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This book provides a simple and unified approach to the mechanics of discontinuous-fibre reinforced composites, and introduces readers as generally as possible to the key concepts regarding the mechanics of elastic stress transfer, intermediate modes of stress transfer, plastic stress transfer, fibre pull-out, fibre fragmentation and matrix rupture. These concepts are subsequently applied to progressive stages of the loading process, through to the composite fractures. The book offers a valuable guide for advanced undergraduate and graduate students attending lecture courses on fibre composites. It is also intended for beginning researchers who wish to develop deeper insights into how discontinuous fibre provides reinforcement to composites, and for engineers, particularly those who wish to apply the concepts presented here to design and develop discontinuous-fibre reinforced composites.
Classical mechanics. Field theory --- Solid state physics --- Materials sciences --- Applied physical engineering --- Artificial intelligence. Robotics. Simulation. Graphics --- Applied arts. Arts and crafts --- composieten --- toegepaste mechanica --- vormgeving --- mineralen (chemie) --- simulaties --- mijnbouw --- materialen (technologie) --- KI (kunstmatige intelligentie) --- mechanica --- keramiek --- Fibrous composites. --- Fibrous composites --- Fiber composites --- Fiber-reinforced composites --- Filament reinforced composites --- Reinforced fibrous composites --- Composite materials --- Mechanical properties. --- Fracture. --- Ceramics. --- Glass. --- Composites (Materials). --- Composite materials. --- Mechanics. --- Mechanics, Applied. --- Structural materials. --- Computer simulation. --- Ceramics, Glass, Composites, Natural Materials. --- Solid Mechanics. --- Structural Materials. --- Simulation and Modeling. --- Computer modeling --- Computer models --- Modeling, Computer --- Models, Computer --- Simulation, Computer --- Electromechanical analogies --- Mathematical models --- Simulation methods --- Model-integrated computing --- Architectural materials --- Architecture --- Building --- Building supplies --- Buildings --- Construction materials --- Structural materials --- Materials --- Applied mechanics --- Engineering, Mechanical --- Engineering mathematics --- Classical mechanics --- Newtonian mechanics --- Physics --- Dynamics --- Quantum theory --- Composites (Materials) --- Multiphase materials --- Reinforced solids --- Solids, Reinforced --- Two phase materials --- Amorphous substances --- Ceramics --- Glazing --- Ceramic technology --- Industrial ceramics --- Keramics --- Building materials --- Chemistry, Technical --- Clay
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Composite materials --- Analysis. --- Fibrous composites. --- Fiber composites --- Fiber-reinforced composites --- Filament reinforced composites --- Reinforced fibrous composites --- Composites (Materials) --- Multiphase materials --- Reinforced solids --- Solids, Reinforced --- Two phase materials --- Materials
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This book provides a simple and unified approach to the mechanics of discontinuous-fibre reinforced composites, and introduces readers as generally as possible to the key concepts regarding the mechanics of elastic stress transfer, intermediate modes of stress transfer, plastic stress transfer, fibre pull-out, fibre fragmentation and matrix rupture. These concepts are subsequently applied to progressive stages of the loading process, through to the composite fractures. The book offers a valuable guide for advanced undergraduate and graduate students attending lecture courses on fibre composites. It is also intended for beginning researchers who wish to develop deeper insights into how discontinuous fibre provides reinforcement to composites, and for engineers, particularly those who wish to apply the concepts presented here to design and develop discontinuous-fibre reinforced composites.
Classical mechanics. Field theory --- Solid state physics --- Materials sciences --- Applied physical engineering --- Artificial intelligence. Robotics. Simulation. Graphics --- Applied arts. Arts and crafts --- composieten --- toegepaste mechanica --- vormgeving --- mineralen (chemie) --- simulaties --- mijnbouw --- materialen (technologie) --- KI (kunstmatige intelligentie) --- mechanica --- keramiek
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This book gathers the proceedings of the 4th International Conference on Mechanical Engineering and Applied Composite Materials (MEACM), held in Beijing, China on October 24-25, 2020. The conference brought together researchers from several countries and covered all major areas of mechanical engineering and applied composite materials, new applications and current trends. The topics covered include: structure and design, mechanical manufacturing and automation, robotics and mechatronics, mechanical behavior of nanomaterials, nanocomposites, and composite mechanics. Given its scope, the book offers a source of information and inspiration for researchers seeking to improve their work and gather new ideas for future developments.
Materials sciences --- Machine elements --- Applied physical engineering --- superclaus proces --- materiaalproductie --- machines
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Materials sciences --- Machine elements --- Applied physical engineering --- superclaus proces --- materiaalproductie --- machines
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Biopolymers --- Composite materials --- Environmental aspects. --- Composites (Materials) --- Multiphase materials --- Reinforced solids --- Solids, Reinforced --- Two phase materials --- Materials --- Bioactive polymers --- Biological polymers --- Natural polymers --- Naturally occurring polymers --- Biomolecules --- Polymers
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