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HISTORY 1960 - Laboratory for High Temperatures 1962 - Institute for High Temperatures

I. Russian Academy of Sciences "IVTAN" (Institute for High Temperatures) Scientific Association IVTAN, Izhorskaya 13/19, 127412 Moscow, Russia Telephone: 485-95-72. Fax: 485-99-22. Telex 411959 IVTAN SU. HISTORY 1960 - Laboratory for High Temperatures 1962 - Institute for High Temperatures

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HISTORY 1960 - Laboratory for High Temperatures 1962 - Institute for High Temperatures

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  1. I Russian Academy of Sciences"IVTAN" (Institute for High Temperatures) Scientific AssociationIVTAN, Izhorskaya 13/19, 127412 Moscow, Russia Telephone: 485-95-72. Fax: 485-99-22. Telex 411959 IVTAN SU HISTORY 1960 - Laboratory for High Temperatures 1962 - Institute for High Temperatures 1967 - Institute for High Temperatures, Russian Academy of Sciences 1993 - "IVTAN" Scientific Association, Russian Academy of Sciences 2000 year

  2. II Current Activities of IVTAN 1. Institute for High Temperatures - Thermophysical Properties of Technical Important Materials - Heat Mass Exchange and Gas Dynamics - Magnetohydrodynamics and Low Temperature Plasma - Power Engineering and Energetic Technologies - Applied Superconductivity - Pollution Control 2. Institute for High Energy Density (IHED) - Thermophysical Property of Substance -Generation and Investigation of High Specific Energy Density -Physics of Intense Pulse Interaction - Low Temperature Plasma and Gas Dynamics - Safety of High Energy Technological Processes 3. Institute for Theoretical and Applied Electrodynamics -Applied Electrodynamics and Composite Materials 4. Engineering Center for Energy Efficient Processes and Equipment

  3. TECHNOLOGIES PRESENTED IVTAN III 1. Material Treatment With High Enthalpy Plasma Jet A new type of low-temperature plasma generator is developed, with expanding channel of the outer electrode, a modern experimental facility is created. 1.1. Plasma hardening and nitriding of railway wheels 1.2. Plasma coating for recovering and manufacture of railway frogs 1.3. Plasma coating of copper with wear resistant refractory layer 2. Synthesis of Condensed Ozone and Gas Ozone of High Density in Cryogenic Plasma

  4. IV TECHNOLOGIES PRESENTED IVTAN • 3. Fabrication and Investigation of Zircon Ceramics and Concrete • 4. A Conical Lens – Axicon (optical elements) for Bessel Beams Formation • 5. Thermophysical Properties of Materials at High Temperatures • 5.1. Zirconium-based allows • 5.2. Investigation of pressure of uranium dioxide saturated vapour and carbon (plumbago) • 5.3. Heat capacity and heat content of calcium fluorides

  5. V IVTAN Application of Technologies 1. Material Treatment With High Enthalpy Plasma Jet -Railway transport, Metro, Tram -Metallurgy, Fabrication of Wheels 2. Synthesis of Condensed Ozone and Gas Ozone of High Density in Cryogenic Plasma -Water Purification, Chemistry, Health Protection, -Textile Industry, Paper Production -Rocket Propulsion 3. Zircon Ceramics and Concrete - Protecting covering of catcher of NPP reactor core melt, Refractories materials, High Temperature Technologies

  6. VI IVTAN Application of Technologies 4. A Conical Lens – Axicon (optical elements) for Bessel Beams Formation -Plasma channels created by gas breakdown in Bessel beam: Wave guiding of intense laser pulses, High current high speed switching, Drag reduction in flight 5. Thermophysical properties of alloys, uranium dioxide, carbon (plumbago) at high temperatures -Nuclear Engineering, Power Engineering

  7. VII Cooperation Partners Max-Planck Institute Sandia National Laboratory CNRS LULI CEA Argonne National Laboratory IEA MIT Plasma Center NIST IVTAN University of Illinois University of Maryland Siemens Michigan State University Boeing Company IAEA Brookhaven National Laboratory IAHE

  8. VIII IVTAN Cooperation that We are Looking for • Sale of Equipment and Technology • Mutual Projects • Mutual Application of Technologies • Mutual Investigation of Materials • Development of New Technologies • Development of Mutual Patents

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