High Temperature Creep-fatigue
Author: Ryuichi Ohtani
Publisher:
Published: 1988
Total Pages: 304
ISBN-13:
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Author: Ryuichi Ohtani
Publisher:
Published: 1988
Total Pages: 304
ISBN-13:
DOWNLOAD EBOOKAuthor: Stefano Spigarelli
Publisher: MDPI
Published: 2019-12-12
Total Pages: 212
ISBN-13: 3039218786
DOWNLOAD EBOOKBy 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.
Author:
Publisher:
Published: 1974
Total Pages: 1174
ISBN-13:
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Publisher:
Published: 1994
Total Pages: 836
ISBN-13:
DOWNLOAD EBOOKAuthor: Ian Milne
Publisher: Elsevier
Published: 2003-07-25
Total Pages: 4647
ISBN-13: 0080490735
DOWNLOAD EBOOKThe aim of this major reference work is to provide a first point of entry to the literature for the researchers in any field relating to structural integrity in the form of a definitive research/reference tool which links the various sub-disciplines that comprise the whole of structural integrity. Special emphasis will be given to the interaction between mechanics and materials and structural integrity applications. Because of the interdisciplinary and applied nature of the work, it will be of interest to mechanical engineers and materials scientists from both academic and industrial backgrounds including bioengineering, interface engineering and nanotechnology. The scope of this work encompasses, but is not restricted to: fracture mechanics, fatigue, creep, materials, dynamics, environmental degradation, numerical methods, failure mechanisms and damage mechanics, interfacial fracture and nano-technology, structural analysis, surface behaviour and heart valves. The structures under consideration include: pressure vessels and piping, off-shore structures, gas installations and pipelines, chemical plants, aircraft, railways, bridges, plates and shells, electronic circuits, interfaces, nanotechnology, artificial organs, biomaterial prostheses, cast structures, mining... and more. Case studies will form an integral part of the work.
Author: United States. Energy Research and Development Administration
Publisher:
Published: 1977
Total Pages: 958
ISBN-13:
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Publisher:
Published: 1977
Total Pages: 640
ISBN-13:
DOWNLOAD EBOOKAuthor: United States. Energy Research and Development Administration. Technical Information Center
Publisher:
Published: 1977
Total Pages: 1680
ISBN-13:
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Publisher:
Published: 1986
Total Pages: 504
ISBN-13:
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Publisher:
Published: 1989
Total Pages: 796
ISBN-13:
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