Mechanical Activation of the Powder Mixture of “Ultra-High Molecular Weight Polyethylene — Composite B4C/W”
The article presents the results of the experimental studies of the structural transformations of a powder mixture of ultra-high molecular weight polyethylene and 80 wt.% (45 vol.%) of the nanostructured composite B4C/W treated in a high-energy ball planetary mill that are studied by the methods of...
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National Academy of Sciences of Belarus, State Scientific Institution “The Joint Institute of Mechanical Engineering"
2018-12-01
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doaj-27987c5bc1f54dca9154dd417cb633472021-09-02T11:33:14ZengNational Academy of Sciences of Belarus, State Scientific Institution “The Joint Institute of Mechanical Engineering"Механика машин, механизмов и материалов1995-04702518-14752018-12-014(45)6571Mechanical Activation of the Powder Mixture of “Ultra-High Molecular Weight Polyethylene — Composite B4C/W”Svetlana A. Kovaleva0https://orcid.org/0000-0001-7526-5044Viktor I. Zhornik1https://orcid.org/0000-0002-5915-0105Tatyana F. Grigorieva2Joint Institute of Mechanical Engineering of the NAS of BelarusJoint Institute of Mechanical Engineering of the NAS of BelarusSolid State Chemistry and Mechanochemistry of the Siberian Branch of the Russian Academy of SciencesThe article presents the results of the experimental studies of the structural transformations of a powder mixture of ultra-high molecular weight polyethylene and 80 wt.% (45 vol.%) of the nanostructured composite B4C/W treated in a high-energy ball planetary mill that are studied by the methods of X-ray diffraction, scanning electron microscopy and Fourier-IR spectroscopy. It is shown that the polymer composite particles of a flaky shape and the size of 160–400 μm with a uniform distribution in them of boron carbide and tungsten particles with the size of 1–5 μm and 0.1–0.2 μm respectively are formed during the process of mechanical activation (MA), while the oxidative destruction of polymer is not detected. The main results of the interaction of the polymer matrix and dispersed filler powders with MA are the processes of breaking of intramolecular bonds, cross-linking of polymer molecules, as well as mechanical dispersion of particles.http://mmmm.by/en/readers-en/archive-room-en?layout=edit&id=1423mechanical activationmicrostructurecompositesultra-high molecular weight polyethyleneboron carbidetungsten |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Svetlana A. Kovaleva Viktor I. Zhornik Tatyana F. Grigorieva |
spellingShingle |
Svetlana A. Kovaleva Viktor I. Zhornik Tatyana F. Grigorieva Mechanical Activation of the Powder Mixture of “Ultra-High Molecular Weight Polyethylene — Composite B4C/W” Механика машин, механизмов и материалов mechanical activation microstructure composites ultra-high molecular weight polyethylene boron carbide tungsten |
author_facet |
Svetlana A. Kovaleva Viktor I. Zhornik Tatyana F. Grigorieva |
author_sort |
Svetlana A. Kovaleva |
title |
Mechanical Activation of the Powder Mixture of “Ultra-High Molecular Weight Polyethylene — Composite B4C/W” |
title_short |
Mechanical Activation of the Powder Mixture of “Ultra-High Molecular Weight Polyethylene — Composite B4C/W” |
title_full |
Mechanical Activation of the Powder Mixture of “Ultra-High Molecular Weight Polyethylene — Composite B4C/W” |
title_fullStr |
Mechanical Activation of the Powder Mixture of “Ultra-High Molecular Weight Polyethylene — Composite B4C/W” |
title_full_unstemmed |
Mechanical Activation of the Powder Mixture of “Ultra-High Molecular Weight Polyethylene — Composite B4C/W” |
title_sort |
mechanical activation of the powder mixture of “ultra-high molecular weight polyethylene — composite b4c/w” |
publisher |
National Academy of Sciences of Belarus, State Scientific Institution “The Joint Institute of Mechanical Engineering" |
series |
Механика машин, механизмов и материалов |
issn |
1995-0470 2518-1475 |
publishDate |
2018-12-01 |
description |
The article presents the results of the experimental studies of the structural transformations of a powder mixture of ultra-high molecular weight polyethylene and 80 wt.% (45 vol.%) of the nanostructured composite B4C/W treated in a high-energy ball planetary mill that are studied by the methods of X-ray diffraction, scanning electron microscopy and Fourier-IR spectroscopy. It is shown that the polymer composite particles of a flaky shape and the size of 160–400 μm with a uniform distribution in them of boron carbide and tungsten particles with the size of 1–5 μm and 0.1–0.2 μm respectively are formed during the process of mechanical activation (MA), while the oxidative destruction of polymer is not detected. The main results of the interaction of the polymer matrix and dispersed filler powders with MA are the processes of breaking of intramolecular bonds, cross-linking of polymer molecules, as well as mechanical dispersion of particles. |
topic |
mechanical activation microstructure composites ultra-high molecular weight polyethylene boron carbide tungsten |
url |
http://mmmm.by/en/readers-en/archive-room-en?layout=edit&id=1423 |
work_keys_str_mv |
AT svetlanaakovaleva mechanicalactivationofthepowdermixtureofultrahighmolecularweightpolyethylenecompositeb4cw AT viktorizhornik mechanicalactivationofthepowdermixtureofultrahighmolecularweightpolyethylenecompositeb4cw AT tatyanafgrigorieva mechanicalactivationofthepowdermixtureofultrahighmolecularweightpolyethylenecompositeb4cw |
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1721175939157590016 |