Fundamentals Of Creep In Metals And Alloys

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Fundamentals of Creep in Metals and Alloys

Author : Michael E. Kassner
Publisher : Elsevier
Page : 295 pages
File Size : 42,7 Mb
Release : 2008-11-27
Category : Technology & Engineering
ISBN : 9780080914992

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Fundamentals of Creep in Metals and Alloys by Michael E. Kassner Pdf

Creep refers to the slow, permanent deformation of materials under external loads, or stresses. It explains the creep strength or resistance to this extension. This book is for experts in the field of strength of metals, alloys and ceramics. It explains creep behavior at the atomic or “dislocation defect level. This book has many illustrations and many references. The figure formats are uniform and consistently labeled for increased readability. This book is the second edition that updates and improves the earlier edition. Numerous line drawings with consistent format and units allow easy comparison of the behavior of a very wide range of materials Transmission electron micrographs provide direct insight into the basic microstructure of metals deforming at high temperatures Extensive literature review of about 1000 references provides an excellent overview of the field

Fundamentals of Creep and Creep-rupture in Metals

Author : Frank Garofalo
Publisher : Unknown
Page : 284 pages
File Size : 51,8 Mb
Release : 1965
Category : Technology & Engineering
ISBN : UCAL:B4531011

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Fundamentals of Creep and Creep-rupture in Metals by Frank Garofalo Pdf

High Temperature Strain of Metals and Alloys

Author : Valim Levitin
Publisher : John Wiley & Sons
Page : 180 pages
File Size : 47,5 Mb
Release : 2006-05-12
Category : Technology & Engineering
ISBN : 9783527607143

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High Temperature Strain of Metals and Alloys by Valim Levitin Pdf

Creep and fatigue are the most prevalent causes of rupture in superalloys, which are important materials for industrial usage, e.g. in engines and turbine blades in aerospace or in energy producing industries. As temperature increases, atom mobility becomes appreciable, affecting a number of metal and alloy properties. It is thus vital to find new characterization methods that allow an understanding of the fundamental physics of creep in these materials as well as in pure metals. Here, the author shows how new in situ X-ray investigations and transmission electron microscope studies lead to novel explanations of high-temperature deformation and creep in pure metals, solid solutions and superalloys. This unique approach is the first to find unequivocal and quantitative expressions for the macroscopic deformation rate by means of three groups of parameters: substructural characteristics, physical material constants and external conditions. Creep strength of the studied up-to-date single crystal superalloys is greatly increased over conventional polycrystalline superalloys. From the contents: - Macroscopic characteristics of strain at high temperatures - Experimental equipment and technique of in situ X-ray investigations - Experimental data and structural parameters in deformed metals - Subboundaries as dislocation sources and obstacles - The physical mechanism of creep and the quantitative structural model - Simulation of the parameters evolution - System of differential equations - High-temperature deformation of industrial superalloys - Single crystals of superalloys - Effect of composition, orientation and temperature on properties - Creep of some refractory metals For materials scientists, solid state physicists, solid state chemists, researchers and practitioners from industry sectors including metallurgical, mechanical, chemical and structural engineers.

Creep and High Temperature Deformation of Metals and Alloys

Author : Stefano Spigarelli,Elisabetta Gariboldi
Publisher : MDPI
Page : 212 pages
File Size : 42,9 Mb
Release : 2019-12-12
Category : Technology & Engineering
ISBN : 9783039218783

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Creep and High Temperature Deformation of Metals and Alloys by Stefano Spigarelli,Elisabetta Gariboldi Pdf

By the late 1940s, and since then, the continuous development of dislocation theories have provided the basis for correlating the macroscopic time-dependent deformation of metals and alloys—known as creep—to the time-dependent processes taking place within the metals and alloys. High-temperature deformation and stress relaxation effects have also been explained and modeled on similar bases. The knowledge of high-temperature deformation as well as its modeling in conventional or unconventional situations is becoming clearer year by year, with new contemporary and better performing high-temperature materials being constantly produced and investigated. This book includes recent contributions covering relevant topics and materials in the field in an innovative way. In the first section, contributions are related to the general description of creep deformation, damage, and ductility, while in the second section, innovative testing techniques of creep deformation are presented. The third section deals with creep in the presence of complex loading/temperature changes and environmental effects, while the last section focuses on material microstructure–creep correlations for specific material classes. The quality and potential of specific materials and microstructures, testing conditions, and modeling as addressed by specific contributions will surely inspire scientists and technicians in their own innovative approaches and studies on creep and high-temperature deformation.

Mechanical Properties and Working of Metals and Alloys

Author : Amit Bhaduri
Publisher : Springer
Page : 748 pages
File Size : 41,5 Mb
Release : 2018-05-12
Category : Technology & Engineering
ISBN : 9789811072093

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Mechanical Properties and Working of Metals and Alloys by Amit Bhaduri Pdf

This book is intended to serve as core text or handy reference on two key areas of metallic materials: (i) mechanical behavior and properties evaluated by mechanical testing; and (ii) different types of metal working or forming operations to produce useful shapes. The book consists of 16 chapters which are divided into two parts. The first part contains nine chapters which describe tension (including elastic stress – strain relation, relevant theory of plasticity, and strengthening methods), compression, hardness, bending, torsion – pure shear, impact loading, creep and stress rupture, fatigue, and fracture. The second part is composed of seven chapters and covers fundamentals of mechanical working, forging, rolling, extrusion, drawing of flat strip, round bar, and tube, deep drawing, and high-energy rate forming. The book comprises an exhaustive description of mechanical properties evaluated by testing of metals and metal working in sufficient depth and with reasonably wide coverage. The book is written in an easy-to-understand manner and includes many solved problems. More than 150 numerical problems and many multiple choice questions as exercise along with their answers have also been provided. The mathematical analyses are well elaborated without skipping any intermediate steps. Slab method of analysis or free-body equilibrium approach is used for the analytical treatment of mechanical working processes. For hot working processes, different frictional conditions (sliding, sticking and mixed sticking–sliding) have been considered to estimate the deformation loads. In addition to the slab method of analysis, this book also contains slip-line field theory, its application to the static system, and the steady state motion, Further, this book includes upper-bound theorem, and upper-bound solutions for indentation, compression, extrusion and strip drawing. The book can be used to teach graduate and undergraduate courses offered to students of mechanical, aerospace, production, manufacturing and metallurgical engineering disciplines. The book can also be used for metallurgists and practicing engineers in industry and development courses in the metallurgy and metallic manufacturing industries.

The Creep of Metals and Alloys

Author : Edwin Garnet Stanford
Publisher : Unknown
Page : 190 pages
File Size : 51,9 Mb
Release : 1949
Category : Alloys
ISBN : MINN:319510007893580

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The Creep of Metals and Alloys by Edwin Garnet Stanford Pdf

Creep of Metals and Alloys

Author : R. W. Evans,B. Wilshire
Publisher : Maney Pub
Page : 314 pages
File Size : 55,8 Mb
Release : 1985-01-01
Category : Technology & Engineering
ISBN : 0904357597

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Creep of Metals and Alloys by R. W. Evans,B. Wilshire Pdf

The text has been prepared by the leaders of a research group which, over several decades, has established a reputation for reliable experimentation and the presentation of controversial and stimulating ideas. This manuscript is no exception, beginning with a balanced introductory coverage of the subject at undergraduate level and ending with a challenging alternative to traditional theoretical and practical approaches to creep and creep fracture.

Fundamentals of Deformation and Annealing

Author : Philip B. Prangnell,Pete S. Bate
Publisher : Trans Tech Publications Ltd
Page : 670 pages
File Size : 48,6 Mb
Release : 2007-07-15
Category : Technology & Engineering
ISBN : 9783038131113

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Fundamentals of Deformation and Annealing by Philip B. Prangnell,Pete S. Bate Pdf

Volume is indexed by Thomson Reuters CPCI-S (WoS). Deformation and annealing phenomena are of great technical significance to the processing and application of materials at the industrial scale. This edited collection of peer-reviewed papers was designed as a one-off vehicle for reviewing the current understanding of the basic mechanisms and processes that control deformation and annealing in various materials, together with their modelling and simulation. Another aim was to facilitate discussion of the failings of established theories, to explore new ideas, and to identify avenues where future research is required. The present papers apply these concepts to a wide range of materials and applications; from conventional steels and light alloys to nanocrystalline gold wires and geological samples.

Fundamentals of Magnesium Alloy Metallurgy

Author : Mihriban O Pekguleryuz,Karl Kainer,A. Arslan Kaya
Publisher : Elsevier
Page : 376 pages
File Size : 45,8 Mb
Release : 2013-03-11
Category : Technology & Engineering
ISBN : 9780857097293

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Fundamentals of Magnesium Alloy Metallurgy by Mihriban O Pekguleryuz,Karl Kainer,A. Arslan Kaya Pdf

Magnesium and magnesium alloys offer a wealth of valuable properties, making them of great interest for use across a wide range of fields. This has led to extensive research focused on understanding the properties of magnesium and how these can be controlled during processing. Fundamentals of magnesium alloy metallurgy presents an authoritative overview of all aspects of magnesium alloy metallurgy, including physical metallurgy, deformation, corrosion and applications. Beginning with an introduction to the primary production of magnesium, the book goes on to discuss physical metallurgy of magnesium and thermodynamic properties of magnesium alloys. Further chapters focus on understanding precipitation processes of magnesium alloys, alloying behaviour of magnesium, and alloy design. The formation, corrosion and surface finishing of magnesium and its alloys are reviewed, before Fundamentals of magnesium alloy metallurgy concludes by exploring applications across a range of fields. Aerospace, automotive and other structural applications of magnesium are considered, followed by magnesium-based metal matrix composites and the use of magnesium in medical applications. With its distinguished editors and international team of expert contributors, Fundamentals of magnesium alloy metallurgy is a comprehensive tool for all those involved in the production and application of magnesium and its alloys, including manufacturers, welders, heat-treatment and coating companies, engineers, metallurgists, researchers, designers and scientists working with these important materials. Overviews all aspects of magnesium alloy metallurgy Discusses physical metallurgy of magnesium and thermodynamic properties of magnesium alloys Reviews the formation, corrosion and surface finishing of magnesium and its alloys

Creep in Metallic Materials

Author : Josef Čadek
Publisher : Elsevier Publishing Company
Page : 380 pages
File Size : 49,5 Mb
Release : 1988
Category : Technology & Engineering
ISBN : UOM:39015034836596

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Creep in Metallic Materials by Josef Čadek Pdf

Hardbound. The phenomenon of time-dependent plastic deformation of metallic materials under constant load at high temperatures has been documented for at least two centuries and is now termed high temperature creep. A better understanding of creep behaviour of metals and alloys is highly desirable, not only for predictions and thus more efficient exploitation of contemporary creep-resistant metallic materials, but also such an understanding may be of great help in designing new materials and their thermal and mechanical treatment.The aim of this monograph is to provide a comprehensive review of the current status of knowledge of mechanisms of high temperature creep, creep damage and creep fracture in metals and alloys. In the introductory chapters 1-6, the time dependence of creep strain, mechanical equation of state, dislocation motion in creep and dependence of creep rate on temperature, stress and some structure parameters are treated in a traditio

Physics Of Creep And Creep-Resistant Alloys

Author : F R N Nabarro,F. de Villiers
Publisher : CRC Press
Page : 350 pages
File Size : 47,7 Mb
Release : 2018-05-08
Category : Technology & Engineering
ISBN : 9781135477639

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Physics Of Creep And Creep-Resistant Alloys by F R N Nabarro,F. de Villiers Pdf

Unique in its approach, this introduction to the physics of creep concentrates on the physical principles underlying observed phenomena. As such it provides a resource for graduate students in materials science, metallurgy, mechanical engineering, physics and chemistry as well as researchers in other fields. Following a brief mathematical treatment, the authors introduce creep phenomena together with some empirical laws and observations. The mechanisms of creep and diffusion under varying experimental conditions are subsequently analysed and developed. The second half of the text considers alloying in greater detail as well as exploring the structure and properties of superalloys and stress effects in these materials.

Creep

Author : Tomasz Tański,Marek Sroka,Adam Zieliński
Publisher : BoD – Books on Demand
Page : 270 pages
File Size : 52,8 Mb
Release : 2018-01-10
Category : Technology & Engineering
ISBN : 9789535137245

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Creep by Tomasz Tański,Marek Sroka,Adam Zieliński Pdf

This book contains 12 chapters with original and innovative research studies in the issues related to the broadly defined creep effect, which concerns not only the area of construction materials but also natural phenomena. The emphasis on the discussion of a new trend of experimental creep testing, which binds the classic creep methods to seek the correlation of parameters obtained in tests, deserves particular attention. This book aims to provide the readers, including, but not limited to, students and doctoral students and also the research personnel and engineers involved in the operation of equipment and structural components as well as specialists in high-temperature creep-resisting materials, with a comprehensive review of new trends in the field of creep-exposed materials and their research methodology. The chapters of this book were developed by respected and well-known researchers from different countries.

Engineering Physics of High-Temperature Materials

Author : Nirmal K. Sinha,Shoma Sinha
Publisher : John Wiley & Sons
Page : 436 pages
File Size : 45,7 Mb
Release : 2022-02-15
Category : Technology & Engineering
ISBN : 9781119420460

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Engineering Physics of High-Temperature Materials by Nirmal K. Sinha,Shoma Sinha Pdf

ENGINEERING PHYSICS OF HIGH-TEMPERATURE MATERIALS Discover a comprehensive exploration of high temperature materials written by leading materials scientists In Engineering Physics of High-Temperature Materials: Metals, Ice, Rocks, and Ceramics distinguished researchers and authors Nirmal K. Sinha and Shoma Sinha deliver a rigorous and wide-ranging discussion of the behavior of different materials at high temperatures. The book discusses a variety of physical phenomena, from plate tectonics and polar sea ice to ice-age and intraglacial depression and the postglacial rebound of Earth’s crust, stress relaxation at high temperatures, and microstructure and crack-enhanced Elasto Delayed Elastic Viscous (EDEV) models. At a very high level, Engineering Physics of High-Temperature Materials (EPHTM) takes a multidisciplinary view of the behavior of materials at temperatures close to their melting point. The volume particularly focuses on a powerful model called the Elasto-Delayed-Elastic-Viscous (EDEV) model that can be used to study a variety of inorganic materials ranging from snow and ice, metals, including complex gas-turbine engine materials, as well as natural rocks and earth formations (tectonic processes). It demonstrates how knowledge gained in one field of study can have a strong impact on other fields. Engineering Physics of High-Temperature Materials will be of interest to a broad range of specialists, including earth scientists, volcanologists, cryospheric and interdisciplinary climate scientists, and solid-earth geophysicists. The book demonstrates that apparently dissimilar polycrystalline materials, including metals, alloys, ice, rocks, ceramics, and glassy materials, all behave in a surprisingly similar way at high temperatures. This similarity makes the information contained in the book valuable to all manner of physical scientists. Readers will also benefit from the inclusion of: A thorough introduction to the importance of a unified model of high temperature material behavior, including high temperature deformation and the strength of materials An exploration of the nature of crystalline substances for engineering applications, including basic materials classification, solid state materials, and general physical principles Discussions of forensic physical materialogy and test techniques and test systems Examinations of creep fundamentals, including rheology and rheological terminology, and phenomenological creep failure models Perfect for materials scientists, metallurgists, and glaciologists, Engineering Physics of High-Temperature Materials: Metals, Ice, Rocks, and Ceramics will also earn a place in the libraries of specialists in the nuclear, chemical, and aerospace industries with an interest in the physics and engineering of high-temperature materials.

Hot Deformation and Processing of Aluminum Alloys

Author : Hugh J. McQueen,Stefano Spigarelli,Michael E. Kassner,Enrico Evangelista
Publisher : CRC Press
Page : 596 pages
File Size : 41,8 Mb
Release : 2016-04-19
Category : Technology & Engineering
ISBN : 9781420017687

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Hot Deformation and Processing of Aluminum Alloys by Hugh J. McQueen,Stefano Spigarelli,Michael E. Kassner,Enrico Evangelista Pdf

A comprehensive treatise on the hot working of aluminum and its alloys, Hot Deformation and Processing of Aluminum Alloys details the possible microstructural developments that can occur with hot deformation of various alloys, as well as the kind of mechanical properties that can be anticipated. The authors take great care to explain and differenti