CONDENSATE DEFORMATION AT FORMATION AND ACTIVATED AGGLOMERATION OF SPHERICAL POWDERS AT PRODUCTION OF POROUS MATERIALS

The variant of solution of the problem of porous powder materials production of spherical powders of corrosion-resistant steel with use of the complex technology combining development of nanotechnology, enabling to put on powder particles surfaces of condensate with thickness over 300 nanometers fro...

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Main Authors: P. A. Vityaz, V. N. Kovalevskiy, A. V. Kovalevskaya, S. V. Grogorjev, A. E. Zhuk, L. P. Pilinevich, I. V. Fomihina
Format: Article
Language:English
Published: Belarusian National Technical University 2012-05-01
Series:Litʹë i Metallurgiâ
Online Access:https://lim.bntu.by/jour/article/view/416
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spelling doaj-5b9389dbcd17492e8591dd351afd82382021-07-29T08:33:59ZengBelarusian National Technical UniversityLitʹë i Metallurgiâ1683-60652414-04062012-05-010213914510.21122/1683-6065-2012-2-139-145410CONDENSATE DEFORMATION AT FORMATION AND ACTIVATED AGGLOMERATION OF SPHERICAL POWDERS AT PRODUCTION OF POROUS MATERIALSP. A. Vityaz0V. N. Kovalevskiy1A. V. Kovalevskaya2S. V. Grogorjev3A. E. Zhuk4L. P. Pilinevich5I. V. Fomihina6Belarusian National Technical UniversityBelarusian National Technical UniversityBelarusian National Technical UniversityBelarusian National Technical UniversityBelarusian National Technical UniversityBelarusian State University of Informatics and RadioelectronicsPowder Metallurgy Institute of the NAS of BelarusThe variant of solution of the problem of porous powder materials production of spherical powders of corrosion-resistant steel with use of the complex technology combining development of nanotechnology, enabling to put on powder particles surfaces of condensate with thickness over 300 nanometers from layers of Si and mixture of elements (Si+C) or (Mo+Si) in the conditions of separate synthesis is offered.https://lim.bntu.by/jour/article/view/416
collection DOAJ
language English
format Article
sources DOAJ
author P. A. Vityaz
V. N. Kovalevskiy
A. V. Kovalevskaya
S. V. Grogorjev
A. E. Zhuk
L. P. Pilinevich
I. V. Fomihina
spellingShingle P. A. Vityaz
V. N. Kovalevskiy
A. V. Kovalevskaya
S. V. Grogorjev
A. E. Zhuk
L. P. Pilinevich
I. V. Fomihina
CONDENSATE DEFORMATION AT FORMATION AND ACTIVATED AGGLOMERATION OF SPHERICAL POWDERS AT PRODUCTION OF POROUS MATERIALS
Litʹë i Metallurgiâ
author_facet P. A. Vityaz
V. N. Kovalevskiy
A. V. Kovalevskaya
S. V. Grogorjev
A. E. Zhuk
L. P. Pilinevich
I. V. Fomihina
author_sort P. A. Vityaz
title CONDENSATE DEFORMATION AT FORMATION AND ACTIVATED AGGLOMERATION OF SPHERICAL POWDERS AT PRODUCTION OF POROUS MATERIALS
title_short CONDENSATE DEFORMATION AT FORMATION AND ACTIVATED AGGLOMERATION OF SPHERICAL POWDERS AT PRODUCTION OF POROUS MATERIALS
title_full CONDENSATE DEFORMATION AT FORMATION AND ACTIVATED AGGLOMERATION OF SPHERICAL POWDERS AT PRODUCTION OF POROUS MATERIALS
title_fullStr CONDENSATE DEFORMATION AT FORMATION AND ACTIVATED AGGLOMERATION OF SPHERICAL POWDERS AT PRODUCTION OF POROUS MATERIALS
title_full_unstemmed CONDENSATE DEFORMATION AT FORMATION AND ACTIVATED AGGLOMERATION OF SPHERICAL POWDERS AT PRODUCTION OF POROUS MATERIALS
title_sort condensate deformation at formation and activated agglomeration of spherical powders at production of porous materials
publisher Belarusian National Technical University
series Litʹë i Metallurgiâ
issn 1683-6065
2414-0406
publishDate 2012-05-01
description The variant of solution of the problem of porous powder materials production of spherical powders of corrosion-resistant steel with use of the complex technology combining development of nanotechnology, enabling to put on powder particles surfaces of condensate with thickness over 300 nanometers from layers of Si and mixture of elements (Si+C) or (Mo+Si) in the conditions of separate synthesis is offered.
url https://lim.bntu.by/jour/article/view/416
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AT svgrogorjev condensatedeformationatformationandactivatedagglomerationofsphericalpowdersatproductionofporousmaterials
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