MOULDING AND ACTIVATED SINTERING OF SPHERICAL POWDERS COVERED WITH CONDENSATE

The problem of porous powder materials obtaining from spherical stainless steel powders has been solved by the nanotechnology development. The technology make it possible to form condensate on the powder particles surface with the thickness of more than 300 nm from Si and (Si + C) or (Mo – Si)-eleme...

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Main Authors: V. N. Kovalevsky, A. V. Kovalevskaya, S. V. Grigoriev, A. E. Zhuk, D. I. Antonchik, A. I. Iliukevich
Format: Article
Language:Russian
Published: Belarusian National Technical University 2013-04-01
Series:Nauka i Tehnika
Online Access:https://sat.bntu.by/jour/article/view/106
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spelling doaj-74630989b17b4ee1a5713c496cce61482021-07-29T08:29:31ZrusBelarusian National Technical UniversityNauka i Tehnika2227-10312414-03922013-04-0102131799MOULDING AND ACTIVATED SINTERING OF SPHERICAL POWDERS COVERED WITH CONDENSATEV. N. Kovalevsky0A. V. Kovalevskaya1S. V. Grigoriev2A. E. Zhuk3D. I. Antonchik4A. I. Iliukevich5Belarusian National Technical UniversityBelarusian National Technical UniversityBelarusian National Technical UniversityBelarusian National Technical UniversityBelarusian National Technical UniversityBelarusian National Technical UniversityThe problem of porous powder materials obtaining from spherical stainless steel powders has been solved by the nanotechnology development. The technology make it possible to form condensate on the powder particles surface with the thickness of more than 300 nm from Si and (Si + C) or (Mo – Si)-element mixture layers. The shearing deformation of the elements during formation permits to activate surface layers and subsequent isothermal heating leads to the ceramic coating generation and spherical 12Kh18N10T-steel powder sintering.https://sat.bntu.by/jour/article/view/106
collection DOAJ
language Russian
format Article
sources DOAJ
author V. N. Kovalevsky
A. V. Kovalevskaya
S. V. Grigoriev
A. E. Zhuk
D. I. Antonchik
A. I. Iliukevich
spellingShingle V. N. Kovalevsky
A. V. Kovalevskaya
S. V. Grigoriev
A. E. Zhuk
D. I. Antonchik
A. I. Iliukevich
MOULDING AND ACTIVATED SINTERING OF SPHERICAL POWDERS COVERED WITH CONDENSATE
Nauka i Tehnika
author_facet V. N. Kovalevsky
A. V. Kovalevskaya
S. V. Grigoriev
A. E. Zhuk
D. I. Antonchik
A. I. Iliukevich
author_sort V. N. Kovalevsky
title MOULDING AND ACTIVATED SINTERING OF SPHERICAL POWDERS COVERED WITH CONDENSATE
title_short MOULDING AND ACTIVATED SINTERING OF SPHERICAL POWDERS COVERED WITH CONDENSATE
title_full MOULDING AND ACTIVATED SINTERING OF SPHERICAL POWDERS COVERED WITH CONDENSATE
title_fullStr MOULDING AND ACTIVATED SINTERING OF SPHERICAL POWDERS COVERED WITH CONDENSATE
title_full_unstemmed MOULDING AND ACTIVATED SINTERING OF SPHERICAL POWDERS COVERED WITH CONDENSATE
title_sort moulding and activated sintering of spherical powders covered with condensate
publisher Belarusian National Technical University
series Nauka i Tehnika
issn 2227-1031
2414-0392
publishDate 2013-04-01
description The problem of porous powder materials obtaining from spherical stainless steel powders has been solved by the nanotechnology development. The technology make it possible to form condensate on the powder particles surface with the thickness of more than 300 nm from Si and (Si + C) or (Mo – Si)-element mixture layers. The shearing deformation of the elements during formation permits to activate surface layers and subsequent isothermal heating leads to the ceramic coating generation and spherical 12Kh18N10T-steel powder sintering.
url https://sat.bntu.by/jour/article/view/106
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AT svgrigoriev mouldingandactivatedsinteringofsphericalpowderscoveredwithcondensate
AT aezhuk mouldingandactivatedsinteringofsphericalpowderscoveredwithcondensate
AT diantonchik mouldingandactivatedsinteringofsphericalpowderscoveredwithcondensate
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