NANO POWDER TECHNOLOGY
TECHNOLOGIES OF INDUSTRIAL DIMENSIONAL CLASSIFICATION OF UNEQUIGRANULAR MATERIALS IN THE FIELD OF THE MICRON AND SUBMICRONIC SIZES
About the company
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Contacts
- VectorNPT, SL
- Tel.+34 688 329626
- Mail: nano.sakid@gmail.com
- Mail: office@vectornpt.com
The offered technology can be used for receiving nano paints with particle size less than 0,5 microns.
Nano paints have the increased adhesion, the whiteness covering with ability and resistance to external influences.
Perspective scope aircraft and shipbuilding. (Application and in the construction industry is possible).
Now the high price of N absence contains increase in production of high-strength concrete in enough such powders and according to all directions of the construction industry where such concrete can be used. (From production of repair structures to the difficult structural elements used in construction of inhabited, production objects and objects of special purpose)
Parts and nodes of objects of mechanical engineering can be made of high-strength concrete. For example, beds for heavy merry-go-round machines and press which are cast from special cast iron now. Use of high-strength concrete, will allow to reduce production time of such nodes and to reduce their final cost.
Concrete in construction of port constructions - from construction of mooring lines to high-strength rigid pavements on which special heavy machinery moves is especially perspective high-strength concrete. Receiving frothed concrete on durabilities which are not conceding to normal heavy concrete is possible.
The offered technology can be used for receiving components of hi-tech ceramics of constructional and special purpose (armored ceramics, ceramics for nuclear fuel (TVEL) and other).
Powder components with particle sizes no more than 0,4 microns are necessary for its production.
Lack of such powder components in enough and their high cost, contain increase in production in this field of the industry.
The offered technology can be applied to allocation of particles less than 0.1 microns in size from materials of «solid lubricant» such as - tungsten disulphide, molybdenum disulphide and hexagonal boron nitride.
These materials can be added to normal oils that considerably increases their tribological properties.
At tungsten disulphide powder introduction in number of 5% to the traditional lubricant-coolants used in metal working increases firmness of the cutting tool and cutting speed by 45%.
Use of the offered technology, will allow to receive in industrial volumes water coal derived fuel with particle sizes of coal no more than 0,2 microns.
Such fuel can be used in diesel engines of internal combustion.
The fuel consisting of particles of coal of 0,2 microns in size is steady against stratification on fluid and firm phase that considerably improves utilization properties in comparison with the existing analogs.
The offered technology can be used for receiving in industrial volumes of especially clean arenaceous quartz with particle size less than 0.5 microns. Such sand is necessary for production of high-pure silicon carbide of semiconductor quality.
Make semiconductor plates for electronic industry of high-pure silicon carbide. High-pure silicon carbide can be raw materials for moissanite cultivation - precious mineral of jewelry quality.
Semiconductor silicon carbide in the future almost completely will force out pure silicon from electronic industry.
The offered technology can be used for release of precious metals (gold, platinum, silver) from ores in which they contain in finely divided look (0,1....10 microns).
The offered technology, can be also used for processing of ores in finely divided fraction (1-10 microns) for the subsequent chemical enrichment.
The offered technology can be used for receiving powders of high-melting metals of fractions from 0,05 microns.
For example, the cutting plates of cutters, tips of drills, make of tungsten carbide, agglomeration of powders of this material.
Than more small the fraction, especially quality turns out final sintered material.