UA84516C2 - method of producing atomized dispersion-hardened copper-based powder - Google Patents

method of producing atomized dispersion-hardened copper-based powder

Info

Publication number
UA84516C2
UA84516C2 UAA200710237A UAA200710237A UA84516C2 UA 84516 C2 UA84516 C2 UA 84516C2 UA A200710237 A UAA200710237 A UA A200710237A UA A200710237 A UAA200710237 A UA A200710237A UA 84516 C2 UA84516 C2 UA 84516C2
Authority
UA
Ukraine
Prior art keywords
fusion
copper
admixtures
based powder
producing
Prior art date
Application number
UAA200710237A
Other languages
Russian (ru)
Ukrainian (uk)
Inventor
Алексей Сергеевич Богатов
Борис Абрамович Кириевский
Игорь Владимирович Мелешко
Александр Владимирович Сахненко
Сергей Александрович Сахненко
Вадим Владимирович Христенко
Original Assignee
Алексей Сергеевич Богатов
Борис Абрамович Кириевский
Игорь Владимирович Мелешко
Александр Владимирович Сахненко
Сергей Александрович Сахненко
Вадим Владимирович Христенко
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Алексей Сергеевич Богатов, Борис Абрамович Кириевский, Игорь Владимирович Мелешко, Александр Владимирович Сахненко, Сергей Александрович Сахненко, Вадим Владимирович Христенко filed Critical Алексей Сергеевич Богатов
Priority to UAA200710237A priority Critical patent/UA84516C2/en
Publication of UA84516C2 publication Critical patent/UA84516C2/en

Links

Landscapes

  • Powder Metallurgy (AREA)

Abstract

The invention relates to the branch of powder metallurgy, in particular to the method of producing the atomized dispersion-hardened copper-based powder. A method of producing atomized dispersion-hardened copper-based powder includes production of fusion of the mixture of copper and admixtures, atomization of produced fusion, moreover the admixtures are used, which are limitedly dissolved in the fusion, for example an alloy of system Fe-Сr-С, in amount of 3-10 per cent by weight and atomization of the fusion is carried out at a temperature that is by 50-150 °C higher than the melting point of admixtures after their complete melting at constant mixing. A coating flux may be applied on the surface of copper fusion. The invention provides for uniformity of distribution of dispersed inclusions in each particle of atomized powder and, accordingly, obtaining structural composite copper-based materials with operating characteristics, which exceed the existing analogs.
UAA200710237A 2007-09-14 2007-09-14 method of producing atomized dispersion-hardened copper-based powder UA84516C2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
UAA200710237A UA84516C2 (en) 2007-09-14 2007-09-14 method of producing atomized dispersion-hardened copper-based powder

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
UAA200710237A UA84516C2 (en) 2007-09-14 2007-09-14 method of producing atomized dispersion-hardened copper-based powder

Publications (1)

Publication Number Publication Date
UA84516C2 true UA84516C2 (en) 2008-10-27

Family

ID=50729952

Family Applications (1)

Application Number Title Priority Date Filing Date
UAA200710237A UA84516C2 (en) 2007-09-14 2007-09-14 method of producing atomized dispersion-hardened copper-based powder

Country Status (1)

Country Link
UA (1) UA84516C2 (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105102157A (en) * 2013-03-25 2015-11-25 新日铁住金株式会社 Copper alloy powder, sintered copper alloy body and brake lining for use in high-speed railway

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105102157A (en) * 2013-03-25 2015-11-25 新日铁住金株式会社 Copper alloy powder, sintered copper alloy body and brake lining for use in high-speed railway

Similar Documents

Publication Publication Date Title
Amado et al. Laser cladding of tungsten carbides (Spherotene®) hardfacing alloys for the mining and mineral industry
Tan et al. Direct metal deposition of TiB2/AlSi10Mg composites using satellited powders
CN104607823A (en) Manufacturing method of spherical self-fluxing alloy solder
CN103540790A (en) Preparation method of corrosion-resistant CuAlCr laser cladding material
CN102815950A (en) Nano-additive-added reaction material for preparing ceramic lining composite steel tube
CN104878382A (en) Alloy powder for laser cladding and method for laser cladding alloy powder
Hsiao et al. Wear resistance and microstructural properties of Ni–Al/h-BN/WC–Co coatings deposited using plasma spraying
MX2016003212A (en) Synthesis and particle engineering of cocrystals.
CN103774025B (en) A kind of WC-FeNiCr containing Mn, Mo, Ti is without magnetic coating material and preparation method thereof
CN101906572B (en) Method for synthesizing in-situ formed ceramic particle reinforced iron-aluminum-based composites by laser combustion
CN102554218A (en) Method for preparing tungsten-copper composite powder by means of electroless copper plating
Xu et al. Influences of temperatures on tungsten copper alloy prepared by microwave sintering
UA84516C2 (en) method of producing atomized dispersion-hardened copper-based powder
CN105671544B (en) The method for improving 42CrMo steel anti-wear performances in laser melting coating using cladding powder
CN106544549B (en) A kind of preparation method of the double scale TiC particle enhanced aluminum-based composite materials of micro-nano
CN101177771B (en) Multi-component thermal spraying flexible wire and preparation method thereof
CN102554221B (en) Hydrocarbon coated cermet powder and preparation method thereof
JP2016113629A (en) Nanoparticle for nano-cement
CN107699841A (en) A kind of preparation method of wear-resisting WC coatings
RU2362839C1 (en) Method of applying nanostructurised wear-resistant electroconductive coverings
CN104388740A (en) Copper-based graphite and zirconium powder metallurgy composite material and preparation method thereof
CN104451657A (en) Preparation method of ternary boride ceramic/iron-based surface composite material
CN103088339A (en) Laser cladding method for improving surface performance of magnesium alloy AZ91D
Galchenko et al. Structure and properties of boride coatings synthesized from thermo-reactive powders during electron-beam surfacing
CN104233290A (en) Laser cladding alloy powder