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Titlebook: Cellulosic Materials; Fibers, Networks and Wadood Hamad Book 2002 Springer Science+Business Media New York 2002

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发表于 2025-3-21 19:02:45 | 显示全部楼层 |阅读模式
书目名称Cellulosic Materials
副标题Fibers, Networks and
编辑Wadood Hamad
视频video
图书封面Titlebook: Cellulosic Materials; Fibers, Networks and Wadood Hamad Book 2002 Springer Science+Business Media New York 2002
描述The objectives of this book are twofold: 1. To provide athorough examination of the materials science of cellulosic fiberswith emphasis on the characterization of structure-property relations,and 2. To advance knowledge of how to best analyze cellulosic fibrousnetworks and composites, and, ultimately, engineer "novel"cellulose-based systems of superior performance and functionality. Thedesign of new materials through the study of living systems, orbio-imitation, is burgeoning to become an established field, generallyreferred to as biomimetics. The latter, as with materials science, ingeneral, prominently features multi-disciplinarity where newdevelopments in mathematics, physics, chemistry and engineeringcontinue to inspire novel areas of research and development. .The book is structured in five chapters which provide a sequentialtreatment of the running theme: deformation mechanics and thephysical, morphological and mechanical characterization of nativecellulose fibers networks and composites. .The heart of the book is Chapter 3, Damage Accumulation in Fibers,which treats the experimental methodology for fatigue testing ofsingle fibers and the engendered results. In-depth examinat
出版日期Book 2002
版次1
doihttps://doi.org/10.1007/978-1-4615-0825-0
isbn_softcover978-1-4613-5257-0
isbn_ebook978-1-4615-0825-0
copyrightSpringer Science+Business Media New York 2002
The information of publication is updating

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Damage Accumulation in Fibers,lying that the change(s) is (are) detrimental to further processing of the fibers, or to their functioning as load-bearing components. Natural fibers require some treatment to render them suitable for creating well-bonded structural networks, or when serving as reinforcement in composite systems. Th
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Fractal Simulation of Crack Propagation in Fibers,ecursive; it thus differs from Euclidean geometry which is generally defined by some algebraic formulation. Over the past two decades, fractal geometry has been used to describe many natural structures and physical phenomena, such as earthquakes, percolation transition patterns, diffusion-limited ag
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he characterization of structure-property relations,and 2. To advance knowledge of how to best analyze cellulosic fibrousnetworks and composites, and, ultimately, engineer "novel"cellulose-based systems of superior performance and functionality. Thedesign of new materials through the study of living
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