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FAME MasterFunctionalized Advanced Materials and Engineering
Presentation of
-January 2010
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Located in the south of Germany,close to Munich (60km)
– the capital of Bavaria
Augsburg – Europe
Augsburg
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Population: 260.000 History:- Founded by romans more than 2000 years ago- Important trading place in middle ages (Fugger)- Peace of Augsburg in 1555 (Luther)- 19th century: cotton and woolen mills, machine shops, manufacturers of acetylene gas, paper, chemicals, jewellery, leather.
Industry: Aerospace Industry (Premium Aerotech, MT Aerospace, Eurocopter, SGL Carbon, Osram, MAN, Kuka (Robotics), ...
Augsburg – City
Rudolf Diesel
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Close to the alpes (~2 hours by train)
"8th world wonder" – Schloss Neuschwanstein
Augsburg – Country:
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University of Augsburg
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Augsburg – University
The Campus
Physics
AMU
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Augsburg – University
Institute of Physics
• 22 Professors (Experimental Physics, Theoretical Physics, Chemistry & Material Science)
• 200 employees
• appr. 750 Students in physics andmaterials science
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Application Centre for Material and Environmental Resea rch (AMU)
Designed to collaborate with industry
Augsburg – University
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Future Developments
Augsburg – University Fraunhofer Group/
Physics DLR Center
Physics
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Two new research centers on the campus of University of A ugsburg
• Fraunhofer Group „Functionally integrated leight weight construction“
• DLR-Center „Production technology for Leight weight construction“
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Kohlestofffaserentwicklung
Satellitentank Flugzeugtüre
Vergleich: Kohlestofffaser –menschliches Haar
Research activities
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500 nm
1 µm
SEM-Investigation: Morphology of carbon fiber - nanotubes
Research activities
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Nano Electro Mechanical Systems (NEMS)
Freely suspended carbon nanotube
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•Physical Vapour Deposition (PVD)
•Molecular Beam Epitaxy (MBE)
•Plasma Enhanced Chemical Vapour Deposition (PECVD)
•Ion Implantation I 2
•Plasma Immersion Ion Implantation & Deposition (PIII &D)
•Spin Coating (SC)
•Self-Assembly Techniques
•Physical Vapour Deposition (PVD)
•Molecular Beam Epitaxy (MBE)
•Plasma Enhanced Chemical Vapour Deposition (PECVD)
•Ion Implantation I 2
•Plasma Immersion Ion Implantation & Deposition (PIII &D)
•Spin Coating (SC)
•Self-Assembly Techniques
Thin Film Formation at Augsburg University
Research activities
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Thin Film Formation at Augsburg University
Research activities
Functionality:
• Anticorrosive
• Reduction of friction
• Wear resistance
• Biocompatibility
• Diffusionbarrier
• Conductive (e.g. on fiber reinforced ceramics)
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Oxide Thin Films and Heterostructures
Electronic structure of interfaces
High resolution AFM
Research activities
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Research activities
TopographyRoughness
atomic order
Surface characterization(STM,STS,AFM)
Nanoparticles
UHV-STM/AFM
Ultrasoundmicroscope
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Analysis of contamination of optical glass
Area probed: surface + several nm depth
Research activities
Surface characterization (XPS)
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TEM-Transmission electron microscopy:Cross section of layered system with element distribution
10 nm
Research activities
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Applied Research Project :
Corrosion of heat exchanger in waste incinerator plants
samples of 15 Mo 3
ceramic rings
On-line electrochemicalmeasurements
SEM/EDX chemicalanalysis
Waste incinerator plant
Research activities
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Industrial customers and partners
Alcatel SEL AG, BIfA GmbH, Bosch und Siemens Hausgeräte GmbH, Böwe Systec AG, Burgmann GmbH & Co. KG, Carl Zeiss AG, Creaton AG, Dow Chemical Deutschland, EnviroTex GmbH,Gemeinschaftskraftwerk Schweinfurt GmbH, Isola AG, Lech-Stahlwerke GmbH, Trans-Textil, Quick Step, MT Aerospace Satellite Products Ltd., Plansee, RLC GmbH, SCOL Med GmbH, Siemens AG, Stadtentwässerungswerke München, TIGRA GmbH, TINOX GmbH, TÜV-Saarland, Wieland-Werke ...
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Augsburg – Surfaces and Interfaces
Courses of 3 rd Semester at Augsburg (tentative)
• Oxidation and corrosion
• Thin Films
• High resolution imaging of surfaces and interfaces& Scanning probe techniques
• Solid state spectroscopy
• Interfaces and Spintronics
• Nanostructured materials
• Method courses / Laboratory project work
Year 2 specialization
details
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04.10.10 – 15.10.10 German language course 18.10.10 – 12.02.11 Winter Semester Typically written exams end of semester,'Second chance' one week before semester startProject report
University specific rules
Thesis (26 ECTS):
Colloquium (4 ECTS):
Prerequisite: 60 (of 90) ECTS of S1-S3 courses6 Months (+8 weeks exceptionally)Written in English1 retry possible if failed (new topic)Jury = 1 superviser + 1 professor (of FAME consort.)
4-6 weeks after delivery of thesis45-75 min15 min talkbasic knowledge of lectures and thesis
4th Semester: Master Thesis
3rd Semester:
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Examples of formerMaster thesis topics:
•Spraypyrolytic Al2O3 und Y2O3 coatings
•Preparation of iron oxide nanoparticles
•Electrical characterization of free-standing carbon nanotubes
•On the mercury transport through metal oxide coatings in fluorescent lamps
•Aligned carbon nanotubes
•Corrosion in car exhaust systems
•TEM-characterization of internal interfaces
•Internal oxidation of metallic alloys•CFRP – metal interfaces
•Coating of FRC (gas permeation, conducting surfaces)
•Diamond based high temperature semiconductors•Electronic properties of metal oxide nanoparticles
•Lighting engineering
Master Thesis
Possible fields of future Master thesis topics:
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- Jobs opportunities- High demand for natural scientists and engineers in German industry- Ph.D. possibilities exist for excellent graduates of the master program- financial support: university contracts for Ph.D. students
Career perspectives and conclusion
- Possibility of appointment as lab assistant or tutor- Payment for industry projects - DAAD grants
Financial support
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Doctoral Thesis
Application to individual professor at university (thesis adviser)
Topic given by thesis adviser
Financial support: usually 0.75 x scientist position
Thesis work can be performed in industry in agreement with thesis adviser
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Welcome to Augsburg
Rudolf Diesel