12 monthsProgramme duration
243 EURTuition Fee/year
SepStarting Month
Programme overview
Main Subject
Engineering - Mechanical
Degree
Other
Study Level
Masters
Study Mode
On Campus
Mechanics of Materials for Engineering and Integrity of Structure
Nowadays, most complex systems (rockets, planes, trains, electrical plants...) are composite assemblies or made of various materials (metals, polymers, ceramics, concrete...). Designing and developing such systems requires a good knowledge of the general principles that govern the behaviour of materials and structures. The objective of “MAGIS” is to provide students with training in the mechanics of materials and structures. Its aim is to establish a relationship between the process, the material, its microstructure and its mechanical properties for advanced industrial applications and innovative processes. It presents a general approach to solid mechanics, as it applies to many different materials (metals, ceramics, glass, composites, polymers, mousse, shape-memory alloys...) to enable students to understand their sizing under complex loading conditions (3D, almost random, anisothermal, multi-physics...). Students receive scientific methodology training that includes experimental characterisation using state-of-the-art tools all the way to the simulation of structures' mechanical behaviour. They also cover modelling deformation mechanisms and the connection between the different phenomena.
Programme overview
Main Subject
Engineering - Mechanical
Degree
Other
Study Level
Masters
Study Mode
On Campus
Mechanics of Materials for Engineering and Integrity of Structure
Nowadays, most complex systems (rockets, planes, trains, electrical plants...) are composite assemblies or made of various materials (metals, polymers, ceramics, concrete...). Designing and developing such systems requires a good knowledge of the general principles that govern the behaviour of materials and structures. The objective of “MAGIS” is to provide students with training in the mechanics of materials and structures. Its aim is to establish a relationship between the process, the material, its microstructure and its mechanical properties for advanced industrial applications and innovative processes. It presents a general approach to solid mechanics, as it applies to many different materials (metals, ceramics, glass, composites, polymers, mousse, shape-memory alloys...) to enable students to understand their sizing under complex loading conditions (3D, almost random, anisothermal, multi-physics...). Students receive scientific methodology training that includes experimental characterisation using state-of-the-art tools all the way to the simulation of structures' mechanical behaviour. They also cover modelling deformation mechanisms and the connection between the different phenomena.
Admission Requirements
- Candidates are required to submit references or letter(s) of recommendation for acceptance
- Candidates are required to submit an essay(s) for acceptance
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