The goal of this major (which it shares with Master’s degree programs in electricity and electro-mechanics) is to give students a complete education in this field. All phases of the mechanical manufacturing process are studied from the design stage to putting manufacturing techniques into place to production planning and the organisation of workshops.
In addition, students will learn about important technological techniques (machine parts) as well as solid mechanics (elasticity and plasticity) in order to master the processing, behaviour and use of common materials. Finally, attention is paid to methods used in the fields of automation and robotics.
In addition, students will learn about important technological techniques (machine parts) as well as solid mechanics (elasticity and plasticity) in order to master the processing, behaviour and use of common materials. Finally, attention is paid to methods used in the fields of automation and robotics.
> Legend | ||||||||
The class MECA 2732 may not be taken as part of this major by ELME students. Students majoring in this field may select: |
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De 20 à 30 credits parmi | ||||||||
Annual block | ||||||||
1 | 2 | |||||||
LGBIO2040 | Biomechanics | Francois Henrotte; | 30h+30h | 5 credits | 2q | x | x | |
LGCIV2042 | Dynamics of structures | Jean-Pierre Coyette; | 30h+30h | 5 credits | 1q | x | x | |
LMECA2170 | Numerical Geometry | Vincent Legat; Jean-Francois Remacle; | 30h+30h | 5 credits | 1q | x | x | |
LMECA2355 | Mechanical design in biomedical engineering | Olivier Cartiaux; Benoit Herman (compensates Benoît Raucent); Benoit Raucent; | 30h+30h | 5 credits | 1q | x | x | |
LMECA2215 | Vehicle System Dynamics | Paul Fisette; | 30h+30h | 5 credits | 1q | x | x | |
LMECA2732 | Introduction to robotics | Renaud Ronsse; | 30h+30h | 5 credits | 2q | x | x | |
LMECA2802 | Multibody system Dynamics | Paul Fisette; | 30h+30h | 5 credits | 2q | x | x | |
LINMA2875 | System Identification | Julien Hendrickx; | 30h+30h | 5 credits | 2q | x | x |