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Characterizing dental enamel¿s mechanical properties from milli- to nanometer length scales - Softcover

 
9783954041657: Characterizing dental enamel¿s mechanical properties from milli- to nanometer length scales
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  • PublisherCuvillier Verlag
  • Publication date2012
  • ISBN 10 3954041650
  • ISBN 13 9783954041657
  • BindingPaperback

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Siang Fung Ang
Published by Cuvillier Jul 2012 (2012)
ISBN 10: 3954041650 ISBN 13: 9783954041657
New Taschenbuch Quantity: 2
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BuchWeltWeit Ludwig Meier e.K.
(Bergisch Gladbach, Germany)

Book Description Taschenbuch. Condition: Neu. This item is printed on demand - it takes 3-4 days longer - Neuware -Understanding the structure-property relationship of enamel is a basis to improve restorative and preventive dentistry. The structure-mechanical properties relationship of dental enamel (made of apatite fibers and a small amount of organics and water) was studied. Enamel¿s elastic moduli, elastic/inelastic transition were quantified and the toughening mechanisms were identified for different hierarchical levels. During creep, the interrod regions are able to dissipate higher irreversible energy compared to the enamel rod regions. For enamel fracture, the crack tip toughness, the cohesive stresses and size of the cohesive zone at the crack-tip were quantified. 130 pp. Englisch. Seller Inventory # 9783954041657

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Siang Fung Ang
Published by Cuvillier
ISBN 10: 3954041650 ISBN 13: 9783954041657
New Taschenbuch Quantity: 1
Print on Demand
Seller:
AHA-BUCH GmbH
(Einbeck, Germany)

Book Description Taschenbuch. Condition: Neu. nach der Bestellung gedruckt Neuware - Printed after ordering - Understanding the structure-property relationship of enamel is a basis to improve restorative and preventive dentistry. The structure-mechanical properties relationship of dental enamel (made of apatite fibers and a small amount of organics and water) was studied. Enamel¿s elastic moduli, elastic/inelastic transition were quantified and the toughening mechanisms were identified for different hierarchical levels. During creep, the interrod regions are able to dissipate higher irreversible energy compared to the enamel rod regions. For enamel fracture, the crack tip toughness, the cohesive stresses and size of the cohesive zone at the crack-tip were quantified. Seller Inventory # 9783954041657

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