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Volumn 30, Issue 8, 2010, Pages 1162-1169
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Microstructure, mechanical properties, and in vitro biocompatibility of spark plasma sintered hydroxyapatite-aluminum oxide-carbon nanotube composite
e
Davis
(United States)
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Author keywords
Alumina (Al2O3); Biocompatibility; Carbon nanotubes (CNTs); Fracture toughness; Hydroxyapatite (HA); Spark plasma sintering (SPS)
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Indexed keywords
ADDITION OF AL;
ALUMINUM OXIDES;
BIOCOMPATIBLE MATERIALS;
CELL LINES;
CELL VIABILITY;
DIFFERENT LENGTH SCALE;
IN-VITRO;
INDENTATION FRACTURE TOUGHNESS;
INDENTERS;
MATRIX;
MICRO INDENTATION;
MICROSCOPIC OBSERVATIONS;
MOUSE-FIBROBLASTS;
MTT ASSAYS;
NANO SCALE;
SEM;
SPARK PLASMA;
SPARK PLASMA SINTERING (SPS);
VICKERS;
ADHESION;
ALUMINUM;
APATITE;
BIOCOMPATIBILITY;
BIOLOGICAL MATERIALS;
BIOMECHANICS;
CARBON NANOTUBES;
CELL ADHESION;
CELL CULTURE;
ELECTRIC SPARKS;
FRACTURE;
HYDROXYAPATITE;
MECHANICAL PROPERTIES;
MULTIWALLED CARBON NANOTUBES (MWCN);
NANOINDENTATION;
PLASMAS;
REINFORCEMENT;
SCANNING ELECTRON MICROSCOPY;
SINTERED ALUMINA;
SPARK PLASMA SINTERING;
VICKERS HARDNESS TESTING;
FRACTURE TOUGHNESS;
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EID: 77956483235
PISSN: 09284931
EISSN: None
Source Type: Journal
DOI: 10.1016/j.msec.2010.06.009 Document Type: Article |
Times cited : (65)
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References (40)
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