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  • Broschiertes Buch

High Strength Steels summarizes the historical context and recent research directions of new high strength steels including high-strength low alloyed steel (HSLA), dual-phase (DP) steel, transformation-induced plasticity (TRIP) assisted steel, quenching and partitioning (Q&P) steel, medium-Mn steel, high-Mn twinning induced plasticity (TWIP) steel, bainitic steel, martensitic steel and maraging steel. In particular, the state-of-the-art understanding of the processing-microstructure-property relationship of these high-strength steels is the focus of this book. More importantly, the authors’…mehr

Produktbeschreibung
High Strength Steels summarizes the historical context and recent research directions of new high strength steels including high-strength low alloyed steel (HSLA), dual-phase (DP) steel, transformation-induced plasticity (TRIP) assisted steel, quenching and partitioning (Q&P) steel, medium-Mn steel, high-Mn twinning induced plasticity (TWIP) steel, bainitic steel, martensitic steel and maraging steel. In particular, the state-of-the-art understanding of the processing-microstructure-property relationship of these high-strength steels is the focus of this book. More importantly, the authors’ understanding on the deformation mechanisms of high-strength steels, which is based on their extensive research works over the last two decades, is thoroughly incorporated. Engineering applications of these materials are also discussed. High Strength Steels is suitable for new entrants or those working in related fields in academia and R&D in the subject areas of materials science and engineering and metallurgy.
Autorenporträt
Prof. Mingxin Huang is currently Chair Professor at The University of Hong Kong. He received his BEng and MSc from Shanghai Jiao Tong University (SJTU) in 2002 and 2004, respectively, and his PhD in Materials Science in 2008 from Delft University of Technology (TU Delft), The Netherlands. Prof. Huang's research interests focus on two areas: (1) fundamentals of microstructure-property relationship and phase transformation of advanced steels and alloys, and (2) development of high-performance metals and alloys.