Study programme 2015 - 2016
Programme component of Bachelor's Degree in Engineering à la Faculty of Engineering
CodeTypeHead of UE Department’s
contact details
Teacher(s)
UI-B3-IRCIVI-109-MCompulsory UEGONON Maurice FrançoisF502 - Science des Matériaux
    Language
    of instruction
    Language
    of assessment
    HT(*) HTPE(*) HTPS(*) HR(*) HD(*) CreditsWeighting Term
      Français0000033
      AA CodeTeaching Activity (AA) HT(*) HTPE(*) HTPS(*) HR(*) HD(*) Term Weighting
      I-SDMA-01666,67%
      I-SDMA-00533,33%
      Unité d'enseignement
      PrérequisUI-B2-IRCIVI-011-M Connaissances et choix des matériaux
      PrérequisUI-B2-IRCIVI-006-M Physique moderne
      CorequisUI-B3-IRCIVI-105-M Physique de l'état solide

      Objectives of general skills

      • Understand the theoretical and methodological fundamentals in science and engineering to solve problems involving these disciplines
        • Identify, describe and explain the basic principles of engineering particularly in their specialising field
        • Understand laboratory techniques: testing, measuring, monitoring protocol, and security
        • Select and rigorously apply knowledge, tools and methods in sciences and engineering to solve problems involving these disciplines

      UE's Learning outcomes

      AA-Microstructure et comportement des matériaux sous contraintes mécaniques : To master the basic knowledge required to correlate the mechanical behaviours of materials with their crystal structures and microstructures. AA-Techniques de caractérisation microstructurale : To master the basics relative to the techniques for microstructural characterization of material used in research or industry in the fields of materials science and chemistry;

      UE Content

      Mechanical behaviour modelling; mechanical properties characterisation; elastic behaviour of crystalline solids, of glasses, of polymers and composites; plasticity of metals and metals alloys; influence of temperature on the mechanical behaviour. Interaction between radiations and mater; scanning electron microscopy (SEM); elemental analysis (EDX and WDX); spectroscopic techniques (AES, XPS, SIMS); transmission electron microscopy (TEM); X ray diffraction (XRD).

      Prior experience

      Not applicable

      Term 2 for Integrated Assessment - type

      • Presentation and works
      • Oral Examination
      • Quoted exercices

      Term 3 for Integrated Assessment - type

      • Presentation and works
      • Oral examination
      • Quoted exercices

      Type of Teaching Activity/Activities

      AA
      I-SDMA-016
      I-SDMA-005

      Mode of delivery

      AA
      I-SDMA-016
      I-SDMA-005

      Required Reading

      AA
      I-SDMA-016
      I-SDMA-005

      Required Learning Resources/Tools

      AA
      I-SDMA-016
      I-SDMA-005

      Recommended Reading

      AA
      I-SDMA-016
      I-SDMA-005

      Recommended Learning Resources/Tools

      AA
      I-SDMA-016
      I-SDMA-005

      Other Recommended Reading

      AA
      I-SDMA-016
      I-SDMA-005

      Term 1 Assessment - type

      AA
      I-SDMA-016
      I-SDMA-005

      Term 1 Assessment - comments

      AA
      I-SDMA-016
      I-SDMA-005

      Resit Assessment - Term 1 (B1BA1) - type

      AA
      I-SDMA-016
      I-SDMA-005

      Resit Assessment - Term 1 (B1BA1) - Comments

      AA
      I-SDMA-016
      I-SDMA-005

      Term 2 Assessment - type

      AA
      I-SDMA-016
      I-SDMA-005

      Term 2 Assessment - comments

      AA
      I-SDMA-016
      I-SDMA-005

      Term 3 Assessment - type

      AA
      I-SDMA-016
      I-SDMA-005

      Term 3 Assessment - comments

      AA
      I-SDMA-016
      I-SDMA-005
      UE : Programme component - AA : Teaching activity
      (*) HT : Hours of theory - HTPE : Hours of in-class exercices - HTPS : hours of practical work - HD : HMiscellaneous time - HR : Hours of remedial classes. - Per. (Period), Y=Year, Q1=1st term et Q2=2nd term