Effect of carbon nano-tubes and dispersions of SiC and Al2O3 on the mechanical and physical properties of copper-nickel alloy
This paper investigates the mechanical and physical properties of Cu-Ni alloy (at 50-50 wt. %), mixed with different reinforcement materials such as carbon nanotubes CNT (0.5–2 wt. %) as nano particles, Al2O3 (1–4 wt. %) and SiC (1–4 wt. %) as microparticles. The obtained composite specimens charact...
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Published in | Heliyon Vol. 4; no. 10; p. e00876 |
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Format | Journal Article |
Language | English |
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Abstract | This paper investigates the mechanical and physical properties of Cu-Ni alloy (at 50-50 wt. %), mixed with different reinforcement materials such as carbon nanotubes CNT (0.5–2 wt. %) as nano particles, Al2O3 (1–4 wt. %) and SiC (1–4 wt. %) as microparticles. The obtained composite specimens characteristics were evaluated such as microstructure, density, electrical conductivity, thermal conductivity, hardness, and compression properties to determine the suitable reinforcement percentage that has the best physical and mechanical properties. The micron-sized Al2O3 and SiC and nano-sized CNT were added to enhance the mechanical and physical properties of the composite. The hardness and compression yield stress of Cu-Ni base composites have shown the most positive enhancement values of up to 135 % and 136 % of the matrix, respectively. |
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AbstractList | This paper investigates the mechanical and physical properties of Cu-Ni alloy (at 50-50 wt. %), mixed with different reinforcement materials such as carbon nanotubes CNT (0.5–2 wt. %) as nano particles, Al
2
O
3
(1–4 wt. %) and SiC (1–4 wt. %) as microparticles. The obtained composite specimens characteristics were evaluated such as microstructure, density, electrical conductivity, thermal conductivity, hardness, and compression properties to determine the suitable reinforcement percentage that has the best physical and mechanical properties. The micron-sized Al
2
O
3
and SiC and nano-sized CNT were added to enhance the mechanical and physical properties of the composite. The hardness and compression yield stress of Cu-Ni base composites have shown the most positive enhancement values of up to 135 % and 136 % of the matrix, respectively. This paper investigates the mechanical and physical properties of Cu-Ni alloy (at 50-50 wt. %), mixed with different reinforcement materials such as carbon nanotubes CNT (0.5–2 wt. %) as nano particles, Al2O3 (1–4 wt. %) and SiC (1–4 wt. %) as microparticles. The obtained composite specimens characteristics were evaluated such as microstructure, density, electrical conductivity, thermal conductivity, hardness, and compression properties to determine the suitable reinforcement percentage that has the best physical and mechanical properties. The micron-sized Al2O3 and SiC and nano-sized CNT were added to enhance the mechanical and physical properties of the composite. The hardness and compression yield stress of Cu-Ni base composites have shown the most positive enhancement values of up to 135 % and 136 % of the matrix, respectively. |
ArticleNumber | e00876 |
Author | Shash, A.Y. El-Khatib, S. Elsayed, A.H. El-Habak, A. |
AuthorAffiliation | d Mechanical Design and Production Engineering Dept., Cairo University, Cairo, Egypt c Powder Technology Lab., Central Metallurgical Research and Development Institute, Cairo, Egypt a Mechanical Engineering Dept., Future University in Egypt, Cairo, Egypt b Mechanical Design and Production Engineering Dept., Cairo University, on leave to German University in Cairo, Cairo, Egypt |
AuthorAffiliation_xml | – name: d Mechanical Design and Production Engineering Dept., Cairo University, Cairo, Egypt – name: b Mechanical Design and Production Engineering Dept., Cairo University, on leave to German University in Cairo, Cairo, Egypt – name: a Mechanical Engineering Dept., Future University in Egypt, Cairo, Egypt – name: c Powder Technology Lab., Central Metallurgical Research and Development Institute, Cairo, Egypt |
Author_xml | – sequence: 1 givenname: S. surname: El-Khatib fullname: El-Khatib, S. organization: Mechanical Engineering Dept., Future University in Egypt, Cairo, Egypt – sequence: 2 givenname: A.Y. orcidid: 0000-0002-8135-4761 surname: Shash fullname: Shash, A.Y. email: ahmed.shash@cu.edu.eg, ahmed.shash@guc.edu.eg organization: Mechanical Design and Production Dept., Faculty of Engineering, Cairo University, Cairo, Egypt – sequence: 3 givenname: A.H. orcidid: 0000-0002-1116-5527 surname: Elsayed fullname: Elsayed, A.H. organization: Powder Technology Lab., Central Metallurgical Research and Development Institute, Cairo, Egypt – sequence: 4 givenname: A. surname: El-Habak fullname: El-Habak, A. organization: Mechanical Design and Production Dept., Faculty of Engineering, Cairo University, Cairo, Egypt |
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Cites_doi | 10.1016/j.compositesa.2016.05.027 10.1016/j.synthmet.2008.10.017 10.1109/LED.2008.2002075 10.1038/354056a0 10.1016/S0266-3538(01)00094-X 10.1016/S0167-577X(01)00485-2 10.1126/science.1060928 10.1016/j.enconman.2014.04.016 10.1016/j.pmatsci.2005.04.003 10.1016/j.mser.2003.10.001 10.1155/2016/8106845 10.1063/1.2899939 10.1016/j.electacta.2014.06.084 10.1016/j.apsusc.2009.03.057 10.1155/2015/791063 |
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Title | Effect of carbon nano-tubes and dispersions of SiC and Al2O3 on the mechanical and physical properties of copper-nickel alloy |
URI | https://dx.doi.org/10.1016/j.heliyon.2018.e00876 https://search.proquest.com/docview/2129529817 https://pubmed.ncbi.nlm.nih.gov/PMC6205301 https://doaj.org/article/8ec528d96ca54263b0a80baa3f956910 |
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