Elasticity and Strength of Bone and Bone Replacement Materials (Paperback)


Strength of bone and bone replacement materials are predicted, from their composition and microstructure, by means of multiscale models. The theoretical developments are supported by comprehensive experiments on cortical bone and on biomaterials made of hydroxyapatite, glass-ceramic, and titanium. Brittle failure of interfaces between isotropic, spherical crystals is investigated as well as an alternative approach using crystal needles for hydroxyapatite biomaterials. A model for cortical bone strength is presented, based on a new vision on bone material failure: mutual ductile sliding of hydroxyapatite mineral crystals along layered water films is followed by rupture of collagen crosslinks. It can satisfactorily predict the strength of different bones from different species, on the basis of their mineral/collagen content, their porosities, and the mechanical properties of hydroxyapatite and (molecular) collagen.

R2,236
List Price R2,265

Or split into 4x interest-free payments of 25% on orders over R50
Learn more

Discovery Miles22360
Mobicred@R210pm x 12* Mobicred Info
Free Delivery
Delivery AdviceShips in 10 - 15 working days


Toggle WishListAdd to wish list
Review this Item

Product Description

Strength of bone and bone replacement materials are predicted, from their composition and microstructure, by means of multiscale models. The theoretical developments are supported by comprehensive experiments on cortical bone and on biomaterials made of hydroxyapatite, glass-ceramic, and titanium. Brittle failure of interfaces between isotropic, spherical crystals is investigated as well as an alternative approach using crystal needles for hydroxyapatite biomaterials. A model for cortical bone strength is presented, based on a new vision on bone material failure: mutual ductile sliding of hydroxyapatite mineral crystals along layered water films is followed by rupture of collagen crosslinks. It can satisfactorily predict the strength of different bones from different species, on the basis of their mineral/collagen content, their porosities, and the mechanical properties of hydroxyapatite and (molecular) collagen.

Customer Reviews

No reviews or ratings yet - be the first to create one!

Product Details

General

Imprint

Sudwestdeutscher Verlag Fur Hochschulschriften AG

Country of origin

United States

Release date

April 2009

Availability

Expected to ship within 10 - 15 working days

First published

April 2009

Authors

Dimensions

229 x 152 x 10mm (L x W x T)

Format

Paperback - Trade

Pages

188

ISBN-13

978-3-8381-0507-9

Barcode

9783838105079

Categories

LSN

3-8381-0507-9



Trending On Loot