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yuan guo; li zhenlei; kang jian - new generation tmcp technology for hot strip

New Generation TMCP Technology for Hot Strip

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Dettagli

Genere:Libro
Lingua: Inglese
Editore:

Springer

Pubblicazione: 11/2024





Trama

This book introduces the process principle of the new generation of controlled rolling and controlled cooling with ultra fast cooling technology as the core, the latest research progress of ultra fast cooling technology and its industrial application. This book covers the process principle, complete sets of equipment and key technologies, automatic control system, product process technology and industrial application practice of typical products of the new generation of controlled rolling and cooling technology for hot strip mill. This book can be used as a reference for scientific researchers and engineering technicians engaged in the research of material processing engineering and the development of hot strip varieties.

 





Sommario

Introduction.- Core Mechanism of New Generation TMCP and UFC Technology.- Complete Set of Equipment and Key Process Technologies of NG-TMCP.- Development of Process Model System and Key Technologies.- Production Line Layout and Product Process Design of Hot tandem rolling Based on the NG-TMCP.- Development and Application of Low Cost Plain Carbon Steel (TMCP-F).- Development of Economical High Performance Thick-gauge Pipeline Steel (TMCP-B).- Development of High-grade Pipeline Steel with Low Internal Stress (TMCP-B).- Development of Low-cost Hot rolled Dual Phase Steel (TMCP M).- Development of Hot rolled Q&P Steel with High Product of Strength and Elongation (TMCP-M).





Autore

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Guo Yuan, doctor of engineering, professor and doctoral supervisor, has long been engaged in the research of key processes and equipment technologies for rolling and processing of high-quality steel materials. Professor Yuan proposed a high-strength homogenization cooling heat exchange mechanism for hot rolled steel, which fundamentally solves the problem of controllability of micro heat transfer stability. Presided over the research and development of a new generation of controlled cooling technology and equipment for China's first large-scale hot strip rolling production line. A series of high-quality and reduced hot strip products have been developed, and the research results have formed an application demonstration, and become the new generation of control cooling mainstream technology for large-scale hot strip mills in China.

 

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Zhenlei Li, doctor of engineering, Associate Professor, and Master's Supervisor, has long been dedicated to researching new-generation TMCP process technology and its control systems. He has developed a post-rolling cooling control system based on ultra-fast cooling, integrating process mechanism models with real industrial data to achieve precise control of process temperature during the post-rolling cooling stage. This control system has been successfully applied to over ten continuous hot rolling production lines, ensuring product quality and significantly advancing the industrialization and application of new generation TMCP technology and equipment.

 

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Jian Kang, doctor of engineering, is currently an associate professor of Northeastern University. He mainly conducts scientific research around the technology of controlling the microstructure and properties of hot rolled steel materials. In recent years, a series of low-cost and high-performance hot-rolled strip products have been developed through the comprehensive application of fine grain strengthening, phase transformation strengthening, and precipitation strengthening mechanisms based on the new generation TMCP technology. These products have significantly reduced costs, increased efficiency, and improved quality.

 











Altre Informazioni

ISBN:

9789819752560

Condizione: Nuovo
Collana: Key Steel Manufacturing Technologies by Collaborative Innovation
Dimensioni: 235 x 155 mm
Formato: Copertina rigida
Illustration Notes:XVII, 482 p. 404 illus., 250 illus. in color.
Pagine Arabe: 482
Pagine Romane: xvii


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