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1st International Conference On New Materials for Extreme Environment

1st International Conference On New Materials for Extreme Environment
Author:
Publisher:
Total Pages: 344
Release: 2008
Genre:
ISBN:

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The development of materials designed for application in extreme environments is a very active field of research. In recent years, it has been realized by the materials science community that solutions to demanding applications in different fields can be identified by implementing common materials concepts. Research effort and technological development, driven by application requirements, are now a bridge between apparently separate communities. As first realized by the European Integrated Project "ExtreMat - New Materials for Extreme Applications", common materials solutions are now being sought and found in the fields of thermal management materials, protective materials, radiation-resistant materials, bonding and interfaces, as well as advanced materials characterization and application-oriented testing. This special collection is divided into: I. Overview; II. Protection Materials; III. Heat Sinks; IV. Bonding and Interfaces; V. Radiation-Resistant Materials; VI. Advanced Materials Characterization and Testing. It provides incomparable coverage of the current state of the art.


Advanced Materials for Applications in Extreme Environments: Volume 1298

Advanced Materials for Applications in Extreme Environments: Volume 1298
Author: Maria Samaras
Publisher: Materials Research Society
Total Pages: 0
Release: 2011-04-29
Genre: Technology & Engineering
ISBN: 9781605112756

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Symposium Q, "Structural Materials and Fuels for Future Fusion and Fission Technologies," Symposium R, "Radiation Damage to Ceramic and Insulating Materials for Nuclear Power," and Symposium T, "Nanostructured Materials in Harsh Environments," were held Nov. 29-Dec. 3 at the 2010 MRS Fall Meeting in Boston, Massachusetts. The underlying theme behind the papers is that of materials for next-generation technologies, especially fusion and fission energy production and the nanoscale properties of these materials when subjected to high temperature and pressure. In many cases, joint experimental and modeling programs to minimize expensive trial-and-error techniques are underway to understand the fundamental processes that are at the basis of the materials. This combined approach is optimal to design novel new materials that can withstand the higher operating temperature, high radiation doses, and complex thermomechanical loading required in the next-generation nuclear systems. This volume highlights some emerging topics in novel mechanical testing techniques, in situ microscopy, high- and low-temperature deformation mechanisms, radiation damage investigations and mechanical property characterization of materials, as well as recent advances in atomistic and multiscale modeling.


1st International Conference on New Materials for Extreme Environments

1st International Conference on New Materials for Extreme Environments
Author: Ch Linsmeier
Publisher:
Total Pages: 0
Release: 2009
Genre: Extreme environments
ISBN: 9780878493449

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Volume is indexed by Thomson Reuters CPCI-S (WoS).The development of materials designed for application in extreme environments is a very active field of research. In recent years, it has been realized by the materials science community that solutions to demanding applications in different fields can be identified by implementing common materials concepts. Research effort and technological development, driven by application requirements, are now a bridge between apparently separate communities. As first realized by the European Integrated Project "ExtreMat - New Materials for Extreme Applications", common materials solutions are now being sought and found in the fields of thermal management materials, protective materials, radiation-resistant materials, bonding and interfaces, as well as advanced materials characterization and application-oriented testing. This special collection is divided into: I. Overview; II. Protection Materials; III. Heat Sinks; IV. Bonding and Interfaces; V. Radiation-Resistant Materials; VI. Advanced Materials Characterization and Testing.It provides incomparable coverage of the current state of the art. The 58 papers in this collection were selected from those presented during the 1st International Conference on New Materials for Extreme Environments held in San Sebastian, Spain, in June 2008. The purpose of the conference was to unite materials researchers to discuss materials solutions in the areas of nuclear fission, advanced nuclear fission, electronics, space, and others. The general topics reflect those discussions and include: protection materials, heat sinks, bonding and interfaces, radiation resistant materials, and advanced materials characterization and testing. Editors are Linsmeier and Reinelt, for whom no background information is given.


Ultra-High Temperature Ceramics

Ultra-High Temperature Ceramics
Author: William G. Fahrenholtz
Publisher: John Wiley & Sons
Total Pages: 601
Release: 2014-10-10
Genre: Technology & Engineering
ISBN: 111892441X

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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.


1st International Conference On New Materials for Extreme Environment

1st International Conference On New Materials for Extreme Environment
Author: Christian Linsmeier
Publisher: Trans Tech Publications Ltd
Total Pages: 344
Release: 2008-12-15
Genre: Technology & Engineering
ISBN: 3038133094

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Volume is indexed by Thomson Reuters CPCI-S (WoS). The development of materials designed for application in extreme environments is a very active field of research. In recent years, it has been realized by the materials science community that solutions to demanding applications in different fields can be identified by implementing common materials concepts. Research effort and technological development, driven by application requirements, are now a bridge between apparently separate communities. As first realized by the European Integrated Project “ExtreMat – New Materials for Extreme Applications”, common materials solutions are now being sought and found in the fields of thermal management materials, protective materials, radiation-resistant materials, bonding and interfaces, as well as advanced materials characterization and application-oriented testing.


Advanced Ceramic Coatings and Materials for Extreme Environments II, Volume 33, Issue 3

Advanced Ceramic Coatings and Materials for Extreme Environments II, Volume 33, Issue 3
Author: Dongming Zhu
Publisher: John Wiley & Sons
Total Pages: 252
Release: 2012-12-10
Genre: Technology & Engineering
ISBN: 1118530187

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Exploring advanced ceramic coatings and ultra-high temperature ceramic materials, this issue brings readers up-to-date with important new and emerging findings, materials, and applications. The nineteen papers in this issue originate from two symposia and one focused session held in January 2012, during the 36th International Conference on Advanced Ceramics and Composites (ICACC). With contributions from leading ceramics and materials researchers from around the world, this issue explores the latest advances and key challenges in advanced thermal and environmental coating processing and characterizations, advanced wear corrosion-resistant, nanocomposite, and multi-functional coatings, thermal protection systems, and more.


Advanced Materials and Structures for Extreme Operating Conditions

Advanced Materials and Structures for Extreme Operating Conditions
Author: Jacek J. Skrzypek
Publisher: Springer Science & Business Media
Total Pages: 238
Release: 2008-01-23
Genre: Science
ISBN: 3540743006

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In the pages of this present monograph readers will find virtually everything they need to know about the latest advanced materials. The authors have covered almost every angle, including composites, functionally graded materials, and materials for high temperature service. They also examine advanced approaches to local and non-local analysis of localized damage, and provide a new description of crack deactivation. This highly informative volume also tackles the material properties for high temperature applications.


Nanomaterials in Extreme Environments

Nanomaterials in Extreme Environments
Author: Rostislav Andrievski
Publisher: Springer
Total Pages: 118
Release: 2015-11-27
Genre: Technology & Engineering
ISBN: 331925331X

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This book focuses on the behaviour of nanomaterials under extreme conditions of high temperature, irradiation by electron/ions and neutrons as well as in mechanical and corrosion extremes. The theoretical approaches and modeling are presented with numerous results of experimental studies. Different processing methods of extreme-tolerant nanomaterials are described. Many application examples from high-temperature technique, nuclear reactors of new generations, aerospace industry, chemical and general engineering, sensor facility, power engineering, electronics, catalysis and medical preparations are also contained. Some unresolved problems are emphasized.


Handbook of Materials Structures, Properties, Processing and Performance

Handbook of Materials Structures, Properties, Processing and Performance
Author: Lawrence E. Murr
Publisher: Springer
Total Pages: 1500
Release: 2021-01-14
Genre: Technology & Engineering
ISBN: 9783319019055

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This extensive knowledge base provides a coherent description of advanced topics in materials science and engineering with an interdisciplinary/multidisciplinary approach. The book incorporates a historical account of critical developments and the evolution of materials fundamentals, providing an important perspective for materials innovations, including advances in processing, selection, characterization, and service life prediction. It includes the perspectives of materials chemistry, materials physics, engineering design, and biological materials as these relate to crystals, crystal defects, and natural and biological materials hierarchies, from the atomic and molecular to the macroscopic, and emphasizing natural and man-made composites. This expansive presentation of topics explores interrelationships among properties, processing, and synthesis (historic and contemporary). The book serves as both an authoritative reference and roadmap of advanced materials concepts for practitioners, graduate-level students, and faculty coming from a range of disciplines.