Examination sessions (two) winter session (January/February) summer session (June/July) Courses per years Year I Semester I Semester II crt.

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1 Transilvania University of Braşov, Romania Study program: EGINEERING AND MANAGEMENT OF ADVANCED MATERIALS METALLIC, CERAMIC AND COMPOSITE Faculty MATERIALS SCIENCE and ENGINEERING Study program (Curriculum) Study period 2 years (master) Academic year structure 2 semesters (14 weeks per semester) Examination sessions (two) winter session (January/February) summer session (June/July) Courses per years Year I No. Course Semester I Semester II crt. C S L P Cred. C S L P Cred. 1. Unconventional Technologies SMTEHN Advanced Methods of Analysis in 8 SMMAAS 2 2 Materials Science 3. Modeling, Simulation and Optimization of Processes SMMSOP European Programmes and 6 Strategies in the Field of Advanced Materials SMPESD Total Quality Management SMMACT Choosing of Materials SMAMAT Technical English SMENGT Functional Materials for Sensors and Actuators 9. Technologies and Equipments for Rapid Prototyping Year II SMMFSA SMTEPR No. Course Semester I Semester II crt. C S L P Cred. C S L P Cred. 10. Equipments for Unconventional Technologies SMEPTN Expert Software CAD/CAM/CAE for Unconventional Technologies SMSEPTN Tribological Characterization of Surfaces SMTRIB Total Productive Maintenance SMMTPD weeks x Practical Activity and/or Scientific SMAPCS hours/week = 160 Research hours weeks x Drafting of Dissertation Work SMEXDS hours/week = 64 hours RECTOR, Prof. Ph.D. Eng. Ioan Vasile ABRUDAN DEAN, Prof. Ph.D. Eng. Teodor MACHEDON PISU HEAD of DEPARTAMENT, Assoc. professor dr. Eng. Sorin Ion MUNTEANU STUDY PROGRAM COORDINATOR, Prof. Ph.D. Eng. Virgil GEAMĂN

2 Year I Unconventional Technologies SMMTEHN Getting started. The subject matter and importance of the discipline. The stage of development of unconventional technologies for materials processing abroad and in the country. - Special training and design for: - General presentation of Croning Processes; - Realization of mouldings using easy fusible models; - Realization of plaster casting forms; - Process of molding forms by Air-shock process; - Special casting processes of metallic alloys; - Centrifugal casting in magnetic field; - Centrifugal casting of spherical cave parts; - Sheet metal deformation with rubber - Flexforming; - Thixoforming Process; - Hot isostatic processing HIP Compaction; - Dieless drawing. Advanced Methods of Analysis in Materials Science SMMAAS Analysis of compactness metal products. - Study of phase transformation by thermal analysis (DSC, DTA). - Analysis of metal and oxide materials using dilatometry. - Determination of thermophysical properties: heat capacity, thermal conductivity - Quantitative image analysis in materials science. - Optical emission spectrometry for alloy analysis - Material characterization by X-ray diffraction - Characterization of materials by scanning electron microscopy. - Transmission electron microscopy. - Analysis of surface micro hardness and analyze by micro and nano identification. Modelling, Simulation and Optimization of Processes SMMSOP General information s about modelisation and optimization of processes. - Physical and chemical analysis of processes. - Mathematical modelisations of processes. - Methods to solve mathematical equations. - Software for simulation of processes. - Principles of modeling heat exchange at solidification of casting alloys. - Study of alloy solidification by computer simulation. - Optimization of cast design technology by mathematical modelisation and computer simulation. European Programs and strategies in materials science domain_m,r SMPESD

3 - EU organization and Romanian position; - Categories of European Programs; - Research programs COST, FP7, EUREKA; - Mobility programs Marie Courie; - Principles of drawing up of one proposal; - Peculiarities of materials sceince programs; - Quality of the research team; - Basic financial aspects; Total Quality Management SMMACT The concept of Total Quality Management (TQM). TQM principles. - Standardization. Vocabulary and terminology in quality. ISO The Primary Elements of TQM. - Implementing Total Quality Management. - How Total Quality Management Began. - Deming s 14 Points & TQM. - Why should a company adopt TQM. Choosing of Materials SMAMAT The overall objective of the discipline-at the end of this course the student will possess the skills to understand the correlation that exists between structure and properties, and to optimize the choice of materials so that the functional, technological, economic, ergonomic and design conditions are fulfilled. - Content - Criteria for choosing materials - functional, technological, economic, ergonomic - Methods used in the optimization of the choosing of materials (functional analysis, matrix calculation, value analysis, etc.) - Choosing materials for constructions of a mechanical nature, metallic nature, machine parts, chemical industry, medical industry (criteria for choosing materials, value analysis, matrix calculation, optimizing the choosing of materials) No. Of Credits Course Seminar Laboratory Project Technical English SMENGT Working in industry (a manufacturing company, products and markets, company size, company background) - A tout of the workplace( arrivin, location, describing the layout) - Tools and equipment (workshop and facilities, the right tool for the job, in the storeroom, an unfamiliar piece of equipment) - Suppliers and sub-conductor (choosing suppliers, guaranteed supply, extra staff) - Building and installations (a new warehouse, the building schedule, project planning, making progress) - Maintenance (a minor fault, light or heavy use?) - Troubleshooting (a personnel problem, an electrical and mechanical problem) - Safety in teh workplace (a noisy environment, warning signs, machine safety) - Environmental matters ( recycling, energy, environmentally-friendfly products).

4 Functional Materials for Sensors and Actuators SMMFSA General things regarding sensors and transducers. Measuring systems. The notion of sensor and transducer. - Transducer s features. Static and dynamic features. Energetic and structural features. - Temperature sensors, pressure, speed and level. - Gear and revolution sensors, power and couple. - Pressure, speed and proximity sensors. - Actuators: general things, classification, features. - Shape memory materials. - Piezoelectric materials. - Electro and magneto-strictive materials. - Electro and magneto-rheological materials. - Applications of micro-sensors and micro-actuators obtained with smart materials Technologies and Equipments for Rapid Prototyping SMTEPR Layered manufacturing. - Rapid Prototyping technologies: based on photopolymer solidification - Technologies and Equipments for Stereolithography. - Rapid Prototyping technologies based on powders: 3D Printing Equipments, Selective Laser Sintering Equipments - Rapid Prototyping technologies based on material submission: Fused Deposition Modelling, - Rapid Prototyping Technologies and Equipments based on sheets - Materials used in Rapid Prototyping - Rapid Tooling Technologies. Year II Equipments for Unconventional Technologies SMEPTN Getting started. The subject matter and importance of the discipline. The stage of development of unconventional processing equipment used for advanced materials worldwide and to the country. - Study and design of specific equipment used for unconventional processing technologies for advanced materials such as: - Specific Equipment for sheet metal deformation with rubber Flexforming - Specific Equipment for deep drawing, thick plating, explosive plating, casting plating, etc. - Specific rolling deformation equipment. - Hydroforming - specific equipment, etc. - Specific thixoforming equipment ; - Isostatic compaction specific equipment. - Dieless drawing specific equipment; - Centrifugal equipment specific to the casting after three axes of cave parts;

5 Expert Software CAD/CAM/CAE for Unconventional Technologies SMSEPTN Expert software for technological processes management Unconventional casting process simulation. Expert software for mould design. Experimental systems simulation assisted by computer. Designing experimental systems of measurement, adjustment and control using LabVIEW software. Design application using CATIA. Tribological characterisation of SMTRIB materials - Methods for mechanical and tribological characterization of surfaces. General characteristics. - Types of contact surfaces in motion. - Surface processes - Friction of surfaces, static and dynamic friction coefficients, wear, types of wear. - Determination of surface roughness and friction coefficients. - Determination of thin films hardness and Young s modulus. - Determination of thin films adherence and residual stresses. Total Productive Maintenance SMMTPD Basic concepts about Machining technologies. - General and particular elements about design of Machining technologies - Presentation of main Technology. - Maintenance and management. Definitions and rules of maintenance. - Machinery and equipment reliability. - Maintainability (repair systems, planning repairs). - Control samples, testing and acceptance reconditioned parts and subassemblies Practical Activity and/or Scientific Research SMAPCS 20 - Experimental development in scientific research projects conducted in the Department. - MA students will work in mixed teams with PhD and coordinators research grants. - The topics considered are: - Innovative technologies for synthesis and processing of materials. - Development of innovative materials - Technologies for materials synthesis and processing and environmental impact analysis. Drafting of Dissertation Work SMEXDS 10

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