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Microstructural Characterisation of Fibre-Reinforced Composites

Microstructural Characterisation of Fibre-Reinforced Composites PDF Author: John Summerscales
Publisher: Woodhead Publishing
ISBN: 9781855732407
Category : Technology & Engineering
Languages : en
Pages : 320

Book Description
Over the last 50 years, great progress has been made in developing artificial fibre-reinforced composite materials, generally using filaments with microscopic diameters. A wide range of reinforcement forms, from random arrays to fully aligned, can be used for commercial applications, with the microstructure being a critical factor in realising the required properties in a material. This is the first up-to-date review of how to apply advanced microstructural characterisation techniques to fibre-reinforced composites. Each chapter is designed to offer both a stand-alone introduction to its topic and detailed referencing for follow-up research. With contributions from experts from around the world, the book will be an essential reference for materials scientists and research workers in industry and academia alike. Comprehensive and up-to-date review of the microstructural features of composites Covers a wide range of microstructure characterisation techniques

Microstructural Characterisation of Fibre-Reinforced Composites

Microstructural Characterisation of Fibre-Reinforced Composites PDF Author: John Summerscales
Publisher: Woodhead Publishing
ISBN: 9781855732407
Category : Technology & Engineering
Languages : en
Pages : 320

Book Description
Over the last 50 years, great progress has been made in developing artificial fibre-reinforced composite materials, generally using filaments with microscopic diameters. A wide range of reinforcement forms, from random arrays to fully aligned, can be used for commercial applications, with the microstructure being a critical factor in realising the required properties in a material. This is the first up-to-date review of how to apply advanced microstructural characterisation techniques to fibre-reinforced composites. Each chapter is designed to offer both a stand-alone introduction to its topic and detailed referencing for follow-up research. With contributions from experts from around the world, the book will be an essential reference for materials scientists and research workers in industry and academia alike. Comprehensive and up-to-date review of the microstructural features of composites Covers a wide range of microstructure characterisation techniques

Microstructural Characterisation of Fibre-Reinforced Composites

Microstructural Characterisation of Fibre-Reinforced Composites PDF Author: John Summerscales
Publisher: CRC Press
ISBN: 9780849338823
Category : Technology & Engineering
Languages : en
Pages : 350

Book Description
In the past 50 years, great progress has been made in developing artificial fiber-reinforced composite materials, generally using filaments with microscopic diameters. An array of reinforcement forms can be used in commercial applications - with the microstructure being a critical factor in realizing the required properties in a material. Microstructural Characterisation of Fibre-Reinforced Composites comprehensively examines the application of advanced microstructural characterization techniques to fiber-reinforced composites.

Microstructural Characterisation of Fibre-reinforced Composites

Microstructural Characterisation of Fibre-reinforced Composites PDF Author: John Summerscales
Publisher:
ISBN:
Category : Fibrous composites
Languages : en
Pages : 0

Book Description


Quantitative Microstructural Analysis of Unidirectional Carbon Fiber Reinforced Polymer Composites. Part 1. Microstructural Characterization of Composite Cross Section

Quantitative Microstructural Analysis of Unidirectional Carbon Fiber Reinforced Polymer Composites. Part 1. Microstructural Characterization of Composite Cross Section PDF Author: John J. Ricca
Publisher:
ISBN:
Category :
Languages : en
Pages : 40

Book Description
Individual axial tensile specimens of AS4/3501-6 and T300/934 unidirectional carbon fiber reinforced polymer composite laminate systems are characterized microstructurally. Fiber volume, fractional fiber volume, fiber uniformity, void volume, and variations in laminate thickness are acquired using automated quantitative image analysis (QIA). The sample preparation methods and QIA system procedures are fully explained. The problems in determining average or batch fiber contents in composite laminates using current methods are discussed. Possible problems in using micrometer thickness data in fiber content calculations are discussed when variations in specimen thickness due to surface contours are present. Variations in microstructure exhibited within a single fabricating company, between several fabricating companies, and between two different fiber-resin systems are demonstrated. Overall, QIA was determined to be a precise means of determining fiber and void contents and uniformity in individual test specimens prior to or after mechanical testing. (aw).

Microstructural Characterisation of Burnt Fibre-reinforced Polymer Composities

Microstructural Characterisation of Burnt Fibre-reinforced Polymer Composities PDF Author: Nursuriaty Johari-Chua
Publisher:
ISBN:
Category :
Languages : en
Pages :

Book Description


Microstructural Design of Fiber Composites

Microstructural Design of Fiber Composites PDF Author: Tsu-Wei Chou
Publisher: Cambridge University Press
ISBN: 9780521019651
Category : Technology & Engineering
Languages : en
Pages : 592

Book Description
This book addresses the issue of designing the microstructure of fiber composite materials in order to obtain optimum performance. Besides the systematic treatment of conventional continuous and discontinuous fiber composites, the book also presents the state-of-the-art of the development of textile structural composites as well as the nonlinear elastic finite deformation theory of flexible composites. The author's experience during twenty years of research and teaching on composite materials is reflected in the broad spectrum of topics covered, including laminated composites, statistical strength theories of continuous fiber composites, short fiber composites, hybrid composites, two- and three-dimensional textile structural composites and flexible composites. This book provides the first comprehensive analysis and modeling of the thermo-mechanical behavior of fiber composites with these distinct microstructures. Overall, the inter-relationships among the processing, microstructures and properties of these materials are emphasized throughout the book. The book is intended as a text for graduate or advanced undergraduate students, but will also be an excellent reference for all materials scientists and engineers who are researching or working with these materials.

Analysis and Performance of Fiber Composites

Analysis and Performance of Fiber Composites PDF Author: Bhagwan D. Agarwal
Publisher: Wiley-Interscience
ISBN:
Category : Technology & Engineering
Languages : en
Pages : 480

Book Description
Having fully established themselves as workable engineering materials, composite materials are now increasingly commonplace around the world. Serves as both a text and reference guide to the behavior of composite materials in different engineering applications. Revised for this Second Edition, the text includes a general discussion of composites as material, practical aspects of design and performance, and further analysis that will be helpful to those engaged in research on composites. Each chapter closes with references for further reading and a set of problems that will be useful in developing a better understanding of the subject.

Natural and Synthetic Fiber Reinforced Composites

Natural and Synthetic Fiber Reinforced Composites PDF Author: Sanjay Mavinkere Rangappa
Publisher: John Wiley & Sons
ISBN: 3527349308
Category : Technology & Engineering
Languages : en
Pages : 372

Book Description
Natural and Synthetic Fiber Reinforced Composites Discover a comprehensive exploration of fiber reinforced polymers by an expert team of editors Fiber reinforced polymer (FRP) composites offer several unique properties that make them ideal for use in a wide range of industries, from automotive and aerospace to marine, construction, and co-industrial. In Natural and Synthetic Fiber Reinforced Composites: Synthesis, Properties and Applications, a distinguished team of mechanical engineers delivers a comprehensive overview of fiber reinforced composites. This edited volume includes thorough discussions of glass-, cotton-, and carbon-fiber reinforced materials, as well as the tribological properties and non-structural applications of synthetic fiber composites. Readers will also find practical explorations of the structural evolution, mechanical features, and future possibilities of fiber, textile, and nano-cementitious materials. The physical and chemical properties of cotton fiber-based composites are explored at length, as are the extraordinary mechanical, thermal, electrical, electronic, and field emission properties of carbon nanotubes. This singular book also includes: A thorough discussion of recent advancements in natural fiber reinforced polymer composites, their implications, and the opportunities that arise as a result A comprehensive exploration of the thermal behavior of natural fiber-based composites An insightful review of the literature on sisal fiber with polymer matrices A response to the growing research gap in the existing literature regarding natural fiber-based polymer composites and solutions to address it Perfect for scientists, engineers, professors, and students working in areas involving natural and synthetic reinforced polymers and composites, Natural and Synthetic Fiber Reinforced Composites: Synthesis, Properties and Applications offers a one-of-a-kind resource to help readers understand a critical and rapidly evolving technology.

Flow-Induced Alignment in Composite Materials

Flow-Induced Alignment in Composite Materials PDF Author: T.D. Papathanasiou
Publisher: Woodhead Publishing
ISBN: 0128185759
Category : Technology & Engineering
Languages : en
Pages : 399

Book Description
The purpose of aligning short fibers in a fiber-reinforced material is to improve the mechanical properties of the resulting composite. Aligning the fibers, generally in a preferred direction, allows them to contribute as much as possible to reinforcing the material. The first edition of this book detailed, in a single volume, the science, processing, applications, characterization and properties of composite materials reinforced with short fibers that have been orientated in a preferred direction by flows arising during processing. The technology of fiber-reinforced composites is continually evolving and this new edition provides timely and much needed information about this important class of engineering materials. Each of the original chapters have been brought fully up-to-date and new developments such as: the advent of nano-composites and the issues relating to their alignment; the wider use of long-fiber composites and the appearance of models able to capture their orientation during flow; the wider use of flows in micro-channels in the context of composites fabrication; and the increase in computing power, which has made relevant simulations (especially coupling flow kinematics to fiber content and orientation) much easier to perform are all covered in detail. The book will be an essential up-to-date reference resource for materials scientists, students, and engineers who are working in the relevant areas of particulate composites, short fiber-reinforced composites or nanocomposites. Presents recent progress on flow-induced alignment, modelling and design of fiber and particulate filled polymer composites Discusses important advances such as alignment of CNTs in polymer nanocomposites and molecular alignment of polymers induced by the injection molding process in the presence of fillers such as short fibers Presents fiber interaction/diffusion modelling and also the fiber flexure/breakage models

The Structural Integrity of Carbon Fiber Composites

The Structural Integrity of Carbon Fiber Composites PDF Author: Peter W. R Beaumont
Publisher: Springer
ISBN: 3319461206
Category : Technology & Engineering
Languages : en
Pages : 954

Book Description
This book brings together a diverse compilation of inter-disciplinary chapters on fundamental aspects of carbon fiber composite materials and multi-functional composite structures: including synthesis, characterization, and evaluation from the nano-structure to structure meters in length. The content and focus of contributions under the umbrella of structural integrity of composite materials embraces topics at the forefront of composite materials science and technology, the disciplines of mechanics, and development of a new predictive design methodology of the safe operation of engineering structures from cradle to grave. Multi-authored papers on multi-scale modelling of problems in material design and predicting the safe performance of engineering structure illustrate the inter-disciplinary nature of the subject. The book examines topics such as Stochastic micro-mechanics theory and application for advanced composite systems Construction of the evaluation process for structural integrity of material and structure Nano- and meso-mechanics modelling of structure evolution during the accumulation of damage Statistical meso-mechanics of composite materials Hierarchical analysis including "age-aware," high-fidelity simulation and virtual mechanical testing of composite structures right up to the point of failure. The volume is ideal for scientists, engineers, and students interested in carbon fiber composite materials, and other composite material systems.