Direction 1: Mechanical equipment / structural design theory and simulation analysis method (mechanical design and theory)
1. Finite element calculation of mechanical structure stress/strain, stiffness/strength, modality/response, etc.
2. Rotor dynamics theory, analysis method and its application in large complex rotating machinery
3. Design theory and analysis method of various bearings such as sliding, rolling and electromagnetic
4. Mechanical joint surface theory, calculation method and its application in design of tie rod rotor and machine tool
5. Multi-physics analysis of temperature field, thermo-solid coupling, electromagnetic field and magnetic circuit coupling of mechanical structure/equipment
6. Nonlinear vibration calculation method and its application in solving engineering problems
Direction 2: Testing of mechanical quantities in mechanical equipment and related testing techniques(mechanical and electronic engineering)
1. Testing, analysis and experimental research on mechanical equipment/structural vibration and special (including new ultrasonic technology)
2. Design theory, simulation analysis and experiment of on-line dynamic balance head of rotating machinery
3, contact stiffness, stress and strain, electric spindle temperature rise, tool flutter, lubricant film and other new measurement technology and test
4. Mechanical and electrical equipment condition monitoring and fault diagnosis theory, instrument development and system test