Comparison of Two Powder Processing Techniques on the Properties of Cu-NbC Composites
An in situCu-NbC compositewas successfully synthesized fromCu,Nb, and C powders using ball milling and high pressure torsion (HPT) techniques. The novelty of the new approach, HPT, is the combination of high compaction pressure and large shear strain to simultaneously refine, synthesize, and consoli...
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my.usm.eprints.38473 http://eprints.usm.my/38473/ Comparison of Two Powder Processing Techniques on the Properties of Cu-NbC Composites B. D., Long R., Othman Hussain, Zuhailawati M., Umemoto TN1-997 Mining engineering. Metallurgy An in situCu-NbC compositewas successfully synthesized fromCu,Nb, and C powders using ball milling and high pressure torsion (HPT) techniques. The novelty of the new approach, HPT, is the combination of high compaction pressure and large shear strain to simultaneously refine, synthesize, and consolidate composite powders at roomtemperature.The HPTed Cu-NbC composite was formed within a short duration of 20 min without Fe contamination from the HPT’s die. High porosity of 3–9%, Fe and niobium oxidations, fromgrindingmedia and ethanol during ball milling led to low electrical conductivity of the milled Cu-NbC composite. The electrical conductivity of the HPTed Cu-NbC composite showed a value 50% higher than that of milled Cu-NbC composite of the same composition. Hindawi Publishing Corporation 2014 Article PeerReviewed application/pdf en http://eprints.usm.my/38473/1/Comparison_of_Two_Powder_Processing_Techniques_on_the_Properties_of_Cu-NbC_Composites.pdf B. D., Long and R., Othman and Hussain, Zuhailawati and M., Umemoto (2014) Comparison of Two Powder Processing Techniques on the Properties of Cu-NbC Composites. Advances in Materials Science and Engineering, 2014 (160580). pp. 1-6. ISSN 1687-8434 http://dx.doi.org/10.1155/2014/160580 |
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TN1-997 Mining engineering. Metallurgy B. D., Long R., Othman Hussain, Zuhailawati M., Umemoto Comparison of Two Powder Processing Techniques on the Properties of Cu-NbC Composites |
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An in situCu-NbC compositewas successfully synthesized fromCu,Nb, and C powders using ball milling and high pressure torsion (HPT) techniques. The novelty of the new approach, HPT, is the combination of high compaction pressure and large shear strain to simultaneously refine, synthesize, and consolidate composite powders at roomtemperature.The HPTed Cu-NbC composite was formed within a short duration of 20 min without Fe contamination from the HPT’s die. High porosity of 3–9%, Fe and niobium
oxidations, fromgrindingmedia and ethanol during ball milling led to low electrical conductivity of the milled Cu-NbC composite. The electrical conductivity of the HPTed Cu-NbC composite showed a value 50% higher than that of milled Cu-NbC composite of the same composition. |
format |
Article |
author |
B. D., Long R., Othman Hussain, Zuhailawati M., Umemoto |
author_facet |
B. D., Long R., Othman Hussain, Zuhailawati M., Umemoto |
author_sort |
B. D., Long |
title |
Comparison of Two Powder Processing Techniques on the Properties of Cu-NbC Composites |
title_short |
Comparison of Two Powder Processing Techniques on the Properties of Cu-NbC Composites |
title_full |
Comparison of Two Powder Processing Techniques on the Properties of Cu-NbC Composites |
title_fullStr |
Comparison of Two Powder Processing Techniques on the Properties of Cu-NbC Composites |
title_full_unstemmed |
Comparison of Two Powder Processing Techniques on the Properties of Cu-NbC Composites |
title_sort |
comparison of two powder processing techniques on the properties of cu-nbc composites |
publisher |
Hindawi Publishing Corporation |
publishDate |
2014 |
url |
http://eprints.usm.my/38473/1/Comparison_of_Two_Powder_Processing_Techniques_on_the_Properties_of_Cu-NbC_Composites.pdf http://eprints.usm.my/38473/ http://dx.doi.org/10.1155/2014/160580 |
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