Research and Development of High Temperature Materials for Industry [electronic resource] /
List of Contents -- 1. Advanced High Temperature Materials -- 2. Materials Potential -- 2.1. Alloys -- 2.2. Coatings -- 2.3. Composites -- 2.4. Ceramics -- 3. Materials Production -- 3.1. Alloys -- 3.2. Ceramics and Refractories -- 3.3. Composites -- 3.4. Joining -- 4. Materials Constraints in the High Temperature Industrial Technologies -- 4.1. Energy Production and Conversion -Fossil Energy -- 4.4. Engines -- 4.6. Materials used in the Processing of Super alloys J. Morlet, Imphy SA -- 4.7. Materials for Sensors to be used at High Temperature O. De Pous, Eniricerche Monterondo -- 4.8. Materials for Furnaces D. Brun, Stein Heurtey SA -- 5. Optimisation of Components -- 5.1. Testing Metrology M.S. Loveday, National Physical Laboratory -- 5.2. Prior Inspection/NDE W.N. Reynolds, NDT Centre, AERE Harwell -- 5.3. Design of Materials for Components -- 6. Future Trends in High Temperature Technology and the Implications for Materials R&D -- 7. Conclusions.
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Format: | Texto biblioteca |
Language: | eng |
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Dordrecht : Springer Netherlands,
1989
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Subjects: | Materials science., Materials Science., Characterization and Evaluation of Materials., |
Online Access: | http://dx.doi.org/10.1007/978-94-009-1145-1 |
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KOHA-OAI-TEST:2173632018-07-30T23:53:08ZResearch and Development of High Temperature Materials for Industry [electronic resource] / Bullock, E. editor. Brunetaud, R. editor. Condé, J. F. editor. Keown, S. R. editor. Pugh, S. F. editor. SpringerLink (Online service) textDordrecht : Springer Netherlands,1989.engList of Contents -- 1. Advanced High Temperature Materials -- 2. Materials Potential -- 2.1. Alloys -- 2.2. Coatings -- 2.3. Composites -- 2.4. Ceramics -- 3. Materials Production -- 3.1. Alloys -- 3.2. Ceramics and Refractories -- 3.3. Composites -- 3.4. Joining -- 4. Materials Constraints in the High Temperature Industrial Technologies -- 4.1. Energy Production and Conversion -Fossil Energy -- 4.4. Engines -- 4.6. Materials used in the Processing of Super alloys J. Morlet, Imphy SA -- 4.7. Materials for Sensors to be used at High Temperature O. De Pous, Eniricerche Monterondo -- 4.8. Materials for Furnaces D. Brun, Stein Heurtey SA -- 5. Optimisation of Components -- 5.1. Testing Metrology M.S. Loveday, National Physical Laboratory -- 5.2. Prior Inspection/NDE W.N. Reynolds, NDT Centre, AERE Harwell -- 5.3. Design of Materials for Components -- 6. Future Trends in High Temperature Technology and the Implications for Materials R&D -- 7. Conclusions.Materials science.Materials Science.Characterization and Evaluation of Materials.Springer eBookshttp://dx.doi.org/10.1007/978-94-009-1145-1URN:ISBN:9789400911451 |
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Materials science. Materials Science. Characterization and Evaluation of Materials. Materials science. Materials Science. Characterization and Evaluation of Materials. |
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Materials science. Materials Science. Characterization and Evaluation of Materials. Materials science. Materials Science. Characterization and Evaluation of Materials. Bullock, E. editor. Brunetaud, R. editor. Condé, J. F. editor. Keown, S. R. editor. Pugh, S. F. editor. SpringerLink (Online service) Research and Development of High Temperature Materials for Industry [electronic resource] / |
description |
List of Contents -- 1. Advanced High Temperature Materials -- 2. Materials Potential -- 2.1. Alloys -- 2.2. Coatings -- 2.3. Composites -- 2.4. Ceramics -- 3. Materials Production -- 3.1. Alloys -- 3.2. Ceramics and Refractories -- 3.3. Composites -- 3.4. Joining -- 4. Materials Constraints in the High Temperature Industrial Technologies -- 4.1. Energy Production and Conversion -Fossil Energy -- 4.4. Engines -- 4.6. Materials used in the Processing of Super alloys J. Morlet, Imphy SA -- 4.7. Materials for Sensors to be used at High Temperature O. De Pous, Eniricerche Monterondo -- 4.8. Materials for Furnaces D. Brun, Stein Heurtey SA -- 5. Optimisation of Components -- 5.1. Testing Metrology M.S. Loveday, National Physical Laboratory -- 5.2. Prior Inspection/NDE W.N. Reynolds, NDT Centre, AERE Harwell -- 5.3. Design of Materials for Components -- 6. Future Trends in High Temperature Technology and the Implications for Materials R&D -- 7. Conclusions. |
format |
Texto |
topic_facet |
Materials science. Materials Science. Characterization and Evaluation of Materials. |
author |
Bullock, E. editor. Brunetaud, R. editor. Condé, J. F. editor. Keown, S. R. editor. Pugh, S. F. editor. SpringerLink (Online service) |
author_facet |
Bullock, E. editor. Brunetaud, R. editor. Condé, J. F. editor. Keown, S. R. editor. Pugh, S. F. editor. SpringerLink (Online service) |
author_sort |
Bullock, E. editor. |
title |
Research and Development of High Temperature Materials for Industry [electronic resource] / |
title_short |
Research and Development of High Temperature Materials for Industry [electronic resource] / |
title_full |
Research and Development of High Temperature Materials for Industry [electronic resource] / |
title_fullStr |
Research and Development of High Temperature Materials for Industry [electronic resource] / |
title_full_unstemmed |
Research and Development of High Temperature Materials for Industry [electronic resource] / |
title_sort |
research and development of high temperature materials for industry [electronic resource] / |
publisher |
Dordrecht : Springer Netherlands, |
publishDate |
1989 |
url |
http://dx.doi.org/10.1007/978-94-009-1145-1 |
work_keys_str_mv |
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