Zobrazeno 1 - 8
of 8
pro vyhledávání: '"Roseli Marins Balestra"'
Autor:
Carolina Aurélia Ribeiro Maestro, Alysson Helton Santo Bueno, Roseli Marins Balestra, Artur Mariano de Sousa Malafaia, Jeferson Moreto
Publikováno v:
Orbital: The Electronic Journal of Chemistry, Vol 14, Iss 3 (2022)
Our research group has been working on the surface functionalization of Ti-6Al-4V alloy by using thermal oxidation followed by CaP and Bi-CaP biomimetic depositions. In this short communication, we present new insights into the corrosion behaviour of
Externí odkaz:
https://doaj.org/article/55e88bec02d44ed2a71f0cae4f0fa676
Autor:
Roseli Marins Balestra
Publikováno v:
Biblioteca Digital de Teses e Dissertações da USPUniversidade de São PauloUSP.
As cerâmicas de carbeto de silício, SiC, possuem excelentes propriedades físicas, químicas e mecânicas, fazendo com que as mesmas tenham um vasto campo de aplicações. Devido à natureza altamente covalente do SiC, este possui baixo coeficiente
Publikováno v:
Brazilian Journal of Development. 9:10155-10168
Este trabalho estuda a influência do tempo no processo de cementação, avaliando a dureza da camada cementada. Para isso é necessário a caracterização do aço SAE 1020 cementado, temperado e revenido, modificando o tempo do processo de cementa
Autor:
Francis Faria Goulart, Alexandre Antunes Ribeiro, Débora Vieira Way, Lais de Souza Alves, Carlos Angelo Nunes, Lucas Moreira Ferreira, Roseli Marins Balestra
Publikováno v:
Matéria (Rio de Janeiro) v.27 n.4 2022
Matéria (Rio de Janeiro. Online)
instacron:RLAM
Matéria (Rio de Janeiro), Volume: 27, Issue: 4, Article number: e20220072, Published: 14 OCT 2022
Matéria (Rio de Janeiro. Online)
instacron:RLAM
Matéria (Rio de Janeiro), Volume: 27, Issue: 4, Article number: e20220072, Published: 14 OCT 2022
The present work is a continuation of the research carried out in a previous work, with the aim of improving the production of Ti35Nb alloy by reducing the particle size of Ti (from 50–149 Μm to < 53 Μm) and Nb (from 31–500 Μm to < 62 Μm) pow
Autor:
Roseli Marins Balestra, Rogério Valentim Gelamo, Malu Mateus Santos, Carlo José Freire Oliveira, Alysson Helton Santo Bueno, Jeferson Aparecido Moreto, T. Chiaramonte, Marcos Vinicius da Silva, Carolina Aurélia Ribeiro Maestro, Artur Mariano de Sousa Malafaia
Publikováno v:
Surface and Coatings Technology. 425:127717
This study focuses on the functionalized modification of the Ti-6Al-4V alloy substrates widely used by the biomedical sector. For this purpose, a double coating has been used to improve the bioactivity properties of the Ti-6Al-4V alloy by using therm
Characterization of Porous Ti-35Nb Alloy Sintered at Different Temperatures for Implant Applications
Autor:
Cristyane Silva Santos de Oliveira, Alexandre Antunes Ribeiro, Roseli Marins Balestra, Sandro Griza, Marize Varella de Oliveira
Publikováno v:
Materials Science Forum. 802:496-500
Studies show that porous titanium alloys improve osseointegration at the implant-bone interface, since they induce new bone tissue formation inside the pores providing a better mechanical stability. In this work, porous Ti-35Nb samples were manufactu
Autor:
Albano Cavaleiro, Marize Varela Oliveira, João Oliveira, Alexandre Antunes Ribeiro, Roseli Marins Balestra
Publikováno v:
Materials Science Forum. :472-477
The deposition of hydroxyapatite coatings on titanium via sputtering techniques has been quite studied on commercial dense substrates, for use as a biomaterial. In this work, porous titanium samples produced by powder metallurgy and commercially dens
Autor:
Marcela Rego de Oliveira
Publikováno v:
Biblioteca Digital de Teses e Dissertações da USP
Universidade de São Paulo (USP)
instacron:USP
Universidade de São Paulo (USP)
instacron:USP
As cerâmicas a base de carbeto de silício, SiC, tem muitas aplicações na engenharia devido às suas excelentes propriedade mecânicas, térmicas e químicas. Para a produção de cerâmicas de SiC com propriedades específicas, seu processamento
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::40379648db149e53c08c1dfd57592fdc