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Please use this identifier to cite or link to this item: http://repository.iitr.ac.in/handle/123456789/24111
Title: Stress relaxation behavior of an aluminium magnesium silicon alloy in different temper condition
Authors: Mishra, S.
Yadava M.
Kulkarni K.N.
Gurao N.P.
Published in: Mechanics of Materials
Abstract: In the present investigation, stress relaxation tests were carried out on an aluminium magnesium silicon alloy to determine rate controlling mechanism in different temper conditions. Single and multiple relaxation tests were carried out to determine apparent and physical activation volume. It was found that in the presence of solutes and incoherent precipitates, dislocation-dislocation interaction is the rate controlling mechanism, whereas dislocation-precipitate interaction is the rate controlling mechanism in the presence of semi-coherent precipitates. Moreover, the nature of deformation was found to be more viscous (higher strain rate sensitivity) in the presence of semi-coherent precipitates compared to other microstructural features (solutes, incoherent precipitates). Special emphasis is placed upon understanding exhaustion rate of mobile dislocation density during relaxation period. It was found that the exhaustion rate of mobile dislocation density is negligible in the presence of incoherent precipitates, whereas a significant reduction in mobile dislocation density was observed in the presence of solutes and semi-coherent precipitates. Furthermore, thermal and athermal components of the flow stress were determined to develop a comprehensive understanding regarding deformation behavior in different temper conditions. © 2018
Citation: Mechanics of Materials, 125: 80-93
URI: https://doi.org/10.1016/j.mechmat.2018.07.010
http://repository.iitr.ac.in/handle/123456789/24111
Issue Date: 2018
Publisher: Elsevier B.V.
Keywords: Activation volume
Effective stress
Mobile dislocation density
Strain rate sensitivity
Stress relaxation test
ISSN: 1676636
Author Scopus IDs: 55845419500
24781364600
15923290800
23987662000
Author Affiliations: Mishra, S., Department of Materials Science and Engineering, Indian Institute of Technology Kanpur, KalyanpurKanpur 208016, India
Yadava, M., Department of Materials Science and Engineering, Indian Institute of Technology Kanpur, KalyanpurKanpur 208016, India
Kulkarni, K.N., Department of Materials Science and Engineering, Indian Institute of Technology Kanpur, KalyanpurKanpur 208016, India
Gurao, N.P., Department of Materials Science and Engineering, Indian Institute of Technology Kanpur, KalyanpurKanpur 208016, India
Corresponding Author: Gurao, N.P.; Department of Materials Science and Engineering, Kalyanpur, India; email: npgurao@iitk.ac.in
Appears in Collections:Journal Publications [MT]

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