PREPARATION OF Cu MATRIX COMPOSITE REINFORCED WITH IN-SITU NANOSIZED Al2O3 PARTICLE POWDER FROM METAL NITRATES

The objective of the present work is to investigate the feasibility of the synthesis of copper matrix composite reinforced with in-situ nanosized Al2O3 particle powder via combustion synthesis method from metal nitrates followed by reducing process at high temperature. The starting nitrates Cu(NO3)...

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Main Authors: Hai Minh Le, Yen Ngoc Nguyen, Duong Tien Hoang Truong, Huy Duc Vu, Hai Hong Nguyen, Khanh Quoc Dang
Format: Article
Language:English
Published: SciCell s.r.o. 2019-03-01
Series:Acta Metallurgica Slovaca
Subjects:
Online Access:https://journals.scicell.org/index.php/AMS/article/view/6
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spelling doaj-ee4e7fce2fb44d0782fb6dd8a080d2d62020-11-25T01:41:26ZengSciCell s.r.o.Acta Metallurgica Slovaca1335-15321338-11562019-03-0125110.12776/ams.v25i1.1215PREPARATION OF Cu MATRIX COMPOSITE REINFORCED WITH IN-SITU NANOSIZED Al2O3 PARTICLE POWDER FROM METAL NITRATESHai Minh LeYen Ngoc NguyenDuong Tien Hoang TruongHuy Duc VuHai Hong NguyenKhanh Quoc Dang The objective of the present work is to investigate the feasibility of the synthesis of copper matrix composite reinforced with in-situ nanosized Al2O3 particle powder via combustion synthesis method from metal nitrates followed by reducing process at high temperature. The starting nitrates Cu(NO3)2.3H2O and Al(NO3)3·9H2O composition corresponds to Cu-30%Al2O3. X-ray Diffraction (XRD) patterns of the obtained powders indicated the presence of the oxides CuO and CuAl2O4. The powder had the size of 75 ± 10 nm after deagglomerating by soft ball milling for 24h. After reducing in CO at 1000oC for 3h, the peaks of the oxides were no longer observed and were replaced by the peaks of Cu and -Al2O3. The morphology of the reduced powders observed by scanning electron microscopy (SEM) and energy dispersive X-ray spectroscopy (EDS) analysis showed well distribution of the -Al2O3 particles within the Cu matrix with an average particle size of 40 nm. https://journals.scicell.org/index.php/AMS/article/view/6Cu-Al2O3 nanocompositeCuAl2O4CuAlO2combustion synthesisreduction
collection DOAJ
language English
format Article
sources DOAJ
author Hai Minh Le
Yen Ngoc Nguyen
Duong Tien Hoang Truong
Huy Duc Vu
Hai Hong Nguyen
Khanh Quoc Dang
spellingShingle Hai Minh Le
Yen Ngoc Nguyen
Duong Tien Hoang Truong
Huy Duc Vu
Hai Hong Nguyen
Khanh Quoc Dang
PREPARATION OF Cu MATRIX COMPOSITE REINFORCED WITH IN-SITU NANOSIZED Al2O3 PARTICLE POWDER FROM METAL NITRATES
Acta Metallurgica Slovaca
Cu-Al2O3 nanocomposite
CuAl2O4
CuAlO2
combustion synthesis
reduction
author_facet Hai Minh Le
Yen Ngoc Nguyen
Duong Tien Hoang Truong
Huy Duc Vu
Hai Hong Nguyen
Khanh Quoc Dang
author_sort Hai Minh Le
title PREPARATION OF Cu MATRIX COMPOSITE REINFORCED WITH IN-SITU NANOSIZED Al2O3 PARTICLE POWDER FROM METAL NITRATES
title_short PREPARATION OF Cu MATRIX COMPOSITE REINFORCED WITH IN-SITU NANOSIZED Al2O3 PARTICLE POWDER FROM METAL NITRATES
title_full PREPARATION OF Cu MATRIX COMPOSITE REINFORCED WITH IN-SITU NANOSIZED Al2O3 PARTICLE POWDER FROM METAL NITRATES
title_fullStr PREPARATION OF Cu MATRIX COMPOSITE REINFORCED WITH IN-SITU NANOSIZED Al2O3 PARTICLE POWDER FROM METAL NITRATES
title_full_unstemmed PREPARATION OF Cu MATRIX COMPOSITE REINFORCED WITH IN-SITU NANOSIZED Al2O3 PARTICLE POWDER FROM METAL NITRATES
title_sort preparation of cu matrix composite reinforced with in-situ nanosized al2o3 particle powder from metal nitrates
publisher SciCell s.r.o.
series Acta Metallurgica Slovaca
issn 1335-1532
1338-1156
publishDate 2019-03-01
description The objective of the present work is to investigate the feasibility of the synthesis of copper matrix composite reinforced with in-situ nanosized Al2O3 particle powder via combustion synthesis method from metal nitrates followed by reducing process at high temperature. The starting nitrates Cu(NO3)2.3H2O and Al(NO3)3·9H2O composition corresponds to Cu-30%Al2O3. X-ray Diffraction (XRD) patterns of the obtained powders indicated the presence of the oxides CuO and CuAl2O4. The powder had the size of 75 ± 10 nm after deagglomerating by soft ball milling for 24h. After reducing in CO at 1000oC for 3h, the peaks of the oxides were no longer observed and were replaced by the peaks of Cu and -Al2O3. The morphology of the reduced powders observed by scanning electron microscopy (SEM) and energy dispersive X-ray spectroscopy (EDS) analysis showed well distribution of the -Al2O3 particles within the Cu matrix with an average particle size of 40 nm.
topic Cu-Al2O3 nanocomposite
CuAl2O4
CuAlO2
combustion synthesis
reduction
url https://journals.scicell.org/index.php/AMS/article/view/6
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