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Materials for High Temperature Engineering Applications

Materials for High Temperature Engineering Applications Author G.W. Meetham
ISBN-10 9783642569388
Release 2012-12-06
Pages 164
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This concise survey describes the requirements on materials operating in high-temperature environments and the processes that increase the temperature capability of metals, ceramics, and composites. The major part deals with the applicable materials and their specific properties, with one entire chapter devoted to coatings. Written for engineering and science students, researchers, and managers in industry.



Materials for High Temperature Engineering Applications

Materials for High Temperature Engineering Applications Author G.W. Meetham
ISBN-10 3540668616
Release 2000-04-14
Pages 164
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This concise survey describes the requirements on materials operating in high-temperature environments and the processes increasing temperature capability of metals, ceramics, and composites. The major part deals with the applicable materials and their specific properties. One chapter is devoted to coatings. The book is written for engineering and science students, researchers, and managers in industries.



Materials for High Temperature Engineering Applications

Materials for High Temperature Engineering Applications Author G.W. Meetham
ISBN-10 3642631096
Release 2012-11-01
Pages 164
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This concise survey describes the requirements on materials operating in high-temperature environments and the processes that increase the temperature capability of metals, ceramics, and composites. The major part deals with the applicable materials and their specific properties, with one entire chapter devoted to coatings. Written for engineering and science students, researchers, and managers in industry.



High Temperature Materials and Mechanisms

High Temperature Materials and Mechanisms Author Yoseph Bar-Cohen
ISBN-10 9781466566453
Release 2014-03-03
Pages 583
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The use of high-temperature materials in current and future applications, including silicone materials for handling hot foods and metal alloys for developing high-speed aircraft and spacecraft systems, has generated a growing interest in high-temperature technologies. High Temperature Materials and Mechanisms explores a broad range of issues related to high-temperature materials and mechanisms that operate in harsh conditions. While some applications involve the use of materials at high temperatures, others require materials processed at high temperatures for use at room temperature. High-temperature materials must also be resistant to related causes of damage, such as oxidation and corrosion, which are accelerated with increased temperatures. This book examines high-temperature materials and mechanisms from many angles. It covers the topics of processes, materials characterization methods, and the nondestructive evaluation and health monitoring of high-temperature materials and structures. It describes the application of high temperature materials to actuators and sensors, sensor design challenges, as well as various high temperature materials and mechanisms applications and challenges. Utilizing the knowledge of experts in the field, the book considers the multidisciplinary nature of high temperature materials and mechanisms, and covers technology related to several areas including energy, space, aerospace, electronics, and metallurgy. Supplies extensive references at the end of each chapter to enhance further study Addresses related science and engineering disciplines Includes information on drills, actuators, sensors and more A comprehensive resource of information consolidated in one book, this text greatly benefits students in materials science, aerospace and mechanical engineering, and physics. It is also an ideal resource for professionals in the industry.



Production Properties and Applications of High Temperature Coatings

Production  Properties  and Applications of High Temperature Coatings Author Pakseresht, Amir Hossein
ISBN-10 9781522541950
Release 2018-01-12
Pages 557
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Heat resistant layers are meant to withstand high temperatures while also protecting against all types of corrosion and oxidation. Therefore, the micro-structure and behavior of such layers is essential in understanding the functionality of these materials in order to make improvements. Production, Properties, and Applications of High Temperature Coatings is a critical academic publication which examines the methods of creation, characteristics, and behavior of materials used in heat resistant layers. Featuring coverage on a wide range of topics such as, thermal spray methods, sol-gel coatings, and surface nanoengineering, this book is geared toward students, academicians, engineers, and researchers seeking relevant research on the methodology and materials for producing effective heat resistant layers.



High Temperature Corrosion and Materials Applications

High Temperature Corrosion and Materials Applications Author George Y. Lai
ISBN-10 9781615030552
Release 2007
Pages 461
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George Lai's 1990 book, High-Temperature Corrosion of Engineering Alloys, is recognized as authoritative and is frequently consulted and often cited by those in the industry. His new book, almost double in size with seven more chapters, addresses the new concerns, new technologies, and new materials available for those engaged in high-temperature applications. As we strive for energy efficiency, the realm of high-temperature environments is expanding and the need for information on high temperature materials applications was never greater. In addition to extensive expansion on most of the content of the original book, new topics include erosion and erosion-corrosion, low NOx combustion in coal-fired boilers, fluidized bed combustion, and the special demands of waste-to-energy boilers, waste incinerators, and black liquor recovery boilers in the pulp and paper industry. The corrosion induced by liquid metals is discussed and protection options are presented.



Reliability of Engineering Materials

Reliability of Engineering Materials Author Alrick L Smith
ISBN-10 9781483105437
Release 2013-10-22
Pages 160
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Reliability of Engineering Materials renders a logical and self-consistent representation of papers from the First European Symposium on Materials Reliability, held in Baden, Switzerland on October 26, 1983. The book starts by giving an introduction and an overview of the reliability of engineering materials. The next two chapters discuss the determination of structural integrity using the simple fracture mechanics model to calculate failure probability and the use of a non-destructive examination for assuring a given level of structural reliability, respectively. The reliability aspects of non-metallic structural materials; metallurgical factors affecting the reliability of materials in high-temperature applications of turbines; and aspects of data bases for materials reliability and their future potential are also considered. The last two chapters of the book present the material reliability data banking and the reliability of materials in heat-exchanger applications. The text will be invaluable to engineers, industrial engineers and metallurgists.



High temperature Properties and Applications of Polymeric Materials

High temperature Properties and Applications of Polymeric Materials Author Martin R. Tant
ISBN-10 UOM:39015031855524
Release 1995-01
Pages 256
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Presents information on the synthesis, processing, and characterization of polymers and polymer composites for high performance materials needing to withstand high temperatures. Discusses the synthesis and properties of new thermally stable polymers. Includes new approaches for modeling material processing and decomposition. Provides a broad perspective by examining the science and engineering aspects of polymeric materials for high-temperature applications.



Source book on materials for elevated temperature applications

Source book on materials for elevated temperature applications Author Elihu F. Bradley
ISBN-10 UOM:39015006372281
Release 1979
Pages 398
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Source book on materials for elevated temperature applications has been writing in one form or another for most of life. You can find so many inspiration from Source book on materials for elevated temperature applications also informative, and entertaining. Click DOWNLOAD or Read Online button to get full Source book on materials for elevated temperature applications book for free.



High Temperature Superconductivity 2

High Temperature Superconductivity 2 Author Anant V. Narlikar
ISBN-10 9783662077641
Release 2013-11-11
Pages 574
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In contrast to research on the fundamental mechanisms of High-Temperature Superconductivity, in recent years we have seen enormous developments in the fabrication and application of High-Tc-superconductors. The two volumes of High Temperature Superconductivity provide a survey of the state of the technology and engineering applications of these materials. They comprise extended original research papers and technical review articles written by physicists, chemists, materials scientists and engineers, all of them noted experts in their fields. The interdisciplinary and strictly application-oriented coverage should benefit graduate students and academic researchers in the mentioned areas as well as industrial experts. Volume 1 "Materials" focuses on major technical advancements in High-Tc materials processing for applications. Volume 2 "Engineering Applications" covers numerous application areas where High-Tc superconductors are making tremendous impact.



High Temperature Superconducting Materials Science and Engineering

High Temperature Superconducting Materials Science and Engineering Author Donglu Shi
ISBN-10 0080534171
Release 1995-02-20
Pages 480
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This book explores the fascinating field of high-temperature superconductivity. Basic concepts–including experimental techniques and theoretical issues–are discussed in a clear, systematic manner. In addition, the most recent research results in the measurements, materials synthesis and processing, and characterization of physical properties of high-temperature superconductors are presented. Researchers and students alike can use this book as a comprehensive introduction not only to superconductivity but also to materials-related research in electromagnetic ceramics. Special features of the book: presents recent developments in vortex-state properties, defects characterization, and phase equilibrium introduces basic concepts for experimental techniques at low temperatures and high magnetic fields provides a valuable reference for materials-related research discusses potential industrial applications of high-temperature superconductivity includes novel processing technologies for thin film and bulk materials suggests areas of research and specific problems whose solution can make high-Tc superconductors a practical reality



Science and Engineering of Materials SI Edition

Science and Engineering of Materials  SI Edition Author Donald R. Askeland
ISBN-10 9781305446335
Release 2015-01-12
Pages 960
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Succeed in your materials science course with THE SCIENCE AND ENGINEERING OF MATERIALS, 7e. Filled with built-in study tools to help you master key concepts, this proven book will help you develop an understanding of the relationship between structure, processing, and properties of materials and will serve as a useful reference for future courses in manufacturing, materials, design, or materials selection. Important Notice: Media content referenced within the product description or the product text may not be available in the ebook version.



Ultra High Temperature Ceramics

Ultra High Temperature Ceramics Author William G. Fahrenholtz
ISBN-10 9781118924419
Release 2014-10-10
Pages 441
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The first comprehensive book to focus on ultra-high temperature ceramic materials in more than 20 years Ultra-High Temperature Ceramics are a family of compounds that display an unusual combination of properties, including extremely high melting temperatures (>3000°C), high hardness, and good chemical stability and strength at high temperatures. Typical UHTC materials are the carbides, nitrides, and borides of transition metals, but the Group IV compounds (Ti, Zr, Hf) plus TaC are generally considered to be the main focus of research due to the superior melting temperatures and stable high-melting temperature oxide that forms in situ. Rather than focusing on the latest scientific results, Ultra-High Temperature Ceramics: Materials for Extreme Environment Applications broadly and critically combines the historical aspects and the state-of-the-art on the processing, densification, properties, and performance of boride and carbide ceramics. In reviewing the historic studies and recent progress in the field, Ultra-High Temperature Ceramics: Materials for Extreme Environment Applications provides: Original reviews of research conducted in the 1960s and 70s Content on electronic structure, synthesis, powder processing, densification, property measurement, and characterization of boride and carbide ceramics. Emphasis on materials for hypersonic aerospace applications such as wing leading edges and propulsion components for vehicles traveling faster than Mach 5 Information on materials used in the extreme environments associated with high speed cutting tools and nuclear power generation Contributions are based on presentations by leading research groups at the conference "Ultra-High Temperature Ceramics: Materials for Extreme Environment Applications II" held May 13-19, 2012 in Hernstein, Austria. Bringing together disparate researchers from academia, government, and industry in a singular forum, the meeting cultivated didactic discussions and efforts between bench researchers, designers and engineers in assaying results in a broader context and moving the technology forward toward near- and long-term use. This book is useful for furnace manufacturers, aerospace manufacturers that may be pursuing hypersonic technology, researchers studying any aspect of boride and carbide ceramics, and practitioners of high-temperature structural ceramics.



High Temperature Materials for Power Engineering 1990

High Temperature Materials for Power Engineering  1990 Author E. Bachelet
ISBN-10 0792309251
Release 1990-01-01
Pages 1780
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Themes reflect the work carried out within the framework of COST-501 and of COST-505 the latter being concerned with materials for steam turbines and the first results of the concerted action COST-501/II 'High temperature materials for power engineering' initiated in 1988.



Materials for High Temperature Power Generation and Process Plant Applications

Materials for High Temperature Power Generation and Process Plant Applications Author A. Strang
ISBN-10 1861250975
Release 2000
Pages 351
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These proceedings contain the papers covering materials for high temperature power plant and process plant applications presented at Materials Congress 98 Frontiers in Material Science and Technology. The selected papers are largely in the form of critical reviews covering the development of materials for both current and future applications.



High Temperature Thermal Storage Systems Using Phase Change Materials

High Temperature Thermal Storage Systems Using Phase Change Materials Author Luisa Cabeza
ISBN-10 9780081009543
Release 2017-12-07
Pages 344
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High-Temperature Thermal Storage Systems Using Phase Change Materials offers an overview of several high-temperature phase change material (PCM) thermal storage systems concepts, developed by several well-known global institutions with increasing interest in high temperature PCM applications such as solar cooling, waste heat and concentrated solar power (CSP). The book is uniquely arranged by concepts rather than categories, and includes advanced topics such as thermal storage material packaging, arrangement of flow bed, analysis of flow and heat transfer in the flow bed, energy storage analysis, storage volume sizing and applications in different temperature ranges. By comparing the varying approaches and results of different research centers and offering state-of-the-art concepts, the authors share new and advanced knowledge from researchers all over the world. This reference will be useful for researchers and academia interested in the concepts and applications and different techniques involved in high temperature PCM thermal storage systems. Offers coverage of several high temperature PCM thermal storage systems concepts developed by several leading research institutions Provides new and advanced knowledge from researchers all over the world Includes a base of material properties throughout



Materials for High Temperature Semiconductor Devices

Materials for High Temperature Semiconductor Devices Author Committee on Materials for High-Temperature Semiconductor Devices
ISBN-10 NAP:15553
Release 1995-09-28
Pages 115
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Major benefits to system architecture would result if cooling systems for components could be eliminated without compromising performance. This book surveys the state-of-the-art for the three major wide bandgap materials (silicon carbide, nitrides, and diamond), assesses the national and international efforts to develop these materials, identifies the technical barriers to their development and manufacture, determines the criteria for successfully packaging and integrating these devices into existing systems, and recommends future research priorities.