Trabalho apresentado em evento
Diffusion of Interstitial Solutes in Nb-46wt% Ti Alloys Measured by Mechanical Spectroscopy
Fecha
2012-01-01Registro en:
Diffusion In Solids and Liquids Vii. Stafa-zurich: Trans Tech Publications Ltd, v. 326-328, p. 708-712, 2012.
1012-0386
10.4028/www.scientific.net/DDF.326-328.708
WOS:000309370400120
2949983867418338
0000-0002-3336-309X
Autor
Universidade Estadual Paulista (Unesp)
Resumen
The mechanical properties of metals with a body-centered cubic (bcc) structure, such as Nb, Ta, V, and their alloys, are modified with the introduction of interstitial impurities, such as O, N, C, or H. These metals can dissolve great amounts of O and N, for example, to form solid solutions. The interstitial solute atoms (ISA) in metals with a bcc structure occupy octahedral sites and cause local distortion with tetragonal symmetry. So ISA in these metals forms an elastic dipole that can align along one of the three cubic axis of the crystal. In the present paper, the torsion pendulum technique was employed for the investigation of various interactions among the metallic matrix and different interstitial solutes in the Nb-46wt%Ti alloy. From the relaxation spectra, we obtained the diffusion coefficients, pre-exponential factors, and activation energies for nitrogen in the Nb-46wt%Ti alloy.