Ecole Supérieure d Ingénieurs de Reims ESIReims Engineering School Graduate School

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ESIReims Ex ESIEC Ecole Supérieure d Ingénieurs de Reims ESIReims Engineering School Graduate School Packaging speciality Ex ESIEC Thermics et Energetics - TE

Academic curriculum Admissions are selective on records and interviews after a minimum of two years of studies at university with a level in major scientific subjects for packaging speciality and in physics for thermics/energetics speciality. Afterwards, the curriculum lasts 3 years, which leads altogether to a fiveyear Master Degree in packaging Engineering.

Packaging speciality

Consultancy for the companies Industrial graduation projects Research Continuing education International relation

FIRST YEAR Mathematics Physics Chemistry Microbiology Toxicology Electronics Packaging materials and process Material resistance Computer science English and second foreign language Communication skills Design and development CAD-CAM Internship

SECOND YEAR Corrosion Packaging machinery Interaction migration Mechanical engineering Inks, varnishes, adhesives Printing technology Cost analysis Packaging functions and analysis Statistics and industrial controls Industrial technology Automation Robotics English and second foreign language Design and development Internship

THIRD YEAR Sustainable development Quality Negotiation skills Value analysis Production Financial management Purchasing Prototyping Legislation Logistics Design English and second foreign language Marketing Industrial Graduation Project

Supplier purchaser Marketing Packaging Engineer Production Designer Quality Logistic

Jobs after Packaging speciality graduation 64 % packaging users : perfume, food, car industries, retailors 36 % packaging manufacturers : R&D, conception/creation. retailors 5% Others 22% Materials 16% Pharmaeutics7% Cosmetics 20% food 30% Some of the factories that trusted with us L OREAL GIVENCHY DANONE UNILEVER NESTLE SANOFI CARREFOUR LVMH LACTALIS PSA 3 M KNAUF BOLLORE HENKEL KRAFT FOODS PROCTER

Thermics and energetics speciality Answer to present needs in engineer in energetics skills and thermics skills

Car industry Thermic motor, passenger compartment Ovens, burners aeronautics Propulsion, flows Industrial processes R&D Ceramics, plastics Injection, thermoforming Metallurgy Thermic cycle, high temperature Food processing - agrobusiness Manufacture, dehydratation, Drying, Thermics engineer

Energy production and supply Buildings Thermics balance, lightings, scaling Energy transport Heat net inside town Grenelle Law (august 3rd 1999) Renewable energies, sustainable dvpt Industries Global warming effect, carbon footprint Quality control, evaluation Standards, labels, Energetics engineer

FIRST YEAR Mathematics Physics Chemistry Material resistance Thermic transfers Fluid mechanics Hydraulic nets Heat transfers Building thermics Applied thermodynamics Computer science English and second foreign language Communication skills Internship

SECOND YEAR Mechanical engineering Heat transfers 3D simulation Ovens, heaters, motors Car thermics Industrial thermics Renewable energy Meteorology Climatic engineering Cost analysis Statistics and industrial controls Industrial technology English and second foreign language Internship

THIRD YEAR And. Sustainable development Quality Negotiation skills Value analysis Production Financial management Purchasing Legislation Acoustic and thermic systems IR thermography Numerical simulation English and second foreign language Marketing Industrial Graduation Project

THIRD YEAR Specializations Energetics : -Carbon footprint -Building energetic consumption -Dynamic heat loss -Lightings -Renewable ernergies Thermics : - Advanced Heat transfers -Dual systems -Complex flows

The school Staffs -29 permanent teachers -15 exteriors (industrials) -14 engineers, technicians, administration Students -50 students (packaging) - 25 students (thermics and energetics)

INTERNSHIPS

April May June July August September October November 1 st year placement : 3 years studies in Higher Education 1 Graduation project : 5 years studies in Higher Education 2 nd year placement : 4 years studies in Higher Education 2 3

INTERNATIONAL POLITIC

scolar partnerships Europe : Berlin, Stuttgart, Barcelona, Trondheim, Italia, Roumania, Hungaria Bulgaria USA (MSU, San Jose) 20% training sessions abroad Adult education Indonesia, Belgium, Russia, Morroco, China, Chile, West Africa

RESEARCH GROUPE de RECHERCHE en SCIENCES POUR L INGENIEUR ( EA 4694 ) U.F.R. Sciences Exactes et Naturelles, REIMS

-Thermodynamics -Multiscale thermophysics characterization -Packaging materials, processes and systems -Applied and numerical mechanics -Civil engineering

Staffs - 60 permanent teacher-researchers - 9 engineers, technicians, administration - 30 PhD students

Research at school Mechanical behavior : All along the logistic global chain : - static stress - vibration stress - impact - drop Simulation of mechanical behavior of packagings

Polymer materials - polymer blends, multilayer, composits - from renewable / petroleum ressources - active, intelligent materials

Polymer processing - Extrusion, injection and thermoforming - reactive extrusion

Properties - viscoelasticity (DMTA,...), mechanics (elongation, compression, ), thermics (DSC, ATG,...), physico-chimistry (morphology, contact angle,...) and rheology analysis - microstructure determination (microscopy, image - Interphase studies

migration and absorption - characterization of absorbed products or additives thanks to critical CO2 extraction, soxlet, ultrasound, chromatography - chemical analyzis after extraction - FTIR analyzis Transfer of matter : permeability, diffusion, solubility - Oxygen, water vapor and aroma measures on flat samples of final products.

Biodegradability measurement - fast and predictive method of biodegradability measurements. - Conception of automatized equipment for carbon cycle study and interactions between material and micro-organisms ; measurements on solid et liquid medium - Adjustment of knowledges on mechanisms of biodegradation

EQUIPMENTS

Paper / Carboard Traction compression permeability Dynamic flexion Static flexion abrasion Short crush test compression burst tearing friction

Prototyping 3D prototyping Comptuter room Cutting table

Polymer processing Injection molding Twin screw extruder Heated plate press One screw extruder Internal blender thermoforming Waffle molding

Tests on final packaging compression Transport simulation Vibration table drop

Properties of polymers Angle contact viscosity H2O permeability Dimension measurement traction sealing DSC ATG DMA Stress rheometer IR

Identification Gas chromatography (mass detection) CO2 extractor Desorption chromatography

Aging and biodegradation Accelarating UV aging Suntest accelerating aging biodegradation