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Foamed materials --- Metallic composites --- Metal composites --- Metal matrix composites --- Composite materials --- Metals --- Foam --- Materials --- Porous materials
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Fibre reinforced polymer (FRP) composites are used in almost every type of advanced engineering structure, with their usage ranging from aircraft, helicopters and spacecraft through to boats, ships and offshore platforms and to automobiles, sports goods, chemical processing equipment and civil infrastructure such as bridges and buildlings. The usage of FRP composites continues to grow at an impressive rate as these materials are used more in their existing markets and become established in relatively new markets such as biomedical devices and civil structures. A key factor driving the increa
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Although extensively studied for more than a hundred years, an explosion of ideas related to composite materials in the last four decades has dramatically increased our understanding of the relationship between the properties of the constituent materials, the underlying microstructure of a composite, and the overall effective (electrical, thermal, elastic) moduli which govern the macroscopic behavior. This book surveys these exciting developments at the frontier of mathematics and presents many new results.
Composite materials. --- Differential equations, Partial. --- Homogenization (Differential equations) --- Homogenization (Differential equations). --- Materials Science --- Chemical & Materials Engineering --- Engineering & Applied Sciences --- Differential equations, Partial --- Partial differential equations --- Composites (Materials) --- Multiphase materials --- Reinforced solids --- Solids, Reinforced --- Two phase materials --- Materials --- Composite materials --- Composites --- Équations aux dérivées partielles --- Homogénéisation (équations différentielles)
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This book provides the basis for calculations of composite structures, using continuum mechanics to facilitate the treatment of more elaborate theories. A composite structure combines traditional materials (such as concrete) with new materials (such as high performance fibres) to explore and develop new structures.The author deals with individual layers in laminate composites, discussing the basic laws that govern mixtures.·Recommended for both student and professional use ·A systematic, compact presentation in a single volume·Covers the governing equations of composite
Composite construction. --- Composite materials --- Mathematical models. --- Composites (Materials) --- Multiphase materials --- Reinforced solids --- Solids, Reinforced --- Two phase materials --- Beams, Composite --- Building, Composite --- Composite beams --- Composite building --- Composite girders --- Girders, Composite --- Materials --- Building, Iron and steel --- Concrete construction --- Concrete slabs
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Structural health monitoring --- Structural stability --- Strength of materials --- Nondestructive testing --- Constructions --- Résistance des matériaux --- Contrôle non destructif --- Nondestructive testing. --- Strength of materials. --- Structural health monitoring. --- Structural stability. --- Stabilité --- Architectural engineering --- Engineering, Architectural --- Materials, Strength of --- Resistance of materials --- Stability of structures --- Structures, Stability of --- Condition monitoring (Structural engineering) --- Monitoring (Structural engineering) --- SHM (Structural health monitoring) --- Structural monitoring --- Building materials --- Flexure --- Mechanics --- Testing --- Elasticity --- Graphic statics --- Strains and stresses --- Stability --- Safety factor in engineering --- Structural failures --- Structural analysis (Engineering) --- Engineering --- Information Technology --- Material Science and Metallurgy --- Civil Engineering --- General and Others --- Data Storage and Data Mining --- Embedded Systems --- Composites --- Evaluation, Nondestructive --- Materials --- NDE (Testing) --- NDT (Testing) --- Non-destructive testing --- Nondestructive evaluation --- Surveillance de l'état des structures
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