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Master's degree Industrial Engineering

Macaron diplôme national de Master contrôlé par l'Etat
Bac+1
Bac+2
Bac+3
Bac+4
Bac+5
M1
M2
Field(s)
Sciences and engineering
Degree
Master's degree  
Mention
Industrial Engineering  
Program
Industrial Engineering  
How to apply
Apprenticeship, Continuing education, Initial training  
Course venue
Campus Marne la Vallée - Champs sur Marne, Bâtiment Lavoisier
Capacities
25  
Training from

Entry requirements

First year: 80% internal recruitment (L3 of the UGE Engineering Sciences Licence), as well as some students with a Licence in the field of science and technology (Engineering Sciences, Mechanics, etc.).

Second year: 90% internal recruitment (M1 of the UGE Industrial Engineering degree), external recruitment (Campus France, first-year Master’s in Industrial Engineering from other French universities).

Benefits of the program

- Innovative teaching methods with a professional focus

- project-based teaching: students are organised into groups representing different roles in a company (design office, methods office, quality department, IT department, etc.) and work on concrete projects.

- workshops on writing CVs and covering letters, applying for work placements and preparing for interviews.

- workshops on documentary research using different media and in different locations

- strong ties with the professional world

- emphasis on English language teaching

Acquired skills

Executive skills.

“Technical projects” for the environment: planning a project in terms of quality/cost/deadlines, studying the feasibility of the services required, checking the strength of the scenario, coordination and management, etc.

“Sizing”: quantifying the behaviour and interactions of a mechanical system, validating calculations, sizing industrial equipment, etc.

“Production”: producing the methods and validating the processes needed to put a mechanical system into production, designing parts, etc.

“Materials”: choosing materials based on their suitability for shaping using a given process, etc.

“Functional design”: drawing up functional specifications with the client, building a functional surface model, specifying the parts of a system, etc.

“Information system”: building and managing a technical database, training users, project data administration, etc.

Certifying services and approving products, etc.

Capacities

25

Course venue

Campus Marne la Vallée - Champs sur Marne, Bâtiment Lavoisier

Your future career

Graduates very quickly find employment related to their studies in a range of fields (see statistics at www.u-pem.fr/ofipe/) Sectors:

Metallurgy-Mechanical industry; Automobile-Aeronautics-Shipbuilding-Transport; Nuclear industry; Energy conversion industry

Careers:

design and consultancy (excluding information systems security); design, research and project development; production-related services (development / studies, business manager / project manager, methods / quality, maintenance, energy control, etc.)

Professional integration

Graduates very quickly find employment related to their studies in a range of fields (see statistics at www.u-pem.fr/ofipe/) Sectors:

 

Metallurgy-Mechanical industry; Automobile-Aeronautics-Shipbuilding-Transport; Nuclear industry; Energy conversion industry

 

Careers:

 

design and consultancy (excluding information systems security); design, research and project development; production-related services (development / studies, business manager / project manager, methods / quality, maintenance, energy control, etc.)

Study objectives

The aim of the course is to train managers able to design mechanical products and their production processes. Graduates are able to respond to technological and economic requirements while taking account of management, communication and performance management factors.

 

To achieve these objectives, emphasis is placed on effective and innovative teaching methods. These are linked to the project-based structure of the second-year Master’s. In this context, students work on real industrial projects and are organised into groups representing different functions in a company (design office, methods office, quality department, IT department, etc.). Emphasis is placed on English: English language classes are a priority and these stand students in good stead for their future careers.

Calendar

M1: Work placement - from early May to September

M2: Work placement - from early February to September

Options

Production Engineering and Product Design programme - MMRI programme

Back-to-school date

09-09-2024

Semester 1

CoursesECTSCMTDTP
ANGLAIS TECHNIQUE

The main objective of the English course in Master 1 is training in public speaking continuously. The student must learn to present and to talk about his work experience, internships and to present personal work done, to describe the challenges and solutions, to answer questions, to develop arguments and to support his views . He is also trained in taking notes, synthesis and reporting (individual or group); he must find, synthesize and report (written and oral) for the information contained in written or oral documents on a topic in the frame work of education (technical) or larger (societal, environmental etc. ).

3 30h
BLOC CONCEPTION DIMENSIONNEMENT 14
CONCEPTION-DIMENSIONNEMENT / DYNAMIQUE DES STRUCTURES

Basics of dynamics for rigid solids: vectorial and energetical approach for industrial problems. Outlighting of dynamical effets: gyroscopic stabilization and dynamic balancing.

 

Teaching language

FRANÇAIS / FRENCH

310h 20h
CONCEPTION-DIMENSIONNEMENT / TRANSFERT DE CHALEUR

Basics of heat transfer (conduction, convection, readiation). Equation of conduction and boundary conditions. Thermal resistance method. Heat transfert from finned surfaces. Transient conduction with isothermal hypothesis. Semi infinite approches in solids

 

Teaching language

FRANÇAIS / FRENCH

210h 10h
CONCEPTION-DIMENSIONNEMENT / METHODES NUMERIQUES

This teaching presents the principle of the 1D finite element method using a simple mathematical approach and elementary mechanical illustrations (traction/compression of a bar with a variable cross section, beam bending ...). After having developed the mathematical formulation using 2 or 3 elements and calculated the resulting approximated solution, the students perform numerical experiments on Octave / Matlab to study the influence of the number of elements and their distribution on the accuracy of the physical quantities of interest (displacement, force, moment, stress, ..)

 

Teaching language

FRANÇAIS / FRENCH

310h 10h 10h
CONCEPTION-DIMENSIONNEMENT / GESTION DES DONNEES

This course aims to give to students a methodological approach for designing a mechanical part or a mechanical assembly from a real industrial system with software for Computer Aided Design (CAD) in a collaborative work environment (concurrent engineering and system engineering data management PDM) and taking into account environmental constraints. The integration of the carbon footprint in the design of a component has an impact on the choice of technical solutions for minimising carbon footprint. The student will at the end of this course a master logciel CAD and PDM in an environment of PLM (Product Lifecycle Management).

 

Teaching language

FRANÇAIS / FRENCH

210h 10h
CONCEPTION-DIMENSIONNEMENT / SPECIFICATION FONCTIONNELLE

This course aims to know the reliability prediction software tools to optimize the management of the maintenance, to adapt statistical tools to the needs and to achieve a statistical test and to interpret its résultats. It also aims to, from the implementation of preventive maintenance, knowledge of the types of diagnosis, to classify the types of failures and to choose the best tools détection. The student will use the methods of reliability, control the behavior of a system in terms of dysfunction and incorporate the requirements of reliability and maintenance in a production system, an analysis of feedback expérience. It will be to control the levers of productivity to manage under conditions competitive production tool in the philosophy of ERP (Enterprise Resource Planning) with an integrated approach to business.

 

Teaching language

FRANÇAIS / FRENCH

210h 10h
CONCEPTION-DIMENSIONNEMENT / ERGONOMIE

This course aims to train students to analyze the ergonomic point of view and securely to a workstation. This analysis will allow the design or improvement of workstations in a factory workshop in order to increase productivity. It is not to turn students ergonomists or listener safety standards but make them aware of a process so that they are able to better identify the elements to be considered in the business and workers in these transformation projects position in terms of ergonomics and safety.

 

Teaching language

FRANÇAIS / FRENCH

210h 10h
BLOC PRODUCTION MATERIAUX 13
PRODUCTION-MATERIAUX / FAO REJOUABILITE NUMERIQUE

The aim of this course is to train students in machining trajectory generation strategies, CNC program coding, CNC program simulation, and digital model replayability. The software tools used are CATIA and Dassault's 3Dexperience

 

35h 15h 10h
PRODUCTION-MATERIAUX / PROCEDES DE MISE EN FORME

'This course aims to familiarize students with unconventional methods (technological position, physical phenomena involved, interaction modeling tool-material, case studies, technical-economic approach, high-pressure jet of water, Laser assisted machining, high speed machining, electrical discharge machining)

 

Teaching language

FRANÇAIS / FRENCH

410h 20h 10h
PRODUCTION-MATERIAUX / SCIENCE DES MATERIAUX

 

315h 15h
PRODUCTION-MATERIAUX / GESTION DES RISQUES-AMDEC

This course aims to establish, via the fault tree construction, the reliability of a mechanical system and by calculating the life of a mechanical system components.

 

Teaching language

FRANÇAIS / FRENCH

315h 15h

Semester 2

CoursesECTSCMTDTP
MANAGEMENT

The student must be able to prepare a job interview and to prepare briefing notes and memos by integrating the concept of internal and external company communication. He must identify the different types of performance-related trades, industrial organization and activities of labor law services and have knowledge of collective agreements and company agreements.

6 30h 30h
Droit social

 

Conduite du changement des organisations

 

Tehcniques de communication

 

GESTION DE PROJET

This course aims to train students in project management and to suggest methodologies for implementing practical tools to carry out a project that aims to education. At the end of this course the student will be able to deploy a project methodology (PDCA quality-oriented methodology Renault type) and a Project Manager team. This course aims to give to students a methodological approach for designing a mechanical part or a mechanical assembly from a real industrial system with software for Computer Aided Design (CAD) in a collaborative work environment (concurrent engineering and system engineering data management PDM) and taking into account environmental constraints. The integration of the carbon footprint in the design of a component has an impact on the choice of technical solutions for minimising carbon footprint. The student will at the end of this course a master logciel CAD and PDM in an environment of PLM (Product Lifecycle Management).

9 30h 60h
Ingénierie simultanée

 

Continuité numérique

 

Approfondissement expert - Séminaires

 

STAGE

Internship in an industrial context.

15

Elie FAVIER

Academic coordinator

Marlène CHAMBONNET

Academic secretary
Phone number : 0160957274

DOS REIS BARREIRA Clemence (L2-L3)

Secrétaire pédagogique
Téléphone : 0160957274

SOLTANI Amel

Gestionnaire VAE
Partners

SAFRAN - DASSAULT SYSTÈME