Structural and Mechanical Properties of Hot Rolled CuAlBe Non-Spark Alloy Explosion

Explosion protection is of particular importance for safety as explosions also endanger the health of workers due to the uncontrolled effects of flames and pressure, the presence of harmful reaction products and the consumption of oxygen in the ambient air breathed by workers. CuAlBe alloy is propos...

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Main Authors: G.R. Chelariu, N. Cimpoeșu, P. Paraschiv, B.A. Prisecariu, I. Rusu, I. Știrbu, G.I. Sandu, M. Benchea, C. Bejinariu
Format: Article
Language:English
Published: Polish Academy of Sciences 2024-04-01
Series:Archives of Metallurgy and Materials
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Online Access:https://journals.pan.pl/Content/130945/PDF/AMM-2024-1-43-Cimpoesu.pdf
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author G.R. Chelariu
N. Cimpoeșu
P. Paraschiv
B.A. Prisecariu
I. Rusu
I. Știrbu
G.I. Sandu
M. Benchea
C. Bejinariu
author_facet G.R. Chelariu
N. Cimpoeșu
P. Paraschiv
B.A. Prisecariu
I. Rusu
I. Știrbu
G.I. Sandu
M. Benchea
C. Bejinariu
author_sort G.R. Chelariu
collection DOAJ
description Explosion protection is of particular importance for safety as explosions also endanger the health of workers due to the uncontrolled effects of flames and pressure, the presence of harmful reaction products and the consumption of oxygen in the ambient air breathed by workers. CuAlBe alloy is proposed as a solution for mechanical actuators such as gears that work in environments with possible explosive atmosphere. Made of CuBe master alloy and pure aluminum in a induction furnace the material present large grains in melted state. After the hot rolling (heated 600s at 900°C) of the ingots small variation of chemical composition was observed based on the oxidation of the material, appearance of small cracks on the edges and a preferential orientation of the grains along the lamination direction. Scanning electron microscopy (SEM) was used to characterize the microstructural states of CuAlBe as laminated and heat treated states.
format Article
id doaj-art-2aa34d9bde6344e588a69c1fd16b3f2c
institution Kabale University
issn 2300-1909
language English
publishDate 2024-04-01
publisher Polish Academy of Sciences
record_format Article
series Archives of Metallurgy and Materials
spelling doaj-art-2aa34d9bde6344e588a69c1fd16b3f2c2024-12-27T14:07:46ZengPolish Academy of SciencesArchives of Metallurgy and Materials2300-19092024-04-01vol. 69No 1236268https://doi.org/10.24425/amm.2024.147817Structural and Mechanical Properties of Hot Rolled CuAlBe Non-Spark Alloy ExplosionG.R. Chelariu0https://orcid.org/0000-0001-9594-9419N. Cimpoeșu1https://orcid.org/0000-0003-4373-017XP. Paraschiv2https://orcid.org/0000-0002-9259-6109B.A. Prisecariu3https://orcid.org/0000-0002-2242-9823I. Rusu4https://orcid.org/0000-0003-2690-6436I. Știrbu5https://orcid.org/0000-0002-2715-0557G.I. Sandu6https://orcid.org/0000-0002-8135-4083M. Benchea7https://orcid.org/0000-0001-9961-5125C. Bejinariu8https://orcid.org/0000-0003-1973-7240Gheorghe Asachi University of Iasi, Faculty of Materials Science and Engineering, 43 Dimitrie Mangeron str., 700050, IasiGheorghe Asachi University of Iasi, Faculty of Materials Science and Engineering, 43 Dimitrie Mangeron str., 700050, IasiGheorghe Asachi University of Iasi, Faculty of Materials Science and Engineering, 43 Dimitrie Mangeron str., 700050, Iasi“Grigore T. Popa” University of Medicine and Pharmacy, Iasi, RomaniaGheorghe Asachi University of Iasi, Faculty of Materials Science and Engineering, 43 Dimitrie Mangeron str., 700050, IasiGheorghe Asachi University of Iasi, Faculty of Materials Science and Engineering, 43 Dimitrie Mangeron str., 700050, IasiGheorghe Asachi University of Iasi, Faculty of Materials Science and Engineering, 43 Dimitrie Mangeron str., 700050, IasiGheorghe Asachi University of Iasi, Mechanica l Faculty, 43 Dimitrie Mangeron str., 700050, IasiGheorghe Asachi University of Iasi, Faculty of Materials Science and Engineering, 43 Dimitrie Mangeron str., 700050, IasiExplosion protection is of particular importance for safety as explosions also endanger the health of workers due to the uncontrolled effects of flames and pressure, the presence of harmful reaction products and the consumption of oxygen in the ambient air breathed by workers. CuAlBe alloy is proposed as a solution for mechanical actuators such as gears that work in environments with possible explosive atmosphere. Made of CuBe master alloy and pure aluminum in a induction furnace the material present large grains in melted state. After the hot rolling (heated 600s at 900°C) of the ingots small variation of chemical composition was observed based on the oxidation of the material, appearance of small cracks on the edges and a preferential orientation of the grains along the lamination direction. Scanning electron microscopy (SEM) was used to characterize the microstructural states of CuAlBe as laminated and heat treated states.https://journals.pan.pl/Content/130945/PDF/AMM-2024-1-43-Cimpoesu.pdfanti-spark materialsemedscold rollingindentation
spellingShingle G.R. Chelariu
N. Cimpoeșu
P. Paraschiv
B.A. Prisecariu
I. Rusu
I. Știrbu
G.I. Sandu
M. Benchea
C. Bejinariu
Structural and Mechanical Properties of Hot Rolled CuAlBe Non-Spark Alloy Explosion
Archives of Metallurgy and Materials
anti-spark material
sem
eds
cold rolling
indentation
title Structural and Mechanical Properties of Hot Rolled CuAlBe Non-Spark Alloy Explosion
title_full Structural and Mechanical Properties of Hot Rolled CuAlBe Non-Spark Alloy Explosion
title_fullStr Structural and Mechanical Properties of Hot Rolled CuAlBe Non-Spark Alloy Explosion
title_full_unstemmed Structural and Mechanical Properties of Hot Rolled CuAlBe Non-Spark Alloy Explosion
title_short Structural and Mechanical Properties of Hot Rolled CuAlBe Non-Spark Alloy Explosion
title_sort structural and mechanical properties of hot rolled cualbe non spark alloy explosion
topic anti-spark material
sem
eds
cold rolling
indentation
url https://journals.pan.pl/Content/130945/PDF/AMM-2024-1-43-Cimpoesu.pdf
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