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E-book
Author Basu, Bikramjit

Title Tribology of ceramics and composites : a materials science perspective / Bikramjit Basu, Mitjan Kalin
Published Hoboken, N.J. : Wiley, ©2011
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Description 1 online resource (xxvii, 522 pages) : illustrations
Contents 880-01 Section I: Fundamentals. Introduction -- Overview: Tribological Materials -- Overview: Mechanical Properties of Ceramics -- Surfaces and Contacts -- Friction -- Frictional Heating and Contact Temperature -- Wear Mechanisms -- Lubrication -- Section II: Friction and Wear of Structural Ceramics. Overview: Structural Ceramics -- Case Study: Transformation-Toughened Zirconia -- Case Study: Sialon Ceramics -- Case Study: Max Phase-- TiSic -- Case Study: Titanium Diboride Ceramics and Composites -- Section III: Friction and Wear of Bioceramics and Biocomposites. Overview: Bioceramics and Biocomposites -- Case Study: Polymer-Ceramic Biocomposites -- Case Study: Natural Tooth and Dental Restorative Materials -- Case Study: Glass-Infiltrated Alumina -- Tribological Properties of Ceramic Biocomposites -- Section IV: Friction and Wear of Nanoceramics. Overview: Nanoceramic Composites -- Case Study: Nanocrystalline Yttria-Stabilized Tetragonal Zirconia Polycrystalline Ceramics -- Case Study: Nanostructured Tungsten Carbide₆Zirconia Nanocomposites -- Section V: Lightweight Composites and Cermets. Overview: Lightweight Metal Matrix Composites and Cermets -- Case Study: Magnesium₆Silicon Carbide Particulate-Reinforced Composites -- Case Study: Titanium Carbonitride₆Nickel-Based Cermets -- Case Study: (W, Ti)C₆Co Cermets -- Section VI: Friction and Wear of Ceramics in a Cryogenic Environment. Overview: Cryogenic Wear Properties of Materials -- Case Study: Sliding Wear of Alumina in a Cryogenic Environment -- Case Study: Sliding Wear of Self-Mated Tetragonal Zirconia Ceramics in Liquid Nitrogen -- Case Study: Sliding Wear of Silicon Carbide in a Cryogenic Environment -- Section VII: Water-Lubricated Wear of Ceramics. Friction and Wear of Oxide Ceramics in an Aqueous Environment -- Section VIII: Closure. Perspective for Designing Materials for Tribological Applications
880-01/(S Contents note continued: ch. 11 Case Study: Sialon Ceramics / Karl-Heinz Zum Gahr -- 11.1. Introduction / Karl-Heinz Zum Gahr -- 11.2. Materials and Experiments / Karl-Heinz Zum Gahr -- 11.3. Tribological Properties of Compositionally Tailored Sialon versus β-Sialon / Karl-Heinz Zum Gahr -- 11.4. Tribological Properties of S-Sialon Ceramic / Karl-Heinz Zum Gahr -- 11.5. Concluding Remarks / Karl-Heinz Zum Gahr -- References / Karl-Heinz Zum Gahr -- ch. 12 Case Study: Max Phase-TI3SIC2 / Karl-Heinz Zum Gahr -- 12.1. Background / Karl-Heinz Zum Gahr -- 12.2. Frictional Behavior / Karl-Heinz Zum Gahr -- 12.3. Wear Resistance and Wear Mechanisms / Karl-Heinz Zum Gahr -- 12.4. Raman Spectroscopy and Atomic Force Microscopy Analysis / Karl-Heinz Zum Gahr -- 12.5. Transition in Wear Mechanisms / Karl-Heinz Zum Gahr -- 12.6. Summary / Karl-Heinz Zum Gahr -- References / Karl-Heinz Zum Gahr -- ch. 13 Case Study: Titanium Diboride Ceramics And Composites / Karl-Heinz Zum Gahr
Summary This book helps students and practicing scientists alike understand that a comprehensive knowledge about the friction and wear properties of advanced materials is essential to further design and development of new materials. With important introductory chapters on the fundamentals, processing, and applications of tribology, the book then examines in detail the nature and properties of materials, the friction and wear of structural ceramics, bioceramics, biocomposites, and nanoceramics, as well as lightweight composites and the friction and wear of ceramics in a cryogenic environment
Bibliography Includes bibliographical references and index
Notes English
Print version record
Subject Ceramic materials -- Mechanical properties
Ceramic materials -- Fatigue
Mechanical wear.
Friction.
Tribology.
wear.
TECHNOLOGY & ENGINEERING -- Tribology.
Ceramic materials -- Fatigue
Ceramic materials -- Mechanical properties
Friction
Mechanical wear
Tribology
Form Electronic book
Author Kalin, Mitjan
ISBN 9781118021668
1118021665
9781118021644
1118021649
1283294567
9781283294560
9781523115525
1523115521
9786613294562
661329456X
1118021657
9781118021651