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Thermomechanical Processing of Microalloyed Austenite

Thermomechanical Processing of Microalloyed Austenite PDF Author: Anthony J. DeArdo
Publisher:
ISBN:
Category : Technology & Engineering
Languages : en
Pages : 734

Book Description


Thermomechanical Processing of Microalloyed Austenite

Thermomechanical Processing of Microalloyed Austenite PDF Author: Anthony J. DeArdo
Publisher:
ISBN:
Category : Technology & Engineering
Languages : en
Pages : 734

Book Description


Formation of Austenite Grain Structure Accompanying Hot Rolling of Nb-V and Nb-V-Ti Microalloyed Steels

Formation of Austenite Grain Structure Accompanying Hot Rolling of Nb-V and Nb-V-Ti Microalloyed Steels PDF Author: Muhammad Irfan
Publisher:
ISBN:
Category : Austenitic steel
Languages : en
Pages : 230

Book Description


Advances in Microalloyed Steels

Advances in Microalloyed Steels PDF Author: Pello Uranga
Publisher: MDPI
ISBN: 3036501320
Category : Science
Languages : en
Pages : 236

Book Description
In response to the demanding requirements of different sectors, such as construction, transportation, energy, manufacturing, and mining, new generations of microalloyed steels are being developed and brought to market. The addition of microalloying elements, such as niobium, vanadium, titanium, boron, and/or molybdenum, has become a key tool in the steel industry to reach economically-viable grades with increasingly higher mechanical strength, toughness, good formability, and weldable products. The challenges that microalloying steel production faces can be solved with a deeper understanding of the effects that these microalloying additions and combinations of them have during the different steps of the steelmaking process.

Microstructure Evolution in Metal Forming Processes

Microstructure Evolution in Metal Forming Processes PDF Author: J Lin
Publisher: Elsevier
ISBN: 0857096346
Category : Technology & Engineering
Languages : en
Pages : 409

Book Description
Monitoring and control of microstructure evolution in metal processing is essential in developing the right properties in a metal. Microstructure evolution in metal forming processes summarises the wealth of recent research on the mechanisms, modelling and control of microstructure evolution during metal forming processes.Part one reviews the general principles involved in understanding and controlling microstructure evolution in metal forming. Techniques for modelling microstructure and optimising processes are explored, along with recrystallisation, grain growth, and severe plastic deformation. Microstructure evolution in the processing of steel is the focus of part two, which reviews the modelling of phase transformations in steel, unified constitutive equations and work hardening in microalloyed steels. Part three examines microstructure evolution in the processing of other metals, including ageing behaviour in the processing of aluminium and microstructure control in processing nickel, titanium and other special alloys.With its distinguished editors and international team of expert contributors, Microstructure evolution in metal forming processes is an invaluable reference tool for metal processors and those using steels and other metals, as well as an essential guide for academics and students involved in fundamental metal research. - Summarises the wealth of recent research on the mechanisms, modelling and control of microstructure evolution during metal forming processes - Comprehensively discusses microstructure evolution in the processing of steel and reviews the modelling of phase transformations in steel, unified constitutive equations and work hardening in microalloyed steels - Examines microstructure evolution in the processing of other materials, including ageing behaviour in the processing of aluminium

Handbook of Workability and Process Design

Handbook of Workability and Process Design PDF Author: George E. Dieter
Publisher: ASM International
ISBN: 1615032282
Category : Metals
Languages : en
Pages : 410

Book Description


Phase Transformations in Steels

Phase Transformations in Steels PDF Author: Elena Pereloma
Publisher: Elsevier
ISBN: 0857096117
Category : Technology & Engineering
Languages : en
Pages : 673

Book Description
The processing-microstructure-property relationships in steels continue to present challenges to researchers because of the complexity of phase transformation reactions and the wide spectrum of microstructures and properties achievable. This major two-volume work summarises the current state of research on phase transformations in steels and its implications for the emergence of new steels with enhanced engineering properties.Volume 2 reviews current research on diffusionless transformations and phase transformations in high strength steels, as well as advances in modelling and analytical techniques which underpin this research. Chapters in part one discuss the crystallography and kinetics of martensite transformations, the morphology, substructure and tempering of martensite as well as shape memory in ferrous alloys. Part two summarises research on phase transformations in high strength low alloy (HSLA) steels, transformation induced plasticity (TRIP)-assisted multiphase steels, quenched and partitioned steels, advanced nanostructured bainitic steels, high manganese twinning induced plasticity (TWIP) and maraging steels. The final two parts of the book review advances in modelling and the use of advanced analytical techniques to improve our understanding of phase transformations in steels.With its distinguished editors and distinguished international team of contributors, the two volumes of Phase transformations in steels is a standard reference for all those researching the properties of steel and developing new steels in such areas as automotive engineering, oil and gas and energy production. - Alongside its companion volume, this major two-volume work summarises the current state of research on phase transformations in steels - Reviews research on diffusionless transformations and phase transformations in high strength steels - Examines advances in modelling and the use of advanced analytical techniques to improve understanding of phase transformations in steels

Titanium Microalloyed Steel: Fundamentals, Technology, and Products

Titanium Microalloyed Steel: Fundamentals, Technology, and Products PDF Author: Xinping Mao
Publisher: Springer
ISBN: 9811333327
Category : Technology & Engineering
Languages : en
Pages : 321

Book Description
This book comprehensively reviews the research on Ti microalloyed steel, focusing on development and production technology. It discusses steel composition design and performance, as well as technologies for controlling the microstructure and properties of Ti microalloyed steel during the production process. Ti can significantly improve the properties of steel, but its behavior is more complex and more difficult to control during the production process than that of Nb and V.Covering topics ranging from metallurgy theory to production technology and products, the book serves as a valuable reference resource for researchers, engineers, university teachers and students in the field of steel research.

The Physical Metallurgy of Microalloyed Steels

The Physical Metallurgy of Microalloyed Steels PDF Author: T. Gladman
Publisher: Routledge
ISBN:
Category : Science
Languages : en
Pages : 384

Book Description


Bainite and Martensite

Bainite and Martensite PDF Author: Carlos Garcia-Mateo
Publisher: MDPI
ISBN: 3039288571
Category : Technology & Engineering
Languages : en
Pages : 166

Book Description
The microstructures of both martensite and bainite, although sharing some common features, depict a plethora of subtle differences that made them unique when studied in further detail. Tailoring the final properties of a microstructure based on one or the other as well as in combination with others and exploring more sophisticated concepts, such as Q&P and nanostructured bainite, are the topics which are the focus of research around the world. In understanding the key microstructural parameters controlling the final properties as well as definition of adequate process parameters to attain the desired microstructures requires that a proper understanding of the mechanism ruling their transformation and a detailed characterization first be acheived. The development of new and powerful scientific techniques and equipment (EBSD, APT, HRTEM, etc.) allow us to gain fundamental insights that help to establish some of the principles by which those microstructures are known. The developments accompanying such findings lead to further developments and intensive research providing the required metallurgical support.

Recrystallization and Related Annealing Phenomena

Recrystallization and Related Annealing Phenomena PDF Author: F.J. Humphreys
Publisher: Elsevier
ISBN: 008098388X
Category : Technology & Engineering
Languages : en
Pages : 520

Book Description
The annealing of deformed materials is of both technological importance and scientific interest. The phenomena have been most widely studied in metals, although they occur in all crystalline materials such as the natural deformation of rocks and the processing of technical ceramics. Research is mainly driven by the requirements of industry, and where appropriate, the book discusses the extent to which we are able to formulate quantitative, physically-based models which can be applied to metal-forming processes.The subjects treated in this book are all active research areas, and form a major part of at least four regular international conference series. However, there have only been two monographs published in recent times on the subject of recrystallization, the latest nearly 20 years ago. Since that time, considerable advances have been made, both in our understanding of the subject and in the techniques available to the researcher.The book covers recovery, recrystallization and grain growth in depth including specific chapters on ordered materials, two-phase alloys, annealing textures and annealing during and after hot working. Also contained are treatments of the deformed state and the structure and mobility of grain boundaries, technologically important examples and a chapter on computer simulation and modelling. The book provides a scientific treatment of the subject for researchers or students in Materials Science, Metallurgy and related disciplines, who require a more detailed coverage than is found in textbooks on physical metallurgy, and a more coherent treatment than will be found in the many conference proceedings and review articles.