Claims
- 1. A magnetic circuit having low magnetic leakage comprising:
- a constant radial thickness, remanence varying axially magnetized cylindrical magnet having an axial bore therethrough with a longitudinally linearly increasing magnetic field therein; and
- a constant radial thickness, remanence varying radially magnetized cladding magnet coaxially circumscribing said cylindrical magnet.
- 2. A magnetic circuit as in claim 1 wherein:
- said cylindrical magnet has a low magnetic remanence at one end and a high magnetic remanence at the other end.
- 3. A magnetic circuit as in claim 1 wherein:
- said cladding magnet has a low magnetic remanence at one end and a high magnetic remanence at the other end.
- 4. A magnetic circuit as in claim 3 wherein:
- the low magnetic remanence at one end of said cylindrical magnet is adjacent the low magnetic remanence at one end of said cladding magnet.
- 5. A magnetic circuit as in claim 4 further comprising:
- an iris of soft magnetic material placed adjacent each end of said cylindrical magnet.
- 6. A magnetic circuit as in claim 5 further comprising:
- an axially magnetized bucking magnet adjacent said iris adjacent the high magnetic remanence at the end of said cylindrical magnet.
- 7. A magnetic circuit as in claim 6 further comprising:
- a ring-shaped bucking corner magnet adjacent said axially magnetized bucking magnet and said cylindrical magnet.
- 8. A magnetic circuit having low magnetic leakage comprising:
- a constant radial thickness remanence varying axially magnetized cylindrical magnet having an axial bore therethrough; and
- a constant radial thickness remanence varying radially magnetized cladding magnet coaxially circumscribing said cylindrical magnet including an augmenting portion of said cladding magnet magnetized in a direction augmenting the magnetic potential of the outer exterior surface of said cylindrical magnet to a magnetic potential equal to that on an outer circumferential portion between the ends of said cylindrical magnet from one end thereof to said circumferential portion thereof and a bucking portion of said cladding magnet magnetized in a direction bucking the magnetic potential of the outer exterior surface of said cylindrical magnet to a magnetic potential equal to that on said circumferential portion from said circumferential portion thereof to the other end thereof.
- 9. A magnetic circuit as in claim 8 wherein: said cylindrical magnet has a low magnetic remanence at one end, and a high magnetic remanence at the other end.
- 10. A magnet circuit as in claim 9 wherein: the low magnetic remanence at one end of said cylindrical magnet is adjacent said augmenting portion, and the high magnetic remanence at the other end of said cylindrical magnet is adjacent said bucking portion.
- 11. A magnetic circuit as in claim 10 further comprising: an iris of soft magnetic material placed adjacent each end of said cylindrical magnet.
- 12. A magnetic circuit as in claim 11 further comprising: an axially magnetized bucking magnet adjacent said iris adjacent the high magnetic remanence at the end of said cylindrical magnet; and
- an axially magnetized augmenting magnet adjacent said iris adjacent the low magnetic remanence at the other end of said cylindrical magnet.
- 13. A magnetic circuit as in claim 12 further comprising: a ring-shaped bucking corner magnet adjacent said axially magnetized bucking magnet and said cylindrical magnet; and
- a ring-shaped augmenting corner magnet adjacent said axially magnetized augmenting magnet and said cylindrical magnet.
- 14. A magnetic circuit as in claim 8 wherein:
- said circumferential portion is the axial magnetic midpoint of said cylindrical magnet.
Government Interests
This invention may be manufactured and used by or for the Government for Governmental purposes without the payment of any royalties thereon or therefor.
US Referenced Citations (4)
Foreign Referenced Citations (2)
Number |
Date |
Country |
152200 |
Nov 1979 |
JPX |
180486 |
Jun 1982 |
JPX |