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Development of bio-functionalized and tribocorrosion resistant hybrid surfaces on novel Ti-based alloys

Grant number: 15/50280-5
Support Opportunities:Regular Research Grants
Start date: April 01, 2016
End date: March 31, 2020
Field of knowledge:Engineering - Materials and Metallurgical Engineering - Physical Metallurgy
Agreement: M-ERA.NET
Principal Investigator:Carlos Roberto Grandini
Grantee:Carlos Roberto Grandini
Principal researcher abroad: Fatih Toptan
Institution abroad: Universidade do Minho (UMinho), Portugal
Principal researcher abroad: Helena Gordo
Institution abroad: Universidad Carlos III de Madrid (UC3M), Spain
Host Institution: Faculdade de Ciências (FC). Universidade Estadual Paulista (UNESP). Campus de Bauru. Bauru , SP, Brazil

Abstract

The overall objective of the BIOHYB project is to find solutions to these major clinical concerns by using low Young's modulus TiNb alloys, in which tribocorrosion-resistant hybrid and bio-multifunctional surfaces will be created. In order to reach this aim, two strategies are proposed: (i) development of bio-FGMs having tribocorrosion resistant TiB/TiN/TiC-rich graded hybrid surfaces with bio-functionalized outmost layer containing antimicrobial (Mg, ZnO) and o bioactive (Ca, P) agents, (ii) hybrid coatings having tribocorrosion resistant TiB/TiN/TiC hybrid surfaces containing antimicrobial (ZnO) and bioactive (Ca, P) agents… (AU)

Articles published in Agência FAPESP Newsletter about the research grant:
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Articles published in other media outlets ( ):
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VEICULO: TITULO (DATA)
VEICULO: TITULO (DATA)

Scientific publications
(References retrieved automatically from Web of Science and SciELO through information on FAPESP grants and their corresponding numbers as mentioned in the publications by the authors)
MANSO GONCALVES, VINICIUS RICHIERI; NESPEQUE CORREA, DIEGO RAFAEL; GRANDINI, CARLOS ROBERTO; FONZAR PINTAO, CARLOS ALBERTO; MOREIRA AFONSO, CONRADO RAMOS; LISBOA FILHO, PAULO NORONHA. Assessment of improved tribocorrosion in novel in-situ Ti and ? Ti-40Nb alloy matrix composites produced with NbC addition during arc-melting for biomedical applications. Materials Chemistry and Physics, v. 301, p. 12-pg., . (15/50280-5, 18/18293-8)
COSTA, BRUNA C.; ALVES, ALEXANDRA C.; TOPTAN, FATIH; PINTO, ANA M.; GRENHO, LILIANA; FERNANDES, MARIA H.; PETROVYKH, DMITRI Y.; ROCHA, LUIS A.; LISBOA-FILHO, PAULO N.. Exposure effects of endotoxin-free titanium-based wear particles to human osteoblasts. JOURNAL OF THE MECHANICAL BEHAVIOR OF BIOMEDICAL MATERIALS, v. 95, p. 143-152, . (17/24300-4, 15/50280-5)