ZHAO Meng, ZOU Ji-bin, SHANG Jing, et al. Experimental facility of line magnetic fluid traveling wave pump[J]. Optics and precision engineering, 2009, 17(6): 1213-1217.
ZHAO Meng, ZOU Ji-bin, SHANG Jing, et al. Experimental facility of line magnetic fluid traveling wave pump[J]. Optics and precision engineering, 2009, 17(6): 1213-1217.DOI:
Experimental facility of line magnetic fluid traveling wave pump
The key techniques of the research on magnetic fluid traveling wave pumps are the production of traveling wave magnetic fields
the design of pump structures
the dynamic characteristics of magnetic fluid
and so on. According to the generation forms of traveling wave magnetic fields
a line magnetic fluid traveling wave pump is designed and the coupling of a travelling magnetic field with a force field in the magnetic fluid is analyzed by a decoupling method. Experiment results indicate that the magnetic fluid flux has a direct relation with the magnetic field under the effect of traveling wave magnetic field. The bigger the magnetic field is
the more the flux is
when the structure of the magnetic fluid travellig pump and the saturation magnetization of magnetic fluid are constant. The volumes of the magnetic fluid from the travelling wave pump increase from 1.9 ml to 3.1 ml
when the magnetic field intensity increases from 25 900 A/m to 40 000 A/m. In addition
the change rate of the magnetic fluid decreases with the increase of the magnetic field due to the effect of magnetic field on magnetic fluid viscosity. The bigger the saturation magnetization of the magnetic fluid is