device of mechanisms of technological machinesIndustrial practice: technological (design and technological) practiceFundamentals of designing process equipmentThe device of mechanisms of technological machinesIndustrial practice: technological (design and technological) practice
3 semester
2 year
Industrial practice: design and engineering practiceReverse engineeringMethods of control and diagnostics in mechanical engineeringIndustrial designSurface modelingAssembly and installation technologyKinematics and layout of process equipmentIndustrial practice: design and engineering practiceReverse engineeringMethods of control and diagnostics in mechanical engineeringIndustrial designSurface modelingAssembly and installation technologyKinematics and layout of process equipmentIndustrial practice: design and engineering practiceReverse engineeringMethods of control and diagnostics of strength of engineering productsMethods of control and diagnostics in mechanical engineeringIndustrial designSurface modelingAssembly and installation technologyKinematics and layout of process equipmentIndustrial practice: design and engineering practiceReverse engineeringMethods of control and diagnostics of strength of engineering productsMethods of control and diagnostics in mechanical engineeringIndustrial designSurface modelingAssembly and installation technologyKinematics and layout of process equipmentIndustrial practice: design and engineering practiceReverse engineeringMethods of control and diagnostics of strength of engineering productsMethods of control and diagnostics in mechanical engineeringIndustrial designSurface modelingAssembly and installation technologyKinematics and layout of process equipmentIndustrial designSurface modelingAssembly and installation technologyKinematics and layout of process equipmentIndustrial designSurface modelingAssembly and installation technologyKinematics and layout of process equipmentIndustrial practice: design and engineering practiceReverse engineeringMethods of control and diagnostics in mechanical engineeringIndustrial designSurface modelingAssembly and installation technologyKinematics and layout of process equipmentIndustrial practice: design and engineering practiceReverse engineeringMethods of control and diagnostics in mechanical engineeringIndustrial designSurface modelingAssembly and installation technologyKinematics and layout of process equipmentProject activities of a master's student: design and calculationSolving linear and nonlinear problems in CAE systemsProject activities of a master's student: design and engineeringEngineering analysis in CAE systemsMechanics of materials and structuresProject activities of a master's student: design and calculationSolving linear and nonlinear problems in CAE systemsProject activities of a master's student: design and engineeringEngineering analysis in CAE systemsMechanics of materials and structuresProject activities of a master's student: design and calculationSolving linear and nonlinear problems in CAE systemsProject activities of a master's student: design and engineeringEngineering analysis in CAE systemsMechanics of materials and structuresProject activities of a master's student: design and calculationSolving linear and nonlinear problems in CAE systemsProject activities of a master's student: design and engineeringEngineering analysis in CAE systemsMechanics of materials and structuresProject activities of a master's student: design and calculationSolving linear and nonlinear problems in CAE systemsProject activities of a master's student: design and engineeringEngineering analysis in CAE systemsMechanics of materials and structuresMechanics of materials and structuresMechanics of materials and structuresProject activities of a master's student: design and calculationSolving linear and nonlinear problems in CAE systemsProject activities of a master's student: design and engineeringEngineering analysis in CAE systemsMechanics of materials and structuresProject activities of a master's student: design and calculationSolving linear and nonlinear problems in CAE systemsProject activities of a master's student: design and engineeringEngineering analysis in CAE systemsMechanics of materials and structures
4 semester
2 year
Project activities of a master's student: design and calculationSolving linear and nonlinear problems in CAE systemsProject activities of a master's student: design and engineeringEngineering analysis in CAE systemsMechanics of materials and structuresProject activities of a master's student: design and calculationSolving linear and nonlinear problems in CAE systemsProject activities of a master's student: design and engineeringEngineering analysis in CAE systemsMechanics of materials and structuresProject activities of a master's student: design and calculationSolving linear and nonlinear problems in CAE systemsProject activities of a master's student: design and engineeringEngineering analysis in CAE systemsMechanics of materials and structuresProject activities of a master's student: design and calculationSolving linear and nonlinear problems in CAE systemsProject activities of a master's student: design and engineeringEngineering analysis in CAE systemsMechanics of materials and structuresProject activities of a master's student: design and calculationSolving linear and nonlinear problems in CAE systemsProject activities of a master's student: design and engineeringEngineering analysis in CAE systemsMechanics of materials and structuresMechanics of materials and structuresMechanics of materials and structuresProject activities of a master's student: design and calculationSolving linear and nonlinear problems in CAE systemsProject activities of a master's student: design and engineeringEngineering analysis in CAE systemsMechanics of materials and structuresProject activities of a master's student: design and calculationSolving linear and nonlinear problems in CAE systemsProject activities of a master's student: design and engineeringEngineering analysis in CAE systemsMechanics of materials and structuresCompletion, preparation for the defense procedure and defense of the final qualification workIndustrial practice: design and calculation practiceVR technologies in productionStrength and reliability of hydraulic and pneumatic drive systems in technical machinesDesign of hydraulic and pneumatic drives for technological machinesDesign of products from composite materialsDesign of products for additive manufacturingCompletion, preparation for the defense procedure and defense of the final qualification workIndustrial practice: design and calculation practiceVR technologies in productionStrength and reliability of hydraulic and pneumatic drive systems in technical machinesDesign of hydraulic and pneumatic drives for technological machinesDesign of products from composite materialsDesign of products for additive manufacturingCompletion, preparation for the defense procedure and defense of the final qualification workIndustrial practice: design and calculation practiceVR technologies in productionStrength and reliability of hydraulic and pneumatic drive systems in technical machinesDesign of hydraulic and pneumatic drives for technological machinesDesign of products from composite materialsDesign of products for additive manufacturingCompletion, preparation for the defense procedure and defense of the final qualification workIndustrial practice: design and calculation practiceVR technologies in productionStrength and reliability of hydraulic and pneumatic drive systems in technical machinesDesign of hydraulic and pneumatic drives for technological machinesDesign of products from composite materialsDesign of products for additive manufacturingCompletion, preparation for the defense procedure and defense of the final qualification workIndustrial practice: design and calculation practiceVR technologies in productionStrength and reliability of hydraulic and pneumatic drive systems in technical machinesDesign of hydraulic and pneumatic drives for technological machinesDesign of products from composite materialsDesign of products for additive manufacturingDesign of products from composite materialsDesign of products for additive manufacturingCompletion, preparation for the defense procedure and defense of the final qualification workIndustrial practice: design and calculation practiceVR technologies in productionStrength and reliability of hydraulic and pneumatic drive systems in technical machinesDesign of hydraulic and pneumatic drives for technological machinesDesign of products from composite materialsDesign of products for additive manufacturingCompletion, preparation for the defense procedure and defense of the final qualification workIndustrial practice: design and calculation practiceVR technologies in productionStrength and reliability of hydraulic and pneumatic drive systems in technical machinesDesign of hydraulic and pneumatic drives for technological machinesDesign of products from composite materialsDesign of products for additive manufacturing
Teaching staff
Fees and funding
Entrance exams
Applicants take the special discipline related to the field of master's degree program in Russian language.
Contact us
Phone
+7 (395) 240-52-15
Mail
admission@istu.edu
Contact us