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Temperature-fatigue interaction / editors, L. Rémy and J. Petit ; SF2M.

By: Contributor(s): Series: ESIS publication ; 29.2002Edition: 1st edDescription: 1 online resource (xii, 384 pages) : illustrationsContent type:
  • text
Media type:
  • computer
Carrier type:
  • online resource
ISBN:
  • 9780080439822
  • 0080439829
  • 9780080542324
  • 0080542328
Subject(s): Genre/Form: Additional physical formats: Print version:: Temperature-fatigue interaction.LOC classification:
  • TA417.7.H55 I58 2001eb
Online resources:
Contents:
Chapter headings. Thermomechancial behaviour. Damage under isothermal loading. Damage under thermal-mechanical loading. Crack growth. Design and structures.
Action note:
  • digitized 2010 HathiTrust Digital Library committed to preserve
Summary: This volume contains a selection of peer-reviewed papers presented at the International Conference on Temperature-Fatigue Interaction, held in Paris, May 29-31, 2001, organised by the Fatigue Committee of the Socieť Fraṅaise de M̌tallurgie et de Maťriaux (SF2M), under the auspices of the European Structural Integrity Society. The conference disseminated recent research results and promoting the interaction and collaboration amongst materials scientists, mechanical engineers and design engineers. Many engineering components and structures used in the automotive, aerospace, power generation and many other industries experience cyclic mechanical loads at high temperature or temperature transients causing thermally induced stresses. The increase of operating temperature and thermal mechanical loading trigger the interaction with time-dependent phenomena such as creep and environmental effects (oxidation, corrosion). A large number of metallic materials were investigated including aluminium alloys for the automotive industry, steels and cast iron for the automotive industry and materials forming, stainless steels for power plants, titanium, composites, intermetallic alloys and nickel base superalloys for aircraft industry, polymers. Important progress was observed in testing practice for high temperature behaviour, including environment and thermo-mechanical loading as well as in observation techniques. A large problem which was emphasized is to know precisely service loading cycles under non-isothermal conditions. This was considered critical for numerous thermal fatigue problems discussed in this conference.
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This volume contains a selection of peer-reviewed papers presented at the International Conference on Temperature-Fatigue Interaction, held in Paris, May 29-31, 2001, organised by the Fatigue Committee of the Socieť Fraṅaise de M̌tallurgie et de Maťriaux (SF2M), under the auspices of the European Structural Integrity Society. The conference disseminated recent research results and promoting the interaction and collaboration amongst materials scientists, mechanical engineers and design engineers. Many engineering components and structures used in the automotive, aerospace, power generation and many other industries experience cyclic mechanical loads at high temperature or temperature transients causing thermally induced stresses. The increase of operating temperature and thermal mechanical loading trigger the interaction with time-dependent phenomena such as creep and environmental effects (oxidation, corrosion). A large number of metallic materials were investigated including aluminium alloys for the automotive industry, steels and cast iron for the automotive industry and materials forming, stainless steels for power plants, titanium, composites, intermetallic alloys and nickel base superalloys for aircraft industry, polymers. Important progress was observed in testing practice for high temperature behaviour, including environment and thermo-mechanical loading as well as in observation techniques. A large problem which was emphasized is to know precisely service loading cycles under non-isothermal conditions. This was considered critical for numerous thermal fatigue problems discussed in this conference.

Chapter headings. Thermomechancial behaviour. Damage under isothermal loading. Damage under thermal-mechanical loading. Crack growth. Design and structures.

"This volume contains 37 papers, peer-reviewed from those presented at the International Conference on Temperature-Fatigue Interaction, ninth international spring meeting organised by the Fatigue Committee of SF2M, held in Paris, France, 29-31 May 2001."

Includes bibliographical references and index.

Print version record.

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Electronic reproduction. [S.l.] : HathiTrust Digital Library, 2010. MiAaHDL

Master and use copy. Digital master created according to Benchmark for Faithful Digital Reproductions of Monographs and Serials, Version 1. Digital Library Federation, December 2002. MiAaHDL

http://purl.oclc.org/DLF/benchrepro0212

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