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- W148518706 abstract "Most engineering progress through the centuries was dependent on the discovery and availability of new structural materials. In fact many of our modern technologies require materials with unusual combinations of mechanical properties, lightness, and ease of processing that cannot be met by the conventional metal alloys, ceramics, and polymeric materials. For example, engineers working in research and development of aerospace, underwater, transportation, civil, and biomedical applications are increasingly searching for structural materials that have low densities, are strong, stiff, abrasion and impact resistant, and are not easily corroded. This is a rather unusual combination of characteristics, since strong materials are relatively dense and increasing strength or stiffness generally results in a decrease of impact strength. A possible way to extend material property combinations and ranges relies on the development of composite materials. Very simply, a composite is a material that is composed of two or more distinct constituent materials or phases, separated by definite interfaces. To a certain extent this definition depends upon the level of analysis, as all materials may be considered heterogeneous if the scale of interest is sufficiently small. It is only when the constituents have significantly different physical properties, and thus the composite properties are noticeably different from the constituent properties, that we have come to recognize these materials as composites (Agarwal and Broutman, 1990). Major con-" @default.
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- W148518706 date "2005-12-17" @default.
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- W148518706 title "Fundamentals of Polymeric Composite Materials" @default.
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