Inelastic Deformation and Fatigue Damage in Metals at High Homologous Temperatures

Inelastic Deformation and Fatigue Damage in Metals at High Homologous Temperatures
Author: James Robert Wilcox
Publsiher: Unknown
Total Pages: 646
Release: 1990
Genre: Electronic Book
ISBN: CORNELL:31924051566838

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Fatigue and Durability of Metals at High Temperatures

Fatigue and Durability of Metals at High Temperatures
Author: S. S. Manson,Gary R. Halford
Publsiher: ASM International
Total Pages: 277
Release: 2009
Genre: Science
ISBN: 9781615030545

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From concept to application, this book describes the method of strain-range partitioning for analyzing time-dependent fatigue. Creep (time-dependent) deformation is first introduced for monotonic and cyclic loading. Multiple chapters then discuss strain-range partitioning in details for multi-axial loading conditions and how different loading permutations can lead to different micro-mechanistic effects. Notably, the total-strain method of strain-range partitioning (SRP) is described, which is a methodology that sees use in several industries. Examples from aerospace illustrate applications, and methods for predicting time-dependent metal fatigue are critiqued.

A Damage Integral Approach for Low cycle Isothermal and Thermal Fatigue

A Damage Integral Approach for Low cycle Isothermal and Thermal Fatigue
Author: Ravichandran Subrahmanyan
Publsiher: Unknown
Total Pages: 658
Release: 1990
Genre: Electronic Book
ISBN: CORNELL:31924059366694

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Metal Plasticity and Fatigue at High Temperature

Metal Plasticity and Fatigue at High Temperature
Author: Denis Benasciutti,Luciano Moro,Jelena Srnec Novak
Publsiher: MDPI
Total Pages: 220
Release: 2020-05-20
Genre: Technology & Engineering
ISBN: 9783039287703

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In several industrial fields (such as automotive, steelmaking, aerospace, and fire protection systems) metals need to withstand a combination of cyclic loadings and high temperatures. In this condition, they usually exhibit an amount—more or less pronounced—of plastic deformation, often accompanied by creep or stress-relaxation phenomena. Plastic deformation under the action of cyclic loadings may cause fatigue cracks to appear, eventually leading to failures after a few cycles. In estimating the material strength under such loading conditions, the high-temperature material behavior needs to be considered against cyclic loading and creep, the experimental strength to isothermal/non-isothermal cyclic loadings and, not least of all, the choice and experimental calibration of numerical material models and the selection of the most comprehensive design approach. This book is a series of recent scientific contributions addressing several topics in the field of experimental characterization and physical-based modeling of material behavior and design methods against high-temperature loadings, with emphasis on the correlation between microstructure and strength. Several material types are considered, from stainless steel, aluminum alloys, Ni-based superalloys, spheroidal graphite iron, and copper alloys. The quality of scientific contributions in this book can assist scholars and scientists with their research in the field of metal plasticity, creep, and low-cycle fatigue.

Metals Abstracts

Metals Abstracts
Author: Anonim
Publsiher: Unknown
Total Pages: 730
Release: 1996
Genre: Metallurgy
ISBN: UOM:39015036317850

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From Creep Damage Mechanics to Homogenization Methods

From Creep Damage Mechanics to Homogenization Methods
Author: Holm Altenbach,Tetsuya Matsuda,Dai Okumura
Publsiher: Springer
Total Pages: 601
Release: 2015-06-03
Genre: Science
ISBN: 9783319194400

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This volume presents a collection of contributions on materials modeling, which were written to celebrate the 65th birthday of Prof. Nobutada Ohno. The book follows Prof. Ohno’s scientific topics, starting with creep damage problems and ending with homogenization methods.

High Temperature Fatigue

High Temperature Fatigue
Author: R.P. Skelton
Publsiher: Springer Science & Business Media
Total Pages: 330
Release: 2012-12-06
Genre: Technology & Engineering
ISBN: 9789400934535

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About 35 years ago, thermal fatigue was identified as an important phenomenon which limited the lifetime of high temperature plant. In the intervening years many investigations have been carried out, primarily to give guidance on likely endurance (especially in the presence of time dependent deformation) but latterly, with the introduction of sophisticated testing machines, to provide knowledge of the underlying mechanisms of failure. A previous edited book (Fatigue at High Temperature, Elsevier Applied Science Publishers, 1983) summarised the state-of-the-art of high temperature fatigue testing and examined the factors influencing life, such as stress state, environment and microstructural effects. It also considered, in some detail, cyclic crack growth as a more rigorous approach to life limitation. The aim of the present volume (which in style and format follows exactly the same lines as its predecessor) is once again to pursue the desire to translate detailed laboratory knowledge into engineering design and assessment. There is, for example, a need to consider the limitations of the laboratory specimen and its relationship with engineering features. Many design procedures still rely on a simple endurance approach based on failure of a smooth specimen, and this is taken to indicate crack initiation in the component. In this volume, therefore, crack propagation is covered only incidentally, emphasis being placed instead on basic cyclic stress strain properties, non-isothermal behaviour, metallography, failure criteria and the need for agreed testing procedures.

Thermo mechanical Fatigue Behavior of Materials

Thermo mechanical Fatigue Behavior of Materials
Author: Huseyin Sehitoglu,Hans J. Maier
Publsiher: ASTM International
Total Pages: 339
Release: 2000
Genre: Alloys
ISBN: 9780803128538

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