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Micromechanical Properties and Fracture Mechanisms of Single Wood Pulp Fibers

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Author :
Release : 1995
Genre : Wood-pulp
Kind : eBook
Book Rating : /5 ( reviews)

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Book Synopsis Micromechanical Properties and Fracture Mechanisms of Single Wood Pulp Fibers by : Laurence Mott

Download or read book Micromechanical Properties and Fracture Mechanisms of Single Wood Pulp Fibers written by Laurence Mott. This book was released on 1995. Available in PDF, EPUB and Kindle. Book excerpt:

Handbook of Physical Testing of Paper

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Author :
Release : 2002
Genre : Paper
Kind : eBook
Book Rating : 988/5 ( reviews)

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Book Synopsis Handbook of Physical Testing of Paper by : Richard E. Mark

Download or read book Handbook of Physical Testing of Paper written by Richard E. Mark. This book was released on 2002. Available in PDF, EPUB and Kindle. Book excerpt: Scientists from academic and the paper industry compile as many aspects of testing properties of paper as possible into a broad reference to help people who plan, specify, and evaluate the physical and mechanical testing of paper material take advantage of the many developments in recent years. An initial essay in each volume discusses the independent invention and widespread use of paper in Mesoamerica beginning sometime before AD 660. The two volumes are paged and indexed separately, but do not seem to be topically distinct. The first edition, Handbook of Physical and Mechanical Testing of Paper and Paperboard appeared in 1983; the second contains 30 chapters, a third of which are new and the others substantially revised, updated, and expanded. c. Book News Inc.

Fracture and Fatigue in Wood

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Release : 2003-06-02
Genre : Technology & Engineering
Kind : eBook
Book Rating : 081/5 ( reviews)

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Book Synopsis Fracture and Fatigue in Wood by : Ian Smith

Download or read book Fracture and Fatigue in Wood written by Ian Smith. This book was released on 2003-06-02. Available in PDF, EPUB and Kindle. Book excerpt: Damage in wood is principally the result of fatigue. Fatigue is the process of progressive localised irreversible change in a material, and may culminate in cracks or complete fracture if conditions that initiated or propagated the process persist. Comprehensive understanding of fatigue and fracture in engineered wood components must be founded on a proper understanding of the damage processes. Although wood is the world's most widely used structural material, whether measured by volume consumed or value of finished construction, its behaviour is not well understood even by people who have spent their careers studying it. * What is known about failure processes comes almost entirely from empirical evidence collected for engineering purposes. * Hypotheses about behaviour of wood are based on macroscopic observation of specimens during and following tests. * With only limited resources and the need to obtain practical results quickly, the timber engineering research community has steered away from the scientific approach. * Forestry practices are changing and are known to influence characteristics of wood cells therefore there is a need to periodically reassess the mechanical properties of visually graded lumber the blackbox approach. Fatigue and Fracture of Wood examines the above issues from a scientific point of view by drawing on the authors' own research as well as previously published material. Unlike the empirical research, the book begins by examining growth of wood. It briefly examines its structure in relation to how trees grow, before assessing the fatigue and fracture of wood and discussing the scientific methods of modelling fatigue. * Covers from macro to micro behaviour of wood * Presents direct evidence of how wood fractures using Scanning Electron Microscopy * The first book to present a physically correct model for fracture in wood * Provides experimental proof of so-called memory in wood (i.e. dependence of fatigue behaviour on the loading sequence) * Givse practical illustrations of how theories and models can be applied in practice An essential resource for wood scientists/engineers, timber-engineering practitioners, and graduate students studying wood and solid mechanics.

Characterization of the Cellulosic Cell Wall

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Release : 2008-02-28
Genre : Science
Kind : eBook
Book Rating : 705/5 ( reviews)

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Book Synopsis Characterization of the Cellulosic Cell Wall by : Douglas D. Stokke

Download or read book Characterization of the Cellulosic Cell Wall written by Douglas D. Stokke. This book was released on 2008-02-28. Available in PDF, EPUB and Kindle. Book excerpt: This volume brings together a broad array of scientific expertise to focus on the characterization and utilization of cellulosic materials. Researchers from Austria, Germany, Sweden, Japan, New Zealand, Australia, and the U.S. explore many facets of the plant cell wall, from its fundamental structure and its manipulation via molecular biology to its application in composite materials. Exciting applications of near infrared spectroscopy, x-ray diffraction, confocal microscopy, and molecular coupling as a viscoelastic probe provide new insights into the ultrastructure and properties of cellulosic materials.

Surface Modification of Biopolymers

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Release : 2015-05-26
Genre : Technology & Engineering
Kind : eBook
Book Rating : 774/5 ( reviews)

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Book Synopsis Surface Modification of Biopolymers by : Vijay Kumar Thakur

Download or read book Surface Modification of Biopolymers written by Vijay Kumar Thakur. This book was released on 2015-05-26. Available in PDF, EPUB and Kindle. Book excerpt: This book addresses surface modification techniques, which are critical for tailoring and broadening the applications of naturally occurring biopolymers. Biopolymers represent a sustainable solution to the need for new materials in the auto, waste removal, biomedical device, building material, defense, and paper industries. Features: First comprehensive summary of biopolymer modification methods to enhance compatibility, flexibility, enhanced physicochemical properties, thermal stability, impact response, and rigidity, among others Address of a green, eco-friendly materials that is increasing in use, underscoring the roles of material scientists in the future of new "green" bioolymer material use Coverage applications in automotive development, hazardous waste removal, biomedical engineering, pulp and paper industries, development of new building materials, and defense-related technologies Facilitation of technology transfer

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