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pro vyhledávání: '"Anca Ravoiu"'
Autor:
Nicoleta Bogatu, Alina Crina Muresan, Laurentiu Mardare, Viorica Ghisman, Anca Ravoiu, Floricel Maricel Dima, Daniela Laura Buruiana
Publikováno v:
Inventions, Vol 8, Iss 1, p 39 (2023)
The aim of this paper is to evaluate the corrosion rate expressed in material loss per unit of time and the surface properties of carbon steel type S235JR blasted with different types of materials (quartz, alumina, and red garnet with a particle size
Externí odkaz:
https://doaj.org/article/e3e9a65e9b674d0b90aaddddfaeab010
Akademický článek
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Publikováno v:
International Journal of Molecular Sciences; Volume 24; Issue 10; Pages: 8529
The metallic titanium-based biomaterials are sensitive to corrosion-induced degradation in biological fluids in the presence of inflammatory conditions containing reactive oxygen species (ROS). Excess ROS induces oxidative modification of cellular ma
Publikováno v:
Coatings; Volume 13; Issue 3; Pages: 614
Nanoporous TiO2 film is deposited on grade 5 Ti6Al4V implant alloy by electrochemical oxidation. The nanopores of the film, as highlighted by electron microscopy, have a mean diameter of 58.6 nm, which is measured and calculated from an average value
Publikováno v:
Revista de Chimie. 70:1144-1148
316L Stainless steels are widely used in biomedical applications with respect to their excellent corrosion resistance, nonmagnetic properties, high ductility and acceptable biocompatibility. There have been made electrochemical studies in-vitro in or
Publikováno v:
ACS biomaterials scienceengineering. 5(11)
A thin porous mixed layer of TiO2-ZrO2 was grown on titanium-zirconium alloy surface by electrochemical oxidation. Further comparison of the corrosion behavior in Fusayama-Meyer biological solution was performed. Scanning electron microscopy surface
Publikováno v:
SGEM International Multidisciplinary Scientific GeoConference EXPO Proceedings.
Publikováno v:
IOP Conference Series: Materials Science and Engineering. 572:012005
The field of biomaterials imposes a multidisciplinary approach that requires the involvement of sciences such as biology, medicine, chemistry and materials engineering so that the material implanted in a living organism does not cause any adverse rea
Publikováno v:
IOP Conference Series: Materials Science and Engineering. 572:012006
The materials used as implants are expected to be highly non toxic and should not cause any inflammatory or allergic reactions in the human body. The success of the biomaterials is mainly dependent on the reaction of the human body to the implant. Ti