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Elevated temperature effects on fatigue and fracture

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Published by ASTM in West Conshohocken, PA .
Written in English


  • Fracture mechanics,
  • Materials -- Fatigue -- Effect of temperature on

Book details:

Edition Notes

StatementRobert S. Piascik, Richard P. Ganbloff, and Ashok Saxena, editors.
SeriesSTP ;, 1297, ASTM special technical publication ;, 1297.
ContributionsPiascik, Robert S., Gangloff, R. P., Saxena, A., ASTM Committee E-8 on Fatigue and Fracture., National Symposium on Fatigue and Fracture Mechanics (27th : 1995 : Williamsburg, Va.)
LC ClassificationsTA409 .E45 1997
The Physical Object
Paginationx, 224 p. :
Number of Pages224
ID Numbers
Open LibraryOL1011454M
ISBN 100803124139
LC Control Number96052047

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Elevated temperature effects on fatigue and fracture. West Conshohocken, PA: ASTM, (DLC) (OCoLC) Material Type: Document, Internet resource: Document Type: Internet Resource, Computer File: All Authors / Contributors: Robert S Piascik; R P Gangloff; A Saxena; ASTM Committee E-8 on Fatigue and Fracture.; ASTM International. OXIDE WEDGING EFFECTS ON NEAR THRESHOLD FATIGUE CRACK GROWTH AT ELEVATED TEMPERATURE R. Yuuki, H. Kitagawa and Y. Miki Institute of Industrial Science, University of Tokyo, , Roppongi 7 chôme, Minato-ku, Tokyo , Japan ABSTRACT RECENTLY linear fracture mechanics has been successfully applied to the evaluation of the fatigue crack growth in the elastic Author: R. Yuuki, H. Kitagawa, Y. Miki. However, a universal theory to characterize quantitatively the temperature effect on fatigue has yet to be established, and such a theory that applies to all materials over a broad temperature range may never be established due to the complexity of the topic and significant difference of applications. A preliminary investigation has been made of the effect of elevated temperature on the fatigue of L aluminium alloy structural specimens. Fatigue tests were made in fluctuating tension on notched and lug specimens at constant temperatures in the range 20°C to °C for periods up to hr.

Temperature Effects on the Strainrange Partitioning Approach to failure decarburization deformation dislocation ductility effect elastic elevated temperature equation experimental Fatigue at Elevated fatigue behavior fatigue crack growth fatigue damage fatigue materials fatigue tests fracture mechanics frequency gage grain boundary heat. Suggested Citation:"References."National Research Council. Accelerated Aging of Materials and Structures: The Effects of Long-Term Elevated-Temperature Exposure. T1 - Effects of extended overaging on fracture and fatigue of particulate reinforced aluminum alloy composites. AU - Liu, G. AU - Shang, Jian Ku. PY - Y1 - N2 - Metal matrix composites are being considered for many elevated temperature applications where the matrix microstructure is likely to change with : G. Liu, Jian Ku Shang. This book emphasizes the physical and practical aspects of fatigue and fracture. It covers mechanical properties of materials, differences between ductile and brittle fractures, fracture mechanics, the basics of fatigue, structural joints, high temperature failures, wear, environmentally-induced failures, and steps in the failure analysis process.

Practical applications and examples of fracture control in weldments, process piping, aircraft systems, and high-temperature crack growth and thermos-mechanical fatigue are also included. For information on the print version of Vol ISBN , follow this link. Download PDF Elevated book full free. Elevated available for download and read online in other formats. Elevated Temperature Effects on Fatigue and Fracture. ASTM Committee E-8 on Fatigue and Fracture — Technology & Engineering. Author. L. Rémy, M. Geuffrard, A. Alam, A. Köster and E. Fleury, Effects of microstructure in high temperature fatigue: Lifetime to crack initiation of a single crystal superalloy in high temperature low cycle fatigue, International Journal of Fatigue, 57, (37), ().Cited by: An overview of temperature and environmental effects of fatigue is provided and room temperature environmental effects are examined, taking into account corrosion fatigue crack propagation, surface reactions and fatigue crack growth, and the determination of prefracture damage and failure prediction in corrosion-fatigued AlT4 by X-ray diffraction methods.