Analysis of the milling time in the porosity and microstructure of scaffolds of the Ti-13Nb-13Zr alloy (2017)
- Authors:
- USP affiliated authors: RODRIGUES JUNIOR, DURVAL - EEL ; KOMORIZONO, AMANDA AKEMY - EEL ; PINTO, PÉRSIO MOZART - EEL
- Unidade: EEL
- Sigla do Departamento: LOM
- Subjects: BIOMATERIAIS; TITÂNIO; NIÓBIO; ZIRCÔNIO
- Keywords: Controle de porosidade; Ligas de Ti-Nb-Zr; Redução de contaminações
- Language: Inglês
- Objetivos de Desenvolvimento Sustentável (ODS):
09. Indústria, inovação e infraestrutura
- Imprenta:
- Source:
-
ABNT
KOMORIZONO, Amanda Akemy e PINTO, Pérsio Mozart e RODRIGUES JR, Durval. Analysis of the milling time in the porosity and microstructure of scaffolds of the Ti-13Nb-13Zr alloy. 2017, Anais.. Buzios-RJ: SBF, 2017. . Acesso em: 26 jan. 2026. -
APA
Komorizono, A. A., Pinto, P. M., & Rodrigues Jr, D. (2017). Analysis of the milling time in the porosity and microstructure of scaffolds of the Ti-13Nb-13Zr alloy. In XL Encontro Nacional de Física da Matéria Condensada (XL ENFMC). Buzios-RJ: SBF. -
NLM
Komorizono AA, Pinto PM, Rodrigues Jr D. Analysis of the milling time in the porosity and microstructure of scaffolds of the Ti-13Nb-13Zr alloy. XL Encontro Nacional de Física da Matéria Condensada (XL ENFMC). 2017 ;[citado 2026 jan. 26 ] -
Vancouver
Komorizono AA, Pinto PM, Rodrigues Jr D. Analysis of the milling time in the porosity and microstructure of scaffolds of the Ti-13Nb-13Zr alloy. XL Encontro Nacional de Física da Matéria Condensada (XL ENFMC). 2017 ;[citado 2026 jan. 26 ] - Optimization of powder metallurgy parameters to obtain scaffolds of Ti-13Nb-13Zr alloy with appropriate Young Modulus
- Evolution of pore structures with increasing milling time in the preparation of scaffolds of the Ti-13Nb-13Zr alloy by space holder technique
- Evaluaton of Ways to Control Impurities Incorporated to the Powder of Ti-13Nb-13Zr by the Milling During the Process of High Energy Ball Milling
- Obtenção de ligas Mg-Zn utilizando moagem de alta energia para aplicações biomédicas
- Obtaining Mg-Zn alloys using high energy grinding for biomedical applications
- Porosity Control in Ti-13Nb-13Zr Alloy for Biomedical Applications
- Development of multifilamentary superconducting wire of magnesium diboride with addition of a carbon source
- Use of high energy milling and porosity insertion in the development of the Mg-Zn system aiming biomedical applications
- Obtaining of Ti-13Nb-13Zr powder from chips of the alloy using HDH process
- Study of the powder metallurgy technique to obtain magnesium alloys
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