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Modeling Damage, Fatigue and Failure of Composite Materials

Specificaties
Gebonden, blz. | Engels
Elsevier Science | e druk, 2015
ISBN13: 9781782422860
Rubricering
Elsevier Science e druk, 2015 9781782422860
€ 247,00
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Samenvatting

Modelling Damage, Fatigue and Failure of Composite Materials provides the latest research on the field of composite materials, an area that has attracted a wealth of research, with significant interest in the areas of damage, fatigue, and failure.

The book is a comprehensive source of physics-based models for the analysis of progressive and critical failure phenomena in composite materials, and focuses on materials modeling, while also reviewing treatments to give the reader thorough direction for analyzing failure in composite structures.

Part one of the book reviews the damage development in composite materials such as generic damage and damage accumulation in textile composites and under multiaxial loading, while part two focuses on the modeling of failure mechanisms in composite materials with attention given to fibre/matrix cracking and debonding, compression failure, and delamination fracture. Final sections examine the modeling of damage and materials response in composite materials, including micro-level and multi-scale approaches, the failure analysis of composite materials and joints, and the applications of predictive failure models.

Specificaties

ISBN13:9781782422860
Taal:Engels
Bindwijze:Gebonden

Inhoudsopgave

<p>Preface</p> <p>Part One: Damage development in composite materials</p> <p>1 Composite materials: constituents, architecture and generic damage  </p> <p>2 Fatigue damage mechanisms</p> <p>3 Damage accumulation in textile composites</p> <p>4 Damage accumulation under multiaxial fatigue loading</p> <p>Part Two: Modelling of failure mechanisms in composite materials</p> <p>5 Matrix and fibre-matrix interface cracking in composite materials</p> <p>6 Fibre/matrix debonding in composite materials: transverse loading</p> <p>7 Fibre/matrix debonding in composite materials: axial loading</p> <p>8 Multiple matrix cracking in composite materials</p> <p>9 Fibre failure and debonding in composite materials</p> <p>10 Compression failure in composite materials </p> <p>11 Delamination fracture in composite materials</p> <p>Part Three: Modelling of damage and materials response in composite materials</p> <p>12 Micro-level approaches to modelling of damage in composite materials- COD-based methods </p> <p>13 Micro-level approaches to modelling of damage in composite materials: generalized plain strain analysis </p> <p>14 Multi-scale approaches to modelling of damage in composite materials</p> <p>Part Four: Failure analysis of composite materials and joints</p> <p>15 Multi-scale failure assessment of composite laminates</p> <p>16 Modelling the crack initiation in UD laminates under multiaxial fatigue loading</p> <p>17 Incorporating manufacturing defects in failure analysis</p> <p>18 Failure from stress gradients and concentrations </p> <p>19 Failure model approaches for composite joints </p>
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        Modeling Damage, Fatigue and Failure of Composite Materials