Thermo-Mechanical Processing of Metallic Materials

Thermo-Mechanical Processing of Metallic Materials PDF Author: Bert Verlinden
Publisher: Elsevier
ISBN: 0080544487
Category : Technology & Engineering
Languages : en
Pages : 551

Get Book Here

Book Description
Thermo-Mechanical Processing of Metallic Materials describes the science and technology behind modern thermo-mechanical processing (TMP), including detailed descriptions of successful examples of its application in the industry. This graduate-level introductory resource aims to fill the gap between two scientific approaches and illustrate their successful linkage by the use of suitable modern case studies. The book is divided into three key sections focusing on the basics of metallic materials processing. The first section covers the microstructural science base of the subject, including the microstructure determined mechanical properties of metals. The second section deals with the current mechanical technology of plastic forming of metals. The concluding section demonstrates the interaction of the first two disciplines in a series of case studies of successful current TMP processing and looks ahead to possible new developments in the field. This text is designed for use by graduate students coming into the field, for a graduate course textbook, and for Materials and Mechanical Engineers working in this area in the industry. * Covers both physical metallurgy and metals processing * Links basic science to real everyday applications * Written by four internationally-known experts in the field

Thermo-Mechanical Processing of Metallic Materials

Thermo-Mechanical Processing of Metallic Materials PDF Author: Bert Verlinden
Publisher: Elsevier
ISBN: 0080544487
Category : Technology & Engineering
Languages : en
Pages : 551

Get Book Here

Book Description
Thermo-Mechanical Processing of Metallic Materials describes the science and technology behind modern thermo-mechanical processing (TMP), including detailed descriptions of successful examples of its application in the industry. This graduate-level introductory resource aims to fill the gap between two scientific approaches and illustrate their successful linkage by the use of suitable modern case studies. The book is divided into three key sections focusing on the basics of metallic materials processing. The first section covers the microstructural science base of the subject, including the microstructure determined mechanical properties of metals. The second section deals with the current mechanical technology of plastic forming of metals. The concluding section demonstrates the interaction of the first two disciplines in a series of case studies of successful current TMP processing and looks ahead to possible new developments in the field. This text is designed for use by graduate students coming into the field, for a graduate course textbook, and for Materials and Mechanical Engineers working in this area in the industry. * Covers both physical metallurgy and metals processing * Links basic science to real everyday applications * Written by four internationally-known experts in the field

Thermomechanical Processing in Theory, Modelling and Practice (TMP)2

Thermomechanical Processing in Theory, Modelling and Practice (TMP)2 PDF Author: Bevis Hutchinson
Publisher: ASM International(OH)
ISBN:
Category : Technology & Engineering
Languages : en
Pages : 440

Get Book Here

Book Description


Process Modeling Applied to Metal Forming and Thermo Mechanical Processing

Process Modeling Applied to Metal Forming and Thermo Mechanical Processing PDF Author: North Atlantic Treaty Organization. Advisory Group for Aeronautical Research and Development
Publisher:
ISBN:
Category :
Languages : en
Pages :

Get Book Here

Book Description


Mechanical Properties in Progressive Mechanically Processed Metallic Materials

Mechanical Properties in Progressive Mechanically Processed Metallic Materials PDF Author: Radim Kocich
Publisher: MDPI
ISBN: 3036500766
Category : Technology & Engineering
Languages : en
Pages : 256

Get Book Here

Book Description
The demands on innovative materials given by the ever-increasing requirements of contemporary industry require the use of high-performance engineering materials. The properties of materials and alloys are a result of their structures, which can primarily be affected by the preparation/production process. However, the production of materials featuring high levels of the required properties without the necessity to use costly alloying elements or time- and money-demanding heat treatment technologies typically used to enhance the mechanical properties of metallic materials (especially specific strength) still remains a challenge. The introduction of thermomechanical treatment represented a breakthrough in grain refinement, consequently leading to significant improvement of the mechanical properties of metallic materials. Contrary to conventional production technologies, the main advantage of such treatment is the possibility to precisely control structural phenomena that affect the final mechanical and utility properties. Thermomechanical treatment can only decrease the grain size to the scale of microns. However, further research devoted to pushing materials’ performance beyond the limits led to the introduction of severe plastic deformation (SPD) methods providing producers with the ability to acquire ultra-fine-grained and nanoscaled metallic materials with superior mechanical properties. SPD methods can be performed with the help of conventional forming equipment; however, many newly designed processes have also been introduced.

The Material Behavior During Thermo-mechanical Processing and the Effect of Microstructure on the Mechanical Properties and Stretch Formability of Al-1.25% Mn Alloy (3003)

The Material Behavior During Thermo-mechanical Processing and the Effect of Microstructure on the Mechanical Properties and Stretch Formability of Al-1.25% Mn Alloy (3003) PDF Author: Young Jik Kwag
Publisher:
ISBN:
Category : Aluminum-manganese alloys
Languages : en
Pages : 522

Get Book Here

Book Description


Comprehensive Materials Processing

Comprehensive Materials Processing PDF Author:
Publisher: Newnes
ISBN: 0080965334
Category : Technology & Engineering
Languages : en
Pages : 5485

Get Book Here

Book Description
Comprehensive Materials Processing, Thirteen Volume Set provides students and professionals with a one-stop resource consolidating and enhancing the literature of the materials processing and manufacturing universe. It provides authoritative analysis of all processes, technologies, and techniques for converting industrial materials from a raw state into finished parts or products. Assisting scientists and engineers in the selection, design, and use of materials, whether in the lab or in industry, it matches the adaptive complexity of emergent materials and processing technologies. Extensive traditional article-level academic discussion of core theories and applications is supplemented by applied case studies and advanced multimedia features. Coverage encompasses the general categories of solidification, powder, deposition, and deformation processing, and includes discussion on plant and tool design, analysis and characterization of processing techniques, high-temperatures studies, and the influence of process scale on component characteristics and behavior. Authored and reviewed by world-class academic and industrial specialists in each subject field Practical tools such as integrated case studies, user-defined process schemata, and multimedia modeling and functionality Maximizes research efficiency by collating the most important and established information in one place with integrated applets linking to relevant outside sources

Materials Processing and Texture

Materials Processing and Texture PDF Author: A. D. Rollett
Publisher: John Wiley & Sons
ISBN: 0470444185
Category : Technology & Engineering
Languages : en
Pages : 850

Get Book Here

Book Description
This volume contains papers presented at The 15th International Conference on the Texture of Materials from June 1-5th, 2008 in Pittsburgh, PA. Chapters include: Friction Stir Welding and Processing Texture and Anisotropy in Steels Effects of Magnetic Fields Hexagonal Metals Texture in Materials Design View information on Applications of Texture Analysis: Ceramic Transactions, Volume 201.

Dynamics of Systems on the Nanoscale

Dynamics of Systems on the Nanoscale PDF Author: Ilia A. Solov'yov
Publisher: Springer Nature
ISBN: 3030992918
Category : Science
Languages : en
Pages : 554

Get Book Here

Book Description
This book presents the structure formation and dynamics of animate and inanimate matter on the nanometre scale. This is a new interdisciplinary field known as Meso-Bio-Nano (MBN) science that lies at the intersection of physics, chemistry, biology and material science. Special attention in the book is devoted to investigations of the structure, properties and dynamics of complex MBN systems by means of photonic, electronic, heavy particle and atomic collisions. This includes problems of fusion and fission, fragmentation, surfaces and interfaces, reactivity, nanoscale phase and morphological transitions, irradiation-driven transformations of complex molecular systems, collective electron excitations, radiation damage and biodamage, channeling phenomena and many more. Emphasis in the book is placed on the theoretical and computational physics research advances in these areas and related state-of-the-art experiments. Particular attention in the book is devoted to the utilization of advanced computational techniques and high-performance computing in studies of the dynamics of systems.

Effect of Tool Pin Profile on Microstructure and Mechanical Properties of AL6063 in Friction Stir Processing

Effect of Tool Pin Profile on Microstructure and Mechanical Properties of AL6063 in Friction Stir Processing PDF Author: Chandan Deep Singh
Publisher: Anchor Academic Publishing
ISBN: 3960672055
Category : Technology & Engineering
Languages : en
Pages : 73

Get Book Here

Book Description
Friction stir processing (FSP) is a solid state process in which a non consumable stirring (rotating) tool is plunged into a work piece up to half thickness, which causes intense plastic deformation, material mixing, and thermal exposure, resulting in refinement of micro structural properties, enhancement of mechanical properties, and homogeneity of the processed (nugget) zone. The FSP technique has been successfully used for producing fine-grained structure and surface composite, modifying the microstructure of materials, synthesizing composites like metal-metal composites. The use of FSP generates significant frictional heating and intense plastic deformation, thereby resulting in the occurrence of dynamic recrystallization in the stirred zone (SZ). Although there is still a controversy about the grain-refinement mechanism in the SZ, it is generally believed that the grain refinement is due to dynamic recrystallization. Therefore, the factors influencing the nucleation and growth of the dynamic recrystallization will determine the resultant grain microstructure in the SZ. It has been demonstrated that the FSP parameters, tool geometry, material chemistry, workpiece temperature, vertical pressure, and active cooling exert a significant effect on the size of the recrystallized grains in the SZ.

Advanced Materials and Manufacturing Techniques for Biomedical Applications

Advanced Materials and Manufacturing Techniques for Biomedical Applications PDF Author: Arbind Prasad
Publisher: John Wiley & Sons
ISBN: 1394166966
Category : Science
Languages : en
Pages : 356

Get Book Here

Book Description
ADVANCED MATERIALS and MANUFACTURING TECHNIQUES for BIOMEDICAL APPLICATIONS The book provides essential knowledge for the synthesis of biomedical products, development, nanomaterial properties, fabrication processes, and design techniques for different applications, as well as process design and optimization. In origin, biomaterials can come from nature or be synthesized in the laboratory with a variety of approaches that use metals, polymers, ceramic, or composite materials. They are often used or adapted for various biomedical applications. Biomaterials are commonly used in scaffolds, orthopedic, wound healing, fracture fixation, surgical sutures, artificial organ developments, pins and screws to stabilize fractures, surgical mesh, breast implants, artificial ligaments and tendons, and drug delivery systems. The sixteen chapters in Advanced Materials and Manufacturing Techniques in Biomedical Applications cover the synthesis, processing, design, manufacturing, and characterization of advanced materials; self-healing, bioinspired, nature-resourced, nanobiomaterials for biomedical applications; and manufacturing techniques such as rapid prototyping, additive manufacturing, etc. Audience The book is for engineers, technologists, and researchers working in the area of biomedical engineering and manufacturing techniques. It is also appropriate for upper-level undergraduate and graduate students.