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High Temperature Component Life Assessment


High Temperature Component Life Assessment
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High Temperature Component Life Assessment


High Temperature Component Life Assessment
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Author : G.A. Webster
language : en
Publisher: Springer Science & Business Media
Release Date : 2013-03-09

High Temperature Component Life Assessment written by G.A. Webster and has been published by Springer Science & Business Media this book supported file pdf, txt, epub, kindle and other format this book has been release on 2013-03-09 with Science categories.


The aim of this book is to investigate and explain the rapid advances in the characterization of high temperature crack growth behaviour which have been made in recent years, with reference to industrial applications. Complicated mathematics has been minimized with the emphasis placed instead on finding solutions using simplified procedures without the need for complex numerical analysis.



Damage Mechanisms And Life Assessment Of High Temperature Components


Damage Mechanisms And Life Assessment Of High Temperature Components
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Author : Ramaswamy Viswanathan
language : en
Publisher: ASM International
Release Date : 1989

Damage Mechanisms And Life Assessment Of High Temperature Components written by Ramaswamy Viswanathan and has been published by ASM International this book supported file pdf, txt, epub, kindle and other format this book has been release on 1989 with Science categories.




Creep And Fracture In High Temperature Components


Creep And Fracture In High Temperature Components
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Author : European Creep Collaborative Committee
language : en
Publisher: DEStech Publications, Inc
Release Date : 2005

Creep And Fracture In High Temperature Components written by European Creep Collaborative Committee and has been published by DEStech Publications, Inc this book supported file pdf, txt, epub, kindle and other format this book has been release on 2005 with Technology & Engineering categories.


Provides information from around the world on creep in multiple high-temperature metals, alloys, and advanced materials.



Proceedings Creep Fracture In High Temperature Components


Proceedings Creep Fracture In High Temperature Components
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Author : I. A. Shibli
language : en
Publisher: DEStech Publications, Inc
Release Date : 2009

Proceedings Creep Fracture In High Temperature Components written by I. A. Shibli and has been published by DEStech Publications, Inc this book supported file pdf, txt, epub, kindle and other format this book has been release on 2009 with Technology & Engineering categories.


A compendium of European and worldwide research investigating creep, fatigue and failure behaviors in metals under high-temperature and other service stresses. It helps set the standards for coordinating creep data and for maintaining defect-free quality in high-temperature metals and metal-based weldments.



Asm Specialty Handbook


Asm Specialty Handbook
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Author : Joseph R. Davis
language : en
Publisher: ASM International
Release Date : 1997-01-01

Asm Specialty Handbook written by Joseph R. Davis and has been published by ASM International this book supported file pdf, txt, epub, kindle and other format this book has been release on 1997-01-01 with Technology & Engineering categories.


Materials covered include carbon, alloy and stainless steels; alloy cast irons; high-alloy cast steels; superalloys; titanium and titanium alloys; refractory metals and alloys; nickel-chromium and nickel-thoria alloys; structural intermetallics; structural ceramics, cermets, and cemented carbides; and carbon-composites.



Mechanical Behaviour Of Materials At High Temperature


Mechanical Behaviour Of Materials At High Temperature
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Author : C. Moura Branco
language : en
Publisher: Springer Science & Business Media
Release Date : 1996-06-30

Mechanical Behaviour Of Materials At High Temperature written by C. Moura Branco and has been published by Springer Science & Business Media this book supported file pdf, txt, epub, kindle and other format this book has been release on 1996-06-30 with Science categories.


This volume contains the edited version of lectures and selected research contributions presented at the NATO ADVANCED STUDY INSTITUTE on MECHANICAL BEHA VI OUR OF MATERIALS AT HIGH TEMPERATURE, held in Sesimbra, Portugal, 12th-22nd September 1995, and organized by 1ST-Lisbon Institute of Technology, PortugaL The Institute was attended by 88 participants, including 15 lecturers from 17 countries including five CP countries. The lecturers were leading scientists and technologists from universities, research institutions and industry. The students were mainly young PhD students and junior academic or research staff with postgraduate qualifications (MSc or PhD). Fourteen students were from the five CP countries. The students presented research papers or posters during the Institute reporting the current progress of their research projects. A total of thirty three lectures, ten research papers and fifty posters were presented. This book does not contain the poster presentations and seven research papers were selected for publication. All the sessions were very active and quite extensive discussions on scientific aspects took place during the Institute. The Advanced Study Institute provided a forum for interaction among scientists and engineers from different areas of research, and young researchers.



High Temperature Miniature Specimen Test Methods


High Temperature Miniature Specimen Test Methods
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Author : Wei Sun
language : en
Publisher: Elsevier
Release Date : 2023-10-28

High Temperature Miniature Specimen Test Methods written by Wei Sun and has been published by Elsevier this book supported file pdf, txt, epub, kindle and other format this book has been release on 2023-10-28 with Technology & Engineering categories.


High Temperature Miniature Specimen Test Methods, for the first time in book format, focuses on a comprehensive and thorough introduction to a range of high temperature, miniaturized test methods at elevated temperatures which are used to obtain "bulk creep or fatigue properties from a small volume of material. Complicated mathematics and modelling are not involved. It is intended to be of use to a wide range of audience of engineers (e.g. designers, manufacturers, metallurgists, stress analysts), researchers (e.g. materials scientists) and students (undergraduate and postgraduate) in the field of high-temperature material and structural integrity assessment. Specific novel features of the book include 1] theoretical basis of each test method; 2], data interpretation method of each test method; and 3] specific application of each test method. - Provides the theoretical basis of each test method - Includes the data interpretation method of each test method - Presents specific applications and the limitations of each test method, along with opportunities for future developments



Component Reliability Under Creep Fatigue Conditions


Component Reliability Under Creep Fatigue Conditions
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Author : Janos Ginsztler
language : en
Publisher: Springer
Release Date : 2014-05-04

Component Reliability Under Creep Fatigue Conditions written by Janos Ginsztler and has been published by Springer this book supported file pdf, txt, epub, kindle and other format this book has been release on 2014-05-04 with Technology & Engineering categories.


Failure prevention, residual life assessment and life extension of materials in components operating at high temperatures are becoming increasingly important problems in the modern power plant industry. These problems are covered, and industrial examples will be introduced to illustrate the applications of those subjects covered using the results from service records.



Engineering Physics Of High Temperature Materials


Engineering Physics Of High Temperature Materials
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Author : Nirmal K. Sinha
language : en
Publisher: John Wiley & Sons
Release Date : 2022-03-29

Engineering Physics Of High Temperature Materials written by Nirmal K. Sinha and has been published by John Wiley & Sons this book supported file pdf, txt, epub, kindle and other format this book has been release on 2022-03-29 with Technology & Engineering categories.


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.



Advances In Fracture Research


Advances In Fracture Research
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Author : B.L. Karihaloo
language : en
Publisher: Elsevier
Release Date : 2012-12-02

Advances In Fracture Research written by B.L. Karihaloo and has been published by Elsevier this book supported file pdf, txt, epub, kindle and other format this book has been release on 2012-12-02 with Technology & Engineering categories.


Fracture is a major cause of failure in metallic and non-metallic materials and structures. An understanding of the micro- and macro- mechanisms of fracture enables materials scientists to develop materials with high fracture resistance, which in turn helps engineers and designers to ensure the soundness and integrity of structures made from these materials.The International Congress on Fracture is held every four years and is an occasion to take stock of the major achievements in the broad field of fracture, to honour those who have made lasting contributions to this field, and to reflect on the future directions.ICF9 is published in six volumes covering the areas of:-- Failure Analysis, Remaining Life Assessment, Life Extension and Repair- Failure of Multiphase and Non-Metallic Materials- Fatigue of Metallic and Non-Metallic Materials and Structures- Theoretical and Computational Fracture Mechanics and New Directions- Testing and Characterization Methods, and Interfacial Fracture Mechanics- High Strain Rate Fracture and Impact Mechanics.