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Title Novel approaches to improving high temperature corrosion resistance / edited by M. Schutze and W. Quadakkers
Published Boca Raton, FL : CRC Press ; Cambridge, England : Woodhead Pub., ©2008

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Description 1 online resource (xxxiii, 617 pages) : illustrations
Series European Federation of Corrosion publications ; no. 47
Publications (European Federation of Corrosion) ; no. 47.
Contents Cover; Novel approaches to improving high temperature corrosion resistance; Copyright; Contents; Contributor Contact Details; European Federation of Corrosion (EFC) publications: Series introduction; Volumes in the EFC series; Part I Alloy modification; 1 Design strategies for oxidation-resistant intermetallic and advanced metallic alloys; 1.1 Introduction; 1.2 Self-graded metallic precursor coating concepts; 1.3 Surface modification approaches; 1.4 Functional surface formation by gas reactions; 1.5 Concluding remarks; 1.6 Acknowledgements; 1.7 References
2 Alloying with copper to reduce metal dusting rates2.1 Introduction; 2.2 Experimental methods; 2.3 Results; 2.4 Discussion; 2.5 Conclusions; 2.6 Acknowledgement; 2.7 References; 3 Performance of candidate gas turbine abradeable seal materials in high temperature combustion atmospheres; 3.1 Introduction; 3.2 Experimental methods; 3.3 Results and discussion; 3.4 Conclusions; 3.5 Acknowledgements; 3.6 References; 4 Two calculations concerning the critical aluminium content in Fe-20Cr-5Al alloys; 4.1 Introduction; 4.2 The critical aluminium content; 4.3 Three-dimensional Al depletion profile
4.4 Conclusions4.5 Acknowledgments; 4.6 References; 5 The different role of alloy grain boundaries on the oxidation mechanisms of Cr-containing steels and Ni-base alloys at high temperatures; 5.1 Introduction; 5.2 Materials and experimental methods; 5.3 Results and discussion; 5.4 Conclusions; 5.5 Acknowledgments; 5.6 References; 6 Improving metal dusting resistance of Ni-X alloys by an addition of Cu; 6.1 Introduction; 6.2 Experimental methods; 6.3 Theoretical analysis; 6.4 Results; 6.5 Discussion; 6.6 Conclusions; 6.7 References; Part II Surface treatment
7 Effects of minor additions and impurities on oxidation behaviour of FeCrAl alloys in the development of novel surface coatings compositions (SMILER)7.1 Introduction; 7.2 Experimental methods; 7.3 Results and discussion; 7.4 Alloys with adhesive mode of scale spallation: 'MRef', '+C'; 7.5 Alloys with cohesive mode of scale spallation: '+Zr', '+Hf'; 7.6 Implications for alloy/coating development; 7.7 Conclusions; 7.8 Acknowledgment; 7.9 References; 8 Lifetime extension of FeCrAIRE alloys in air. Potential role of enhanced Al reservoir and surface pre-treatment (SMILER); 8.1 Introduction
8.2 Experimental methods8.3 Results; 8.4 Air oxidation of foil and sheet coupons; 8.5 Air oxidation of near real-service components; 8.6 Discussion; 8.7 Conclusions; 8.8 Acknowledgements; 8.9 References; 9 Effect of gas composition and contaminants on the lifetime of surface-treated FeCrAlRE alloys (SMILER); 9.1 Introduction; 9.2 Experimental methods; 9.3 Results; 9.4 Discussion; 9.5 Conclusions; 9.6 Acknowledgements; 9.7 References; 10 Development of novel diffusion coatings for 9-12% Cr ferritic-martensitic steels (SUNASPO); 10.1 Introduction; 10.2 Experimental methods
Summary High-temperature corrosion is a major problem affecting sectors such as the power generation, aerospace and metal-working industries. This important book summarises a wide range of research on ways of dealing with this important problem. The first part of the book reviews ways of modifying alloys to improve high-temperature corrosion resistance. The second part discusses surface treatments such as pre-treatments and coatings. The third part of the book summarises research on testing for high-temperature corrosion resistance and the development of common testing standards. It also reviews research on the behaviour of alloys in a wide range of service conditions such as furnace and boiler environments. The final part of the book discusses ways of modelling high-temperature corrosion processes to improve material performance and service life. With its distinguished editors and team of contributors drawn from some of the leading centres of research in the field, Novel approaches to improving high-temperature corrosion resistance is a standard reference for all those studying and dealing with high-temperature corrosion. Summarises a wide range of research on ways of dealing with high-temperature corrosionDiscusses ways of modelling high-temperature corrosion processes to improve material performance and service lifeA standard reference for all those studying and dealing with high-temperature corrosion
Bibliography Includes bibliographical references and index
Notes Print version record
Subject Metals -- Effect of high temperatures on.
Corrosion and anti-corrosives.
TECHNOLOGY & ENGINEERING -- Engineering (General)
TECHNOLOGY & ENGINEERING -- Reference.
Corrosion and anti-corrosives
Metals -- Effect of high temperatures on
Form Electronic book
Author Schütze, Michael.
Quadakkers, W. J.
European Federation of Corrosion.
ISBN 9781615831074
161583107X
9781845694470
1845694473