Multiphase Ceramics For Mechanical And Structural Reliability At Low And Elevated Temperatures
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High Temperature Mechanical Behaviour of Ceramic Composites
Author | : Karl Jakus |
Publisher | : Elsevier |
Total Pages | : 569 |
Release | : 1995-06-28 |
Genre | : Technology & Engineering |
ISBN | : 0080523889 |
High Temperature Mechanical Behavior of Ceramic Composites provides an up-to-date comprehensive coverage of the mechanical behavior of ceramic matrix composites at elevated temperatures. Topics include both short-term behavior (strength, fracture toughness and R-curve behavior) and long-term behavior (creep, creep-fatigue, delayed failure and lifetime). Emphasis is on a review of fundamentals and on the mechanics and mechanisms underlying properties. This is the first time that complete information of elevated temperature behavior of ceramic composites has ever been compacted together in a single volume. Of particular importance is that each chapter, written by internationally recognized experts, includes a substantial review component enabling the new material to be put in proper perspective. Shanti Nair is Associate Professor at the Department of Mechanical Engineering at the University of Massachusetts at Amherst. Karl Jakus is Professor at the University of Massachusetts at Amherst.
14th Annual Conference on Composites and Advanced Ceramic Materials, Part 1 of 2, Volume 11, Issue 7/8
Author | : John B. Wachtman |
Publisher | : John Wiley & Sons |
Total Pages | : 599 |
Release | : 2009-09-28 |
Genre | : Technology & Engineering |
ISBN | : 0470315679 |
This volume is part of the Ceramic Engineering and Science Proceeding (CESP) series. This series contains a collection of papers dealing with issues in both traditional ceramics (i.e., glass, whitewares, refractories, and porcelain enamel) and advanced ceramics. Topics covered in the area of advanced ceramic include bioceramics, nanomaterials, composites, solid oxide fuel cells, mechanical properties and structural design, advanced ceramic coatings, ceramic armor, porous ceramics, and more.
Progress in Lubrication and Nano- and Biotribology
Author | : Catalin I. Pruncu |
Publisher | : CRC Press |
Total Pages | : 235 |
Release | : 2021-11-23 |
Genre | : Technology & Engineering |
ISBN | : 1000475905 |
Tribology is a multidisciplinary science that encompasses mechanical engineering, materials science, surface engineering, lubricants, and additives chemistry with tremendous applications. Progress in Lubrication and Nano- and Biotribology discusses the latest in lubrication engineering and nano- and biotribology. This book: Discusses green tribology and snakeskin tribology Explains biogreases and nanolubricant additives Explores applications in aerospace, additively manufactured parts, and severe environments Written for researchers and advanced students, this book encompasses a wide-ranging view of the latest in nano- and biotribology for a variety of cross-disciplinary applications.
Ceramic Materials and Components for Engines
Author | : Victor Joseph Tennery |
Publisher | : |
Total Pages | : 1602 |
Release | : 1989 |
Genre | : Ceramic materials |
ISBN | : |
Mechanical Properties of Ceramics
Author | : John B. Wachtman |
Publisher | : John Wiley & Sons |
Total Pages | : 496 |
Release | : 2009-08-13 |
Genre | : Technology & Engineering |
ISBN | : 9780470451502 |
A Comprehensive and Self-Contained Treatment of the Theory and Practical Applications of Ceramic Materials When failure occurs in ceramic materials, it is often catastrophic, instantaneous, and total. Now in its Second Edition, this important book arms readers with a thorough and accurate understanding of the causes of these failures and how to design ceramics for failure avoidance. It systematically covers: Stress and strain Types of mechanical behavior Strength of defect-free solids Linear elastic fracture mechanics Measurements of elasticity, strength, and fracture toughness Subcritical crack propagation Toughening mechanisms in ceramics Effects of microstructure on toughness and strength Cyclic fatigue of ceramics Thermal stress and thermal shock in ceramics Fractography Dislocation and plastic deformation in ceramics Creep and superplasticity of ceramics Creep rupture at high temperatures and safe life design Hardness and wear And more While maintaining the first edition's reputation for being an indispensable professional resource, this new edition has been updated with sketches, explanations, figures, tables, summaries, and problem sets to make it more student-friendly as a textbook in undergraduate and graduate courses on the mechanical properties of ceramics.
Ceramic Materials and Components for Engines
Author | : Jürgen G. Heinrich |
Publisher | : John Wiley & Sons |
Total Pages | : 678 |
Release | : 2008-11-21 |
Genre | : Technology & Engineering |
ISBN | : 3527612777 |
Several ceramic parts have already proven their suitability for serial application in automobile engines in very impressive ways, especially in Japan, the USA and in Germany. However, there is still a lack of economical quality assurance concepts. Recently, a new generation of ceramic components, for the use in energy, transportation and environment systems, has been developed. The efforts are more and more system oriented in this field. The only possibility to manage this complex issue in the future will be interdisciplinary cooperation. Chemists, physicists, material scientists, process engineers, mechanical engineers and engine manufacturers will have to cooperate in a more intensive way than ever before. The R&D activities are still concentrating on gas turbines and reciprocating engines, but also on brakes, bearings, fuel cells, batteries, filters, membranes, sensors and actuators as well as on shaping and cutting tools for low expense machining of ceramic components. This book summarizes the scientific papers of the 7th International Symposium "Ceramic Materials and Components for Engines". Some of the most fascinating new applications of ceramic meterials in energy, transportation and environment systems are presented. The proceedings shall lead to new ideas for interdisciplinary activities in the future.