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Ceramics Science and Technology. Vol.4 - Applications - Riedel, Ralf (Hrsg.) / Chen, I-Wei (Hrsg.)
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Riedel, Ralf (Hrsg.) / Chen, I-Wei (Hrsg.):
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2013, ISBN: 9783527311583

[ED: Buch, gebundene Ausgabe], [PU: Wiley-VCH], KURZE BESCHREIBUNG/ANMERKUNGEN: Ceramics have progressed from ancient bulk materials in pottery, construction, and decoration to a multitude of modern applications requiring thermal and chemical stability, durability and resistance to wear in environments and conditions under which other material classes cannot serve adequately. AUSFÜHRLICHERE BESCHREIBUNG: Although ceramics have been known to mankind literally for millennia, research has never ceased. Apart from the classic uses as a bulk material in pottery, construction, and decoration, the latter half of the twentieth century saw an explosive growth of application fields, such as electrical and thermal insulators, wear-resistant bearings, surface coatings, lightweight armour, and aerospace materials. In addition to plain, hard solids, modern ceramics come in many new guises such as fabrics, ultrathin films, microstructures and hybrid composites. Built on the solid foundations laid down by the 20-volume series Materials Science and Technology, Ceramics Science and Technology picks out this exciting material class and illuminates it from all sides. Materials scientists, engineers, chemists, biochemists, physicists and medical researchers alike will fi nd this work a treasure trove for a wide range of ceramics knowledge from theory and fundamentals to practical approaches and problem solutions. INHALT: PREFACE PART ONE: Structural Applications OXIDATION AND CORROSION OF CERAMICS Introduction Silica-Forming Ceramics Alumina-Forming Ceramics Ultrahigh-Temperature Ceramics Oxide Ceramic Degradation Mechanisms Concluding Remarks THERMAL BARRIER COATINGS Introduction Manufacturing Routes YSZ-Based TBCS New TBC Systems Summary CERAMIC FILTERS AND MEMBRANES Ceramics in Hot Gas Filtration Ceramic Membranes for Liquid Filtration Ceramic Membranes for Pervaporation/Vapor Permeation Ceramic Membranes for Gas Separation HIGH-TEMPERATURE ENGINEERING CERAMICS Introduction Engineering Ceramic Systems Turbine Engine Applications Applications for Rocket Propulsion and Hypersonic Vehicles Friction Materials Concluding Remarks: Barriers to Application ADVANCED CERAMIC GLOW PLUGS Introduction Glow Plugs Metal-Type Glow Plugs Ceramic Glow Plugs Fabrication Procedure of Heater Elements for Ceramic Glow Plugs Material Design of the Ceramic Heater Element Silicon Nitride Ceramics Conclusions NANOSIZED AND NANOSTRUCTURED HARD AND SUPERHARD MATERIALS AND COATINGS Introduction: Small is Strong Different Mechanisms of Hardness Enhancement in Coatings Mechanisms of Decomposition of Solid Solution and Formation of Nanostructure Industrial Applications of Nanocomposite and Nanostructured Coatings on Tools Conclusions and Future Challenges POLYMER-DERIVED CERAMICS: 40 YEARS OF RESEARCH AND INNOVATION IN ADVANCED CERAMICS Introduction to Polymer-Derived Ceramics (PDCs) Preceramic Polymer Synthesis Processing of Preceramic Polymers Microstructure of PDCs Properties of PDCs Applications of PDCs Conclusions and Outlook PART TWO: Functional Applications MICROWAVE CERAMICS Introduction Microwave Dielectric Properties Overview of Microwave Dielectric Materials Crystal Chemistry of Perovskite and Tungsten-Bronze-Type Microwave Ceramics Microstructural Features in High-Q Perovskites Glass-Free Low-Temperature Co-Fired Ceramic LTCC Microwave Materials CERAMIC FUEL CELLS: PRINCIPLES, MATERIALS, AND APPLICATIONS Introduction Fuel Cell Systems Efficiency and the Role of Ceramic Fuel Cells Ceramic Fuel Cell Systems and Applications to Date Efficiency and Principles of Ceramic Fuel Cells Historical Overview of Ceramic Fuel Cells SOFC Materials and Properties New Approaches for Ceramic Fuel Cells Concluding Remarks NITRIDOSILICATES AND OXONITRIDOSILICATES: FROM CERAMIC MATERIALS TO STRUCTURAL AND FUNCTIONAL DIVERSITY Introduction Synthetic Approaches 1D Nitridosilicates 2D Nitridosilicates 3D Nitridosilicates Chemical Bonding in Nitridosilicates Material Properties Outlook CERAMIC LIGHTING Introduction Solid-State Lighting and White Light-Emitting Diodes Ceramic Phosphors White Light-Emitting Diodes Using Ceramic Phosphors Outlook CERAMIC GAS SENSORS Introduction: Definitions and Classifications Metal-Oxide-Based Gas Sensors: Operational Principles and Sensing Materials Performance Characteristics Nano-Micro Integration Mechanism of Gas Detection Characterization Methodology Conclusions and Outlook OXIDES FOR LI INTERCALATION, LI-ION BATTERIES Introduction Why Oxides are Attractive as Insertion Materials Titanium Vanadium Chromium Manganese Iron Cobalt- and Nickel-Based Oxides Copper Conclusion MAGNETIC CERAMICS Background Introduction Magnetite Doped Manganites Ferrimagnetic Double Perovskites Iron Nitrides and Summary Preface XV List of Contributors XVII Part One Structural Applications 1 1 Oxidation and Corrosion of Ceramics 3 Elizabeth J. Opila and Nathan S. Jacobson 1.1 Introduction 3 1.2 Silica-Forming Ceramics 4 1.2.1 Ideal Oxidation Behavior of Silica-Forming Ceramics 4 1.2.1.1 Structure of Silica and Transport of Oxygen in Silica 4 1.2.1.2 Oxidation of Silicon in Dry Oxygen 5 1.2.1.3 Oxidation of Silicon Carbide in Dry Oxygen 7 1.2.1.4 Oxidation of Silicon Nitride in Dry Oxygen 9 1.2.2 SiC Oxidation: Deviations from Norton Permeation 11 1.2.2.1 Crystallization of the Silica Scale: Effect on SiC Oxidation 11 1.2.2.2 Ionic Exchange with the Silica Network: Effect on SiC Oxidation 12 1.2.2.3 Effects of Low-Level Impurities on SiC Oxidation 12 1.2.3 Oxidation of Silica-Formers in the Presence of Low-Level Impurities 13 1.2.3.1 Effect of Alkali-Metal Impurities on the Oxidation of Silica-Formers 13 1.2.3.2 Effect of Aluminum Impurities on Silica-Formers 14 1.2.4 Additive Effects on the Oxidation of Silica-Formers 14 1.2.4.1 Al and B Additions to SiC: Effect on Oxidation Rates 15 1.2.4.2 Effect of Sintering Additives on the Oxidation of Silicon Nitride 15 1.2.5 Deposit-Induced Corrosion of Silicon-Based Ceramics 16 1.2.6 Temperature Cycling 24 1.2.7 Oxidation of Silica-Formers in Other Oxidants 25 1.2.7.1 Oxidation of Silica-Formers in Other Oxidants: H2O 26 1.2.7.2 Oxidation of Silica Formers in Other Oxidants: Carbon Dioxide (CO2) 36 1.2.7.3 Oxidation of Silica Formers in Other Oxidants: Dissociated Oxygen 37 1.2.8 Active Oxidation of Silica Formers 38 1.2.9 Upper Temperature Limit for Silica-Forming Materials 45 1.2.10 Oxidation of Polymer-Derived Si-Based Ceramics 46 1.2.11 Oxidation of SiC-Based Composites 48 1.2.11.1 Oxidation of Carbon 48 1.2.11.2 Oxidation of Boron Nitride 49 1.2.11.3 Oxidation of SiC/C/SiC and C/C/SiC Composites 49 1.2.11.4 Oxidation of SiC/BN/SiC Composites 51 1.2.11.5 Improved Oxidation-Resistant SiC Composites 53 1.2.11.6 Oxidation-Resistant Coatings and Additives for SiC-Based Composites 55 1.2.12 Environmental Barrier Coatings for Silicon-Based Ceramics and Composites 55 1.3 Alumina-Forming Ceramics 57 1.3.1 Oxidation of AlN 58 1.3.1.1 Onset of AlN Oxidation 58 1.3.1.2 Early Stages of AlN Oxidation 58 1.3.1.3 Oxidation Kinetics of AlN 59 1.3.1.4 Oxidation of AlN in Water Vapor 61 1.3.1.5 Effect of Oxygen and Nitrogen Partial Pressure on Oxidation of AlN 62 1.3.1.6 Effect of Sintering Additives on the Oxidation of AlN 62 1.3.2 Oxidation of Al4C3 63 1.4 Ultrahigh-Temperature Ceramics 64 1.4.1 Oxidation of Zirconium and Hafnium 65 1.4.2 Oxidation of ZrB2 and HfB2 65 1.4.2.1 Effect of Additives on ZrB2 and HfB2 Oxidation Rates 67 1.4.3 Oxidation of ZrC and HfC 74 1.4.4 Oxidation of ZrN and HfN 77 1.4.5 Oxidation of TaC and Ta2C 78 1.4.6 Oxidation of UHTC Composite Materials 79 1.5 Oxide Ceramic Degradation Mechanisms 80 1.5.1 Oxide Ceramic Degradation in Water Vapor 80 1.5.2 Oxide Corrosion 81 1.6 Concluding Remarks 83 References 83 2 Thermal Barrier Coatings 95 Robert Vaßen 2.1 Introduction 95 2.2 Manufacturing Routes 97 2.2.1 Electron Beam-Physical Vapor Deposition (EB-PVD) 97 2.2.2 Atmospheric Plasma Spraying (APS) 98 2.2.2.1 General Remarks 98 2.2.2.2 Thermally Sprayed MCrAlYs (M----Ni, Co) Bond Coatings 99 2.2.3 Atmospheric Plasma-Sprayed (APS) Yttria-Stabilized Zirconia (YSZ) Topcoats 101 2.2.4 New Thermal Spray Processes 103 2.2.4.1 Liquid Feedstock/Suspension Plasma Spraying 103 2.3 YSZ-Based TBCS 105 2.3.1 Some Basic Properties of YSZ (Bulk Material) 105 2.3.2 Properties of APS YSZ Thermal Barrier Coatings 106 2.3.3 Property Changes During Heat Treatment 107 2.3.4 Failure of YSZ-Based TBC Systems 109 2.4 New TBC Systems 110 2.5 Summary 112 Acknowledgments 112 References 1 BIOGRAFIEN: Riedel, Ralf: Prof. Riedel has been Professor at the Institute of Materials Science at the Darmstadt University of Technology in Darmstadt since 1993. He received a Diploma degree in chemistry in 1984 and he finished his dissertation in Inorganic Chemistry in 1986 at the University of Stuttgart. After postdoctoral research at the Max-Planck-Institute for Metals Research and the Institute of Inorganic Chemistry at the University of Stuttgart he completed his habilitation in the field of Inorganic Chemistry in 1992. Prof. Riedel is Fellow of the American Ceramic Society and was awarded with the Dionyz Stur Gold Medal for merits in natural sciences. He is a member of the World Academy of Ceramics and Guest Professor at the Jiangsu University in Zhenjiang, China. In 2006 he received an honorary doctorate from the Slovak Academy of Sciences, Bratislava, Slovakia. In 2009 he was awarded with an honorary professorship at the Tianjin University in China. He published more than 300 papers and patents and he is widely known for his research in the field of polymer derived ceramics and on ultra high pressure synthesis of new materials. Chen, I-Wei: I-Wei Chen is currently Skirkanich Professor of Materials Innovation at the University of Pennsylvania since 1997, where he also gained his master's degree in 1975. He received his bachelor's degree in physics from Tsinghua University, Taiwan, in 1972, and earned his doctorate in metallurgy from the Massachusetts Institute of Technology in 1980. He taught at the University of Michigan (Materials) during 1986-1997 and MIT (Nuclear Engineering Materials) during 1980-1986. He began ceramic research studying martensitic transformations in zirconia nano crystals, which led to work on transformation plasticity, superplasticity, fatigue, grain growth and sintering in various oxides and nitrides. He is currently interested in nanotechnology of ferroelectrics, thin film memory devices, and nano particles for biomedical applications. A Fellow of American Ceramic Society (1991) and recipient of its Ross Coffin Purdy Award (1994), Edward C. Henry Award (1999) and Sosman Award (2006), he authored over 90 papers in the Journal of the American Ceramic Society (1986-2006). He also received Humboldt Research Award for Senior U.S. Scientists (1997)., DE, [SC: 0.00], Neuware, gewerbliches Angebot, H: 245mm, B: 172mm, T: 28mm, 544, [GW: 1184g], Selbstabholung und Barzahlung, PayPal, offene Rechnung, Banküberweisung, Internationaler Versand

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Although ceramics have been known to mankind literally for millennia, research has never ceased. Apart from the classic uses as a bulk material in pottery, construction, and decoration, the latter half of the twentieth century saw an explosive growth of application fields, such as electrical and thermal insulators, wear-resistant bearings, surface coatings, lightweight armour, and aerospace materials. In addition to plain, hard solids, modern ceramics come in many new guises such as fabrics, ultrathin films, microstructures and hybrid composites. Built on the solid foundations laid down by the 20-volume series Materials Science and Technology, Ceramics Science and Technology picks out this exciting material class and illuminates it from all sides. Materials scientists, engineers, chemists, biochemists, physicists and medical researchers alike will fi nd this work a treasure trove for a wide range of ceramics knowledge from theory and fundamentals to practical approaches and problem solutions. Ceramics have progressed from ancient bulk materials in pottery, construction, and decoration to a multitude of modern applications requiring thermal and chemical stability, durability and resistance to wear in environments and conditions under which other material classes cannot serve adequately. Buch (fremdspr.) gebundene Ausgabe 10.07.2013 Bücher>Fremdsprachige Bücher>Englische Bücher, Wiley-Vch, .201

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Although ceramics have been known to mankind literally for millennia, research has never ceased. Apart from the classic uses as a bulk material in pottery, construction, and decoration, the latter half of the twentieth century saw an explosive growth of application fields, such as electrical and thermal insulators, wear-resistant bearings, surface coatings, lightweight armour, and aerospace materials. In addition to plain, hard solids, modern ceramics come in many new guises such as fabrics, ultrathin films, microstructures and hybrid composites. Built on the solid foundations laid down by the 20-volume series Materials Science and Technology, Ceramics Science and Technology picks out this exciting material class and illuminates it from all sides. Materials scientists, engineers, chemists, biochemists, physicists and medical researchers alike will fi nd this work a treasure trove for a wide range of ceramics knowledge from theory and fundamentals to practical approaches and problem solutions. Ceramics have progressed from ancient bulk materials in pottery, construction, and decoration to a multitude of modern applications requiring thermal and chemical stability, durability and resistance to wear in environments and conditions under which other material classes cannot serve adequately. Buch (fremdspr.) Bücher>Fremdsprachige Bücher>Englische Bücher, Wiley-Vch

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Although ceramics have been known to mankind literally for millennia, research has never ceased. Apart from the classic uses as a bulk material in pottery, construction, and decoration, the latter half of the twentieth century saw an explosive growth of application fields, such as electrical and thermal insulators, wear-resistant bearings, surface coatings, lightweight armour, and aerospace materials. In addition to plain, hard solids, modern ceramics come in many new guises such as fabrics, ultrathin films, microstructures and hybrid composites. Built on the solid foundations laid down by the 20-volume series Materials Science and Technology, Ceramics Science and Technology picks out this exciting material class and illuminates it from all sides. Materials scientists, engineers, chemists, biochemists, physicists and medical researchers alike will fi nd this work a treasure trove for a wide range of ceramics knowledge from theory and fundamentals to practical approaches and problem solutions. Applications Buch (fremdspr.) Bücher>Fremdsprachige Bücher>Englische Bücher, Wiley-VCH

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Although ceramics have been known to mankind literally for millennia, research has never ceased. Apart from the classic uses as a bulkmaterial in pottery, construction, and decoration, the latter half of the twentieth century saw an explosive growth of application fields, such aselectrical and thermal insulators, wear-resistant bearings, surface coatings, lightweight armour, and aerospace materials. In addition to plain,hard solids, modern ceramics come in many new guises such as fabrics, ultrathin films, microstructures and hybrid composites.Built on the solid foundations laid down by the 20-volume series Materials Science and Technology, Ceramics Science and Technology picksout this exciting material class and illuminates it from all sides. Materials scientists, engineers, chemists, biochemists, physicists andmedical researchers alike will fi nd this work a treasure trove for a wide range of ceramics knowledge from theory and fundamentals to practical approaches and problem solutions. Bücher / Naturwissenschaften, Medizin, Informatik & Technik / Chemie, [PU: Wiley-VCH, Weinheim]

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Detailangaben zum Buch - Ceramics Science and Technology: v. 4: Applications: Vol 4 (Ceramics Science and Technology (VCH))


EAN (ISBN-13): 9783527311583
ISBN (ISBN-10): 3527311580
Gebundene Ausgabe
Erscheinungsjahr: 2013
Herausgeber: Wiley-VCH
544 Seiten
Gewicht: 1,184 kg
Sprache: Englisch

Buch in der Datenbank seit 09.03.2009 02:16:25
Buch zuletzt gefunden am 23.08.2018 10:44:39
ISBN/EAN: 9783527311583

ISBN - alternative Schreibweisen:
3-527-31158-0, 978-3-527-31158-3


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