FIELD: metallurgy.
SUBSTANCE: method relates to powder metallurgy, namely to production of nanopowders of metals with increased stored energy. It can be used to increase a reactive capacity of nanopowders at sintering, burning, in energy-saving technologies. A specimen of metal nanopowder is obtained by a flux of accelerated electrons with energy of not more than 6 MeV in vacuum with provision of a positive charge of the inner part of a metal particle. Specimen thickness does not exceed electron run length.
EFFECT: providing increase of stored energy by 10-15%.
1 dwg, 1 tbl, 1 ex
Title | Year | Author | Number |
---|---|---|---|
METHOD OF INCREASING STORED POWER IN METAL NANOPOWDERS | 2011 |
|
RU2461445C1 |
METHOD FOR MODIFYING MICRO AND NANOPOWDERS OF ALUMINUM | 2017 |
|
RU2657677C1 |
METHOD FOR ACTIVATING ALUMINIUM NANO-POWDER | 2016 |
|
RU2637732C1 |
METHOD TO PROCESS NANOSIZE MATERIALS BASED ON ALUMINIUM OXIDE | 2009 |
|
RU2423333C2 |
METHOD OF PRODUCING COMPOSITE NANOPOWDERS | 2009 |
|
RU2412784C2 |
METHOD OF TREATMENT OF ARTICLES MADE FROM IRON- BASED METAL ALLOYS | 2002 |
|
RU2221056C1 |
TARGET FOR PRODUCTION OF RADIO-NUCLIDES AND PROCEDURE FOR ITS FABRICATING | 2008 |
|
RU2393564C2 |
METHOD FOR CREATING THE SURFACES OF ION DAMAGES OF MATERIALS | 0 |
|
SU1758710A1 |
METHOD OF PRODUCING STRONTIUM-82 RADIOISOTOPE | 2015 |
|
RU2585004C1 |
METHOD FOR PRODUCING TITANIUM ALLOY BASE PROTECTIVE COATINGS | 1999 |
|
RU2164265C1 |
Authors
Dates
2014-12-10—Published
2013-02-12—Filed