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This book presents the proceeding of the 8th in this successful series of conferences organised by the Centre for Composite Materials Engineering of the University of Newcastle upon Tyne and sponsored by the Institute of Mechanical Engineers (ImechE) and The Institute of Materials (IoM).The papers presented show how FRCs are being used in a steadily increasing range of technologies and how their properties make them appropriate choices for designers and processors interested in exploiting the potential of these highly versatile materials.Composites applications now extend well
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Composites have long held the center-stage of research and development in the materials community. The concept of combining metals, ceramics and polymers - having various types, shapes and properties - into a single material exhibiting properties that none of its individual components possess, has created endless scope for the imagination of scientists and engineers. It has ignited numerous fields of research and development, and revolutionized many applications. However, in spite of the many advantages of composite materials, there remain troubling underlying problems arising from the complex
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Collection of selected, peer reviewed papers from the 1st International Conference on Advanced Composites for Marine Engineering (ICACME 2013), September 10-12, 2014, Beijing, China. The 43 papers are grouped as follows: Chapter 1: Numerical Methods and Analysis, Optimization, Algorithm and Modelling for Materials and Structures; Chapter 2: Applied Mechanics, Structural Analysis, Characterisation and Applications; Chapter 3: Advanced Composite Materials and Processes
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This volume is divided into 3 chapters. The first, focused on Materials and Elaboration Techniques, describes various types of material such as composites, polymers, semiconductors, metals, ceramics, bio-materials, inorganic alloys, textile, porous, crystalline, amorphous and hybrids elaborated by various means such as vapor-phase, liquid-phase, plasma, ion-based and laser-assisted techniques, soft chemistry, self- assembly, bonding, sintering, and including bulk, surface, interface, thin-film and nano-materials. The second chapter, on Characterization Techniques and Properties, covers both ph
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This collection of more than 204 peer-reviewed papers on Composite Science and Technology covers: mechanics of composites, infrastructural composites, non-destructive evaluation and characterization of composites, fracture and fatigue of composites, numerical and mathematical modelling, ceramic matrices, composites, metal-matrix composites, composite manufacturing, polymer composites, smart materials and structures, nano-composites, bio-composites and structural health monitoring. This makes it a handy guide to the state-of-the-art of this field. Review from Book News Inc.: This two-volume col
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The purpose of aligning short fibres in a fibre-reinforced material is to improve the mechanical properties of the resulting composite. Aligning the fibres, generally in a preferred direction, allows them to contribute as much as possible to reinforcing the material.Flow induced alignment in composite materials details, in a single volume, the science, processing, applications, characterisation and properties of composite materials reinforced with short fibres that have been orientated in a preferred direction by flows arising during processing. The topics discussed include fibre align
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