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Magnetically Tunable Vibration Transmissibility for Polyurethane Magnetic Elastomers.

Hiroyuki EndoShunsuke KatoMayuko WatanebeTakehito KikuchiMika KawaiTetsu Mitsumata
Published in: Polymers (2018)
The effect of a weak magnetic field on vibration transmissibility was investigated for magnetic elastomers with various volume fractions of magnetic particles. Polyurethane elastomers without magnetic particles exhibited a natural frequency at 53 Hz and were insensitive to a magnetic field of 60 mT. The natural frequency for magnetic elastomers with a volume fraction of 0.23 was 115 Hz at 0 mT, and increased to 134 Hz at 60 mT. The vibration transmissibility was independent of the magnetic field. A linear relation between the natural frequency and (G/m)1/2 was observed (G: storage modulus, m: mass), indicating that the observed vibration is basically described by a simple harmonic oscillation.
Keyphrases
  • molecularly imprinted
  • high frequency
  • high resolution
  • mass spectrometry
  • tissue engineering
  • energy transfer
  • neural network