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Magnetic fluids based on La0.77Sr0.23Mn1 − y Fe y O3 nanoparticles and aqua solution of agarose have been prepared.
To determine the heating efficiency, magnetic fluids based on synthesized nanoparticles and 0.1% aqueous agarose solution were prepared.
Fig. 7 Temperature vs heating time dependences for magnetic fluids based on La0.77Sr0.23Mn1 − y Fe y O3 nanoparticles.
The influence mechanisms of temperature on the band gap properties of the magnetic fluids based photonic crystals are elaborated.
Magnetic fluids based on synthesized La0.77Sr0.23Mn1 − y Fe y O3 (y = 0 0.1) nanoparticles and aqua solution of agarose were prepared according to [19].
Representative T fluid dependences for magnetic fluids based on La0.7−x Nd x Sr0.3MnO3 nanoparticles with x = 0.00 and 0.04 are shown in the insets to Fig. 5.
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Strong retraction forces reaching 6 N maximum were obtained by magnetic fluid based on dispersion of SS-μPs.
The main advantage of the use of magnetic fluids as lubricant is based on the considerable reduction of the maintenance for the lubricant supply, because the lubricant is prevented from leaving the contact zone of the tribological system.
And the magnetic fluid seal designed based on the optimum parameters shows good performance and long life for sealing lubricating oil.
Novel magnetic field sensor based on magnetic fluids infiltrated dual-core Photonic Crystal Fibers (PCFs) is proposed in this paper.
A dual-parameter sensor based on magnetic fluids (MF) infiltrated Photonic Crystal Fibers (PCFs) is proposed and its sensing performances have been studied numerically by the finite-element method (FEM).
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