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Load relaxation behavior of superplastic Al alloys SCIE SCOPUS

Title
Load relaxation behavior of superplastic Al alloys
Authors
Ha, TKChang, YW
Date Issued
1997-01
Publisher
TRANSTEC PUBLICATIONS LTD
Abstract
The high temperature deformation behavior of superplastic Al alloys, such as 8090 AI-Li and 7475 Al, has been studied experimentally within the framework of an internal variable theory of inelastic deformation. A simple rheological model including the grain boundary sliding (GBS) has been developed and used to interpret the plastic flow behavior of these alloys at high temperatures. A series of load relaxation tests has been carried out for fine grained specimens of superplastic Al alloys at various temperatures. The effect of grain size has also been examined. A Hall-Fetch type relation has been found between the grain size and an internal strength variable (sigma*), instead of generally used flow stress (sigma). Based on the experimental observation, a necessary condition for superplastic deformation has finally been proposed in terms of sigma* and the static friction stress for GBS (Sigma(g)) as Sigma(g) less than or equal to sigma less than or equal to sigma*.
Keywords
structural superplasticity; grain boundary sliding; Newtonian viscous flow; internal variables; load relaxation test; DEFORMATION
URI
https://oasis.postech.ac.kr/handle/2014.oak/21404
DOI
10.4028/www.scientific.net/MSF.243-245.505
ISSN
0255-5476
Article Type
Article
Citation
MATERIALS SCIENCE FORUM, vol. 243-245, page. 505 - 510, 1997-01
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