Influence of Heat Treatment on Magnetic and Damping Properties of Fe-11 at.% Al Alloys
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Published:2008-03
Issue:
Volume:137
Page:129-136
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ISSN:1662-9779
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Container-title:Solid State Phenomena
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language:
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Short-container-title:SSP
Author:
Mielczarek Agnieszka1,
Riehemann Werner1,
Sokolova Olga A.2,
Golovin Igor S.3
Affiliation:
1. Clausthal University of Technology
2. Tula State University
3. National University of Science and Technology "MISIS" (NUST MISiS)
Abstract
The influence of heat treatment on the amplitude dependence of internal friction in Fe -
11 at. % Al alloys with carbon contents in the range 0.005 - 0.2 at. % has been studied using an
inverted torsion pendulum in the temperature range 300 – 950 K and a vibrating reed apparatus at
room temperature. The specimens were annealed at 1273 K in vacuum and cooled down with
different cooling rates in order to obtain different degrees of order. It was found that ordering is
hardly avoidable in Fe - Al alloys with Al contents > 11 at. %. Ordered alloys are characterised by
lower damping capacity due to higher coercivity caused by additional pinning of magnetic domain
walls by antiphase boundaries. X-ray diffraction investigations indicate that water-cooling
suppresses ordering in Fe - 11 at. % Al alloys while cooling in air or in furnace provokes D03–type
ordering. Slowly cooled specimens are characterised by higher damping capacity due to lower
coercivity than water cooled or plastically deformed specimens. The amplitude dependent
magneto-mechanical damping was determined as the difference between amplitude dependent
damping without and with saturating magnetic field (~ 20 kA/m). Magneto-mechanical damping
was found to be proportional to the strain where the amplitude dependent damping is maximum
and reciprocal to the coercivity and saturation polarisation. Cold rolling increases the coercivity
and therefore decreases the magneto-mechanical damping. An increase of the grain size in the
investigated samples by heat treatment leads to a qualitatively expected decrease of coercivity and
therefore to an increase of magneto-mechanical damping.
Publisher
Trans Tech Publications, Ltd.
Subject
Condensed Matter Physics,General Materials Science,Atomic and Molecular Physics, and Optics
Cited by
3 articles.
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