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Univ.-Prof. Dipl.-Ing. Dr.techn. Christof Sommitsch Institute of Materials Science and Welding

Institute of Materials Science and Welding

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Page 1: Institute of Materials Science and Welding

Univ.-Prof. Dipl.-Ing. Dr.techn. Christof Sommitsch

Institute of Materials Science and Welding

Page 2: Institute of Materials Science and Welding

Passionate Lecturers and Researchers

Due to our high standards in teaching and research and the acquired external funds, we have managed to gradually create an exciting and stable working environment to ensure a maximum of freedom for each member of staff and student to acquire and deepen knowledge in the respective subject areas – all in compliance with international standards.

Mission

Materials Science for a Modern Society

In the future, we will represent an international centre for developing, modelling and joining socially relevant, future-oriented, high-performance structural materials and feed the knowledge thus generated back into teaching and services.

Vision

Doctoral School Mechanical Engineering

• Mechanical Engineering

• Mechanical Engineering and Economic Sciences

• Advanced Materials Science

• Production Science and Management

• Technical Chemistry

• Chemical and Process Engineering

• Welding Processes and Facilities of Equipment

• Materials and their Behaviour during Welding

• Construction, Design and Calculation

• Manufacturing and Application Techniques

Bachelor and Master Programs IWE – International Welding Engineer

Corrosion and Corrosion Prevention

Modelling of Processing Technologies I + II

Casting Technology and Powder Metallurgy

Laboratory Materials Science

Nanomaterials

Plastics and Composites in Mechanical Engineering

Bachelor Project MB-WIMB

High Performance Ceramics

Failure Analysis

Economic and Ecological Technology Management

Selection of Engineering Materials

Modelling and Simulation

Scientific Research in Materials Science and Welding 1

Welding of non-ferrous Metals and Plastics

Lab Practical for Materials Science and Welding

Materials Science Lecture (ME/MEES/CP)

Materials Science Lab

Design and Calculation of Welded Structures

Materials Technology of Steel

Non-destructive Testing Methods

Welding Processes

Selected Chapters from Welding Technology

Quality Assurance

Adhesive Bonding and Brazing in Mechanical Engineering

Special Welding Processes

Fracture Mechanics

Material Science I – An introduction

Economic and Ecological Technology Management

Joining Technology

Selection of Engineering Materials

Modelling and Simulation

Materials Production and Processing

Integrative Laboratory Materials

Plasticity and Forming Processes

High-performance Materials and Composites

Introductions to Materials Science

Steels for Advanced Materials Science

Seminar for Integrative Laboratory Materials

Project Laboratory Metals and Ceramics

Mechanical Engineering

Advanced Materials Science

IWE

Technical Chemistry

PSM

Page 3: Institute of Materials Science and Welding

Golfstraße 5a · A-8077 Gössendorf bei Graz · Tel. +43 (0) 316 / 30 90 61offi [email protected] · www.stirzone.at

Rührreibschweißen · PunktschweißenEngineering · Lohnfertigung

Anlagenbau · Service & Wartung

Wir verschweißen Sie mit der Zukunft!

Seit 40 Jahren setzen ABB Roboter Trends am Markt. Innovation und Technologie sind Teil unserer DNA.

Banner_Robotics_Jubiläum14indd.indd 1 19.05.2014 10:28:07

Seit 40 Jahren setzen ABB Roboter Trends am Markt. Innovation und Technologie sind Teil unserer DNA.

Banner_Robotics_Jubiläum14indd.indd 1 19.05.2014 10:28:07

• Metallography• Microscopy• Physical Testing• Heat Treatment• Joining• Corrosion • Creep

Laboratories

• Materials Selection• Process Optimisation • Training• Failure Case Analysis• Expertise • Feasibility Studies

Consulting

The joining group works on different tasks with a variety of international partners. Feasibility studies, prototype development as well as process development and optimisation are typical challenges faced. Focus is put on the material’s behaviour during joining and subsequent service.

Joining

(JOIN)

Metal JOINingK-Project Network of Excellence

for Metal JOINing

www.join.tugraz.at

• Experimental and Numerical Process Development• Feasibility Studies• Similar and Dissimilar Joining• Conventional and Innovative Arc Processes• Friction and Friction Stir Welding• Electron Beam Welding

Key Competences

Page 4: Institute of Materials Science and Welding

• Development and Processing of Advanced Engineering and Bio Materials• Joining Technologies and Corrosion Testing• Materials Modelling and Process Simulation• Innovative Experimental Investigations and Microstructure Analysis• Failure Analyses, Consulting and Expertise

Areas of Research Interest

The materials development group works on alloy development as well as the optimization of production and processing technologies of high performance metallic both engineering and bio materials. Most advanced experimental characterisation techniques are applied to- gether with new sophisticated modelling tools in order to characterise mechanical and structural properties.

Materials

• Creep-resistant Materials (Ferritic and Austenitic Steels, Nickel-based Alloys) for Thermal Power Plants• Al-alloys for Transport Applications• Advanced High Strength Steels for Automotive Applications• High-strength Micro-alloyed Steels for Civil Engineering Applications• TiAl-alloys and Nickel-based Superalloys for Turbine Blades and Discs• Ti- and Mg-alloys for Biomedical Applications

Selected Key Materials and their Applications

Materials Development

• High-performance Materials Design and Production

• Casting• Forming• Joining• Machining• Heat Treatment

• Service Behaviour• Failure Analysis• Corrosion Testing

Processing

Application

Materials

Laboratories and Consulting

Joining Materials

Modelling and Simulation

Page 5: Institute of Materials Science and Welding

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Engineering | Welding | Hardening | Drilling | Machinery and Equipment

www.pro-beam.com

186 x 135 mm; 2440.-€

Cutting-edge electron beam technology

The modelling group focuses on a variety of multi-scale models to predict and optimise ma- terial properties in service, by understanding, describing and simulating microstructural evo- lution in metals during processing. Experimental validation is carried out at laboratory scale.

Materials Modelling and Simulation

• Modelling of Precipitation Kinetics• Grain Structure Modelling during Thermo-mechanical Treatment• Simulation of Creep Deformation and Creep Damage• Finite Element Simulation of Selected Manufacturing Processes• Physical Simulation of Metal Deformation• Theoretical and Experimental Investigation of Metal Deformation

Key Competences

Page 6: Institute of Materials Science and Welding

• Concept: JS Media Tools A/S • 50444 • www.jsoesterreich.at

Seggauberg 1 · A-8430 Leibnitz · T +43 (0) 3452 824 35 0 · F +43 (0) 3452 824 35 7777 · E [email protected] · W www.seggau.com

Hotel

Congress Center

Meeting rooMs

inCentives

Wine Cellar (300 years old)

Stadtpark

Hauptplatz

Jakominiplatz Felix Dahn Platz

Schlossberg

Radetzkystraße

Steyrergasse

Glacisstraße

ElisabethstraßeZinzendorfgasse

Rechbauerstr.

Merangasse

Herrengasse

Schillerstraße

Petersgasse

Leonhardstraße

Mandellstr.

Grazbachgasse 188

14

Campus Alte Technik

Campus Neue Technik

Graz University of TechnologyInstitute of Materials Science and Welding Kopernikusgasse 24/I ( Steyrergasse 17 | Brockmanngasse 29)8010 GrazTel.: +43-316-873-7181Fax: [email protected]

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