Nanoindentation Of Brittle Solids
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Nanoindentation of Brittle Solids
Author | : Arjun Dey,Anoop Kumar Mukhopadhyay |
Publsiher | : CRC Press |
Total Pages | : 480 |
Release | : 2014-06-25 |
Genre | : Technology & Engineering |
ISBN | : 9781466596900 |
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Understanding the Basics of Nanoindentation and Why It Is Important Contact damage induced brittle fracture is a common problem in the field of brittle solids. In the case of both glass and ceramics—and as it relates to both natural and artificial bio-materials—it has triggered the need for improved fabrication technology and new product development in the industry. The Nanoindentation Technique Is Especially Dedicated to Brittle Materials Nanoindentation of Brittle Solids highlights the science and technology of nanoindentation related to brittle materials, and considers the applicability of the nanoindentation technique. This book provides a thorough understanding of basic contact induced deformation mechanisms, damage initiation, and growth mechanisms. Starting from the basics of contact mechanics and nanoindentation, it considers contact mechanics, addresses contact issues in brittle solids, and explores the concepts of hardness and elastic modulus of a material. It examines a variety of brittle solids and deciphers the physics of deformation and fracture at scale lengths compatible with the microstructural unit block. Discusses nanoindentation data analysis methods and various nanoindentation techniques Includes nanoindentation results from the authors’ recent research on natural biomaterials like tooth, bone, and fish scale materials Considers the nanoindentation response if contact is made too quickly in glass Explores energy issues related to the nanoindentation of glass Describes the nanoindentation response of a coarse grain alumina Examines nanoindentation on microplasma sprayed hydroxyapatite coatings Nanoindentation of Brittle Solids provides a brief history of indentation, and explores the science and technology of nanoindentation related to brittle materials. It also offers an in-depth discussion of indentation size effect; the evolution of shear induced deformation during indentation and scratches, and includes a collection of related research works.
Nanoindentation of Brittle Solids
Author | : Arjun Dey,Anoop Kumar Mukhopadhyay |
Publsiher | : CRC Press |
Total Pages | : 472 |
Release | : 2014-06-25 |
Genre | : Technology & Engineering |
ISBN | : 9781466596917 |
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Understanding the Basics of Nanoindentation and Why It Is ImportantContact damage induced brittle fracture is a common problem in the field of brittle solids. In the case of both glass and ceramics-and as it relates to both natural and artificial bio-materials-it has triggered the need for improved fabrication technology and new product development
Indentation Techniques in Ceramic Materials Characterization
Author | : Ahmad G. Solomah |
Publsiher | : John Wiley & Sons |
Total Pages | : 170 |
Release | : 2012-04-11 |
Genre | : Technology & Engineering |
ISBN | : 9781118407066 |
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Indentation techniques have become widely used in the characterization of brittle solids due to their simplicity, cost effectiveness, rapidness, and maybe most importantly, the indenter itself can be used as a mechanical microprobe in thin films, interfaces, grain boundaries, and nanocomposites. The papers in these proceedings cover measurement techniques, reliability of, and problems associated with this testing method. Also included is the application of nano-indentation technique, as a new frontier in brittle solids characterization, e.g., thin film and nano-composite materials. Proceedings of the symposium held at the 105th Annual Meeting of The American Ceramic Society, April 27-30, in Nashville, Tennessee; Ceramic Transactions, Volume 156.
Fracture of Brittle Solids
Author | : Brian R. Lawn |
Publsiher | : Cambridge University Press |
Total Pages | : 404 |
Release | : 1993-06-03 |
Genre | : Technology & Engineering |
ISBN | : 0521409721 |
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This book is a monograph on the brittle fracture of ceramic materials, in a unified continuum, microstructural and atomistic treatment.
Nanoindentation
Author | : Anthony C. Fischer-Cripps |
Publsiher | : Springer Science & Business Media |
Total Pages | : 283 |
Release | : 2013-03-09 |
Genre | : Technology & Engineering |
ISBN | : 9781475759433 |
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This new edition of Nanoindentation includes a dedicated chapter on thin films, new material on dynamic analysis and creep, accounts of recent research, and three new appendices on nonlinear least squares fitting, frequently asked questions, and specifications for a nanoindentation instrument. Nanoindentation Second Edition is intended for those who are entering the field for the first time and to act as a reference for those already conversant with the technique.
Nanoindentation
Author | : Anthony C. Fischer-Cripps |
Publsiher | : Springer Science & Business Media |
Total Pages | : 216 |
Release | : 2013-06-29 |
Genre | : Technology & Engineering |
ISBN | : 9780387224626 |
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Mechanical engineering, an engineering discipline borne of the needs of the industrial revolution, is once again asked to do its substantial share in the call for industrial renewal. The general call is urgent as we face profound issues of productivity and competitiveness that require engineering solutions, among others. The Mechanical Engineering Series features graduate texts and research monographs intended to address the need for information in contemporary areas of mechanical engineering. The series is conceived as a comprehensive one that covers a broad range of concentrations important to mechanical engineering graduate education and research. We are fortunate to have a distinguished roster of consulting editors on the advisory board, each an expert in one of the areas of concentration. The names of the consulting editors are listed on the facing page of this volume. The areas of concentration are: applied mechanics; biomechanics; computational mechanics; dynamic systems and control; energetics; mechanics of materials; processing; thermal science; and tribology.
Springer Handbook of Experimental Solid Mechanics
Author | : William N. Sharpe, Jr.,William N. Sharpe |
Publsiher | : Springer Science & Business Media |
Total Pages | : 1100 |
Release | : 2008-12-04 |
Genre | : Mathematics |
ISBN | : 9780387268835 |
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The Springer Handbook of Experimental Solid Mechanics documents both the traditional techniques as well as the new methods for experimental studies of materials, components, and structures. The emergence of new materials and new disciplines, together with the escalating use of on- and off-line computers for rapid data processing and the combined use of experimental and numerical techniques have greatly expanded the capabilities of experimental mechanics. New exciting topics are included on biological materials, MEMS and NEMS, nanoindentation, digital photomechanics, photoacoustic characterization, and atomic force microscopy in experimental solid mechanics. Presenting complete instructions to various areas of experimental solid mechanics, guidance to detailed expositions in important references, and a description of state-of-the-art applications in important technical areas, this thoroughly revised and updated edition is an excellent reference to a widespread academic, industrial, and professional engineering audience.
Nanoindentation of Natural Materials
Author | : Arjun Dey,Anoop Kumar Mukhopadhyay |
Publsiher | : CRC Press |
Total Pages | : 235 |
Release | : 2018-09-03 |
Genre | : Medical |
ISBN | : 9781351651592 |
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Nanoindentation of Natural Materials: Hierarchical and Functionally Graded Microstructures provides a systematic introduction and review of state-of-the-art statistical hierarchical and functionally graded structures found in bone, teeth, hair, and scales, from a nanoindentation perspective, including detailed microstructure and composition. It covers the basics of hierarchical and functionally graded structures and nanoindentation techniques and detailed discussion with correlation micro/nano mechanical-structures The book includes practical issues backed with experimental data