Institute of Materials Research Slovak Academy of Sciences and Vienna University of Technology Austria. organise International Conference

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1 Powder Metallurgy Progress, Vol.11 (2011), No 1-2 Institute of Materials Research Slovak Academy of Sciences and Vienna University of Technology Austria organise International Conference Deformation and Fracture in PM Materials DFPM 2011 held on November 6 9, 2011 in Stará Lesná, High Tatras, Slovak Republic under the auspices of sponsored by

2 DFPM 2011 Conference Section COMPOSITES was realised within the frame of the project Advanced technology of preparing of micro-composite materials for electrotechnics, which is supported by the Operational Program Research and Development financed through European Regional Development Fund ITMS:

3 DFPM 2011 Conference Section Advanced Materials was realised within the frame of the project APVV Microstructure and properties of powder micro- and nano-composite materials for middle frequency applications Acronym of the project: MAGCOMP Project start: May Project end: October 2014 Co-ordinating organization: Institute of Materials Research, Slovak Academy of Sciences, Košice, Slovak Republic Co-operating organization: P.J.Šafárik University of Košice, Košice, Slovak Republic

4 Slovak Academy of Sciences Institute of Materials Research The Institute of Materials Research of Slovak Academy of Sciences became one of the leading institutions of Central Europe in the field of powder technologies/materials, nanomaterials and ceramic matrix composites during its 55 years of existence. The scientific orientation of the Institute is focused on the development and testing of new materials (physical and mechanical properties and the deformation and fracture characteristics of different materials at low, room, and high temperatures) and of new technologies with potential applications in transportation, energy, information technology, etc. Scientific Departments Microstructure and Mechanical Properties of Steels Microstructural Engineering of Steels Diffusion and Transformation Processes in Metallic Systems Ferrous Powder Metallurgy Nano Structured Materials Electroceramics Structural Ceramics Departments of Laboratories Microstructure and Chemical Analyses Light microscopy Electron microscopy X-ray diffraction analyses Chemical analyses Mechanical Testing Creep properties Strength, fracture and durability properties Hardness, microhardness Technology and Design Compaction of PM materials Sintering and heat treatment Informatics, Computers and Applied Mathematics Library Intranet information system Data management Image analysis Statistic data processing

5 Scanning electron microscope Jeol JSM 7000F Microhardness tester LECO LM700AT Tube sintering furnace Carbolite Hydraulic presses, 100 t High temperature tribometer, by CSM Instruments AFM dimension ICON, by Veeco Instruments Table Top Nanoindentation Hardness Tester TTX NHT2, by CSM Instruments X-ray diffractometer Phillips X Pert Pro Contact: Watsonova 47, Košice, Slovak Republic Phone: +421/55/ , Fax: +421/55/ , Web page:

6 Vienna University of Technology, Austria Institute of Chemical Technologies and Analytics Scientific-technical orientation Synthesis, treatment, and characterization of high performance materials produced from metallic and non-metallic powders Synthesis and characterization of hard and superhard coatings applied through CVD techniques Materials Sintered metals (High strength sintered steels, refractory metals, PM light alloys, metal matrix composites, PM lightweight structures) Dispersion strengthened materials (Al, Cu, Pt, superalloys) Cutting tool materials (PM tool steels, cemented carbides, cermets, special hard materials, structural ceramics) Functional ceramics Micro- and nanocomposites Facilities and equipment Chemical labs for powder preparation Mixers; mills; attritors Presses ( kn) Extrusion press (2000 kn) Hot press (100 kn, T max = 2000 C, protective gas, vacuum) Sintering furnaces (T max = C, protective gas, vacuum) Sinter HIP furnace (1500 C, 70 bar Ar) Induction furnaces Rolling mill Metallography and image analysis SEM + EDS ToF-SIMS AFM IR and Raman spectrometers X-ray powder and single crystal diffraction, P-XRD between -200 and +800 C Wavelength dispersive X-ray fluorescence analyzer ICP-OES Laser ablation ICP-MS Mechanical testing lab Wear testbeds Thermoanalytical lab (DTA+DSC+TG / dilatometer coupled with mass spectrometer r) Profilometer Contact: Institute of Chemical Technologies and Analytics, Getreidemarkt 9/164, A-1060 Vienna Phone: +43/1/ , Fax: +43/1/ Web page:

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8 Miba was founded in 1927 as a repair and production shop for engine components and has since grown into a leading international group employing over 4,000 people. Miba produces and sells sintered components, engine bearings, friction materials, power electronics components and coatings at 20 sites worldwide. The Miba group consists of five core segments: Miba Sinter Group, Miba Bearing Group, Miba Friction Group, New Technologies Group and Miba Coating Group. Miba Sinter Group Miba Sinter Group produces sintered components high-precision, highstrength parts produced using special process technology for use in car engines and transmissions. Compared with other production processes, sinter technology allows maximum material utilization with the lowest possible energy use. Technological progress is a key focus, with the objective of producing high-end components for the vehicles of tomorrow. Miba Sinter Group is a technological leader in PM applications. We work closely with our international automotive industry customers to meet the challenges of shorter development times, growing price pressure and new environmental guidelines. Our customers are offered tailored, cost-effective solutions, backed up by a global presence, years of experience and ongoing technological progress. At Miba, commercial success involves managing with an eye on the future. Our profitable growth always takes place within a long-term context, and our success as a company is driven by our employees and their personal and professional development. We invest substantial sums in training and staff development, and encourage employees to live healthy, safe lives. Our environmental management activities are closely tied to innovation; we make optimum use of resources; and we use environmentally friendly materials in production.

9 The main focus of Miba Sinter Group s R&D team is to support our customers with the most cost-effective and innovative solutions. We offer engineering support for design of applications as well as materials and processing development for challenging P/M technology components. Using FEM tools for component design and process simulation, we provide engineered solutions with maximum performance. Our engineering expertise enables us to develop complete modules (e.g. synchronizer modules). To approve the performance of our developed solutions we operate engine and transmission test equipment for highprecision on-site functional testing of components and modules. As technology leader we are developing new processes with outstanding characteristics. The reliability of our surface densification process for gears Densgrad - is proven every day in millions of vehicles. Using our Denscal we have successfully brought to market the first ever seriesproduction dog ring with density > 7.4 g/cm3. Our Denscomp process makes it possible to economically produce complex and high-precision highstrength sintered components and enables us to achieve densities up to 7.4g/cm3 using single press/single-sinter technology. Our strategy is to offer customers optimum solutions by drawing on indepth know-how in core processes. Due to our extensive network of development partners, we are constantly adding to and complementing that know-how.

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