National Aerospace University «Kharkiv Aviation Institute»

G9 Applied Mechanics

Specialty G9 Applied Mechanics is the art of breathing life into metal and plastic. Today, an applied mechanic is a Mechanical Hacker and a Robotics Architect who creates the "skeleton" and "muscles" for any modern machine: from medical nanorobots to automated Tesla production lines. The objects of our students' activity include intelligent mechatronic systems, robotic complexes, drones, and bionic prostheses, where precise calculation meets futuristic design.

The goal of training is to mold you into a "kinetics master" capable of designing complex moving systems from scratch. We will teach you how to professionally master CAD/CAM/CAE systems, program CNC machines, master 3D printing methods, and conduct virtual crash tests of structures. It is a perfect combination of "hardware" logic and software intelligence. You will learn to understand the strength of materials and the laws of friction to create mechanisms that run faster, last longer, and operate more efficiently than any counterparts.

Your superpower: In a world where everything is becoming automated, you will possess Spatial Intelligence and Structural Optimization—skills that allow you to turn an idea into a working prototype. Your professional toolkit will include:

- Digital Manufacturing & Prototyping: rapid creation of real parts using laser cutting and additive technologies.

- Mechatronics & Actuator Design: integrating sensors and actuators into mechanical units to create "smart" machines.

- Reverse Engineering: disassembling and analyzing existing machinery samples to improve and recreate them.

- High-Precision Engineering: developing micron-level precision mechanisms for optics, medicine, and microelectronics.

Our graduates are leading design engineers in defense companies, manufacturing engineers at automated plants, robotics developers, and Hard-Tech startups, where the ability to create physical objects that change the game in the market is highly valued.

Objects of activity for graduates include machine elements and mechanism units; technological equipment; tools and tooling; mechanical and physical-technical processing operations, as well as mathematical modeling of machine dynamics and quality management of complex technical systems.

The training is carried out by the Department of Strength of Aircraft (102)

Educational Programs Offered:

Educational Program Degree Form of Study Duration of Study
Dynamics and Solidity of Machines Bachelor
Full-time
3 years 10 months
Dynamics and Solidity of Machines Master, Professional Educational Program Full-time 1 year 4 months