Published August 1, 1983 | Version v1
Journal article

Diffusion-induced quadrupole relaxation of 27Al nuclei in dilute Al-Ti, Al-Cr, Al-Mn, and Al-Cu alloys at high temperatures

  • 1. Dept. of Materials Science, Research, Engineering and Prime Contracting Centre of the Hungarian Aluminium Corporation, Budapest (Hungary)
  • 2. Orvostudomanyi Egyetem, Debrecen (Hungary)
  • 3. Hungarian Academy of Sciences, Budapest. Central Research Inst. for Physics

Description

The temperature dependence of the laboratory frame spin-lattice relaxation time of 27Al nuclei is measured in 5N Al and in dilute Al-Ti, Al-Cr, Al-Mn, and Al-Cu alloys at 5.7 and 9.7 MHz resonance frequencies. The relaxation in pure aluminium is found to be purely due to the conduction electrons. An excess T1-relaxation contribution is detected in all Al-3d alloys investigated above 670 K. The excess relaxation rate is proportional to the impurity content and the temperature dependence of the excess contribution is of Arrhenius-type with an activation energy of (1.3 +- 0.3) eV for all of the investigated alloys. The relaxation contribution is found to be quadrupolar in origin and is caused by the relative diffusional jumps of solute atoms and Al atoms relatively far from the impurity. (author)

Additional details

Publishing Information

Journal Title
Phys. Status Solidi B
Journal Volume
118
Journal Issue
2
Series
Phys. Status Solidi B.
Journal Page Range
835-842
ISSN
0370-1972