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High-strength weldable low-doped nikalin ATs6N0,5F
The bulk nanocrystalline materials produced by severe plastic deformation

The bulk nanocrystalline materials produced by severe plastic deformation

The methods of severe plastic deformation (equal channel angular pressing, pressure torsion, etc.) for the production of bulk non-porous submicrocrystalline and nano-materials.
Thermomechanical treatment of steels and alloys

Thermomechanical treatment of steels and alloys

Theory and technology of the thermomechanical treatment of metallic materials, Control of structure and formation of special properties of metallic materials. Development of new steels and alloys with special properties.
Nanocomposite hard magnetic materials, physics of magnetism, science of metals, manufacturing techniques
Synthesis of Metallic and Ceramic Nanopowders by Solution Combustion
Synthesis of BN nanotubes and nanosheets and their application for reinforcement of metallic binders of new composite materials

Synthesis of BN nanotubes and nanosheets and their application for reinforcement of metallic binders of ...

The large throughput fabrication of BN nanotubes and nanosheets and their smart utilization for reinforcement of diverse metallic and ceramic composite materials and coatings for structural and medical applications is our ultimate goal.
Reactionary Foils for Connecting Heterogeneous and Refractory Materials

Reactionary Foils for Connecting Heterogeneous and Refractory Materials

Reactionary Foils for Connecting Heterogeneous and Refractory Materials Multy layer systems consisting of alternating metallic layers, when their thickness is decreased to nanometers, obtain high reactionary properties.
Nanostructured Ceramic Materials

Nanostructured Ceramic Materials

Nanostructured Ceramic Materials. SiC based materials have unique properties such as low volume weight, high strength and hardness, heat- and oxidation resistance, low coefficient of thermal expansion, special dielectric properties.
Synthesis and mechanical treatment of the intermetallic hydrogen storage alloys by mechanical alloying method
Low-doped high-strength silumin Al9Si-Q without beryllium

Low-doped high-strength silumin Al9Si-Q without beryllium

Low-doped high-strength silumin Al9Si-Q without beryllium has the tensile strength for metal mold castings above 310 MPa, for temporary mold castings - above 280 MPa.

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