4 ECTS credits
110 u studietijd

Aanbieding 1 met studiegidsnummer 4004781FNR voor alle studenten in het 2e semester met een gespecialiseerd master niveau.

Semester
2e semester
Inschrijving onder examencontract
Niet mogelijk
Beoordelingsvoet
Beoordeling (0 tot 20)
2e zittijd mogelijk
Ja
Inschrijvingsvereisten
Registration for Aircraft Structures is allowed if one has successfully accomplished or is registered for 30 ECTS of (semi)common courses of the standard learning path of the Master in Electromechanical Engineering, AE track (Dutch program idem).
Onderwijstaal
Engels
Onder samenwerkingsakkoord
Onder interuniversitair akkoord mbt. opleiding
Faculteit
Faculteit Ingenieurswetenschappen
Verantwoordelijke vakgroep
Toegepaste Mechanica
Externe partnerinstelling(en)
Université libre de Bruxelles
Onderwijsteam
Decaan IR (titularis)
Onderdelen en contacturen
24 contacturen Hoorcollege
24 contacturen Werkcolleges, practica en oefeningen
Inhoud

Theoretical part:
- Introduction to aircraft structures (trussed, moncoque, semi-monocoque)
- Certification specifications (safety factors, fatigue, fail-safe design)
- Overview of aircraft loads and their effects on the structural design
- Analysis of closed and open thin-walled beams
- Plate and shell theory applied to aircraft skin and web panels
- Buckling and post-buckling behaviour of skin and web panels, crippling loads

Practical part:
- Practical analysis of a typical trussed wing structure (emphasis on load transfer)
- Practical analysis of thin-walled representative of aircraft structures
- Structural idealization of thin-walled structures
- Practical analysis of a typical fuselage configuration
- Practical analysis of a typical 'torque-box' wing configuration
- Practical determination of buckling, crippling, wrinkling and inter-rivet buckling loads in compression panels

Studiemateriaal
Digitaal cursusmateriaal (Vereist) : Course notes written by the course instructor
Handboek (Aanbevolen) : Introduction to aerospace structural analysis, Allen, D.H. & Haisler, W.E., John Wiley & Sons, 9780471888390, 1985
Bijkomende info

Course notes written by the course instructor.

Complementary study material:

- Allen, D.H. & Haisler, W.E. Introduction to aerospace structural analysis. John Wiley & Sons, 1985
- Bruhn, E.F. Analysis and design of flight vehicle structures. Jacobs Publishing, 1973
- Niu, M.C.Y. Airframe stress analysis and sizing. Hong Kong Conmilit Press, 1997
- Megson, T.H. Aircraft structures for Engineering Students. Arnold, 1999
- Rivello, R.M. Theory and analysis of flight structures. Mc. Graw Hill, 1969

Leerresultaten

Algemene competenties

At the end of the course the student should have understood the major characteristics of metallic aircraft structures and the principles underlying their design. He/she should be able to sketch preliminary structural components (wing or fuselage section) and to tackle a preliminary analysis in terms of stress sizing (based on a given geometry), using commonly-used hypotheses and idealisations, including providing orders of magnitude for non-linear stability phenomena.

Scientific competences

Can collaborate in a (multidisciplinary) team.

Scientific competences

Can work in an industrial environment with attention to safety, quality assurance, communication and reporting.

Scientific competences

Can develop, plan, execute and manage engineering projects at the level of a starting professional.

Scientific competences

Can think critically about and evaluate projects, systems and processes, particularly when based on incomplete, contradictory and/or redundant information.

Attitudes

Having a creative, problem-solving, result-driven and evidence-based attitude, aiming at innovation and applicability in industry.

Attitudes

Having a critical attitude towards one's own results and those of others.

Attitudes

Having consciousness of ethical, social, environmental and economic context of his/her work and strives for sustainable solutions to engineering problems including safety and quality.

Attitudes

Having the flexibility and adaptability to work in an international and/or intercultural context.

Attitudes

Having an attitude of life-long learning as needed for the future development of his/her career.

Knowledge oriented competences

Having in-depth knowledge and understanding of integrated structural design methods in the framework of a global design strategy.

Knowledge oriented competences

Having in-depth knowledge and understanding of the advanced methods and theories to schematize and model complex problems or processes.

Knowledge oriented competences

Having a broad scientific knowledge, understanding and skills to be able to design, produce and maintain complex mechanical, electrical and/or energy systems with a focus on products, systems and services. E.g. codepo project, courses around renewable, sustainable mobility, ...

Knowledge oriented competences

Having an in-depth understanding of safety standards and ruls with respect to mechanical, electrical and energy systems.

Scientific competences

Can reformulate complex engineering problems in order to solve them (simplifying assumptions, reducing complexity).

Scientific competences

Can conceive, plan and execute a research project, based on an analysis of its objectives, existing knowledge and the relevant literature, with attention to innovation and valorization in industry and society.

Scientific competences

Can correctly report on research or design results in the form of a technical report or in the form of a scientific paper.

Scientific competences

Can present and defend results in a scientific sound way, using contemporary communication tools, for a national as well as for an international professional or lay audience.

Beoordelingsinformatie

De beoordeling bestaat uit volgende opdrachtcategorieën:
Examen Schriftelijk bepaalt 50% van het eindcijfer

WPO Paper bepaalt 50% van het eindcijfer

Binnen de categorie Examen Schriftelijk dient men volgende opdrachten af te werken:

  • written exam met een wegingsfactor 1 en aldus 50% van het totale eindcijfer.

    Toelichting: Written examination, use of textbooks is permitted.

Binnen de categorie WPO Paper dient men volgende opdrachten af te werken:

  • WPO paper met een wegingsfactor 1 en aldus 50% van het totale eindcijfer.

    Toelichting: The examination paper may be written in English, Dutch or French.

Aanvullende info mbt evaluatie

Written examination, use of textbooks is permitted. The examination paper may be written in English, Dutch or French.

Toegestane onvoldoende
Kijk in het aanvullend OER van je faculteit na of een toegestane onvoldoende mogelijk is voor dit opleidingsonderdeel.

Academische context

Deze aanbieding maakt deel uit van de volgende studieplannen:
Master in de ingenieurswetenschappen: werktuigkunde-elektrotechniek: lucht- en ruimtevaart
Master of Electromechanical Engineering: Aeronautics (enkel aangeboden in het Engels)