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Please use this identifier to cite or link to this item: http://hdl.handle.net/123456789/1105

Title: MODELLING POROUS HYDROXYAPATITE MATRIX BASED BONE MICROSTRUCTURE
Authors: LUCA MOTOC, Dana
Keywords: elastic properties
bone
stiffness
hierarchical approach
micromechanics
Issue Date: Oct-2010
Publisher: Transilvania University Press of Braşov
Citation: GOOGLE SCHOLAR
Series/Report no.: COMAT 2010;49-52
Abstract: This contribution covers the prediction of the stiffness tensor for a microelastic model of the bone based on a three-step homogenization scheme. A micromechanical approach of the elastic properties of bone is being approached via a step-by-step homogenization concept developed around a more general, realistic hierarchical structure of the bone. The homogenization steps were done at: nanoscale – hydroxyapatite foam (extrafibrillar space), microscale (5-10 m) – collagen and hydroxyapatite network (fibril), microscale (5-10 mm) – bone microstructure. The stiffness tensor will be evaluated for each step of the homogenization process as function of different porosities volume fraction meaningfully from bone structure point of view. The same concept was applied for the volume fractions of the major bone constitutive, the hydroxyapatite crystals (35%) and collagen molecules (30%).
URI: http://hdl.handle.net/123456789/1105
ISSN: 1844 - 9336
Appears in Collections:COMAT 2010

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