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Micromechanics of deformation and failure of composites
Details
This book provides comprehensive analysis of the micromechanics of the composite materials including particulate filled, short fibre and continuous fibre reinforced composites. Some background to the various phenomenological and analytical models is given, but the main focus is in development of the suitable finite element models of the micromechanics of composites based on the concept of the unit cell. The stiffness and the failure mechanisms of different types of the composites are predicted using micromechanical model. The effect of the interface and the bonding of the matrix and filler in the progressive failure of the composites are investigated. The failure in perfectly bonded and fully debonded particulate filled composites presented, provides two extreme cases in terms of the effect of the adhesion in the composite mechanics. Also another parameter that would have deterministic effect on the composite behaviour is the type of the particles used as filler. Therefore with special attention to the filler particle type, analysis of the deformation and failure of the composites with soft rubbery fillers and hard fillers is explained.
Autorentext
Dr Elaheh Ghassemieh's research is in manufacturing and characterisation of the novel composites with aerospace, automotive and biomedical application. She works closely with industry in developing nano particle/fibre enhanced composites, biodegradable composites and functional materials using computational and experimental techniques.
Weitere Informationen
- Allgemeine Informationen
- GTIN 09783639255010
- Sprache Englisch
- Genre Allgemeines & Lexika
- Größe H220mm x B150mm x T11mm
- Jahr 2010
- EAN 9783639255010
- Format Kartonierter Einband (Kt)
- ISBN 978-3-639-25501-0
- Titel Micromechanics of deformation and failure of composites
- Autor Elaheh Ghassemieh
- Untertitel Micromechanical finite element analysis of deformation and failure of particulate filled, short and continuous fibre reinforced composites
- Gewicht 298g
- Herausgeber VDM Verlag Dr. Müller e.K.
- Anzahl Seiten 188