Course detail
Aircraft Structure I
FSI-OPKAcad. year: 2010/2011
History of aviation. New trends of aircraft evolution. Loading effects on an airplane. Airworthiness requirements, manoeuvring and gust envelope. The integral view analysing the stress and deformation distribution in aircraft structures. Ultimate strength of thin-walled airframe structure. Methods of mass effective design aircraft structures. State of stress in open and multibox structures. Structural web and column stabilities. Spar, semi-monocoque and monocoque structures. The modern methods of stress-deformation analysis.
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Planned learning activities and teaching methods
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Lecture
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Syllabus
2. Main airworthiness requirements. Maneuvering and gust envelope.
3. Flight and ground load cases. Loads imposed on the wing and tail surfaces.
4. Means to reduce weight.
5. Tension in thin-walled open sections. Torsion-free bending.
6. Deformation of the structure, elastic axis, influence of curvature and junction.
7. Prevention of buckling. Stiffness enhancement.
8. Spar structure. Shear flow method. Deformation of a structure composed of walls and rods.
9. Monobox and multi-box spar structures.
10. Stability of rods. Influence of combined loads.
11. Stability of walls. Influence of curvature and border conditions.
12. Influence of slenderness ratio, combined loads, multiparametric systems.
13. Tension in sandwich structures.
Exercise
Teacher / Lecturer
Syllabus
2. Manoeuvring envelope.
3. Gust envelope.
4. Introduction to SAVLE software application.
5. Wing loading and tail surface loading in SAVLE.
6. Wing loading and tail surface loading in SAVLE.
7. Landing gear system loading - in connection to SAVLE.
8. Open sections, examples for stress and shear centre calculations.
9. Spar structures – example.
10. Lab. protocol.
11. Stability calculations using tables and supporting diagrams.