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Materials for Ultra-Supercritical and Advanced Ultra-Supercritical Power Plants

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Gebonden, blz. | Engels
Elsevier Science | e druk, 2016
ISBN13: 9780081005521
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Elsevier Science e druk, 2016 9780081005521
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Samenvatting

Materials for Ultra-Supercritical and Advanced Ultra-Supercritical Power Plants provides researchers in academia and industry with an essential overview of the stronger high-temperature materials required for key process components, such as membrane wall tubes, high-pressure steam piping and headers, superheater tubes, forged rotors, cast components, and bolting and blading for steam turbines in USC power plants. Advanced materials for future advanced ultra-supercritical power plants, such as superalloys, new martensitic and austenitic steels, are also addressed. Chapters on international research directions complete the volume.

The transition from conventional subcritical to supercritical thermal power plants greatly increased power generation efficiency. Now the introductions of the ultra-supercritical (USC) and, in the near future, advanced ultra-supercritical (A-USC) designs are further efforts to reduce fossil fuel consumption in power plants and the associated carbon dioxide emissions. The higher operating temperatures and pressures found in these new plant types, however, necessitate the use of advanced materials.

Specificaties

ISBN13:9780081005521
Taal:Engels
Bindwijze:Gebonden

Inhoudsopgave

<p>1. The fossil fuel power plants technology</p> <p>Part One. Ultra-supercritical power plant materials<br>2. Low-alloyed steel grades for boilers in ultra-supercritical power plants<br>3. High-alloyed martensitic steel grades for boilers in ultra-supercritical power plants<br>4. Austenitic steel grades for boilers in ultra-supercritical power plants<br>5. Martensitic steels for cast components in ultra-supercritical power plants<br>6. Martensitic steels for rotors in ultra-supercritical power plants<br>7. Steels and alloys for turbine blades in ultra-supercritical power plants<br>8. Technologies for chemical analyses, microstructural and inspection investigations<br>9. Welding technologies for ultra-supercritical power plant materials</p> <p>Part Two. Advanced ultra-supercritical power plant materials<br>10. New martensitic steels<br>11. New austenitic steels for the advanced USC power plants<br>12. Sanicro 25: An advanced high-strength, heat-resistant austenitic stainless steel<br>13. New Japanese materials for A-USC power plants<br>14. INCONEL alloy 740H<br>15. HAYNES 282 alloy<br>16. Alloy 617 and derivatives<br>17. Alloy 263<br>18. Welding technologies for advanced ultra-supercritical power plants materials</p> <p>Part Three. Materials’ development programs worldwide<br>19. Worldwide overview and trend for clean and efficient use of coal<br>20. The US DOE/OCDO A-USC materials technology R&D program<br>21. The Chinese 700°C A-USC development program<br>22. Advanced USC technology development in Japan<br>23. A-USC R&D programs in other countries<br>24. A-USC programs in the European Union</p>

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        Materials for Ultra-Supercritical and Advanced Ultra-Supercritical Power Plants