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COOLING RATE OPTIMIZATION FOR QUENCHING AS-CAST STEEL IN INDUSTRY: INTRODUCING A TECHNICAL ROAD MAP TO OPTIMIZE THE COOLING RATE OF THE AS-CAST STEEL PRODUCED BY CONSCIOUSLY CAST STEEL METHOD - Softcover

 
9783639316612: COOLING RATE OPTIMIZATION FOR QUENCHING AS-CAST STEEL IN INDUSTRY: INTRODUCING A TECHNICAL ROAD MAP TO OPTIMIZE THE COOLING RATE OF THE AS-CAST STEEL PRODUCED BY CONSCIOUSLY CAST STEEL METHOD
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The main objective of this book is to develop a method to define the optimum cooling rate for cooling continuously as-cast steel on industrial level. An FEM algorithm is introduced to simulate the cooling of as-cast steel from any temperature below the solidification temperature and to predict the generation of the stress concentration regions due to the thermodynamic strains during cooling a steel specimen with different cooling rates. The algorithm is capable of being customized to simulate the thermodynamic behavior of as-cast steel microstructure with any chemical composition and any casting geometry imposed to desired cooling method. The phase transformation simulations were based on the CCT diagram and, therefore, they were quasi-real models. A non destructive test(NDT) ultrasonic image analysis method is suggested for monitoring of the defects configuration modification in casting line production. A combination of the suggested FEM algorithm and post image processing of NDT ultrasonic images along with laboratory cooling experiments and microstructural analysis provide a guideline to estimate the optimum cooling rate for casting any grade of steel.

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About the Author:
Dr. Allazadeh completed his BS/MS Degree in Technology (Summa Cum Laude) from Miskolc University in 1999. He graduated with M.S. Degree in Solid mechanic from Brown University in 2004. He received his PhD in mechanical engineering and material science from University of Pittsburgh. Currently, he is a faculty member of University of Pannonia.

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  • PublisherVDM Verlag Dr. Müller
  • Publication date2010
  • ISBN 10 3639316614
  • ISBN 13 9783639316612
  • BindingPaperback
  • Number of pages240

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Book Description Taschenbuch. Condition: Neu. This item is printed on demand - it takes 3-4 days longer - Neuware -The main objective of this book is to develop a method to define the optimum cooling rate for cooling continuously as-cast steel on industrial level. An FEM algorithm is introduced to simulate the cooling of as-cast steel from any temperature below the solidification temperature and to predict the generation of the stress concentration regions due to the thermodynamic strains during cooling a steel specimen with different cooling rates. The algorithm is capable of being customized to simulate the thermodynamic behavior of as-cast steel microstructure with any chemical composition and any casting geometry imposed to desired cooling method. The phase transformation simulations were based on the CCT diagram and, therefore, they were quasi-real models. A non destructive test(NDT) ultrasonic image analysis method is suggested for monitoring of the defects configuration modification in casting line production. A combination of the suggested FEM algorithm and post image processing of NDT ultrasonic images along with laboratory cooling experiments and microstructural analysis provide a guideline to estimate the optimum cooling rate for casting any grade of steel. 240 pp. Englisch. Seller Inventory # 9783639316612

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Book Description Kartoniert / Broschiert. Condition: New. Dieser Artikel ist ein Print on Demand Artikel und wird nach Ihrer Bestellung fuer Sie gedruckt. Autor/Autorin: Allazadeh Mohammad RezaDr. Allazadeh completed his BS/MS Degree in Technology (Summa Cum Laude) from Miskolc University in 1999. He graduated with M.S. Degree in Solid mechanic from Brown University in 2004. He received his PhD in me. Seller Inventory # 4976976

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Book Description Taschenbuch. Condition: Neu. nach der Bestellung gedruckt Neuware - Printed after ordering - The main objective of this book is to develop a method to define the optimum cooling rate for cooling continuously as-cast steel on industrial level. An FEM algorithm is introduced to simulate the cooling of as-cast steel from any temperature below the solidification temperature and to predict the generation of the stress concentration regions due to the thermodynamic strains during cooling a steel specimen with different cooling rates. The algorithm is capable of being customized to simulate the thermodynamic behavior of as-cast steel microstructure with any chemical composition and any casting geometry imposed to desired cooling method. The phase transformation simulations were based on the CCT diagram and, therefore, they were quasi-real models. A non destructive test(NDT) ultrasonic image analysis method is suggested for monitoring of the defects configuration modification in casting line production. A combination of the suggested FEM algorithm and post image processing of NDT ultrasonic images along with laboratory cooling experiments and microstructural analysis provide a guideline to estimate the optimum cooling rate for casting any grade of steel. Seller Inventory # 9783639316612

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