The present disclosure relates to passive magnetic bearings and to using such bearings to support a rotating shaft having a vertical axis of rotation.
Motor and generator armatures, flywheel rotors and other rotatable components are commonly supported against transverse and axial movement by mechanical bearings such as ball and roller bearings. Ball and roller bearings involve mechanical contact between bearing components and a rotating element resulting in frictional losses and wear.
Supporting a rotating shaft with a vertical axis of rotation requires a magnetic bearing that is both a rotational bearing and a thrust bearing.
A passive magnetic bearing employs eddy currents in a copper core between neodymium annular magnets to support the copper core and an associated rotating shaft. The copper core has an annular flange that is coaxial with a hollow cylinder. The hollow cylinder supports a rotating shaft. An annular iron core is coaxial with and surrounds the annular flange. Annular neodymium magnets surround the upper and lower portions of the hollow cylinder. In some embodiments a touch-down bearing is made up of an upper and a lower bearing race that are spaced away from the upper surface and lower surface of the annular flange. The core rotates over the bearing race(s) until sufficient magnetic flux is generated to support the copper core and hence the shaft. Once spinning, a magnetic field is generated in the copper core. One skilled in the art understands that higher velocity rotations of the copper core generate greater magnetic flux. In some embodiments there is a groove in the lower surface of the annular flange that is aligned with and coaxial with the lower bearing race to guide the copper core when it rides on the lower bearing race.
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These embodiments should not be construed as limiting.
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20210317873 A1 | Oct 2021 | US |
Number | Date | Country | |
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63009866 | Apr 2020 | US |