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    Handbook of Sol-Gel Science and Technology: Processing, Characterization and Applications, Second Edition (Repost)

    Posted By: AvaxGenius
    Handbook of Sol-Gel Science and Technology: Processing, Characterization and Applications, Second Edition (Repost)

    Handbook of Sol-Gel Science and Technology: Processing, Characterization and Applications, Second Edition By Lisa Klein
    English | EPUB | 2018 | 3754 Pages | ISBN : 3319320998 | 402 MB

    This completely updated and expanded second edition stands as a comprehensive knowledgebase on both the fundamentals and applications of this important materials processing method.

    Physicochemical and Enzymatic Modification of Gums: Synthesis, Characterization and Application

    Posted By: arundhati
    Physicochemical and Enzymatic Modification of Gums: Synthesis, Characterization and Application

    Hadi Hashemi Gahruie, "Physicochemical and Enzymatic Modification of Gums: Synthesis, Characterization and Application"
    English | ISBN: 303087995X | 2022 | 276 pages | EPUB | 13 MB

    Conservation Practices in Museums: For Researchers and Museum Professionals (Repost)

    Posted By: AvaxGenius
    Conservation Practices in Museums: For Researchers and Museum Professionals (Repost)

    Conservation Practices in Museums: For Researchers and Museum Professionals by Nobuyuki Kamba
    English | EPUB | 2022 | 191 Pages | ISBN : 4431569081 | 121.3 MB

    The author introduces conservation science and management of cultural heritages in museums. In particular, a comprehensive conservation study and practical techniques are described. Aspects such as examination and diagnosis of cultural heritage by scientific data recording of humidity, luminosity, intensity of vibration and shock, among others, are introduced. Preventive and remedial conservation with X-ray imaging and X-ray fluorescence and other risk-control methods are also explained.

    Computational Mechanics of Composite Materials: Sensitivity, Randomness and Multiscale Behaviour

    Posted By: AvaxGenius
    Computational Mechanics of Composite Materials: Sensitivity, Randomness and Multiscale Behaviour

    Computational Mechanics of Composite Materials: Sensitivity, Randomness and Multiscale Behaviour by M.M. Kamiński
    English | PDF (True) | 2005 | 434 Pages | ISBN : 1852334274 | 8.1 MB

    Computational Mechanics of Composite Materials lays stress on the advantages of combining theoretical advancements in applied mathematics and mechanics with the probabilistic approach to experimental data in meeting the practical needs of engineers.

    Magnetic Measurement Techniques for Materials Characterization (Repost)

    Posted By: AvaxGenius
    Magnetic Measurement Techniques for Materials Characterization (Repost)

    Magnetic Measurement Techniques for Materials Characterization by Victorino Franco
    English | PDF,EPUB | 2021 | 814 Pages | ISBN : 3030704424 | 153.1 MB

    This book discusses the most commonly used techniques for characterizing magnetic material properties and their applications. It provides a comprehensive and easily digestible collection and review of magnetic measurement techniques. It also examines the underlying operating principles and techniques of magnetic measurements, and presents current examples where such measurements and properties are relevant. Given the pervasive nature of magnetic materials in everyday life, this book is a vital resource for both professionals and students wishing to deepen their understanding of the subject.

    Advanced X-ray Imaging of Electrochemical Energy Materials and Devices (Repost)

    Posted By: AvaxGenius
    Advanced X-ray Imaging of Electrochemical Energy Materials and Devices (Repost)

    Advanced X-ray Imaging of Electrochemical Energy Materials and Devices by Jiajun Wang
    English | PDF,EPUB | 2021 | 252 Pages | ISBN : 9811653275 | 128.1 MB

    This book comprehensively outlines synchrotron-based X-ray imaging technologies and their associated applications in gaining fundamental insights into the physical and chemical properties as well as reaction mechanisms of energy materials. In this book the major X-ray imaging technologies utilised, depending on research goals and sample specifications, are discussed. With X-ray imaging techniques, the morphology, phase, lattice and strain information of energy materials in both 2D and 3D can be obtained in an intuitive way.

    Ultra-High Temperature Materials I: Carbon (Graphene/Graphite) and Refractory Metals (Repost)

    Posted By: AvaxGenius
    Ultra-High Temperature Materials I: Carbon (Graphene/Graphite) and Refractory Metals (Repost)

    Ultra-High Temperature Materials I: Carbon (Graphene/Graphite) and Refractory Metals by Igor L. Shabalin
    English | PDF (True) | 2014 | 800 Pages | ISBN : 9400775865 | 34.8 MB

    This exhaustive work in three volumes with featuring cross-reference system provides a thorough overview of ultra-high temperature materials – from elements and chemical compounds to alloys and composites. Topics included are physical (crystallographic, thermodynamic, thermo-physical, electrical, optical, physico-mechanical, nuclear) and chemical (solid-state diffusion, interaction with chemical elements and compounds, interaction with gases, vapours and aqueous solutions) properties of the individual physico-chemical phases and multi-phase materials with melting (or sublimation) points over or about 2500 °C. The first volume focuses on carbon (graphite/graphene) and refractory metals (W, Re, Os, Ta, Mo, Nb, Ir). The second and third volumes are dedicated solely to refractory (ceramic) compounds (oxides, nitrides, carbides, borides, silicides) and to the complex materials – refractory alloys, carbon and ceramic composites, respectively. It will be of interest to researchers, engineers, postgraduate, graduate and undergraduate students in various disciplines alike. The reader is provided with the full qualitative and quantitative assessment for the materials, which could be applied in various engineering devices and environmental conditions at ultra-high temperatures, on the basis of the latest updates in the field of physics, chemistry, materials science, nanotechnology and engineering.

    Micromechanics of Defects in Solids

    Posted By: AvaxGenius
    Micromechanics of Defects in Solids

    Micromechanics of Defects in Solids by Toshio Mura
    English | PDF | 1987 | 601 Pages | ISBN : 9024732565 | 33.7 MB

    This book stems from a course on Micromechanics that I started about fifteen years ago at Northwestern University. At that time, micromechanics was a rather unfamiliar subject. Although I repeated the course every year, I was never convinced that my notes have quite developed into a final manuscript because new topics emerged constantly requiring revisions, and additions. I finally came to realize that if this is continued, then I will never complete the book to my total satisfaction. Meanwhile, T. Mori and I had coauthored a book in Japanese, entitled Micromechanics, published by Baifu-kan, Tokyo, in 1975. It received an extremely favorable response from students and re­ searchers in Japan. This encouraged me to go ahead and publish my course notes in their latest version, as this book, which contains further development of the subject and is more comprehensive than the one published in Japanese. Micromechanics encompasses mechanics related to microstructures of materials. The method employed is a continuum theory of elasticity yet its applications cover a broad area relating to the mechanical behavior of materi­ als: plasticity, fracture and fatigue, constitutive equations, composite materi­ als, polycrystals, etc. These subjects are treated in this book by means of a powerful and unified method which is called the 'eigenstrain method. ' In particular, problems relating to inclusions and dislocations are most effectively analyzed by this method, and therefore, special emphasis is placed on these topics.

    Fracture Mechanics

    Posted By: AvaxGenius
    Fracture Mechanics

    Fracture Mechanics by Dominique P. Miannay
    English | PDF | 1998 | 356 Pages | ISBN : 0387982426 | 41 MB

    Intended for engineers from a variety of disciplines that deal with structural materials, this text describes the current state of knowledge of how fractures in materials form and propagate, leading to failure. The book begins by describing the fracture process at the two extremes of scale: first in the context of atomic structures, then in terms of a continuous elastic medium. Treating the fracture process in increasingly sophisticated ways, the book then considers plastic corrections and the procedures for measuring the toughness of materials. Practical considerations are then discussed, including crack propagation, geometry dependence, flaw density, mechanisms of failure by cleavage, the ductile-brittle transition, and continuum damage mechanics. The text concludes with discussions of generalized plasticity and the link between the microscopic and macroscopic aspects. The text is suitable for advanced undergraduates. Problems are provided at the end of each chapter.

    Elasticity and Plasticity of Large Deformations: An Introduction

    Posted By: AvaxGenius
    Elasticity and Plasticity of Large Deformations: An Introduction

    Elasticity and Plasticity of Large Deformations: An Introduction by Albrecht Bertram
    English | PDF (True) | 2012 | 355 Pages | ISBN : 3642246141 | 3.3 MB

    Nonlinear Continuum Mechanics is a rapidly growing field of research. Since the last edition of this book, many important results in this field have been published. This new edition refers to the most important results.

    Fracture Mechanics: With an Introduction to Micromechanics, Second Edition

    Posted By: AvaxGenius
    Fracture Mechanics: With an Introduction to Micromechanics, Second Edition

    Fracture Mechanics: With an Introduction to Micromechanics, Second Edition by Dietmar Gross , Thomas Seelig
    English | PDF (True) | 2011 | 342 Pages | ISBN : 3642192394 | 4.9 MB

    Concerned with the fundamental concepts and methods of fracture mechanics and micromechanics, Fracture Mechanics primarily focuses on the mechanical description of the fracture process; however, material specific aspects are also discussed. The presentation of continuum mechanical and phenomenological foundations is followed by an introduction into classical failure hypotheses. A major part of the book is devoted to linear elastic and elastic-plastic fracture mechanics. Further subjects are creep fracture, dynamic fracture mechanics, damage mechanics, probabilistic fracture mechanics, failure of thin films and fracture of piezoelectric materials. The book also contains an extensive introduction into micromechanics. Self-contained and well-illustrated, this text serves as a graduate-level text and reference.

    Thermodynamics of Materials with Memory: Theory and Applications

    Posted By: AvaxGenius
    Thermodynamics of Materials with Memory: Theory and Applications

    Thermodynamics of Materials with Memory: Theory and Applications by Giovambattista Amendola , Mauro Fabrizio , John Murrough Golden
    English | PDF (True) | 2012 | 576 Pages | ISBN : 1489995870 | 4.6 MB

    This is a work in four parts, dealing with the mechanics and thermodynamics of materials with memory, including properties of the dynamical equations which describe their evolution in time under varying loads. The first part is an introduction to Continuum Mechanics with sections dealing with classical Fluid Mechanics and Elasticity, linear and non-linear. The second part is devoted to Continuum Thermodynamics, which is used to derive constitutive equations of materials with memory, including viscoelastic solids, fluids, heat conductors and some examples of non-simple materials. In part three, free energies for materials with linear memory constitutive relations are comprehensively explored. The new concept of a minimal state is also introduced. Formulae derived over the last decade for the minimum and related free energies are discussed in depth. Also, a new single integral free energy which is a functional of the minimal state is analyzed in detail. Finally, free energies for examples of non-simple materials are considered. In the final part, existence, uniqueness and stability results are presented for the integrodifferential equations describing the dynamical evolution of viscoelastic materials. A new approach to these topics, based on the use of minimal states rather than histories, is discussed in detail. There are also chapters on the controllability of thermoelastic systems with memory, the Saint-Venant problem for viscoelastic materials and on the theory of inverse problems.

    Creep Mechanics (Repost)

    Posted By: AvaxGenius
    Creep Mechanics (Repost)

    Creep Mechanics by Josef Betten
    English | PDF | 2008 | 378 Pages | ISBN : 3540850503 | 7.1 MB

    The simplest way to formulate the basic equations of continuum mech- ics and the constitutive or evolutional equations of various materials is to restrict ourselves to rectangular cartesian coordinates. However, solving p- ticular problems, for instance in Chapter 5, it may be preferable to work in terms of more suitable coordinate systems and their associated bases. The- fore, Chapter 2 is also concerned with the standard techniques of tensor an- ysis in general coordinate systems. Creep mechanics is a part of continuum mechanics, like elasticity or pl- ticity. Therefore, some basic equations of continuum mechanics are put - gether in Chapter 3. These equations can apply equally to all materials and they are insuf?cient to describe the mechanical behavior of any particular material. Thus, we need additional equations characterizing the individual material and its reaction under creep condition according to Chapter 4, which is subdivided into three parts: the primary, the secondary, and the tertiary creep behavior of isotropic and anisotropic materials. The creep behavior of a thick-walled tube subjected to internal pressure is discussed in Chapter 5. The tube is partly plastic and partly elastic at time zero. The investigation is based upon the usual assumptions of incompre- ibility and zero axial creep. The creep deformations are considered to be of such magnitude that the use of ?nite-strain theory is necessary. The inner and outer radius, the stress distributions as functions of time, and the cre- failure time are calculated.

    Applications of Tensor Functions in Solid Mechanics

    Posted By: AvaxGenius
    Applications of Tensor Functions in Solid Mechanics

    Applications of Tensor Functions in Solid Mechanics by J. P. Boehler
    English | PDF | 1987 | 303 Pages | ISBN : 3211819754 | 16 MB

    Solid Mechanics: Theory, Modeling, and Problems (Repost)

    Posted By: AvaxGenius
    Solid Mechanics: Theory, Modeling, and Problems (Repost)

    Solid Mechanics: Theory, Modeling, and Problems by Albrecht Bertram , Rainer Glüge
    English | PDF (True) | 2015 | 331 Pages | ISBN : 33319195654 | 4.1 MB

    This textbook offers an introduction to modeling the mechanical behavior of solids within continuum mechanics and thermodynamics. To illustrate the fundamental principles, the book starts with an overview of the most important models in one dimension. Tensor calculus, which is called for in three-dimensional modeling, is concisely presented in the second part of the book. Once the reader is equipped with these essential mathematical tools, the third part of the book develops the foundations of continuum mechanics right from the beginning. Lastly, the book’s fourth part focuses on modeling the mechanics of materials and in particular elasticity, viscoelasticity and plasticity. Intended as an introductory textbook for students and for professionals interested in self-study, it also features numerous worked-out examples to aid in understanding.