FIELD: metallurgy.
SUBSTANCE: aluminium-based nanostructure composite material consists of aluminium alloy with grain size of 5 to 150 nm and strengthening nanoparticles. As strengthening nanoparticles it contains fullerene C60 in quantity of 0.5÷12 wt % in molecular shape; at that, molecules C60 are located on surface of grains of aluminium alloy. In particular case of implementation of the invention in nanostructure composite material the aluminium alloy has density of 2470-2650 kg/m3.
EFFECT: obtaining the material having the increased hardness, density and specific strength.
2 cl, 1 tbl, 2 ex
| Title | Year | Author | Number | 
|---|---|---|---|
| METHOD OF PRODUCING ALUMINUM-BASED NANOSTRUCTURE COMPOSITE MATERIAL | 2019 | 
 | RU2716930C1 | 
| METHOD FOR PRODUCING ALUMINIUM-BASED NANOSTRUCTURAL COMPOSITE MATERIAL | 2019 | 
 | RU2751401C2 | 
| METHOD OF PRODUCING ALUMINUM-BASED NANOSTRUCTURE COMPOSITE MATERIAL | 2019 | 
 | RU2716965C1 | 
| ALUMINUM-BASED NANOSTRUCTURED COMPOSITE MATERIAL | 2017 | 
 | RU2768400C2 | 
| METAL-CERAMIC COMPOSITE AND METHOD OF ITS PRODUCTION (VERSIONS) | 2016 | 
 | RU2640055C1 | 
| PURE TITANIUM-BASED NANOSTRUCTURED COMPOSITE AND METHOD OF ITS PRODUCTION | 2012 | 
 | RU2492256C9 | 
| DISPERSION-REINFORCED ALUMINIUM MATRIX-BASED COMPOSITE MATERIAL AND METHOD FOR PRODUCTION THEREOF | 2015 | 
 | RU2595080C1 | 
| METHOD OF PRODUCING BORON-CARBON COMPOSITE MATERIAL | 2019 | 
 | RU2709885C1 | 
| CERAMIC CORUNDUM-BASED MATERIAL AND METHOD OF ITS PRODUCTION | 2015 | 
 | RU2627522C2 | 
| METHOD FOR PRODUCING AN ALUMINIUM-BASED NANOSTRUCTURAL COMPOSITE MATERIAL | 2021 | 
 | RU2780728C1 | 
Authors
Dates
2012-01-20—Published
2010-10-22—Filed