Patent · US11031166B2 · B2 · US
Electromagnet-switchable permanent magnet device
- (11) Publication number
- US11031166B2
- (21) Application number
- 16/618,690
- (22) Filing date
- 2018-06-08
- (30) Priority date
- 2017-06-08
- (43) Publication date
- 2021-06-08
- (45) Date of grant
- 2021-06-08
- (51) IPC
- H01F 7/02; H01F 7/04; H01F 7/17; H01F 7/20
- (52) CPC
- (73) Assignee
- MAGSWITCH TECH WORLDWIDE PTY LTD
- (72) Inventors
- MORTON DAVID H; WHITT THOMAS R; REED MICHAEL H; BLANCHARD MICHAEL C
- (54) Title
- Electromagnet-switchable permanent magnet device
- (57) Abstract
A switchable permanent magnetic unit is disclosed. The unit comprises: a housing, first and second permanent magnets, and a conductive coil. The first magnet is mounted within the housing and the second magnet is rotatable between first and second positions and mounted within the housing in a stacked relationship with the first magnet. The unit generates a first level of magnetic flux at a workpiece contact interface when the second magnet is in the first position and a second level of magnetic flux at the interface when the second magnet is in the second position, the second level being greater than the first level. The conductive coil is arranged about the second magnet and generates a magnetic field. A component of the conductive coil's magnetic field is directed from S to N along the second magnet's N-S pole pair when the second magnet is in the first position.
- Full text
- View on Google Patents
Claims (21)
- A switchable permanent magnetic unit for magnetically coupling to a ferromagnetic workpiece, the magnetic unit comprising: a housing; a first permanent magnet mounted within the housing and having an active N-S pole pair; a second permanent magnet rotatably mounted within the housing in a stacked relationship with the first permanent magnet and having an active N-S pole pair, the second permanent magnet being rotatable between a first position and a second position, the switchable permanent magnetic unit having a first level of magnetic flux available to the ferromagnetic workpiece at a workpiece contact interface of the switchable permanent magnetic unit when the second permanent magnet is in the first position and having a second level of magnetic flux available to the ferromagnetic workpiece at the workpiece contact interface when the second permanent magnet is in the second position, the second level being greater than the first level; and at least one conductive coil arranged about the second permanent magnet and configured to generate a magnetic field in response to a current being transmitted through the at least one conductive coil, wherein a component of the conductive coil's magnetic field is directed from S to N along the active N-S pole pair of the second permanent magnet when the second permanent magnet is in the first position.
- The switchable permanent magnetic unit of claim 1, further comprising a means to hold the second permanent magnet in the second position.
- The switchable permanent magnetic unit of claim 1, further comprising a rotation limiter configured to hold the second permanent magnet in the second position.
- The switchable permanent magnetic unit of claim 1, the at least one conductive coil being arranged about the first permanent magnet and the second permanent magnet.
- The switchable permanent magnetic unit of claim 1, the conductive coil being arranged about an exterior face of the housing.
- The switchable permanent magnetic unit of claim 1, the conductive coil being disposed within the housing and about an exterior face of the second permanent magnet.
- The switchable permanent magnetic unit of claim 1, the active N-S pole pair of the first permanent magnet comprising more than one active N-S pole pair and the active N-S pole pair of the second permanent magnet comprising more than one active N-S pole pair.
- The switchable permanent magnetic unit of claim 1, further comprising a power supply configured to supply current to the conductive coil for generating the conductive coil's magnetic field.
- The switchable permanent magnetic unit of claim 1, wherein the component directed from S to N along the N-S pole pair of the second permanent magnet's N-S pole pair comprises all of the conductive coil's magnetic field.
- The switchable permanent magnetic unit of claim 1, wherein the housing is a two-piece housing.
- The switchable permanent magnetic unit of claim 1, wherein the housing is a single-piece housing.
- A method of manufacturing a switchable permanent magnetic unit, the switchable permanent magnetic unit configured to magnetically couple to a ferromagnetic workpiece at a workpiece contact interface of the switchable permanent magnetic unit, the method comprising: mounting a first permanent magnet in a housing, the first permanent magnet having an active N-S pole pair; mounting a second permanent magnet in a stacked relationship with the first permanent magnet within the housing, the second permanent magnet having an active N-S pole pair, the second permanent magnet being rotatable relative to the first permanent magnet between a first position and a second position, the switchable permanent magnetic unit having a first level of magnetic flux available to the ferromagnetic workpiece at the workpiece contact interface when the second permanent magnet is in the first position and having a second level of magnetic flux available to the ferromagnetic workpiece at the workpiece contact interface when the second permanent magnet is in the second position, the second level being greater than the first level; and arranging at least one conductive coil about the second permanent magnet, the at least one conductive coil configured to generate a magnetic field in response to a current being transmitted through the conductive coil, a component of the magnetic field being directed from S to N along the active N-S pole pair of the second permanent magnet when the second permanent magnet is in the first position.
- The method of claim 12, the at least one conductive coil being arranged about an exterior face of the housing.
- The method of claim 12, the at least one conductive coil being arranged within the housing and about an exterior face of the second permanent magnet.
- The method of claim 12, the at least one conductive coil being arranged about the first permanent magnet and the second permanent magnet.
- The method of claim 12, further comprising including a means configured to hold the second permanent magnet in the second position.
- The method of claim 12, further comprising including a rotation limiter configured to limit rotation of the second permanent magnet within a set rotational range with respect to the first permanent magnet.
- The method of claim 12, wherein at least one of: the first permanent magnet and the second permanent comprise a plurality of permanent magnets.
- The method of claim 12, further comprising coupling a power supply to the conductive coil, the power supply being configured to supply current to the conductive coil for inducing the conductive coil's magnetic field.
- The method of claim 12, wherein the housing is a two-piece housing.
- The method of claim 12, wherein the housing is a single-piece housing.
Description
The present disclosure relates to magnetic devices. More specifically, the present disclosure relates to switchable magnetic devices that can be switched between magnetically attractive “on” states and non-attractive “off” states.
Switchable magnetic devices may be used to magnetically couple the magnetic device to one or more ferromagnetic work pieces. Switchable magnetic devices may include one or more magnet(s) that is (are) rotatable relative to one or more stationary magnet(s), in order to generate and shunt a magnetic field. The switchable magnet device may be attached in a removable manner, via switching the magnet device between an “on” state and an “off” state, to a ferromagnetic object (work piece), such as for object lifting operations, material handling, material holding, magnetically latching or coupling objects to one another, amongst a plethora of application fields.
Example embodiments of disclosure provided herein include the following. In an exemplary embodiment of the present disclosure, A switchable permanent magnetic unit for magnetically coupling to a ferromagnetic workpiece is provided.
Citations (92)
- CN101356597A
- CN201689754U
- CN2179359Y
- DE202016006696U1
- EP1419034B1
- EP1425763A1
- EP2535307B1
- EP2611569A1
- EP3100288B1
- EP3460411A1
- GB695130A
- JP2608002B2
- JP5798208B2
- KR20030007387A
- US2004239460A1
- US2005012579A1
- US2010201468A1
- US2010301839A1
- US2011248806A1
- US2013285399A1
- US2013320686A1
- US2014055069A1
- US2014132254A1
- US2015035632A1
- US2016187208A1
- US2016289046A1
- US2017232605A1
- US2018111237A1
- US2018193899A1
- US2018311795A1
- US2018315563A1
- US2021031335A1
- US2863550A
- US2947429A
- US3089064A
- US3316514A
- US3355209A
- US3452310A
- US3646669A
- US3895270A
- US4314219A
- US4384313A
- US4465993A
- US4610580A
- US4639170A
- US4921292A
- US4956625A
- US5525950A
- US5794497A
- US6076873A
- US6104270A
- US6160697A
- US6331810B1
- US6489871B1
- US6573817B2
- US6636153B1
- US6663154B2
- US6707360B2
- US7012495B2
- US7049919B2
- US7148777B2
- US7161451B2
- US7396057B2
- US8031038B2
- US8183965B2
- US8256098B2
- US8350663B1
- US8604900B2
- US8878639B2
- US8907754B2
- US8934210B1
- US9164154B2
- US9202616B2
- US9232976B2
- US9242367B2
- US9453769B2
- US9484137B2
- US9589715B2
- US9818522B2
- WO03009972A2
- WO03019583A1
- WO2009000008A1
- WO2010020006A1
- WO2010135788A1
- WO2012029073A1
- WO2012160262A1
- WO2014033757A1
- WO2015033851A1
- WO2015114214A1
- WO2016162419A1
- WO2018200948A1
- WO2018227140A1
Record as JSON
{
"publication_number": "US11031166B2",
"country": "US",
"kind": "B2",
"title": "Electromagnet-switchable permanent magnet device",
"abstract": "A switchable permanent magnetic unit is disclosed. The unit comprises: a housing, first and second permanent magnets, and a conductive coil. The first magnet is mounted within the housing and the second magnet is rotatable between first and second positions and mounted within the housing in a stacked relationship with the first magnet. The unit generates a first level of magnetic flux at a workpiece contact interface when the second magnet is in the first position and a second level of magnetic flux at the interface when the second magnet is in the second position, the second level being greater than the first level. The conductive coil is arranged about the second magnet and generates a magnetic field. A component of the conductive coil's magnetic field is directed from S to N along the second magnet's N-S pole pair when the second magnet is in the first position.",
"claims": [
"1. A switchable permanent magnetic unit for magnetically coupling to a ferromagnetic workpiece, the magnetic unit comprising: a housing; a first permanent magnet mounted within the housing and having an active N-S pole pair; a second permanent magnet rotatably mounted within the housing in a stacked relationship with the first permanent magnet and having an active N-S pole pair, the second permanent magnet being rotatable between a first position and a second position, the switchable permanent magnetic unit having a first level of magnetic flux available to the ferromagnetic workpiece at a workpiece contact interface of the switchable permanent magnetic unit when the second permanent magnet is in the first position and having a second level of magnetic flux available to the ferromagnetic workpiece at the workpiece contact interface when the second permanent magnet is in the second position, the second level being greater than the first level; and at least one conductive coil arranged about the second permanent magnet and configured to generate a magnetic field in response to a current being transmitted through the at least one conductive coil, wherein a component of the conductive coil's magnetic field is directed from S to N along the active N-S pole pair of the second permanent magnet when the second permanent magnet is in the first position.",
"2. The switchable permanent magnetic unit of claim 1, further comprising a means to hold the second permanent magnet in the second position.",
"3. The switchable permanent magnetic unit of claim 1, further comprising a rotation limiter configured to hold the second permanent magnet in the second position.",
"4. The switchable permanent magnetic unit of claim 1, the at least one conductive coil being arranged about the first permanent magnet and the second permanent magnet.",
"5. The switchable permanent magnetic unit of claim 1, the conductive coil being arranged about an exterior face of the housing.",
"6. The switchable permanent magnetic unit of claim 1, the conductive coil being disposed within the housing and about an exterior face of the second permanent magnet.",
"7. The switchable permanent magnetic unit of claim 1, the active N-S pole pair of the first permanent magnet comprising more than one active N-S pole pair and the active N-S pole pair of the second permanent magnet comprising more than one active N-S pole pair.",
"8. The switchable permanent magnetic unit of claim 1, further comprising a power supply configured to supply current to the conductive coil for generating the conductive coil's magnetic field.",
"9. The switchable permanent magnetic unit of claim 1, wherein the component directed from S to N along the N-S pole pair of the second permanent magnet's N-S pole pair comprises all of the conductive coil's magnetic field.",
"10. The switchable permanent magnetic unit of claim 1, wherein the housing is a two-piece housing.",
"11. The switchable permanent magnetic unit of claim 1, wherein the housing is a single-piece housing.",
"12. A method of manufacturing a switchable permanent magnetic unit, the switchable permanent magnetic unit configured to magnetically couple to a ferromagnetic workpiece at a workpiece contact interface of the switchable permanent magnetic unit, the method comprising: mounting a first permanent magnet in a housing, the first permanent magnet having an active N-S pole pair; mounting a second permanent magnet in a stacked relationship with the first permanent magnet within the housing, the second permanent magnet having an active N-S pole pair, the second permanent magnet being rotatable relative to the first permanent magnet between a first position and a second position, the switchable permanent magnetic unit having a first level of magnetic flux available to the ferromagnetic workpiece at the workpiece contact interface when the second permanent magnet is in the first position and having a second level of magnetic flux available to the ferromagnetic workpiece at the workpiece contact interface when the second permanent magnet is in the second position, the second level being greater than the first level; and arranging at least one conductive coil about the second permanent magnet, the at least one conductive coil configured to generate a magnetic field in response to a current being transmitted through the conductive coil, a component of the magnetic field being directed from S to N along the active N-S pole pair of the second permanent magnet when the second permanent magnet is in the first position.",
"13. The method of claim 12, the at least one conductive coil being arranged about an exterior face of the housing.",
"14. The method of claim 12, the at least one conductive coil being arranged within the housing and about an exterior face of the second permanent magnet.",
"15. The method of claim 12, the at least one conductive coil being arranged about the first permanent magnet and the second permanent magnet.",
"16. The method of claim 12, further comprising including a means configured to hold the second permanent magnet in the second position.",
"17. The method of claim 12, further comprising including a rotation limiter configured to limit rotation of the second permanent magnet within a set rotational range with respect to the first permanent magnet.",
"18. The method of claim 12, wherein at least one of: the first permanent magnet and the second permanent comprise a plurality of permanent magnets.",
"19. The method of claim 12, further comprising coupling a power supply to the conductive coil, the power supply being configured to supply current to the conductive coil for inducing the conductive coil's magnetic field.",
"20. The method of claim 12, wherein the housing is a two-piece housing.",
"21. The method of claim 12, wherein the housing is a single-piece housing."
],
"description_excerpt": "The present disclosure relates to magnetic devices. More specifically, the present disclosure relates to switchable magnetic devices that can be switched between magnetically attractive “on” states and non-attractive “off” states.\n\nSwitchable magnetic devices may be used to magnetically couple the magnetic device to one or more ferromagnetic work pieces. Switchable magnetic devices may include one or more magnet(s) that is (are) rotatable relative to one or more stationary magnet(s), in order to generate and shunt a magnetic field. The switchable magnet device may be attached in a removable manner, via switching the magnet device between an “on” state and an “off” state, to a ferromagnetic object (work piece), such as for object lifting operations, material handling, material holding, magnetically latching or coupling objects to one another, amongst a plethora of application fields.\n\nExample embodiments of disclosure provided herein include the following. In an exemplary embodiment of the present disclosure, A switchable permanent magnetic unit for magnetically coupling to a ferromagnetic workpiece is provided.",
"cpc": [
"H01F 7/206",
"B66C 1/06",
"H01F 2007/208",
"H01F 7/0231",
"H01F 7/0242",
"H01F 7/0257",
"H01F 7/04",
"H01F 7/17"
],
"ipc": [
"H01F 7/02",
"H01F 7/04",
"H01F 7/17",
"H01F 7/20"
],
"assignees": [
"MAGSWITCH TECH WORLDWIDE PTY LTD"
],
"inventors": [
"MORTON DAVID H",
"WHITT THOMAS R",
"REED MICHAEL H",
"BLANCHARD MICHAEL C"
],
"filing_date": "2018-06-08",
"publication_date": "2021-06-08",
"grant_date": "2021-06-08",
"priority_date": "2017-06-08",
"application_number": "US-201816618690-A",
"family_id": "64566369",
"citations": [
"CN101356597A",
"CN201689754U",
"CN2179359Y",
"DE202016006696U1",
"EP1419034B1",
"EP1425763A1",
"EP2535307B1",
"EP2611569A1",
"EP3100288B1",
"EP3460411A1",
"GB695130A",
"JP2608002B2",
"JP5798208B2",
"KR20030007387A",
"US2004239460A1",
"US2005012579A1",
"US2010201468A1",
"US2010301839A1",
"US2011248806A1",
"US2013285399A1",
"US2013320686A1",
"US2014055069A1",
"US2014132254A1",
"US2015035632A1",
"US2016187208A1",
"US2016289046A1",
"US2017232605A1",
"US2018111237A1",
"US2018193899A1",
"US2018311795A1",
"US2018315563A1",
"US2021031335A1",
"US2863550A",
"US2947429A",
"US3089064A",
"US3316514A",
"US3355209A",
"US3452310A",
"US3646669A",
"US3895270A",
"US4314219A",
"US4384313A",
"US4465993A",
"US4610580A",
"US4639170A",
"US4921292A",
"US4956625A",
"US5525950A",
"US5794497A",
"US6076873A",
"US6104270A",
"US6160697A",
"US6331810B1",
"US6489871B1",
"US6573817B2",
"US6636153B1",
"US6663154B2",
"US6707360B2",
"US7012495B2",
"US7049919B2",
"US7148777B2",
"US7161451B2",
"US7396057B2",
"US8031038B2",
"US8183965B2",
"US8256098B2",
"US8350663B1",
"US8604900B2",
"US8878639B2",
"US8907754B2",
"US8934210B1",
"US9164154B2",
"US9202616B2",
"US9232976B2",
"US9242367B2",
"US9453769B2",
"US9484137B2",
"US9589715B2",
"US9818522B2",
"WO03009972A2",
"WO03019583A1",
"WO2009000008A1",
"WO2010020006A1",
"WO2010135788A1",
"WO2012029073A1",
"WO2012160262A1",
"WO2014033757A1",
"WO2015033851A1",
"WO2015114214A1",
"WO2016162419A1",
"WO2018200948A1",
"WO2018227140A1"
]
}
Record 654 of 5,000 in Patents full text (MLC-0201). Request the full dataset.