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Details of Grant 

EPSRC Reference: GR/M21232/01
Title: TOWARDS A DEFORMATION AND LIFING METHODOLOGY FOR THERMOMECHANICAL FATIGUE OF NI BASE ALLOYS
Principal Investigator: Knowles, Dr D
Other Investigators:
Researcher Co-Investigators:
Project Partners:
Pre Nexus Migration
Department: Materials Science & Metallurgy
Organisation: University of Cambridge
Scheme: Standard Research (Pre-FEC)
Starts: 18 January 1999 Ends: 17 June 2002 Value (£): 222,380
EPSRC Research Topic Classifications:
Materials Characterisation
EPSRC Industrial Sector Classifications:
Aerospace, Defence and Marine
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Panel History:  
Summary on Grant Application Form
Much progress has been made in the development of constitutive equations to represent the behaviour of materials under cycle loading conditions at high temperatures. These equations have generally been based around isothermal conditions. In many applications, however, components are subject to combined cycles of temperatures and stress or strain, where the results of such isothermal models are inadequate, because they fail to identify correctly the interaction between modes and damage mechanisms. Engineering components are often subjected to multiaxial stress states which affect both deformation and damage failure. Our aim is to generate multiaxial constitutive equations to describe the stress-strain response, under TMF conditions, of a commercial nickel base polycrystalline alloy within a continuum damage framework which will immediately lend itself to a lifting methodology and to incorporation in finite element routines. This work will increase the accuracy of stress-strain determination for this material and their predicted life under typical service conditions. In order to generate the constitutive equations and verify the lifetime predictions, a reliable materials property database is essential. A large portion of this information and further material will be supplied by Rolls-Royce.
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Organisation Website: http://www.cam.ac.uk