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High-temperature Corrosion Resistance of Ceramic Materials

High-temperature Corrosion Resistance of Ceramic Materials PDF Author: Timothy A. Clancy
Publisher:
ISBN:
Category : Ceramic materials
Languages : en
Pages : 40

Book Description


High-temperature Corrosion Resistance of Ceramic Materials

High-temperature Corrosion Resistance of Ceramic Materials PDF Author: Timothy A. Clancy
Publisher:
ISBN:
Category : Ceramic materials
Languages : en
Pages : 40

Book Description


High-temperature Corrosion Resistance of Ceramic Materials

High-temperature Corrosion Resistance of Ceramic Materials PDF Author: Timothy A. Clancy
Publisher:
ISBN:
Category : Ceramic materials
Languages : en
Pages : 31

Book Description


High Temperature Corrosion of Technical Ceramics

High Temperature Corrosion of Technical Ceramics PDF Author: R.J. Fordham
Publisher: Springer Science & Business Media
ISBN: 9781851665686
Category : Technology & Engineering
Languages : en
Pages : 244

Book Description


High Temperature Corrosion of Ceramics

High Temperature Corrosion of Ceramics PDF Author: J.R. Blachere
Publisher: William Andrew
ISBN:
Category : Technology & Engineering
Languages : en
Pages : 208

Book Description
The information in this book is from a 1987 Dept. of Energy report of the same title. Materials investigated in this particular study are silica, alumina, silicon nitride and silicon carbide. In addition to the pure single crystals or CVD materials, typical engineering materials of various purities are included. No index. Annotation copyrighted by Book News, Inc., Portland, OR

High Temperature Coatings

High Temperature Coatings PDF Author: Sudhangshu Bose
Publisher: Butterworth-Heinemann
ISBN: 0128047437
Category : Technology & Engineering
Languages : en
Pages : 418

Book Description
High Temperature Coatings, Second Edition, demonstrates how to counteract the thermal effects of rapid corrosion and degradation of exposed materials and equipment that can occur under high operating temperatures. This is the first true practical guide on the use of thermally protective coatings for high-temperature applications, including the latest developments in materials used for protective coatings. It covers the make-up and behavior of such materials under thermal stress and the methods used for applying them to specific types of substrates, as well as invaluable advice on inspection and repair of existing thermal coatings. With his long experience in the aerospace gas turbine industry, the author has compiled the very latest in coating materials and coating technologies, as well as hard-to-find guidance on maintaining and repairing thermal coatings, including appropriate inspection protocols. The book is supplemented with the latest reference information and additional support to help readers find more application- and industry-type coatings specifications and uses. Offers an overview of the underlying fundamental concepts of thermally-protective coatings, including thermodynamics, energy kinetics, crystallography and equilibrium phases Covers essential chemistry and physics of underlying substrates, including steels, nickel-iron alloys, nickel-cobalt alloys and titanium alloys Provides detailed guidance on a wide variety of coating types, including those used against high temperature corrosion and oxidative degradation and thermal barrier coatings

Coatings for High-Temperature Structural Materials

Coatings for High-Temperature Structural Materials PDF Author: National Research Council
Publisher: National Academies Press
ISBN: 0309176026
Category : Technology & Engineering
Languages : en
Pages : 102

Book Description
This book assesses the state of the art of coatings materials and processes for gas-turbine blades and vanes, determines potential applications of coatings in high-temperature environments, identifies needs for improved coatings in terms of performance enhancements, design considerations, and fabrication processes, assesses durability of advanced coating systems in expected service environments, and discusses the required inspection, repair, and maintenance methods. The promising areas for research and development of materials and processes for improved coating systems and the approaches to increased coating standardization are identified, with an emphasis on materials and processes with the potential for improved performance, quality, reproducibility, or manufacturing cost reduction.

High-temperature Corrosion Resistance of Ceramics and Ceramic Coatings

High-temperature Corrosion Resistance of Ceramics and Ceramic Coatings PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 2

Book Description
Ceramics and ceramic composites offer the potential to operate fossil energy systems at the higher temperatures necessary for improved energy efficiency and better environmental control. However, because many fossil fuel-derived processes contain sulfur, chlorine, and carbon, as well as oxygen, degradation from high-temperature corrosion and environmental effects arising from reactions of solids with gases and condensable products is a common life-determining factor in operating systems. Ceramic-based products are not immune to such degradation; adequate corrosion resistance must be assured to exploit the technical and economic potential of such materials. This is normally accomplished by using stable, sound oxides that exist in their bulk form, that naturally grow as surface layers upon exposure to an oxidizing environment, or that are deposited as a coating on a susceptible material. It is therefore important to examine the critical issues with respect to more environmental stability of ceramics that have the potential to be corrosion resistant in particular fossil environments. Key aspects include not only chemical compatibility, but the influence of the environment on the mechanical behavior of the ceramic materials. In addition, for coatings, the mechanical reliability of the ceramic is a key issue in that an otherwise corrosion-resistant surface layer must remain sound and adherent in order to provide protection to the underlying substrate. The purpose of this work is to support the development of advanced ceramics and ceramic composites for applications in fossil environments by examining critical issues related to high-temperature corrosion resistance. More specifically, the overall objective of this task is to examine the chemical compatibility and reliability of potentially corrosion-resistant ceramics being developed as protective overcoats and/or structural materials as parts of other work elements funded by the AR & TD Program.

High Temperature Corrosion of Advanced Materials and Protective Coatings

High Temperature Corrosion of Advanced Materials and Protective Coatings PDF Author: Yahachi Saito
Publisher: Elsevier
ISBN: 0444599274
Category : Technology & Engineering
Languages : en
Pages : 393

Book Description
This book brings together the experience of specialists on High Temperature Corrosion. The 43 papers discuss topics related to the high temperature corrosion of engineering alloys, ceramics and protective coatings. The papers will be a useful and dynamic tool for those wishing to increase their knowledge of High Temperature Corrosion, as well as providing a guide to recent literature in this field.

Handbook of Advanced Ceramics

Handbook of Advanced Ceramics PDF Author: Yuuzou Kawahara
Publisher: Elsevier Inc. Chapters
ISBN: 0128057440
Category : Technology & Engineering
Languages : en
Pages : 59

Book Description


High Temperature Corrosion

High Temperature Corrosion PDF Author: César A. C. Sequeira
Publisher: John Wiley & Sons
ISBN: 1119474426
Category : Science
Languages : en
Pages : 656

Book Description
Reviews the science and engineering of high-temperature corrosion and provides guidelines for selecting the best materials for an array of system processes High-temperature corrosion (HTC) is a widespread problem in an array of industries, including power generation, aerospace, automotive, and mineral and chemical processing, to name a few. This book provides engineers, physicists, and chemists with a balanced presentation of all relevant basic science and engineering aspects of high-temperature corrosion. It covers most HTC types, including oxidation, sulfidation, nitridation, molten salts, fuel-ash corrosion, H2S/H2 corrosion, molten fluoride/HF corrosion, and carburization. It also provides corrosion data essential for making the appropriate choices of candidate materials for high-temperature service in process conditions. A form of corrosion that does not require the presence of liquids, high-temperature corrosion occurs due to the interaction at high temperatures of gases, liquids, or solids with materials. HTC is a subject is of increasing importance in many areas of science and engineering, and students, researchers, and engineers need to be aware of the nature of the processes that occur in high-temperature materials and equipment in common use today, especially in the chemical, gas, petroleum, electric power, metal manufacturing, automotive, and nuclear industries. Provides engineers and scientists with the essential data needed to make the most informed decisions on materials selection Includes up-to-date information accompanied by more than 1,000 references, 80% of which from within the past fifteen years Includes details on systems of critical engineering importance, especially the corrosion induced by low-energy radionuclides Includes practical guidelines for testing and research in HTC, along with both the European and International Standards for high-temperature corrosion engineering Offering balanced, in-depth coverage of the fundamental science behind and engineering of HTC, High Temperature Corrosion: Fundamentals and Engineering is a valuable resource for academic researchers, students, and professionals in the material sciences, solid state physics, solid state chemistry, electrochemistry, metallurgy, and mechanical, chemical, and structural engineers.