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Design of a Real-Time Adaptively Tuned Dynamic Vibration Absorber with a Variable Stiffness Property Using Magnetorheological Elastomer
by
Komatsuzaki, Toshihiko
, Iwata, Yoshio
in
Composite materials
/ Dynamical systems
/ Dynamics
/ Elastomers
/ Engineering design
/ Frequency ranges
/ Magnetic fields
/ Methods
/ Property values
/ Stiffness
/ Studies
/ Vibration
2015
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Design of a Real-Time Adaptively Tuned Dynamic Vibration Absorber with a Variable Stiffness Property Using Magnetorheological Elastomer
by
Komatsuzaki, Toshihiko
, Iwata, Yoshio
in
Composite materials
/ Dynamical systems
/ Dynamics
/ Elastomers
/ Engineering design
/ Frequency ranges
/ Magnetic fields
/ Methods
/ Property values
/ Stiffness
/ Studies
/ Vibration
2015
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Do you wish to request the book?
Design of a Real-Time Adaptively Tuned Dynamic Vibration Absorber with a Variable Stiffness Property Using Magnetorheological Elastomer
by
Komatsuzaki, Toshihiko
, Iwata, Yoshio
in
Composite materials
/ Dynamical systems
/ Dynamics
/ Elastomers
/ Engineering design
/ Frequency ranges
/ Magnetic fields
/ Methods
/ Property values
/ Stiffness
/ Studies
/ Vibration
2015
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Design of a Real-Time Adaptively Tuned Dynamic Vibration Absorber with a Variable Stiffness Property Using Magnetorheological Elastomer
Journal Article
Design of a Real-Time Adaptively Tuned Dynamic Vibration Absorber with a Variable Stiffness Property Using Magnetorheological Elastomer
2015
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Overview
An elastomer composite with controllable stiffness, known as a magnetorheological elastomer (MRE), is used in a dynamic vibration absorber whose natural frequency is tuned adaptively to the disturbance frequency through the application of an external magnetic field. The field-dependent property test of the fabricated MRE sample shows that the stiffness changes by more than six times compared to the baseline property value at a 40% iron powder volume concentration. The MRE is then used to fabricate a frequency-tunable dynamic absorber for mitigating transient vibrations of a one-degree-of-freedom system. Investigations show that the proposed absorber outperforms a conventional passive-type absorber throughout the tunable frequency range.
Publisher
Hindawi Publishing Corporation,John Wiley & Sons, Inc,Wiley
Subject
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