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THEORETICAL
AND EXPERIMENTAL STUDY ON GENERATION OF LONGITUDINAL GUIDED WAVES IN
CIRCULAR PIPES BASED ON MAGNETOSTRICTIVE EFFECT
Wang Yuemin
(College of Ship and Power, Naval
University of Engineering, Wuhan 430033)
Kang Yihua Wu Xinjun
(College of Mechanical Science &
Engineering, Huazhong University of Science & Technology, Wuhan 430074)
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Abstract: The modes of guided wave propagation in the circular pipes
are analyzed. The model of magnetostrictive force-generated
longitudinal guided waves in circular pipes is discussed. The
longitudinal guided waves are generated by application of
magnetostrictive force parallel to the axial direction of circular
pipes, and the magnetostrictive force not only relates with the
characteristics of detected materials, but also depends mainly on the
coupling between the set static bias magnetic field and AC (alterative
current) magnetic field. The magnetostrictive sensor generation of
longitudinal guided waves in circular pipes is designed in accordance to
the developed model, and the longitudinal guided waves are acquired in
the experiment. The experimental investigation, static bias magnetic
field and AC magnetic field-dependence of generation of longitudinal
guided waves by the magnetostrictive sensor applying different static
bias magnetic field and AC magnetic field to the circular pipes, are
carried out, respectively. The results show that there is a similar
paracurve relation between static bias magnetic field applied to the
circular pipes and the amplitude of longitudinal guided waves, which
means the amplitude of longitudinal guided waves increases initially
with increasing static bias magnetic field level, and reaches a maximum,
and then decreases with further increase in the static bias magnetic
field level. When guided waves propagating along the circular pipes,
there is a non-linear relation between AC magnetic field applied to the
circular pipes and the amplitude of longitudinal guided waves due to
guided waves multi-modes and disperse characteristics.
Key words: Magnetostrictive effect Guided wave Non-destructive
testing Circular pipes
CLC No: TM930.124
TG115.28
湖北省自然科学基金资助项目(2004ABA028). Received 20041112,
received in revised form 20050719
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