Properties of oxide-hydroxide sintered ceramics; IOP Conference Series: Materials Science and Engineering; Vol. 175 : Competitive Materials and Technology Processes (IC-CMTP4)

Detalles Bibliográficos
Parent link:IOP Conference Series: Materials Science and Engineering
Vol. 175 : Competitive Materials and Technology Processes (IC-CMTP4).— 2017.— [012045, 5 p.]
Autor Principal: Levkov R. V. Ruslan Viktorovich
Autor Corporativo: Национальный исследовательский Томский политехнический университет (ТПУ) Институт физики высоких технологий (ИФВТ) Кафедра материаловедения в машиностроении (ММС)
Outros autores: Kulkov S. N. Sergey Nikolaevich
Summary:Title screen
In this paper the study of porous ceramics obtained from aluminum hydroxide with gibbsite modification is presented. It was shown that aluminum hydroxide may be used for pore formation and pore volume in the sintered ceramics can be controlled by varying the aluminum hydroxide concentration and sintering temperature. It was shown that compressive strength of alumina ceramics increases by 40 times with decreasing the pore volume from 65 to 15%. Based on these results one can conclude that the obtained structure is very close to inorganic bone matrix and can be used as promising material for bone implants production.
Idioma:inglés
Publicado: 2017
Subjects:
Acceso en liña:https://doi.org/10.1088/1757-899X/175/1/012045
Formato: Electrónico Capítulo de libro
KOHA link:https://koha.lib.tpu.ru/cgi-bin/koha/opac-detail.pl?biblionumber=654667

MARC

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330 |a In this paper the study of porous ceramics obtained from aluminum hydroxide with gibbsite modification is presented. It was shown that aluminum hydroxide may be used for pore formation and pore volume in the sintered ceramics can be controlled by varying the aluminum hydroxide concentration and sintering temperature. It was shown that compressive strength of alumina ceramics increases by 40 times with decreasing the pore volume from 65 to 15%. Based on these results one can conclude that the obtained structure is very close to inorganic bone matrix and can be used as promising material for bone implants production. 
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