Investigation of the microhardness of the W-Ni-Fe powder alloy used for the restoration of machine parts

The paper presents the results of a study of the microhardness of the WNF-95 sintered electroerosive powder alloy. Powder alloy W-Ni-Fe95 was obtained by electroerosive dispersion of tungsten-containing waste in a kerosene medium. The resulting electroerosive powder alloy W-Ni-Fe 95was pressed in a...

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Main Authors: Ageev Evgeny, Karpeeva Svetlana
Format: Article
Language:English
Published: EDP Sciences 2021-01-01
Series:MATEC Web of Conferences
Online Access:https://www.matec-conferences.org/articles/matecconf/pdf/2021/10/matecconf_itmts2021_00017.pdf
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author Ageev Evgeny
Karpeeva Svetlana
author_facet Ageev Evgeny
Karpeeva Svetlana
author_sort Ageev Evgeny
collection DOAJ
description The paper presents the results of a study of the microhardness of the WNF-95 sintered electroerosive powder alloy. Powder alloy W-Ni-Fe95 was obtained by electroerosive dispersion of tungsten-containing waste in a kerosene medium. The resulting electroerosive powder alloy W-Ni-Fe 95was pressed in a vacuum chamber and sintered by the method of spark plasma sintering. The aim of this work was to study the microhardness of the WNF-95 sintered powder alloy obtained by the electroerosive dispersion of tungsten-containing waste in a kerosene medium. It has been established that the microhardness of samples sintered by the method of spark plasma sintering from particles of W-Ni-Fe 95alloy dispersed by electric erosion obtained in lighting kerosene is 2185.8 MPa and 2268.0 MPa, indicating their suitability for the manufacture of tungsten-nickel-iron alloys.
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spelling doaj.art-b4ce6fdd3e3d46858773e455844cac152022-12-21T18:26:34ZengEDP SciencesMATEC Web of Conferences2261-236X2021-01-013410001710.1051/matecconf/202134100017matecconf_itmts2021_00017Investigation of the microhardness of the W-Ni-Fe powder alloy used for the restoration of machine partsAgeev Evgeny0Karpeeva Svetlana1FGBOU VO South-West state UniversityFGBOU VO Orel State University named after I.S. TurgenevThe paper presents the results of a study of the microhardness of the WNF-95 sintered electroerosive powder alloy. Powder alloy W-Ni-Fe95 was obtained by electroerosive dispersion of tungsten-containing waste in a kerosene medium. The resulting electroerosive powder alloy W-Ni-Fe 95was pressed in a vacuum chamber and sintered by the method of spark plasma sintering. The aim of this work was to study the microhardness of the WNF-95 sintered powder alloy obtained by the electroerosive dispersion of tungsten-containing waste in a kerosene medium. It has been established that the microhardness of samples sintered by the method of spark plasma sintering from particles of W-Ni-Fe 95alloy dispersed by electric erosion obtained in lighting kerosene is 2185.8 MPa and 2268.0 MPa, indicating their suitability for the manufacture of tungsten-nickel-iron alloys.https://www.matec-conferences.org/articles/matecconf/pdf/2021/10/matecconf_itmts2021_00017.pdf
spellingShingle Ageev Evgeny
Karpeeva Svetlana
Investigation of the microhardness of the W-Ni-Fe powder alloy used for the restoration of machine parts
MATEC Web of Conferences
title Investigation of the microhardness of the W-Ni-Fe powder alloy used for the restoration of machine parts
title_full Investigation of the microhardness of the W-Ni-Fe powder alloy used for the restoration of machine parts
title_fullStr Investigation of the microhardness of the W-Ni-Fe powder alloy used for the restoration of machine parts
title_full_unstemmed Investigation of the microhardness of the W-Ni-Fe powder alloy used for the restoration of machine parts
title_short Investigation of the microhardness of the W-Ni-Fe powder alloy used for the restoration of machine parts
title_sort investigation of the microhardness of the w ni fe powder alloy used for the restoration of machine parts
url https://www.matec-conferences.org/articles/matecconf/pdf/2021/10/matecconf_itmts2021_00017.pdf
work_keys_str_mv AT ageevevgeny investigationofthemicrohardnessofthewnifepowderalloyusedfortherestorationofmachineparts
AT karpeevasvetlana investigationofthemicrohardnessofthewnifepowderalloyusedfortherestorationofmachineparts