Structural Integrity and Durability of Advanced Composites

Peter Beaumont

Editore: Oxford Elsevier LTD Jun 2015, 2015
ISBN 10: 0081001371 / ISBN 13: 9780081001370
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Neuware - Structural Integrity and Durability of Advanced Composites: Innovative Modelling Methods and Intelligent Design presents scientific and technological research from leading composite materials scientists and engineers that showcase the fundamental issues and practical problems that affect the development and exploitation of large composite structures. 872 pp. Englisch. Codice inventario libreria

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Structural Integrity and Durability of Advanced Composites: Innovative Modelling Methods and Intelligent Design presents scientific and technological research from leading composite materials scientists and engineers that showcase the fundamental issues and practical problems that affect the development and exploitation of large composite structures.

As predicting precisely where cracks may develop in materials under stress is an age old mystery in the design and building of large-scale engineering structures, the burden of testing to provide "fracture safe design" is imperative. Readers will learn to transfer key ideas from research and development to both the design engineer and end-user of composite materials.

This comprehensive text provides the information users need to understand deformation and fracture phenomena resulting from impact, fatigue, creep, and stress corrosion cracking and how these phenomena can affect reliability, life expectancy, and the durability of structures.

  • Presents scientific and technological research from leading composite materials scientists and engineers that showcase fundamental issues and practical problems
  • Provides the information users need to understand deformation and fracture phenomena resulting from impact, fatigue, creep, and stress corrosion cracking
  • Enables readers to transfer key ideas from research and development to both the design engineer and end-user of composite materials

About the Author: Dr Peter Beaumont is Reader in Engineering Materials at the Engineering Department in the University of Cambridge. Over several decades, Dr Beaumont has researched the relation between structure and properties of engineering materials especially composite materials, polymers and ceramic systems. His research has led to a new formulation of the principles of damage mechanics of composite materials for which he received the Distinguished Research Award of the American Society of Mechanical Engineers. He has published extensively on the structure and properties of composite materials, polymers and ceramics, and he is the founder and Editor-in-Chief of international journal Applied Composite Materials.

Professor Soutis is Chair of Aeorspace Engineering, Director of the Aeorspace Research Institute and director of the Northwest Composites Centre (NCCEF) at Manchester University.

Prof. Alma Hodzic is Professor in Advanced Materials Technologies at the University of Sheffield, and Editor-in-Chief for Advanced Manufacturing: Polymer and Composites Science.

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Dati bibliografici

Titolo: Structural Integrity and Durability of ...
Casa editrice: Oxford Elsevier LTD Jun 2015
Data di pubblicazione: 2015
Legatura: Buch
Condizione libro: Neu

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Descrizione libro Woodhead Publishing. Hardcover. Condizione libro: Fair. 0081001371 COSMETIC DAMAGE of a New/unread bk. Text/ill. is fine & complete; Examples of damage: no access code, spine/binding tear, crumpled pages, minor water damage, missing dust jacket, tearing to cover/pages, or writing/highlighting of text. 100% Satisfaction Guaranteed. FAST Processing; friendly, tip-top service. :- ) Please compare our seller rating to others; we are the fast, smart, hassle-free choice. Customer service is not a dept; it’s our attitude. FYI: Standard shipping is 4-14 business days. Deliveries beyond continental U.S. (ex. HI, AK, PR, APO) usually longer. If you’re outside cont. US, Please choose priority shipping. Codice libro della libreria EH9780081001370AC

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Descrizione libro ELSEVIER SCIENCE TECHNOLOGY, United Kingdom, 2015. Hardback. Condizione libro: New. Language: English . This book usually ship within 10-15 business days and we will endeavor to dispatch orders quicker than this where possible. Brand New Book. Structural Integrity and Durability of Advanced Composites: Innovative Modelling Methods and Intelligent Design presents scientific and technological research from leading composite materials scientists and engineers that showcase the fundamental issues and practical problems that affect the development and exploitation of large composite structures. As predicting precisely where cracks may develop in materials under stress is an age old mystery in the design and building of large-scale engineering structures, the burden of testing to provide fracture safe design is imperative. Readers will learn to transfer key ideas from research and development to both the design engineer and end-user of composite materials. This comprehensive text provides the information users need to understand deformation and fracture phenomena resulting from impact, fatigue, creep, and stress corrosion cracking and how these phenomena can affect reliability, life expectancy, and the durability of structures. Codice libro della libreria EOD9780081001370

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Peter Beaumont (editor), Constantinos Soutis (editor), Alma Hodzic (editor)
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Descrizione libro Elsevier Science 2015-05-20, Amsterdam, 2015. hardback. Condizione libro: New. Codice libro della libreria 9780081001370

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Descrizione libro Woodhead Publishing, 2017. Hardcover. Condizione libro: New. This item is printed on demand. Codice libro della libreria P110081001371

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Descrizione libro Condizione libro: New. Publisher/Verlag: Woodhead Publishing | Innovative Modelling Methods and Intelligent Design | Structural Integrity and Durability of Advanced Composites: Innovative Modelling Methods and Intelligent Design presents scientific and technological research from leading composite materials scientists and engineers that showcase the fundamental issues and practical problems that affect the development and exploitation of large composite structures.As predicting precisely where cracks may develop in materials under stress is an age old mystery in the design and building of large-scale engineering structures, the burden of testing to provide "fracture safe design" is imperative. Readers will learn to transfer key ideas from research and development to both the design engineer and end-user of composite materials .This comprehensive text provides the information users need to understand deformation and fracture phenomena resulting from impact, fatigue, creep, and stress corrosion cracking and how these phenomena can affect reliability, life expectancy, and the durability of structures.Presents scientific and technological research from leading composite materials scientists and engineers that showcase fundamental issues and practical problems Provides the information users need to understand deformation and fracture phenomena resulting from impact, fatigue, creep, and stress corrosion crackingEnables readers to transfer key ideas from research and development to both the design engineer and end-user of composite materials | Part I Multi-scale mechanics, physical modelling and damage analysis1 Composite micromechanics: from carbon fibres to graphene 2 A mechanisms-based framework for describing failure in composite materials 3 The origins of residual stress and its evaluation in composite materials 4 A multi-scale synergistic damage mechanics approach for modelling progressive failure in composite laminates 5 From micro to macro: simulating crack propagation in carbon fibre composites 6 Multi-scale modelling of high temperature polymer composites for aerospace applications 7 Modelling of damage evaluation and failure of laminated composite materials across length scalesPart II Computational Modelling, Damage Simulation and Fatigue Analysis8 Computational techniques for simulation of damage and failure in composite materials 9 Damage evolution modelling in laminates 10 Virtual testing of impact in C/epoxy laminates 11 Mixed mode fatigue of bonded joints in composites: experiments and modelling 12 A general and rigorous accelerated testing methodology for long term life prediction of polymeric materials 13 Effects of environment on creep behavior of three oxide-oxide ceramic matrix composites at 1200°C 14 Anisotropic 3D arrays of fibresPart III Structural Integrity15 Structural integrity and the implementation of engineering composite materials 16 The control of the residual lifetimes of carbon fibre reinforced composite pressure vessels 17 An extension of the point-stress criterion based on a coupled stress and energy fulfilment: application to the prediction of the open hole tensile strength of a composite plate 18 Compressive fracture of layered composites caused by internal instability 19 Analysis of delamination in laminates with angle-ply matrix cracks: onset of damage and residual stiffness properties 20 Blast resistance of polymeric composite sandwich structures 21 Maintenance and monitoring of composite helicopter structures and materialsPart IV Structural Integrity of Bonded and Bolted Joints22 Dynamic fractures of adhesively-bonded CFRP joints 23 Damage tolerance and survivability of composite aircraft structures 24 Computational and experimental study of composite scarf bonded joints 25 Composite bond inspection 26 Tensile failure of Composite scarf repairPart V Innovative Manufacturing and Materials for Increased Performance27 Carbon and TiO 2 Nanotube-Polymer Composites: Manufacturing- Characterization and Interphasial Modeli. Codice libro della libreria K9780081001370

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