Cargando…

Ni–Cr Powders Modified with Rhenium as a Novel Coating Material—Physical Properties, Microstructure, and Behavior in Plasma Plume

The aim of this work was to develop a new coating material based on Ni20Cr alloy modified with up to 50%wt. rhenium. The modification was carried out by the mechanical mixing of the base powder and ammonium perrhenate with the subsequent thermoreduction in an H(2) atmosphere. The obtained powder con...

Descripción completa

Detalles Bibliográficos
Autores principales: Wrona, Adriana, Lis, Marcin, Pęcak, Krzysztof, Kalemba-Rec, Izabela, Dymek, Stanisław, Wróbel, Mirosław, Bilewska, Katarzyna, Kustra, Katarzyna, Węglowski, Marek Stanisław, Śliwiński, Piotr
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9182353/
https://www.ncbi.nlm.nih.gov/pubmed/35683142
http://dx.doi.org/10.3390/ma15113844
_version_ 1784724015201386496
author Wrona, Adriana
Lis, Marcin
Pęcak, Krzysztof
Kalemba-Rec, Izabela
Dymek, Stanisław
Wróbel, Mirosław
Bilewska, Katarzyna
Kustra, Katarzyna
Węglowski, Marek Stanisław
Śliwiński, Piotr
author_facet Wrona, Adriana
Lis, Marcin
Pęcak, Krzysztof
Kalemba-Rec, Izabela
Dymek, Stanisław
Wróbel, Mirosław
Bilewska, Katarzyna
Kustra, Katarzyna
Węglowski, Marek Stanisław
Śliwiński, Piotr
author_sort Wrona, Adriana
collection PubMed
description The aim of this work was to develop a new coating material based on Ni20Cr alloy modified with up to 50%wt. rhenium. The modification was carried out by the mechanical mixing of the base powder and ammonium perrhenate with the subsequent thermoreduction in an H(2) atmosphere. The obtained powder consists of a nickel–chromium core surrounded by a rhenium shell. The characterization of the powders—including their microstructure, phase and chemical composition, density, flowability, particle size distribution, and specific surface area—was performed. The influence of plasma current intensity and hydrogen gas flow on in-flight particle temperature and velocity were investigated. The results indicate that there is interdiffusion between the base Ni20Cr and the rhenium shell, resulting in intermediary solid solution(s). The modified powders have a higher specific surface area and a lower flowability, but this does not prevent them from being used as feedstock in plasma spraying. In-flight measurements reveal that increasing the content of rhenium allows for the higher temperature of particles, though it also reduces their speed.
format Online
Article
Text
id pubmed-9182353
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-91823532022-06-10 Ni–Cr Powders Modified with Rhenium as a Novel Coating Material—Physical Properties, Microstructure, and Behavior in Plasma Plume Wrona, Adriana Lis, Marcin Pęcak, Krzysztof Kalemba-Rec, Izabela Dymek, Stanisław Wróbel, Mirosław Bilewska, Katarzyna Kustra, Katarzyna Węglowski, Marek Stanisław Śliwiński, Piotr Materials (Basel) Article The aim of this work was to develop a new coating material based on Ni20Cr alloy modified with up to 50%wt. rhenium. The modification was carried out by the mechanical mixing of the base powder and ammonium perrhenate with the subsequent thermoreduction in an H(2) atmosphere. The obtained powder consists of a nickel–chromium core surrounded by a rhenium shell. The characterization of the powders—including their microstructure, phase and chemical composition, density, flowability, particle size distribution, and specific surface area—was performed. The influence of plasma current intensity and hydrogen gas flow on in-flight particle temperature and velocity were investigated. The results indicate that there is interdiffusion between the base Ni20Cr and the rhenium shell, resulting in intermediary solid solution(s). The modified powders have a higher specific surface area and a lower flowability, but this does not prevent them from being used as feedstock in plasma spraying. In-flight measurements reveal that increasing the content of rhenium allows for the higher temperature of particles, though it also reduces their speed. MDPI 2022-05-27 /pmc/articles/PMC9182353/ /pubmed/35683142 http://dx.doi.org/10.3390/ma15113844 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Wrona, Adriana
Lis, Marcin
Pęcak, Krzysztof
Kalemba-Rec, Izabela
Dymek, Stanisław
Wróbel, Mirosław
Bilewska, Katarzyna
Kustra, Katarzyna
Węglowski, Marek Stanisław
Śliwiński, Piotr
Ni–Cr Powders Modified with Rhenium as a Novel Coating Material—Physical Properties, Microstructure, and Behavior in Plasma Plume
title Ni–Cr Powders Modified with Rhenium as a Novel Coating Material—Physical Properties, Microstructure, and Behavior in Plasma Plume
title_full Ni–Cr Powders Modified with Rhenium as a Novel Coating Material—Physical Properties, Microstructure, and Behavior in Plasma Plume
title_fullStr Ni–Cr Powders Modified with Rhenium as a Novel Coating Material—Physical Properties, Microstructure, and Behavior in Plasma Plume
title_full_unstemmed Ni–Cr Powders Modified with Rhenium as a Novel Coating Material—Physical Properties, Microstructure, and Behavior in Plasma Plume
title_short Ni–Cr Powders Modified with Rhenium as a Novel Coating Material—Physical Properties, Microstructure, and Behavior in Plasma Plume
title_sort ni–cr powders modified with rhenium as a novel coating material—physical properties, microstructure, and behavior in plasma plume
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9182353/
https://www.ncbi.nlm.nih.gov/pubmed/35683142
http://dx.doi.org/10.3390/ma15113844
work_keys_str_mv AT wronaadriana nicrpowdersmodifiedwithrheniumasanovelcoatingmaterialphysicalpropertiesmicrostructureandbehaviorinplasmaplume
AT lismarcin nicrpowdersmodifiedwithrheniumasanovelcoatingmaterialphysicalpropertiesmicrostructureandbehaviorinplasmaplume
AT pecakkrzysztof nicrpowdersmodifiedwithrheniumasanovelcoatingmaterialphysicalpropertiesmicrostructureandbehaviorinplasmaplume
AT kalembarecizabela nicrpowdersmodifiedwithrheniumasanovelcoatingmaterialphysicalpropertiesmicrostructureandbehaviorinplasmaplume
AT dymekstanisław nicrpowdersmodifiedwithrheniumasanovelcoatingmaterialphysicalpropertiesmicrostructureandbehaviorinplasmaplume
AT wrobelmirosław nicrpowdersmodifiedwithrheniumasanovelcoatingmaterialphysicalpropertiesmicrostructureandbehaviorinplasmaplume
AT bilewskakatarzyna nicrpowdersmodifiedwithrheniumasanovelcoatingmaterialphysicalpropertiesmicrostructureandbehaviorinplasmaplume
AT kustrakatarzyna nicrpowdersmodifiedwithrheniumasanovelcoatingmaterialphysicalpropertiesmicrostructureandbehaviorinplasmaplume
AT weglowskimarekstanisław nicrpowdersmodifiedwithrheniumasanovelcoatingmaterialphysicalpropertiesmicrostructureandbehaviorinplasmaplume
AT sliwinskipiotr nicrpowdersmodifiedwithrheniumasanovelcoatingmaterialphysicalpropertiesmicrostructureandbehaviorinplasmaplume