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High Strength Steels eBook

Microstructure, Properties, And Applications

by Ming Wang Fu, Yizhuang Li, Binbin He e Mingxin Huang
language: english
Publisher: ELSEVIER SCIENCE, June of 2025 ‧
247,76€
222,98€
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High Strength Steels: Microstructure, Properties, and Applications 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. - Provides in-depth explanation of the process-microstructure-property relationship of high-strength steels- Examines the latest understanding of deformation mechanisms of high-strength steels- Reviews characterization methods used to analyze reveal complex and heterogeneous microstructures of high-strength steels- Discusses real applications of high-strength steels according to specific mechanical performance

High Strength Steels

Microstructure, Properties, And Applications

by Ming Wang Fu, Yizhuang Li, Binbin He e Mingxin Huang

Property Description
ISBN: 9780443158995
Publisher: ELSEVIER SCIENCE
Release Date: June of 2025
Language: English
Format: eBook
File Format and Compatibility:
Categories: eBooks in English > Engineering > General Engineering
EAN: 9780443158995
Acessibilidade: Ver características de acessibilidade indicadas pelo editor