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Refractory fundamentals in metallurg...
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Pötschke, Jürgen.
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Refractory fundamentals in metallurgical practice
紀錄類型:
書目-電子資源 : Monograph/item
正題名/作者:
Refractory fundamentals in metallurgical practice/ by Jürgen Pötschke.
作者:
Pötschke, Jürgen.
出版者:
Cham :Springer Nature Switzerland : : 2024.,
面頁冊數:
xvi, 398 p. :ill. (chiefly color), digital ;24 cm.
內容註:
Chapter 1. Introduction -- Chapter 2. Basics -- Chapter 3. Steel Production -- Chapter 4. Reactions of Refractory Materials with Steel and Slag -- Chapter 5. Infiltration -- Chapter 6. Slagging of MgO -- Chapter 7. Premature Wear as a Result of Marangoni Convection -- Chapter 8. Formation and Behavior of Ceramic Inclusions -- Chapter 9. Electrochemical Corrosion Protection -- Chapter 10. Structural Damage -- Chapter 11. Drying of Refractory Castable -- Chapter 12. Thermal Shock Resistance -- Chapter 13. Thermochemical Behavior of Carbon-Containing Refractory Materials -- Chapter 14. Thermal Wear -- Chapter 15. Mechanical Wear of Refractory Material -- Chapter 16. Sintering -- Chapter 17. Porous Gas Purging Bricks Calculation.
Contained By:
Springer Nature eBook
標題:
Refractory materials. -
電子資源:
https://doi.org/10.1007/978-3-031-63709-4
ISBN:
9783031637094
Refractory fundamentals in metallurgical practice
Pötschke, Jürgen.
Refractory fundamentals in metallurgical practice
[electronic resource] /by Jürgen Pötschke. - Cham :Springer Nature Switzerland :2024. - xvi, 398 p. :ill. (chiefly color), digital ;24 cm.
Chapter 1. Introduction -- Chapter 2. Basics -- Chapter 3. Steel Production -- Chapter 4. Reactions of Refractory Materials with Steel and Slag -- Chapter 5. Infiltration -- Chapter 6. Slagging of MgO -- Chapter 7. Premature Wear as a Result of Marangoni Convection -- Chapter 8. Formation and Behavior of Ceramic Inclusions -- Chapter 9. Electrochemical Corrosion Protection -- Chapter 10. Structural Damage -- Chapter 11. Drying of Refractory Castable -- Chapter 12. Thermal Shock Resistance -- Chapter 13. Thermochemical Behavior of Carbon-Containing Refractory Materials -- Chapter 14. Thermal Wear -- Chapter 15. Mechanical Wear of Refractory Material -- Chapter 16. Sintering -- Chapter 17. Porous Gas Purging Bricks Calculation.
Exploring the intricate interaction of refractories with their application environments, this book delves into the realms of physical chemistry, heat and mass transfer, thermo-mechanics, and mineralogy. Departing from the conventional phenomenological approach, it ties experiences and lab findings to these core principles, fostering a deep understanding. This shift not only enhances traditional testing methods but also widens the scope for alternative investigative approaches. Emphasizing the connection to fundamental laws across scientific disciplines, readers gain profound insights into refractory behavior, elevating their problem-solving prowess. In sync with the current trends of simulation methods in refractory science and metallurgy, this book offers a contemporary perspective on the subject.
ISBN: 9783031637094
Standard No.: 10.1007/978-3-031-63709-4doiSubjects--Topical Terms:
775522
Refractory materials.
LC Class. No.: TN677.5
Dewey Class. No.: 669.82
Refractory fundamentals in metallurgical practice
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Chapter 1. Introduction -- Chapter 2. Basics -- Chapter 3. Steel Production -- Chapter 4. Reactions of Refractory Materials with Steel and Slag -- Chapter 5. Infiltration -- Chapter 6. Slagging of MgO -- Chapter 7. Premature Wear as a Result of Marangoni Convection -- Chapter 8. Formation and Behavior of Ceramic Inclusions -- Chapter 9. Electrochemical Corrosion Protection -- Chapter 10. Structural Damage -- Chapter 11. Drying of Refractory Castable -- Chapter 12. Thermal Shock Resistance -- Chapter 13. Thermochemical Behavior of Carbon-Containing Refractory Materials -- Chapter 14. Thermal Wear -- Chapter 15. Mechanical Wear of Refractory Material -- Chapter 16. Sintering -- Chapter 17. Porous Gas Purging Bricks Calculation.
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Exploring the intricate interaction of refractories with their application environments, this book delves into the realms of physical chemistry, heat and mass transfer, thermo-mechanics, and mineralogy. Departing from the conventional phenomenological approach, it ties experiences and lab findings to these core principles, fostering a deep understanding. This shift not only enhances traditional testing methods but also widens the scope for alternative investigative approaches. Emphasizing the connection to fundamental laws across scientific disciplines, readers gain profound insights into refractory behavior, elevating their problem-solving prowess. In sync with the current trends of simulation methods in refractory science and metallurgy, this book offers a contemporary perspective on the subject.
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