Characterization of TiB2-AlN composites for application as cutting tool
Densified ceramic TiB2-AlN composites were prepared by spark plasma sintering and samples were subjected to short time machining tests. The maximum relative density and toughness were 96.9% and 16.2 GPa, respectively. Composites with 70 wt% AlN and 70 wt% TiB2 were applied as cutting tools and teste...
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doaj-18513399191f4b52ac9d93943aa436ee2020-11-25T03:53:51ZengElsevierJournal of Materials Research and Technology2238-78542018-10-0174550553Characterization of TiB2-AlN composites for application as cutting toolLuiz Antônio Fonseca Peçanha, Jr.0Sergio Neves Monteiro1Ítalo do Vale Tomaz2Marlon Mendes de Oliveira3Alan Monteiro Ramalho4Noan Tonini Simonassi5Fabio de Oliveira Braga6Fluminense Federal Institute – AGF Costa do Sol, Centro, 28909-971, Cabo Frio, RJ, BrazilMilitary Institute of Engineering – IME, Materials Science Program, Praça General Tibúrcio 80, Urca, 22290-270 Rio de Janeiro, RJ, BrazilFluminense Federal Institute – AGF Costa do Sol, Centro, 28909-971, Cabo Frio, RJ, BrazilFluminense Federal Institute – AGF Costa do Sol, Centro, 28909-971, Cabo Frio, RJ, BrazilFluminense Federal Institute – AGF Costa do Sol, Centro, 28909-971, Cabo Frio, RJ, BrazilMilitary Institute of Engineering – IME, Materials Science Program, Praça General Tibúrcio 80, Urca, 22290-270 Rio de Janeiro, RJ, Brazil; Corresponding author.Military Institute of Engineering – IME, Materials Science Program, Praça General Tibúrcio 80, Urca, 22290-270 Rio de Janeiro, RJ, Brazil; Faculty SENAI Rio, Rua Mariz e Barros, 678, 20270-003, Rio de Janeiro, RJ, BrazilDensified ceramic TiB2-AlN composites were prepared by spark plasma sintering and samples were subjected to short time machining tests. The maximum relative density and toughness were 96.9% and 16.2 GPa, respectively. Composites with 70 wt% AlN and 70 wt% TiB2 were applied as cutting tools and tested for cutting parameters. Scanning electron microscopy (SEM) allowed the analysis of the microstructure and the wear surfaces after cutting tests. The 70% TiB2 composites revealed unsatisfactory performance while the 70 wt% AlN disclosed satisfactory cutting performance. Keywords: Composite, TiB2-AlN, Machining tests, Cutting toolhttp://www.sciencedirect.com/science/article/pii/S2238785417308153 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Luiz Antônio Fonseca Peçanha, Jr. Sergio Neves Monteiro Ítalo do Vale Tomaz Marlon Mendes de Oliveira Alan Monteiro Ramalho Noan Tonini Simonassi Fabio de Oliveira Braga |
spellingShingle |
Luiz Antônio Fonseca Peçanha, Jr. Sergio Neves Monteiro Ítalo do Vale Tomaz Marlon Mendes de Oliveira Alan Monteiro Ramalho Noan Tonini Simonassi Fabio de Oliveira Braga Characterization of TiB2-AlN composites for application as cutting tool Journal of Materials Research and Technology |
author_facet |
Luiz Antônio Fonseca Peçanha, Jr. Sergio Neves Monteiro Ítalo do Vale Tomaz Marlon Mendes de Oliveira Alan Monteiro Ramalho Noan Tonini Simonassi Fabio de Oliveira Braga |
author_sort |
Luiz Antônio Fonseca Peçanha, Jr. |
title |
Characterization of TiB2-AlN composites for application as cutting tool |
title_short |
Characterization of TiB2-AlN composites for application as cutting tool |
title_full |
Characterization of TiB2-AlN composites for application as cutting tool |
title_fullStr |
Characterization of TiB2-AlN composites for application as cutting tool |
title_full_unstemmed |
Characterization of TiB2-AlN composites for application as cutting tool |
title_sort |
characterization of tib2-aln composites for application as cutting tool |
publisher |
Elsevier |
series |
Journal of Materials Research and Technology |
issn |
2238-7854 |
publishDate |
2018-10-01 |
description |
Densified ceramic TiB2-AlN composites were prepared by spark plasma sintering and samples were subjected to short time machining tests. The maximum relative density and toughness were 96.9% and 16.2 GPa, respectively. Composites with 70 wt% AlN and 70 wt% TiB2 were applied as cutting tools and tested for cutting parameters. Scanning electron microscopy (SEM) allowed the analysis of the microstructure and the wear surfaces after cutting tests. The 70% TiB2 composites revealed unsatisfactory performance while the 70 wt% AlN disclosed satisfactory cutting performance. Keywords: Composite, TiB2-AlN, Machining tests, Cutting tool |
url |
http://www.sciencedirect.com/science/article/pii/S2238785417308153 |
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