Title of article
Creep mechanisms in Ti–3Al–2.5V alloy tubing deformed under closed-end internal gas pressurization Original Research Article
Author/Authors
S. Gollapudi، نويسنده , , I. Charit، نويسنده , , K.L. Murty، نويسنده ,
Issue Information
دوهفته نامه با شماره پیاپی سال 2008
Pages
14
From page
2406
To page
2419
Abstract
Creep tests were carried out on Ti–3Al–2.5V alloy tubing in the temperature range of 723–873 K under closed-end internal pressurization. The data thus obtained were analyzed to obtain the mechanistic creep parameters (stress exponent and activation energy). Transitions in creep mechanisms were noted as the stress exponent varied from a lower value of 1 through 2 to a higher value of 5 with increasing stress where the activation energy assumed values of 232 and 325 kJ mol−1, respectively. The creep mechanisms were elucidated in the light of standard creep models supported by the substructures studied by transmission electron microscopy. Newtonian viscous creep (n = 1) at lower stresses was identified to be in accordance with a slip band model named after Spingarn and Nix. Grain boundary sliding with n = 2 was noted in an intermediate stress region while climb of edge dislocations was observed to control creep at higher stresses. Microstructural observations along with parametric variations of creep rates were useful in identifying the underlying deformation mechanisms.
Keywords
Titanium alloys , Creep , Diffusion , Transmission electron microscopy , Slip band
Journal title
ACTA Materialia
Serial Year
2008
Journal title
ACTA Materialia
Record number
1143614
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