WO2016148321A1 - Dispositif de support de corps magnétique - Google Patents
Dispositif de support de corps magnétique Download PDFInfo
- Publication number
- WO2016148321A1 WO2016148321A1 PCT/KR2015/002573 KR2015002573W WO2016148321A1 WO 2016148321 A1 WO2016148321 A1 WO 2016148321A1 KR 2015002573 W KR2015002573 W KR 2015002573W WO 2016148321 A1 WO2016148321 A1 WO 2016148321A1
- Authority
- WO
- WIPO (PCT)
- Prior art keywords
- pole piece
- pole
- assembly
- permanent magnet
- piece assembly
- Prior art date
Links
Images
Classifications
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B23—MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
- B23Q—DETAILS, COMPONENTS, OR ACCESSORIES FOR MACHINE TOOLS, e.g. ARRANGEMENTS FOR COPYING OR CONTROLLING; MACHINE TOOLS IN GENERAL CHARACTERISED BY THE CONSTRUCTION OF PARTICULAR DETAILS OR COMPONENTS; COMBINATIONS OR ASSOCIATIONS OF METAL-WORKING MACHINES, NOT DIRECTED TO A PARTICULAR RESULT
- B23Q3/00—Devices holding, supporting, or positioning work or tools, of a kind normally removable from the machine
- B23Q3/15—Devices for holding work using magnetic or electric force acting directly on the work
-
- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01F—MAGNETS; INDUCTANCES; TRANSFORMERS; SELECTION OF MATERIALS FOR THEIR MAGNETIC PROPERTIES
- H01F7/00—Magnets
- H01F7/06—Electromagnets; Actuators including electromagnets
- H01F7/20—Electromagnets; Actuators including electromagnets without armatures
- H01F7/206—Electromagnets for lifting, handling or transporting of magnetic pieces or material
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B23—MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
- B23Q—DETAILS, COMPONENTS, OR ACCESSORIES FOR MACHINE TOOLS, e.g. ARRANGEMENTS FOR COPYING OR CONTROLLING; MACHINE TOOLS IN GENERAL CHARACTERISED BY THE CONSTRUCTION OF PARTICULAR DETAILS OR COMPONENTS; COMBINATIONS OR ASSOCIATIONS OF METAL-WORKING MACHINES, NOT DIRECTED TO A PARTICULAR RESULT
- B23Q3/00—Devices holding, supporting, or positioning work or tools, of a kind normally removable from the machine
- B23Q3/15—Devices for holding work using magnetic or electric force acting directly on the work
- B23Q3/154—Stationary devices
- B23Q3/1546—Stationary devices using permanent magnets
-
- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01F—MAGNETS; INDUCTANCES; TRANSFORMERS; SELECTION OF MATERIALS FOR THEIR MAGNETIC PROPERTIES
- H01F7/00—Magnets
- H01F7/02—Permanent magnets [PM]
Definitions
- the present invention relates to a magnetic holding device, and more particularly, to a magnetic holding device which can control a magnetic flow from a permanent magnet to obtain a strong holding force, easily switch between holding and releasing, and minimizes residual magnetism.
- a magnetic holding device such as a permanent magnet workholding device, is a device used to magnetically attach an attachment object made of a magnetic material such as iron. It is widely used as an internal device attached to a mold clamping, a chuck of a machine tool, and the like.
- Such a magnetic holding device by using the strong magnetic force of the permanent magnet basically attaches the object to be attached to the holding surface, when the release is controlled by controlling the magnetic flow from the permanent magnet so as not to form a magnetic flow to the holding surface To be detached from the holding surface.
- a method of controlling the magnetic flow from the permanent magnet a method of controlling the magnetic flow by rotating another permanent magnet installed to be rotatable, a method of controlling the magnetic flow using a separate electromagnet, and the like may be used.
- Patent Document 1 The applicant of the present invention has already proposed a magnetic body holding device using a separate electromagnet (see Patent Document 1). Moreover, the magnetic body holding apparatus of the further advanced form was shown (refer patent document 2).
- the problem to be solved by the present invention is to provide a magnetic holding device that can obtain a strong holding force by controlling the magnetic flow from the permanent magnet, can be easily switched between holding and releasing, maximizing the holding force under a unit volume .
- a magnetic holding device is a magnetic holding device configured to hold and release an attachment object that is a magnetic body, and includes a first N-pole piece and a first S-pole having a first surface and a second surface.
- a first pole piece assembly comprising a piece and a first permanent magnet disposed so that the N pole is in contact with the first N pole piece and the S pole is in contact with the first S pole piece;
- a second N-pole piece and a second S-pole piece which are formed with a first surface and a second surface and are magnetic materials, and the N pole is in contact with the second N pole piece and the S pole is in contact with the second S pole piece.
- a second pole piece assembly comprising a second permanent magnet; A third N-pole piece and a third S-pole piece which are formed with a first surface and a second surface and are magnetic materials, and the N pole is in contact with the third N pole piece and the S pole is in contact with the third S pole piece.
- a third pole piece assembly comprising a third permanent magnet; A fourth N-pole piece and a fourth S-pole piece, each of which has a first surface and a second surface, and which is a magnetic body, and the N-pole contacts the fourth N-pole piece, and the S-pole contacts the fourth S-pole piece.
- a fourth pole piece assembly comprising a fourth permanent magnet;
- a control device for controlling the current applied to the coil It includes.
- the second surface of the first N-pole piece and the first surface of the second S-pole piece face each other, and the second surface of the first S-pole piece and the first surface of the second N-pole piece face each other.
- the second surface of the second N-pole piece and the first surface of the third S-pole piece face each other, and the second surface of the second S-pole piece and the first surface of the third N-pole piece are Face each other, the second surface of the third N-pole piece and the first surface of the fourth S-pole piece face each other, and the second surface of the third S-pole piece and the first of the fourth N-pole piece.
- the first pole piece assembly, the second pole piece assembly, the third pole piece assembly and the fourth pole piece assembly are disposed so that the faces face each other.
- the second surface of the second N-pole piece and the first surface of the third S-pole piece contact each other, and the second surface of the second S-pole piece and the first surface of the third N-pole piece contact each other.
- the first pole piece assembly and the second pole piece assembly are spaced apart from each other, and the third pole piece assembly and the fourth pole piece assembly are spaced apart from each other, and a second surface of the first N pole piece.
- the first surface of the second S-pole piece are in contact with each other, the second surface of the first S-pole piece and the first surface of the second N-pole piece are in contact with each other, Two surfaces and a first surface of the fourth S-pole piece contact each other, and a second surface of the third S-pole piece contacts a first surface of the fourth N-pole piece, wherein the second pole piece assembly and the Assembling the first pole piece assembly, the second pole piece assembly, the third pole piece such that the third pole piece assembly enables switching between spaced apart second arrangements.
- the control device causes a switch between the first and second arrangements by controlling the current applied to the coil, thereby causing the first surfaces of the first pole piece assembly or the first pole piece assembly of the fourth pole piece assembly. Controls the holding and releasing of the attachment object on two sides.
- the first pole piece assembly has a first surface and the second surface and the magnetic pole of the fifth N pole piece, the N pole is in contact with the fifth N pole piece and the S pole is the And a fifth permanent magnet disposed to be in contact with the first S-pole piece, wherein the second pole-piece assembly includes a fifth S-pole piece having a first surface and a second surface and being a magnetic body, and the N pole being the first pole. And a sixth permanent magnet in contact with the 2N pole piece and disposed so that the S pole contacts the fifth S pole piece, wherein the third pole piece assembly is formed of a magnetic material having a first face and a second face.
- the fourth pole piece assembly includes: A sixth S-pole piece having a first side and a second side, which is a magnetic body, an N pole in contact with the fourth N pole piece, and an S pole in contact with the sixth S pole piece It further comprises an eighth permanent magnet disposed to be.
- the second surface of the fifth N-pole piece and the first surface of the fifth S-pole piece face each other, and the second surface of the fifth S-pole piece and the first surface of the sixth N-pole piece face each other.
- the fourth pole piece assembly is disposed.
- the at least one coil includes: the first N pole piece, the first S pole piece, the second N pole piece, the second S pole piece, the third N pole piece, the third S pole piece, the It is wound around at least one of a fourth N pole piece, the fourth S pole piece, the fifth N pole piece, the fifth S pole piece, the sixth N pole piece, and the sixth S pole piece.
- the first S pole piece includes two first sub S pole pieces, the first sub S pole pieces are in contact with the first permanent magnet and the fifth permanent magnet, respectively
- the first sub S pole pieces share a first surface and a second surface of the first S pole piece, respectively
- the second N pole piece includes two second sub N pole pieces,
- the second sub-N pole pieces contact the second permanent magnet and the sixth permanent magnet, respectively, and the second sub-N pole pieces share a first surface and a second surface of the second N pole piece, respectively
- the third S pole piece includes two third sub S pole pieces, wherein the third sub S pole pieces are in contact with the third permanent magnet and the seventh permanent magnet, respectively, and the third sub S pole pieces are respectively
- Each of the first and second surfaces of the third S-pole piece is shared
- the fourth N-pole piece includes two fourth sub-N pole pieces.
- the fourth sub-N pole pieces are in contact with the fourth permanent magnet and the eighth permanent magnet, respectively, and the fourth sub-N pole pieces are formed on the first and second surfaces of the fourth N-pole piece. Share each.
- the second surface of the first sub S pole piece in contact with the first permanent magnet and the first surface of the second sub N pole piece in contact with the second permanent magnet face each other and are in contact with the fifth permanent magnet.
- the second surface of the first sub S pole piece and the first surface of the second sub N pole piece in contact with the sixth permanent magnet face each other, and the second surface of the second sub N pole piece in contact with the second permanent magnet.
- the second surface and the seventh permanent magnet of the second sub-N pole piece which are in contact with each other and the first surface of the third sub S pole piece which is in contact with the third surface and the third permanent magnet are in contact with each other.
- the second surface of the third sub S-pole piece and the eighth permanent magnet which face each other and are in contact with the seventh permanent magnet.
- the first sub S pole pieces, the second sub N pole pieces, the third sub S pole pieces, and the fourth sub N pole so that a first surface of the fourth sub N pole piece which is in contact with each other faces each other. Pieces are placed.
- the at least one coil is composed of two or more coils, the second S pole piece or the third N pole piece between the second permanent magnet and the third permanent magnet. At least one is wound around, and at least one is wound around the second N pole piece or the third S pole piece.
- the at least one coil is composed of four or more coils, the first N pole piece or the second S pole piece between the first permanent magnet and the second permanent magnet. At least one wound on the first S pole piece or the second N pole piece and at least one wound around the third permanent magnet and the fourth permanent magnet between the third N pole piece or the fourth S At least one is wound around the pole piece, and at least one is wound around the third S pole piece or the fourth N pole piece.
- At least one coil is wound around the second N pole piece or the third S pole piece between the second permanent magnet and the third permanent magnet.
- the at least one coil is composed of two or more coils, the first S pole piece or the second N pole piece between the first permanent magnet and the second permanent magnet. At least one is wound around, and at least one is wound around the third S-pole piece or the fourth N-pole piece between the third permanent magnet and the fourth permanent magnet.
- the first pole piece assembly and the fourth pole piece assembly is fixed, the second pole piece assembly and the third pole piece assembly is configured to move, the first pole piece
- the first faces of the assembly and the second faces of the fourth pole piece assembly are formed to hold one attachment object.
- the first faces of the first pole piece assembly and the second faces of the fourth pole piece assembly are arranged to be one surface.
- the second pole piece assembly and the third pole piece assembly move in a direction along the first faces of the first pole piece assembly and the second faces of the fourth pole piece assembly. It is composed.
- the first pole piece assembly and the fourth pole piece assembly is fixed, the second pole piece assembly and the third pole piece assembly is configured to move, the first pole piece
- the first faces of the assembly and the second faces of the fourth pole piece assembly are formed to hold one attachment object, and include the first S pole piece, the second N pole piece, the third S pole piece, and The first N-pole piece, the second S-pole piece, the third N-pole piece, and the fourth S-pole piece are located in a space formed by the fourth N-pole piece.
- the first pole piece assembly and the fourth pole piece assembly is fixed, the second pole piece assembly and the third pole piece assembly is configured to move, the first pole piece
- the first faces of the assembly and the second faces of the fourth pole piece assembly are formed to hold one attachment object, and include the first S pole piece, the second N pole piece, the third S pole piece, and The first N-pole piece, the second S-pole piece, the third N-pole piece, and the fourth S-pole piece are positioned in a space formed by the fourth N-pole piece, and the fifth N-pole piece, the The first S pole piece, the second N pole piece, the third S pole piece, and the fourth N pole in a space formed by the fifth S pole piece, the sixth N pole piece, and the sixth S pole piece.
- the piece is located.
- the first pole piece assembly and the fourth pole piece assembly is fixed, the second pole piece assembly and the third pole piece assembly is configured to move, the first pole piece
- the first faces of the assembly and the second faces of the fourth pole piece assembly are formed to hold one attachment object, and the second pole piece assembly and the third part are formed in a space defined by the first pole piece assembly.
- the pole piece assembly and the fourth pole piece assembly are located, or the first pole piece assembly, the second pole piece assembly, and the third pole piece assembly are located in a space formed by the fourth pole piece assembly.
- the first pole piece assembly and the fourth pole piece assembly is fixed, the second pole piece assembly and the third pole piece assembly is configured to move, the first pole piece
- the first faces of the assembly and the second faces of the fourth pole piece assembly are formed to hold one attachment object, and include the first S pole piece, the second N pole piece, the third S pole piece, and The first N pole piece, the second S pole piece, the third N pole piece and the fourth S pole piece are located in the space formed by the fourth N pole piece, or the first N pole piece, The first S pole piece, the second N pole piece, the third S pole piece, and the fourth N in a space formed by the second S pole piece, the third N pole piece, and the fourth S pole piece.
- the pole piece is located.
- the first pole piece assembly and the fourth pole piece assembly is fixed, the second pole piece assembly and the third pole piece assembly is configured to move, the first pole piece
- the first faces of the assembly and the second faces of the fourth pole piece assembly are formed to hold one attachment object, and the second pole piece assembly and the third part are formed in a space formed by the first S pole piece.
- the pole piece assembly and the fourth pole piece assembly are located, or the first pole piece assembly, the second pole piece assembly, and the third pole piece assembly are located in a space formed by the fourth N pole piece.
- a magnetic holding device is a magnetic holding device configured to hold and release a magnetic object to be attached, wherein a first N-pole piece and a first S-pole are formed with a first surface and a second surface.
- a first pole piece assembly comprising a piece and a first permanent magnet disposed so that the N pole is in contact with the first N pole piece and the S pole is in contact with the first S pole piece;
- a second N-pole piece and a second S-pole piece which are formed with a first surface and a second surface and are magnetic materials, and the N pole is in contact with the second N pole piece and the S pole is in contact with the second S pole piece.
- a second pole piece assembly comprising a second permanent magnet; A third N-pole piece and a third S-pole piece which are formed with a first surface and a second surface and are magnetic materials, and the N pole is in contact with the third N pole piece and the S pole is in contact with the third S pole piece.
- a third pole piece assembly comprising a third permanent magnet; A fourth N-pole piece and a fourth S-pole piece, each of which has a first surface and a second surface, and which is a magnetic body, and the N-pole contacts the fourth N-pole piece, and the S-pole contacts the fourth S-pole piece.
- a fourth pole piece assembly comprising a fourth permanent magnet; A first connecting pole piece having a first surface and a second surface and being magnetic; A second connecting pole piece having a first face and a second face and being magnetic; The first N pole piece, the first S pole piece, the second N pole piece, the second S pole piece, the third N pole piece, the third S pole piece, the fourth N pole piece, the At least one coil wound around at least one of a fourth S pole piece, the first connection pole piece, and the second connection pole piece; And a control device for controlling the current applied to the coil; It includes.
- the second surface of the first N-pole piece and the first surface of the second S-pole piece face each other, and the second surface of the first S-pole piece and the first surface of the second N-pole piece face each other.
- the second surface of the second N-pole piece and the first surface of the first connection pole piece face each other, and the second surface of the second S pole piece and the first surface of the second connection pole piece Face each other, a second face of the first connecting pole piece and a first face of the third S pole piece face each other, a second face of the second connecting pole piece and a first of the third N pole piece; Surfaces face each other, the second surface of the third N-pole piece and the first surface of the fourth S-pole piece face each other, and the second surface of the third S-pole piece and the fourth N-pole piece.
- the first pole piece assembly, the second pole piece assembly, the third pole piece assembly, the fourth pole piece assembly, the first connecting pole piece and the second connection such that a first face faces each other.
- the pieces are arranged.
- the second surface of the second N-pole piece and the first surface of the first connection pole piece contact each other, and the second surface of the second S pole piece and the first surface of the second connection pole piece contact each other.
- the first surface of the third S-pole piece and the second surface of the first connection pole piece are in contact with each other, and the first surface of the third N-pole piece and the second surface of the second connection pole piece are A first arrangement in contact with each other, wherein the first pole piece assembly and the second pole piece assembly are spaced apart from each other, and the third pole piece assembly and the fourth pole piece assembly are spaced apart from each other;
- Two surfaces and a first surface of the second S-pole piece contact each other, a second surface of the first S-pole piece and a first surface of the second N-pole piece contact each other, and the third N-pole piece
- the second surface of the fourth S-pole piece and the first surface of the fourth S-pole piece in contact with the first surface of the fourth N-pole piece, the second pole
- the control device causes a switch between the first and second arrangements by controlling the current applied to the coil, thereby causing the first surfaces of the first pole piece assembly or the first pole piece assembly of the fourth pole piece assembly. Controls the holding and releasing of the attachment object on two sides.
- the first pole piece assembly includes a fifth N pole piece which is a magnetic body having a first surface and a second face, and an N pole contacts the fifth N pole piece and an S pole contacts the first S pole piece.
- the second pole piece assembly further comprises: a fifth S pole piece having a first face and a second face, the magnetic body being a magnetic body, and the N pole being in contact with the second N pole piece; And a sixth permanent magnet disposed to contact the fifth S pole piece, wherein the third pole piece assembly includes a sixth N pole piece having a first face and a second face and is a magnetic material, and an N pole.
- a seventh permanent magnet disposed in contact with the sixth N pole piece and having the S pole contacted with the third S pole piece, wherein the fourth pole piece assembly has a first face and a second face.
- a sixth S-pole piece which is a magnetic body, and an eighth permanent magnet arranged such that the N-pole contacts the fourth N-pole piece and the S-pole contacts the sixth S-pole piece. Further included.
- the second surface of the fifth N-pole piece and the first surface of the fifth S-pole piece face each other, and the second surface of the fifth S-pole piece and the first surface of the third connecting pole piece face each other.
- the second surface of the third connecting pole piece and the first surface of the sixth N pole piece face each other, and the second surface of the sixth N pole piece and the first surface of the sixth S pole piece Facing each other, the first pole piece assembly, the second pole piece assembly, the third pole piece assembly and the fourth pole piece assembly, the first connection pole piece, the second connection pole piece and the third connection.
- the pole piece is placed.
- the at least one coil includes: the first N pole piece, the first S pole piece, the second N pole piece, the second S pole piece, the third N pole piece, the third S pole piece, the Fourth N-pole piece, the fourth S-pole piece, the fifth N-pole piece, the fifth S-pole piece, the sixth N-pole piece, the sixth S-pole piece, the first connection pole piece, the first Wound around one or more of the second connecting pole piece and the third connecting pole piece.
- the first surfaces of the first pole piece assembly and the second surfaces of the fourth pole piece assembly are formed to hold one attachment object, the first S pole piece, The first N pole piece, the second S pole piece, and the second connection in a space formed by the second N pole piece, the first connection pole piece, the third S pole piece, and the fourth N pole piece.
- the pole piece, the third N pole piece and the fourth S pole piece are positioned.
- the first surfaces of the first pole piece assembly and the second surfaces of the fourth pole piece assembly are formed to hold one attachment object, the fifth N pole piece, The first S pole piece, the second N pole piece, and the first connection in a space formed by the fifth S pole piece, the third connection pole piece, the sixth N pole piece, and the sixth S pole piece.
- the pole piece, the third S pole piece and the fourth N pole piece are located.
- the coil is at least three, the coil is at least one of the second connecting pole piece, the first N pole piece and the second S pole piece, and the third N pole It is wound around at least one of the piece and the fourth S-pole piece.
- the coil is at least four, the coil is a first connecting pole piece, the second connecting pole piece. At least one of the first S-pole piece and the second N-pole piece is wound around at least one of the third S-pole piece and the fourth N-pole piece.
- the first pole piece assembly and the second pole piece assembly further comprises an elastic means for providing an elastic force in a direction away from each other.
- the second pole piece assembly and the third pole piece assembly further comprises an elastic means for providing an elastic force in a direction away from each other.
- the third pole piece assembly and the fourth pole piece assembly further comprises an elastic means for providing an elastic force in a direction away from each other.
- the first elastic means and the third pole piece assembly and the connecting pole pieces are spaced apart from each other to provide an elastic force in a direction in which the second pole piece assembly and the connecting pole pieces are spaced apart from each other. It further comprises a second elastic means for providing an elastic force in the direction.
- the magnetic holding device of the present invention by holding a coil on the pole piece without installing a separate electromagnet, a strong holding force can be obtained by a simple structure, and the magnetic force of the permanent magnet using only a small current when switching between holding or releasing. Can be controlled, and a strong holding force can be obtained even with a small space.
- FIGS. 1A to 1D are schematic cross-sectional views of a magnetic holding device according to an embodiment of the present invention.
- 1E is a schematic cross-sectional view showing a modification of the magnetic body holding device of FIGS. 1A to 1D.
- 2A to 2D are schematic cross-sectional views of a magnetic holding device according to another embodiment of the present invention.
- 2E is a schematic cross-sectional view showing a modification of the magnetic body holding device of FIGS. 2A to 2D.
- FIG. 3 is a schematic cross-sectional view of a magnetic holding device according to another embodiment of the present invention.
- Figure 4a is a schematic perspective view of a magnetic holding device according to another embodiment of the present invention.
- 4B is sectional drawing of the A-A line of FIG. 4A
- FIG. 4C is sectional drawing of the A-A line of a modification.
- 5A is a schematic perspective view of a magnetic holding device according to another embodiment of the present invention.
- 5B is a schematic plan sectional view of FIG. 5A.
- FIG. 6 is a schematic cross-sectional view of a magnetic holding device according to another embodiment of the present invention.
- FIG. 7 is a schematic cross-sectional view of a magnetic holding device according to another embodiment of the present invention.
- FIGS. 8A and 8B are schematic cross-sectional views of a magnetic holding device according to another embodiment of the present invention.
- FIG. 9 is a schematic cross-sectional view of a magnetic holding device according to another embodiment of the present invention.
- FIGS. 10A to 10D are schematic cross-sectional views of a magnetic holding device according to another embodiment of the present invention.
- FIG. 11A and 11B are schematic cross-sectional views of a magnetic holding device according to still another embodiment of the present invention.
- references to elements or layers "on" other elements or layers include all instances where another layer or other element is directly over or in the middle of another element.
- first, second, etc. are used to describe various components, these components are of course not limited by these terms. These terms are only used to distinguish one component from another. Therefore, of course, the first component mentioned below may be a second component within the technical spirit of the present invention.
- each of the features of the various embodiments of the present invention may be combined or combined with each other in part or in whole, various technically interlocking and driving as can be understood by those skilled in the art, each of the embodiments may be implemented independently of each other It may be possible to carry out together in an association.
- FIGS. 1A to 1D are schematic cross-sectional views of a magnetic holding device according to an embodiment of the present invention.
- 1E is a schematic cross-sectional view showing a modification of the magnetic body holding device of FIGS. 1A to 1D.
- the magnetic holding device 1000 of the present embodiment includes a first pole piece assembly 1100, a second pole piece assembly 1200, a third pole piece assembly 1300, and a fourth The pole piece assembly 1400, the coil 1900, and a control device (not shown) are configured.
- the first pole piece assembly 1100 includes a first N pole piece 1110, a first S pole piece 1120, and a first permanent magnet 1130.
- the first N-pole piece 1110 is a magnetic body and has a first face 1111 and a second face 1112.
- the first S-pole piece 1120 is a magnetic material and has a first surface 1121 and a second surface 1122.
- the first permanent magnet 1130 is disposed such that the N pole is in contact with the first N pole piece 1110 and the S pole is in contact with the first S pole piece 1120.
- the second pole piece assembly 1200 includes a second N pole piece 1210, a second S pole piece 1220, and a second permanent magnet 1230.
- the second N-pole piece 1210 is a magnetic body and has a first face 1211 and a second face 1212.
- the second S-pole piece 1220 is a magnetic material and has a first surface 1221 and a second surface 1222.
- the second permanent magnet 1230 is disposed so that the N pole contacts the second N pole piece 1210 and the S pole contacts the second S pole piece 1220.
- the third pole piece assembly 1300 includes a third N pole piece 1310, a third S pole piece 1320, and a third permanent magnet 1330.
- the third N-pole piece 1310 is a magnetic body and has a first face 1311 and a second face 1312.
- the third S-pole piece 1320 is a magnetic material and includes a first surface 1321 and a second surface 1322.
- the third permanent magnet 1330 is disposed such that the N pole contacts the third N pole piece 1310 and the S pole contacts the third S pole piece 1320.
- the fourth pole piece assembly 1400 includes a fourth N pole piece 1410, a fourth S pole piece 1420, and a fourth permanent magnet 1430.
- the fourth N-pole piece 1410 is a magnetic body and has a first face 1411 and a second face 1412.
- the fourth S-pole piece 1420 is a magnetic material and has a first face 1421 and a second face 1422.
- the fourth permanent magnet 1430 is disposed such that the N pole contacts the second N pole piece 1410 and the S pole contacts the fourth S pole piece 1420.
- the first pole piece assembly 1100, the second pole piece assembly 1200, the third pole piece assembly 1300, and the fourth pole piece assembly 1400 are disposed in a line.
- the second surface 1112 of the first N-pole piece 1110 and the first surface 1221 of the second S-pole piece 1220 face each other, and the second surface of the first S-pole piece 1120 is disposed.
- the face 1122 and the first face 1211 of the second N pole piece 1210 face each other, and the second face 1212 and the third S pole piece 1320 of the second N pole piece 1210 face each other.
- the first surface 1321 faces each other, the second surface 1222 of the second S-pole piece 1220 and the first surface 1311 of the third N-pole piece 1310 face each other, and the third N
- the second face 1312 of the pole piece 1310 and the first face 1421 of the fourth S pole piece 1420 face each other, and the second face 1322 and the first face of the third S pole piece 1320 are formed.
- Assembly 1400 is disposed.
- the second surface 1212 of the second N-pole piece 1210 and the first surface 1321 of the third S-pole piece 1320 are in contact with each other, and the second surface 1222 of the second S-pole piece 1220 is in contact with each other.
- the first surface 1311 of the third N-pole piece 1310 are in contact with each other, but the first pole piece assembly 1100 and the second pole piece assembly 1200 are spaced apart from each other, and the third pole piece assembly 1300 is spaced apart from each other.
- the fourth pole piece assembly 1400 are spaced apart from each other in a first arrangement (as shown in FIGS. 1A and 1B), and a second surface 1112 and a second S pole piece of the first N pole piece 1110.
- the first surface 1221 of 1220 is in contact with each other, the second surface 1122 of the first S-pole piece 1120 and the first surface 1211 of the second N-pole piece 1210 are in contact with each other, The second surface 1312 of the third N-pole piece 1310 and the first surface 1421 of the fourth S-pole piece 1420 are in contact with each other, and the second surface 1322 of the third S-pole piece 1320 is in contact with each other. And the first surface 1411 of the fourth N-pole piece 1410 are in contact, but the second pole piece assembly 1200 and the third pole piece assembly 1300 are spaced apart from each other.
- first pole piece assembly 1100 Is a first pole piece assembly 1100, a second pole piece assembly 1200, a third pole piece assembly 1300 and a fourth pole to enable switching between a second arrangement (such as in FIGS. 1C and 1D).
- Two or more of the piece assemblies 1400 are movable.
- the first pole piece assembly 1100 and the fourth pole piece assembly 1400 are fixed, and the second pole piece assembly 1200 and the third pole piece assembly 1300 are movably configured. do.
- the present invention is not limited thereto, and any pole piece assembly may be moved as long as the first arrangement and the second arrangement can be achieved.
- Movement of the pole piece assembly can be implemented in a variety of ways.
- both ends are fixed to the first pole piece assembly 1100 and the fourth pole piece assembly 1400, respectively, and the second pole piece assembly 1200 and the third pole piece assembly 1300 are respectively fixed.
- a guide rod 1001 can be employed to guide these pole piece assemblies 1200, 1300 through the.
- the guide rod 1001 is preferably made of nonmagnetic material so as not to affect magnetic flow.
- the movement of the pole piece assembly may also be made by a known conveying method such as a rail, a linear guide, or the like.
- elastic means for applying an elastic force between the second pole piece assembly 1200 and the third pole piece assembly 1300 such that the second pole piece assembly 1200 and the third pole piece assembly 1300 move away from each other (not shown) City, for example a spring) may be interposed.
- elastic means for applying an elastic force between the first pole piece assembly 1100 and the second pole piece assembly 1200 such that the first pole piece assembly 1100 and the second pole piece assembly 1200 are separated from each other (not shown) City, for example a spring) may be interposed.
- an elastic means (not shown) is applied between the third pole piece assembly 1300 and the fourth pole piece assembly 1400 such that the third pole piece assembly 1300 and the fourth pole piece assembly 1400 are separated from each other. City, for example a spring) may be interposed.
- the coil 1900 may include a first N pole piece 1110, a first S pole piece 1120, a second N pole piece 1210, a second S pole piece 1220, a third N pole piece 1310, The third S-pole piece 1320, the fourth N-pole piece 1410, and the fourth S-pole piece 1420 are wound around one or more of them.
- the current is supplied to the coil 1900 by the controller.
- a portion of the pole piece wound like an electromagnet is magnetized.
- the magnetic flow may be strengthened or weakened by supplying current to the coil 1900.
- switching between the first and second arrangements is possible by attenuating the already formed magnetic flow.
- Coil 1900 may be wound around any pole piece if switching between the first and second arrangements is possible.
- the coil 1900 includes a second N pole piece 1210, a second S pole piece 1220, between the second permanent magnet 1230 and the third permanent magnet 1330 as shown in FIGS. 1A through 1D.
- Each of the third N-pole pieces 1310 and the third S-pole piece 1320 is wound.
- the coil 1900 is wound between the first permanent magnet 1130 and the second permanent magnet 1230, one each of the second S pole piece 1220 and the second N pole piece 1210, as shown in FIG.
- the third permanent magnet 1330 and the fourth permanent magnet 1430 may be wound around the third N pole piece 1310 and the third S pole piece 1320, respectively.
- the coil 1900 may have various arrangements and numbers. When the number of coils 1900 increases, the required value of the current applied to one coil 1900 may be reduced, but since the volume becomes larger, the size of the magnetic holding device 1000, the amount of current required, etc. are taken into consideration. What is necessary is just to select the arrangement
- the magnetic holding device 1000 has a first arrangement, and no current is supplied to the coil 1900.
- the magnetic flow resulting from the second permanent magnet 1230 and the third permanent magnet 1330 circulates between the second pole piece assembly 1200 and the third pole piece assembly 1300, and the first pole piece assembly
- the first surfaces 1111 and 1121 of the 1100 and the second surfaces 1412 and 1422 of the fourth pole piece assembly 1400 hold magnetic attachment objects 1A and 1B, respectively.
- the magnetic flow shown by dotted lines in FIG. 1A is reduced. That is, the current is applied to the coil 1900 to reduce the magnetic flow generated by magnetizing the pole pieces 1210, 1220, 1310, and 1320 by the second permanent magnet 1230 and the third permanent magnet 1330. do.
- the attraction force between the second pole piece assembly 1200 and the third pole piece assembly 1300 decreases.
- the second pole piece assembly 1200 And the second pole piece assembly 1200 and the third pole piece assembly 1300 may be separated by elastic means such as a spring interposed between the first pole piece assembly and the third pole piece assembly 1300.
- the magnetic holding device 1000 is in a second arrangement, such that the internal circulating magnetic flow and the third pole piece assembly between the first pole piece assembly 1100 and the second pole piece assembly 1200 are provided. Internal circulating magnetic flows between the 1300 and the fourth pole piece assembly 1400 are respectively formed. That is, when the magnetic holding device 1000 is in the second arrangement, the magnetic flow caused by the first permanent magnet 1130 and the fourth permanent magnet 1430 may affect external attachment objects 1A and 1B. It is not reached, and is attracted to the second permanent magnet 1230 and the third permanent magnet 1330. Thus, the attachment objects 1A and 1B can be released.
- a current may be applied to the coil 1900 as shown in FIG. 1D.
- the circulating magnetic flow and the third pole piece assembly 1300 and the fourth pole formed in the first pole piece assembly 1100 and the second pole piece assembly 1200 are applied.
- Each of the cyclic magnetic flows formed in the piece assembly 1400 is weakened. Accordingly, the magnetic flow caused by the first permanent magnet 1100 and the fourth permanent magnet 1400 affects the attachment objects 1A and 1B and may be held.
- the intensity of the current having a direction as shown in FIG. 1D is gradually increased, between the first pole piece assembly 1100 and the second pole piece assembly 1200 and the third pole piece assembly 1300 and the fourth pole piece assembly 1400.
- the attraction force between) becomes weaker, the holding force for the attachment objects 1A, 1B becomes larger, and the attraction force between the second pole piece assembly 1200 and the third pole piece assembly 1300 becomes larger.
- the strength of the current reaches a certain degree, due to the attraction between the second pole piece assembly 1200 and the third pole piece assembly 1300, the second pole piece assembly 1200 and the third pole piece assembly 1300 are connected to each other. Contact.
- the resilient means is interposed between the first pole piece assembly 1100 and the second pole piece assembly 1200 and between the third pole piece assembly 1300 and the fourth pole piece assembly 1400, thereby providing each pole piece assembly. It is desirable to further promote separation of the liver.
- the magnetic material holding device 1000 of the present invention causes the switching between the first arrangement and the second arrangement by controlling the current applied to the coil 1900 using the controller. Accordingly, holding and releasing the attachment objects 1A, 1B to the first faces 1111 and 1121 of the first pole piece assembly 1100 or the second faces 1412 and 1422 of the fourth pole piece assembly 1400. Can be controlled. That is, a DC current necessary for the switching only needs to be applied at the time of switching between holding and releasing, and no current is required to hold the holding and releasing. In the case of the existing electromagnet device, the supply of the current must be maintained in order to maintain the holding or releasing state, and thus the maintenance cost is high. There is this. According to the magnetic holding device 1000 of the present invention, the maintenance cost can be significantly reduced compared to the existing electromagnet device, and there is no room for safety problems even if the power supply is cut off.
- a strong magnetic force by the permanent magnets 1130 and 1430 may be applied to the attachment objects 1A and 1B, and thus the attachment objects 1A and 1B and the first pole. Even if the first faces 1111 and 1121 of the piece assembly 1100 and the second faces 1412 and 1422 of the fourth pole piece assembly 1400 are separated from each other, the attachment objects 1A and 1B may be moved and held. Can be.
- the first permanent magnet 1130, the second permanent magnet 1230, the third permanent magnet 1330 and the fourth permanent magnet 1430 is preferably the same intensity. This is because when the internal circulating magnetic flow is formed, the magnetic flow flowing out can be minimized. That is, by similarizing the characteristics of the permanent magnets 1130, 1230, 1330, and 1430, it is possible to minimize the magnetic flow (residual magnetism) flowing out toward the attachment targets 1A and 1B upon release as shown in FIG. 1C.
- the thicknesses of the pole pieces 1210, 1220, 1310, and 1320 constituting the second pole piece assembly 1200 and the third pole piece assembly 1300 may be the first pole piece assembly 1100 and the fourth pole piece assembly.
- a thickness thicker than the thicknesses of the pole pieces 1110, 1120, 1410, and 1420 constituting the 1400 is preferable in that residual magnetism can be reduced.
- the magnetic flow caused by the first permanent magnet 1130 and the fourth permanent magnet 1430 upon release as shown in FIG. 1C further leads to the second pole piece assembly 1200 and the third pole piece assembly 1300. It becomes easy to peel off, and the residual magnetism in the direction of external attachment objects 1A, 1B can be minimized.
- 2A to 2D are schematic cross-sectional views of a magnetic holding device according to another embodiment of the present invention.
- 2E is a schematic cross-sectional view showing a modification of the magnetic body holding device of FIGS. 2A to 2D.
- the magnetic holding device 2000 of the present embodiment includes a first pole piece assembly 2100, a second pole piece assembly 2200, a third pole piece assembly 2300, And a fourth pole piece assembly 2400, a coil 2900, and a controller (not shown).
- the magnetic holding device 2000 of the present embodiment has a configuration similar to that of the magnetic holding device 1000 described above, only the added configuration will be described in detail and redundant description will be avoided.
- the first pole piece assembly 2100 includes a first N pole piece 2110, a first S pole piece 2120, a first permanent magnet 2130, a fifth N pole piece 2140, and a first pole piece 2110.
- 5 permanent magnets 2150 may be the first N pole pieces 1110 of the magnetic body holding device 1000 of FIGS. 1A to 1D.
- the first S pole piece 1120 and the first permanent magnet 1130 are the same.
- the 5th N pole piece 2140 has the 1st surface 2141 and the 2nd surface 2142, and is a magnetic body.
- the fifth permanent magnet 2150 is disposed such that the N pole contacts the fifth N pole piece 2140 and the S pole contacts the first S pole piece 2120.
- the second pole piece assembly 2200 may include a second N pole piece 2210, a second S pole piece 2220, a second permanent magnet 2230, a fifth S pole piece 2240, and a second pole piece 2220. 6 permanent magnets 2250.
- the second N pole piece 2210, the second S pole piece 2220, and the second permanent magnet 2230 may include the second N pole piece 1210 of the magnetic body holding device 1000 of FIGS. 1A to 1D.
- the second S pole piece 1220 and the second permanent magnet 1230 are the same.
- the 5th S pole piece 2240 has the 1st surface 2241 and the 2nd surface 2242, and is a magnetic body.
- the sixth permanent magnet 2250 is disposed such that the N pole contacts the second N pole piece 2210 and the S pole contacts the fifth S pole piece 2240.
- the third pole piece assembly 2300 includes a third N pole piece 2310, a third S pole piece 2320, a third permanent magnet 2330, a sixth N pole piece 2340, and a third N pole piece 2320. 7 permanent magnets 2350.
- the third N pole piece 2310, the third S pole piece 2320, and the third permanent magnet 2330 are the third N pole pieces 1310 of the magnetic body holding device 1000 of FIGS. 1A to 1D.
- the third S pole piece 1320 and the third permanent magnet 1330 are the same.
- the sixth N-pole piece 2340 has a first face 2341 and a second face 2342 and is a magnetic material.
- the seventh permanent magnet 2350 is disposed such that the N pole contacts the sixth N pole piece 2340, and the S pole contacts the third S pole piece 2320.
- the fourth pole piece assembly 2400 includes a fourth N pole piece 2410, a fourth S pole piece 2420, a fourth permanent magnet 2430, a sixth S pole piece 2440, and a fourth pole piece 2420. 8 permanent magnets 2450.
- the fourth N pole piece 2410, the fourth S pole piece 2420, and the fourth permanent magnet 2430 are the fourth N pole pieces 1410 of the magnetic body holding device 1000 of FIGS. 1A to 1D.
- the fourth S-pole piece 1420, and the fourth permanent magnet 1430 respectively.
- the sixth S-pole piece 2440 has a first face 2441 and a second face 2442 and is magnetic.
- the eighth permanent magnet 2450 is disposed such that the N pole contacts the fourth N pole piece 2410 and the S pole contacts the sixth S pole piece 2440.
- the first surface 2341 of the sixth N-pole piece 2340 face each other, and the second surface 2234 and the first surface of the sixth S-pole piece 2440 of the sixth N-pole piece 2340.
- the first pole piece assembly 2100, the second pole piece assembly 2200, the third pole piece assembly 2300 and the fourth pole piece assembly 2400 are disposed so that the 2244 faces each other.
- the coil 2900 has a first N pole piece 2110, a first S pole piece 2120, a second N pole piece 2210, a second S pole piece 2220, and a third N pole piece 2310. , 3rd S pole piece 2320, 4th N pole piece 2410, 4th S pole piece 2420, 5th N pole piece 2140, 5th S pole piece 2240, 6th N pole It is wound around one or more of the piece 2340 and the sixth S-pole piece 2440.
- At least one coil 2900 may be wound around the second N pole piece 2210 or the third S pole piece 2320 between the second permanent magnet 2230 and the third permanent magnet 2330.
- the coil 2900 is wound around the second N-pole piece 2210 and the third S-pole piece 2320 as shown in FIGS. 2A to 2D, respectively.
- at least one coil 2900 may be disposed between the first permanent magnet 2130 and the second permanent magnet 2230 in the first S pole piece 2120 or the second N pole piece 2210, as shown in FIG. 2E.
- At least one may be wound around the third S-pole piece 2320 or the fourth N-pole piece 2410 between the third permanent magnet 2330 and the fourth permanent magnet 2430.
- the coil 2900 may have various arrangements and numbers. When the number of the coils 2900 increases, the required value of the current applied to one coil 2900 may be reduced. However, since the volume increases, the size of the magnetic holding device 2000, the required current application amount, etc. are taken into consideration. What is necessary is just to select the arrangement
- FIG. 3 is a schematic cross-sectional view of a magnetic holding device according to another embodiment of the present invention.
- the magnetic holding device 3000 of the present embodiment includes a first pole piece assembly 3100, a second pole piece assembly 3200, a third pole piece assembly 3300, and a fourth pole.
- the magnetic holding device 3000 of the present embodiment includes the magnetic holding device 2000 and the first S-pole piece 2120, the second N-pole piece 2210, the third S-pole piece 2320 of FIGS. 2A to 2D, and Only the fourth N-pole piece 3410 has a difference, and the rest of the configuration is the same, and only the difference will be described in detail.
- the first S pole piece 3120 (corresponding to 2120 of the magnetic body holding device 2000) includes two first sub S pole pieces 3120s, and any one of the first sub S pole pieces 3120s. Is the S pole of the first permanent magnet 3130 and the other is in contact with the S pole of the fifth permanent magnet 3150, respectively. In addition, the first sub S pole pieces 3120s share the first surface 3121 and the second surface 3122 of the first S pole piece 3120, respectively.
- the second N pole piece 3210 (corresponding to 2210 of the magnetic holding device 2000) includes two second sub N pole pieces 3210 s, and any one of the second sub N pole pieces 3210 s. Is the N pole of the second permanent magnet 3230 and the other is in contact with the N pole of the sixth permanent magnet 3250, respectively. In addition, the second sub N-pole pieces 3210 s share the first surface 3211 and the second surface 3212 of the second N-pole piece 3210, respectively.
- the third S pole piece 3320 (corresponding to 2320 of the magnetic body holding device 2000) includes two third sub S pole pieces 3320 s, and any one of the third sub S pole pieces 3320 s. Is the S pole of the third permanent magnet 3330, the other is in contact with the S pole of the seventh permanent magnet 3350, respectively. In addition, the third sub S pole pieces 3320 s share the first surface 3321 and the second surface 3322 of the third S pole piece 3320, respectively.
- the fourth N pole piece 3410 (corresponding to 2410 of the magnetic holding device 2000) includes two fourth sub N pole pieces 3410 s, and any one of the fourth sub N pole pieces 3410 s. Is the N pole of the fourth permanent magnet 3430 and the other is in contact with the N pole of the eighth permanent magnet 3450, respectively. In addition, the fourth sub-N pole pieces 3410 s share the first and second surfaces 3411 and 4412 of the fourth N-pole pieces 3410, respectively.
- the third sub-S pole piece 3320s of the second sub N-pole piece 3210 s in contact with each other and in contact with the sixth permanent magnet 3250 and the seventh permanent magnet 3350 are in contact with each other.
- the first side of) faces each other, the seventh The second surface of the third sub S-pole piece 3320s in contact with the permanent magnet 3350 and the first surface of the fourth sub-N pole piece 3410s in contact with the eighth permanent magnet 3450 face each other, The first sub S pole pieces 3120s, the second sub N pole pieces 3210s, the third sub S pole pieces 3320s and the fourth sub N pole pieces 3410s are disposed.
- the first sub S pole pieces 3120s may be spaced apart from each other or may be in contact with each other. The same applies to the second sub N pole pieces 3210 s, the third sub S pole pieces 3320 s and the fourth sub N pole pieces 3410 s. When the sub pole pieces 3120s, 3210s, 3320s, and 3410s are separated from each other, the magnetic flow may be separated without mixing.
- the coil 3900 may be any of the first sub S pole pieces 3120s, the second sub N pole pieces 3210s, the third sub S pole pieces 3320s, and the fourth sub N pole pieces 3410s. In the case of winding on, it is preferable that the two sub pole pieces are configured to be wound together as shown in FIG. 3.
- Figure 4a is a schematic perspective view of a magnetic holding device according to another embodiment of the present invention.
- 4B is sectional drawing of the A-A line of FIG. 4A
- FIG. 4C is sectional drawing of the A-A line of a modification.
- the magnetic holding device 2000a may include a first pole piece assembly 2100, a second pole piece assembly 2200, a third pole piece assembly 2300, and a fourth pole.
- the magnetic holding device 2000a of the present embodiment has a configuration similar to that of the magnetic holding device 2000 of FIGS. 2A to 2D, but includes the first surfaces 2111, 2121, and 2141 of the first pole piece assembly 2100 and the first surface. The only difference is in the placement of the second faces 2422, 2412, 2442 of the four pole piece assembly 2400.
- the first faces 2111, 2121, and 2141 of the first pole piece assembly 2100 and the second faces 2422, 2412, and 2442 of the fourth pole piece assembly 2400 correspond to one attachment object. It is formed to be able to hold (formed below in FIG. 4A).
- 2422, 2412, and 2442 are disposed to face one side.
- the magnetic holding device 2000a may be surrounded by a cover 2002 which is a nonmagnetic material, and the first faces 2111 and 2121 of the first pole piece assembly 2100 are outside of the cover 2002. , 2141 and the second faces 2422, 2412, 2442 of the fourth polepiece assembly 2400 are exposed.
- cover 2002 is omitted for convenience of description in FIG. 4A.
- positioning of the coil 2900 may be as shown in FIG. 4C.
- the coil 2900 may be wound around the first S-pole piece 2120 and the fourth N-pole piece 2410.
- the arrangement of the coil 2900 can be changed in various ways in consideration of miniaturization.
- 5A is a schematic perspective view of a magnetic holding device according to another embodiment of the present invention.
- 5B is a schematic plan sectional view of FIG. 5A.
- the magnetic holding device 1000a may include a first pole piece assembly 1100, a second pole piece assembly 1200, a third pole piece assembly 1300, and a fourth pole.
- the magnetic holding device 1000a of the present embodiment has a configuration similar to that of the magnetic holding device 1000 of FIGS. 1A to 1D, but includes the first faces 1111 and 1121 and the fourth pole of the first pole piece assembly 1100. The only difference is in the placement of the second faces 2422, 2412 of the piece assembly 1400.
- the first faces 1111 and 1121 of the first pole piece assembly 1100 and the second faces 1422 and 1412 of the fourth pole piece assembly 1400 can hold one attachment object. Is formed. Preferably, the first faces 1111 and 1121 of the first pole piece assembly 1100 and the second faces 1422 of the fourth pole piece assembly 1400 to hold the attachment object having one flat surface. 1412 is arranged to face one side.
- the magnetic holding device 1000a may be surrounded by a cover (not shown), which is a nonmagnetic material, similar to the magnetic holding device 2000a described above, and the first surfaces 1111 of the first pole piece assembly 1100 may be outside of the cover. , 1121 and the second faces 1422, 1412 of the fourth pole piece assembly 1400 are configured to be exposed.
- the cover is omitted for convenience of description.
- the coil 1900 does not protrude in the vertical direction or the outward direction.
- the coil 1900 does not affect the miniaturization even if it protrudes in the inward direction, the groove may not be formed in the inner direction of the second N pole piece 1210 and the third N pole piece 1310.
- the coil 1900 is illustrated as being wound around the second N pole piece 1210 and the third N pole piece 1310, but may be wound around other pole pieces.
- FIG. 6 is a schematic cross-sectional view of a magnetic holding device according to another embodiment of the present invention.
- the magnetic holding device 1000b may include a first pole piece assembly 1100, a second pole piece assembly 1200, a third pole piece assembly 1300, and a fourth pole piece assembly ( 1400, a coil 1900, and a controller (not shown).
- the magnetic holding device 1000b of the present embodiment has a configuration similar to that of the magnetic holding device 1000 of FIGS. 1A to 1D, but includes the first surfaces 1111 and 1121 and the fourth pole of the first pole piece assembly 1100. The only difference is in the placement of the second faces 2422, 2412 of the piece assembly 1400.
- the first faces 1111 and 1121 of the first pole piece assembly 1100 and the second faces 1422 and 1412 of the fourth pole piece assembly 1400 can hold one attachment object. Is formed. Preferably, the first faces 1111 and 1121 of the first pole piece assembly 1100 and the second faces 1422 of the fourth pole piece assembly 1400 to hold the attachment object having one flat surface. 1412 is arranged to face one side.
- the magnetic holding device 1000b is configured such that the second S-pole piece 1220, the third N-pole piece 1310, and the fourth S-pole piece 1420 are positioned.
- the magnetic holding device 1000b of the present embodiment can obtain the maximum holding force with respect to the unit volume.
- first pole piece assembly 1100 and the fourth pole piece assembly 1400 are fixed and the second pole piece assembly 1200 and the third pole piece assembly 1300 are moved, thereby moving between the first and second arrangements.
- the transition is made.
- the second pole piece assembly 1200 and the third pole piece assembly 1300 may be formed of the first surfaces 1111 and 1121 of the first pole piece assembly 1100 and the fourth pole piece assembly 1400 as shown in FIG. 6. It is configured to move in the direction along the two faces 1412, 1422.
- the second pole piece assembly 1200 and the third pole piece assembly 1300 may be guided by a groove formed in the cover 1002.
- this configuration can be applied to other embodiments.
- FIG. 7 is a schematic cross-sectional view of a magnetic holding device according to another embodiment of the present invention.
- the magnetic holding device 2000b may include a first pole piece assembly 2100, a second pole piece assembly 2200, a third pole piece assembly 2300, and a fourth pole piece assembly ( 2400, a coil 2900, and a controller (not shown).
- the magnetic holding device 2000b of the present embodiment has a configuration similar to that of the magnetic holding device 2000 of FIGS. 2A to 2D, but includes the first surfaces 2111, 2121, and 2141 of the first pole piece assembly 2100 and the first surface. The only difference is in the placement of the second faces 2422, 2412, 2442 of the four pole piece assembly 2400.
- the magnetic holding device 2000b of the present embodiment may be implemented by stacking the pole pieces and the permanent magnets once more outside the magnetic holding device 1000b of FIG. 6. Specifically, the first N-pole piece 2110 in the space formed by the first S-pole piece 2120, the second N-pole piece 2210, the third S-pole piece 2320, and the fourth N-pole piece 2410.
- the second S-pole piece 2220, the third N-pole piece 2310 and the fourth S-pole piece 2420 are located, the fifth N-pole piece 2140, the fifth S-pole piece 2240, The first S-pole piece 2120, the second N-pole piece 2210, the third S-pole piece 2320, and the third space in the space formed by the sixth N-pole piece 2340 and the sixth S-pole piece 2440.
- 4N pole piece 2410 is located.
- one layer of pole pieces and permanent magnets may be stacked to obtain the magnetic holding device 2000b of FIG. 7, and in this case, a larger holding force than the increased volume for the device configuration may be obtained. You can get it. In this way, continuous lamination is possible, thereby obtaining a large holding force for the unit volume.
- FIGS. 8A and 8B are schematic cross-sectional views of a magnetic holding device according to another embodiment of the present invention.
- the magnetic body holding apparatus 1000c of FIG. 8A and the magnetic body holding apparatus 1000d of FIG. 8B have the same configuration as the magnetic body holding apparatus 1000 of FIGS. 1A to 1D, but only the shape of the first pole piece assembly 1100. Do it differently.
- the first faces 1111 and 1121 of the first pole piece assembly 1100 and the second faces 1412 and 1422 of the fourth pole piece assembly 1400 hold one attachment object. It can be formed to be.
- the first surfaces 1111 and 1121 of the first pole piece assembly 1100 and the second surfaces 1412 and 1422 of the fourth pole piece assembly 1400 may be disposed to face one side.
- FIG. 8A and 8B illustrate a modification of only the first pole piece assembly 1100, but the fourth pole piece assembly 1400 may be modified. Such deformation may be determined by the shape, size, and the like of the attachment object.
- FIG. 9 is a schematic cross-sectional view of a magnetic holding device according to another embodiment of the present invention.
- the magnetic holding device 2000c of FIG. 9 has the same configuration as the magnetic holding device 2000 of FIGS. 2A to 2D, but differs only in the shape of the first pole piece assembly 2100.
- the first faces 2111, 2121, and 2141 of the first pole piece assembly 2100 and the second faces 2412, 2422, and 2442 of the fourth pole piece assembly 2400 may be attached to one attachment object. It can be formed to hold.
- the first faces 2111, 2121, and 2141 of the first pole piece assembly 2100 and the second faces 2412, 2422, and 2442 of the fourth pole piece assembly 2400 may be disposed to face one another.
- the first S-pole piece 2120 of the first pole piece assembly 2100 may form two first surfaces 2121.
- FIGS. 10A to 10D are schematic cross-sectional views of a magnetic holding device according to another embodiment of the present invention.
- the magnetic holding device 4000 of the present embodiment includes a first pole piece assembly 4100, a second pole piece assembly 4200, a third pole piece assembly 4300, and the like. And a fourth pole piece assembly 4400, a first connection pole piece 4500, a second connection pole piece 4600, a coil 4900, and a control device (not shown).
- the first pole piece assembly 4100 includes a first N pole piece 4110, a first S pole piece 4120, and a first permanent magnet 4130.
- the first N-pole piece 4110 is a magnetic body and has a first face 4111 and a second face 4112.
- the first S-pole piece 4120 is a magnetic material and has a first surface 4121 and a second surface 4122.
- the first permanent magnet 4130 is disposed such that the N pole contacts the first N pole piece 4110 and the S pole contacts the first S pole piece 4120.
- the second pole piece assembly 4200 includes a second N pole piece 4210, a second S pole piece 4220, and a second permanent magnet 4230.
- the second N pole piece 4210 is a magnetic body and has a first face 4211 and a second face 4212.
- the second S-pole piece 4220 is a magnetic substance and includes a first face 4221 and a second face 4222.
- the second permanent magnet 4230 is disposed such that the N pole contacts the second N pole piece 4210, and the S pole contacts the second S pole piece 4220.
- the third pole piece assembly 4300 includes a third N pole piece 4310, a third S pole piece 4320, and a third permanent magnet 4330.
- the third N-pole piece 4310 is a magnetic body and has a first surface 4311 and a second surface 4312.
- the third S-pole piece 4320 is a magnetic material and includes a first face 4321 and a second face 4322.
- the third permanent magnet 4330 is disposed such that the N pole contacts the third N pole piece 4310, and the S pole contacts the third S pole piece 4320.
- the fourth pole piece assembly 4400 includes a fourth N pole piece 4410, a fourth S pole piece 4420, and a fourth permanent magnet 4430.
- the fourth N-pole piece 4410 is a magnetic body and has a first face 4411 and a second face 4412.
- the fourth S-pole piece 4420 is a magnetic material and has a first surface 4421 and a second surface 4422.
- the fourth permanent magnet 4430 is disposed such that the N pole contacts the second N pole piece 4410 and the S pole contacts the fourth S pole piece 4420.
- the first connecting pole piece 4500 has a first face 4501 and a second face 4502 and is made of magnetic material.
- the second connecting pole piece 4600 has a first face 4601 and a second face 4602 and is made of magnetic material.
- the second surface 4112 of the first N-pole piece 4110 and the first surface 4221 of the second S-pole piece 4220 face each other, and the second surface 4122 of the first S-pole piece 4120.
- the first surface 4211 of the second N-pole piece 4210 face each other, and the second surface 4212 of the second N-pole piece 4210 and the first surface of the first connection pole piece 4500.
- the 4501 faces each other, the second surface 4222 of the second S-pole piece 4220 and the first surface 4601 of the second connecting pole piece 4600 face each other, and the first connecting pole piece (
- the first surface 4311 of the piece 4310 faces each other, and the second surface 4312 of the third N-pole piece 4310 and the first surface 4421 of the fourth S-pole piece 4420 face each other.
- the first pole piece assembly 4100 and the second pole so that the second surface 4322 of the third S pole piece 4320 and the first surface 4411 of the fourth N pole piece 4410 face each other. peace
- the assembly (4200), the third pole piece assembly 4300, the fourth pole piece assembly 4400, a first connection pole piece (4500) and the second connection pole piece (4600) is disposed.
- first surfaces 4111 and 4121 of the first pole piece assembly 4100 and the second surfaces 4412 and 4422 of the fourth pole piece assembly 4400 may hold one attachment object 1. Is formed. Specifically, the first S-pole piece 4120, the second N-pole piece 4210, the first connecting pole piece 4500, the third S-pole piece 4320, and the fourth N-pole piece 4410 are formed. The first N-pole piece 4110, the second S-pole piece 4220, the second connecting pole piece 4600, the third N-pole piece 4310 and the fourth S-pole piece 4420 are located in the space.
- the first pole piece assembly 4100, the fourth pole piece assembly 4400, the first connecting pole piece 4500 and the second connecting pole piece 4600 are fixed, and the second pole piece assembly 4200 and the third The pole piece assembly 4300 is moved.
- the second pole piece assembly 4200 and the third pole piece assembly 4300 have a second face 4212 of the second N pole piece 4210 and a first face 4501 of the first connecting pole piece 4500.
- the second surface 4222 of the second S-pole piece 4220 and the first surface 4601 of the second connecting pole piece 4600 are in contact with each other, and the third S-pole piece 4320
- the first surface 4321 and the second surface 4502 of the first connecting pole piece 4500 are in contact with each other, and the first surface 4311 and the second connecting pole piece 4600 of the third N-pole piece 4310 are in contact with each other.
- the second side 4602 of the () contact each other, wherein the first pole piece assembly 4100 and the second pole piece assembly 4200 are spaced apart, the third pole piece assembly 4300 and the fourth pole piece assembly 4300 ) Is spaced apart from the first arrangement (as shown in FIGS. 10A and 10B), and the second surface 4112 of the first N-pole piece 4110 and the first surface 4221 of the second S-pole piece 4220. In contact with each other, the second surface 4122 of the first S-pole piece 4120 and the first surface of the second N-pole piece 4210.
- the second surface 4312 of the third N-pole piece 4310 and the first surface 4421 of the fourth S-pole piece 4420 come in contact with each other, and the third S-pole piece 4320 is in contact with each other.
- the second surface 4322 and the first surface 4411 of the fourth N-pole piece 4410 wherein the second pole piece assembly 4200 and the third pole piece assembly 4300 are connected to the first connection pole. It is configured to be movable so as to enable switching between the piece 4500 and the second connecting pole piece 4600 and a second arrangement (position such as FIGS. 10C and 10D) spaced apart.
- Movement of the second pole piece assembly 4200 and the third pole piece assembly 4300 may be implemented in various ways.
- a guide rod 4001 is employed to guide the pole piece assemblies 4200 and 4300 through the second pole piece assembly 4200 and the third pole piece assembly 4300.
- the guide rod 4001 is preferably made of nonmagnetic material so as not to affect magnetic flow.
- the movement of the pole piece assembly may also be made by a known conveying method such as a rail, a linear guide, or the like.
- the elastic means for applying an elastic force so that the first pole piece assembly 4100 and the second pole piece assembly 4200 away from each other may be interposed.
- an elastic means (not shown) is applied between the third pole piece assembly 4300 and the fourth pole piece assembly 4400 so that the third pole piece assembly 4300 and the fourth pole piece assembly 4400 are separated from each other. City, for example a spring) may be interposed.
- elastic means for applying an elastic force between the second pole piece assembly 4200 and the connecting pole pieces (4500, 4600), the second pole piece assembly (4200) and the connecting pole pieces (4500, 4600) away from each other may be interposed.
- elastic means for applying an elastic force between the third pole piece assembly 4300 and the connecting pole pieces (4500, 4600), the third pole piece assembly (4300) and the connecting pole pieces (4500, 4600) away from each other may be interposed.
- the coil 4900 may include a first N pole piece 4110, a first S pole piece 4120, a second N pole piece 4210, a second S pole piece 4220, a third N pole piece 4310, and a coil. It is wound around one or more of the 3rd S pole piece 4320, the 4th N pole piece 4410, the 4th S pole piece 4420, the 1st connection pole piece 4500, and the 2nd connection pole piece 4600. .
- the current is supplied to the coil 4900 by a controller. When the current is supplied to the coil 4900, a portion of the pole piece wound like an electromagnet is magnetized.
- the magnetic flow When the magnetic flow is formed by the inner pole pieces on which the coil 4900 is wound, the magnetic flow can be strengthened or weakened by supplying current to the coil 4900. As will be described later, by controlling the current applied to the coil 4900, it is possible to switch between the first arrangement and the second arrangement by weakening the already formed magnetic flow.
- the arrangement of the coils 4900 can be wound around any pole piece if a switch between the first arrangement and the second arrangement is possible.
- the coil 4900 is wound around the second connection pole piece 4600, the first N pole piece 4110, and the fourth S pole piece 4420 as shown in FIGS. 10A to 10D.
- the coil 4900 may be located inside the device, thereby reducing the device size.
- the coil 4900 can also be wound around the second S-pole piece 4220 or the third N-pole piece 4310.
- the coil 4900 may have various arrangements and numbers. If the number of the coils 4900 increases, the required value of the current applied to one coil 4900 may be small, but since the volume may be larger, the size of the magnetic holding device 4000, the required current application amount, and the like. In consideration of the above, the arrangement and number of coils 4900 may be selected.
- the magnetic holding device 4000 has a first arrangement, and no current is supplied to the coil 4900.
- the magnetic flow resulting from the permanent magnets 4330 circulates and the first faces 4111, 4121 of the first pole piece assembly 4100 and the second faces 4412, 4422 of the fourth pole piece assembly 4400.
- the magnetic attachment object 1 is held.
- the magnetic flow shown by dotted lines in FIG. 10A is reduced. That is, the coils 4900 to reduce the magnetic flow generated by magnetizing the pole pieces 4210, 4220, 4310, 4320, 4500, and 4600 by the second permanent magnet 4230 and the third permanent magnet 4330.
- Apply current to As the current applied to the coil 4900 increases, the attraction force between the second pole piece assembly 4200 / the third pole piece assembly 4300 and the first connection pole piece 4500 / the second connection pole piece 4600 decreases. And reaches a predetermined current value, between the second pole piece assembly 4200 and the first connection pole piece 4500 / the second connection pole piece 4600 and the third pole piece assembly 4300 and the first.
- the second pole piece assembly 4200 and the third pole piece assembly 4300 are connected to the pole pieces 4500 and 4600 by elastic means interposed between the connection pole piece 4500 and the second connection pole piece 4600. Can be separated from. At this time, a certain amount of attraction force acts between the second pole piece assembly 4200 and the first pole piece assembly 4100 and between the third pole piece assembly 4300 and the fourth pole piece assembly 4400. Accordingly, the second pole piece assembly 4200 and the third pole piece assembly 4300 come into contact with the first pole piece assembly 4100 and the fourth pole piece assembly 4400, respectively, as shown in FIG. 10C.
- the magnetic holding device 4000 is in a second arrangement, such that the internal circulating magnetic flow and the third pole piece assembly between the first pole piece assembly 4100 and the second pole piece assembly 4200. Internal cyclic magnetic flows are formed between the 4300 and the fourth pole piece assembly 4400, respectively. That is, when the magnetic holding device 4000 is in the second arrangement, the magnetic flow caused by the first permanent magnet 4130 and the fourth permanent magnet 4430 does not affect the external attachment object 1. , The second permanent magnet 4230 and the third permanent magnet 4330 are directed. Thereby, the attachment object 1 can be released.
- a current may be applied to the coil 4900 as shown in FIG. 10D.
- the current is applied to the coil 4900 as illustrated in FIG. 10D, the circulating magnetic flow and the third pole piece assembly 4300 and the fourth pole formed in the first pole piece assembly 4100 and the second pole piece assembly 4200 are applied.
- Each of the cyclic magnetic flows formed in the piece assembly 4400 is weakened. Accordingly, the magnetic flow caused by the first permanent magnet 4100 and the fourth permanent magnet 4400 affects the attachment object 1 and can be held.
- the attraction between the second pole piece assembly 4200 and the connecting pole pieces 4500 and 4600 and between the third pole piece assembly 4300 and the connecting pole pieces 4500 and 4600
- the attraction causes the second pole piece assembly 4200 and the third pole piece assembly 4300 to contact the connecting pole pieces 4500 and 4600.
- the resilient means is interposed between the first pole piece assembly 4100 and the second pole piece assembly 4200 and between the third pole piece assembly 4300 and the fourth pole piece assembly 4400, thereby providing each pole piece assembly. It is desirable to further promote separation of the liver.
- the magnetic holding device 4000 of the present invention causes the switching between the first arrangement and the second arrangement by controlling the current applied to the coil 4900 by using the controller. Accordingly, the holding and release of the attachment object 1 to the first surfaces 4111 and 4121 of the first pole piece assembly 4100 or the second surfaces 4412 and 4422 of the fourth pole piece assembly 4400 can be controlled. Can be. That is, a DC current necessary for the switching only needs to be applied at the time of switching between holding and releasing, and no current is required to hold the holding and releasing. In the case of the existing electromagnet device, the supply of the current must be maintained in order to maintain the holding or releasing state, and thus the maintenance cost is high. There is this. According to the magnetic holding device 1000 of the present invention, the maintenance cost can be significantly reduced compared to the existing electromagnet device, and there is no room for safety problems even if the power supply is cut off.
- the first permanent magnet 4130, the second permanent magnet 4230, the third permanent magnet 4330 and the fourth permanent magnet 4430 is preferably the same strength. This is because when the internal circulating magnetic flow is formed, the magnetic flow flowing out can be minimized. That is, by similarizing the characteristics of the permanent magnets 4130, 4230, 4330, 4430, it is possible to minimize the magnetic flow (residual magnetism) flowing out in the direction of the attachment object (1) upon release as shown in FIG.
- a strong magnetic force by the permanent magnets 4130 and 4430 may be applied to the attaching object 1, and thus, the attachment object 1 and the first pole piece assembly 4100 may be applied. Even if the first faces 4111 and 4121 and the second faces 1412 and 1422 of the fourth pole piece assembly 4400 are separated from each other, the attachment object 1 may be moved and held.
- the thicknesses of the pole pieces 4210, 4220, 4310, and 4320 constituting the second pole piece assembly 4200 and the third pole piece assembly 4300 may have a thickness of the first pole piece assembly 4100 and the fourth pole piece assembly.
- a thickness thicker than the thickness of the pole pieces 4110, 4120, 4410, 4420 constituting the 4400 is preferred in that residual magnetism can be reduced.
- the magnetic flow caused by the first permanent magnet 4130 and the fourth permanent magnet 4430 upon release as shown in FIG. 10C further leads to the second pole piece assembly 4200 and the third pole piece assembly 4300. It becomes easy to peel off, and the residual magnetism in the direction of external attachment object 1 can be minimized.
- FIG. 11A and 11B are schematic cross-sectional views of a magnetic holding device according to still another embodiment of the present invention.
- the magnetic holding device 5000 of the present embodiment includes a first pole piece assembly 5100, a second pole piece assembly 5200, a third pole piece assembly 5300, The fourth pole piece assembly 5400, the first connecting pole piece 5500, the second connecting pole piece 5600, the third connecting pole piece 5700, the coil 5900, and the controller (not shown) O).
- the magnetic holding device 5000 of the present embodiment has a configuration similar to that of the magnetic holding device 4000 described above, only the added configuration will be described in detail and redundant descriptions are avoided.
- the first pole piece assembly 5100 includes a first N pole piece 5110, a first S pole piece 5120, a first permanent magnet 5130, a fifth N pole piece 5140, and a first pole piece 5210. 5 permanent magnets 5150.
- the first N pole piece 5110, the first S pole piece 5120, and the first permanent magnet 5130 are the first N pole pieces 4110 of the magnetic holding device 4000 of FIGS. 10A to 10D.
- the first S pole piece 4120 and the first permanent magnet 4130 are the same.
- the fifth N-pole piece 5140 has a first face 5251 and a second face 5152 and is a magnetic material.
- the fifth permanent magnet 5150 is disposed such that the N pole contacts the fifth N pole piece 5140, and the S pole contacts the first S pole piece 5120.
- the second pole piece assembly 5200 includes a second N pole piece 5210, a second S pole piece 5220, a second permanent magnet 5230, a fifth S pole piece 5240, and a second pole piece 5220. 6 permanent magnets 5250.
- the second N pole piece 5210, the second S pole piece 5220, and the second permanent magnet 5230 are second N pole pieces 4210 of the magnetic body holding device 4000 of FIGS. 10A to 10D.
- the second S-pole piece 4220 and the second permanent magnet 4230 are the same.
- the fifth S-pole piece 5240 has a first surface 5231 and a second surface 5122 and is a magnetic material.
- the sixth permanent magnet 5250 is disposed such that the N pole contacts the second N pole piece 5210, and the S pole contacts the fifth S pole piece 5240.
- the third pole piece assembly 5300 includes a third N pole piece 5310, a third S pole piece 5320, a third permanent magnet 5330, a sixth N pole piece 5340, and a third pole piece 5320. 7 permanent magnet 5350.
- the third N pole piece 5310, the third S pole piece 5320, and the third permanent magnet 5330 may be the third N pole piece 4310 of the magnetic holding device 4000 of FIGS. 10A to 10D.
- the third S pole piece 4320 and the third permanent magnet 4330 are the same.
- the sixth N-pole piece 5340 has a 1st surface 5331 and a 2nd surface 5332, and is a magnetic body.
- the seventh permanent magnet 5350 is disposed such that the N pole contacts the sixth N pole piece 5340, and the S pole contacts the third S pole piece 5320.
- the fourth pole piece assembly 5400 includes a fourth N pole piece 5410, a fourth S pole piece 5520, a fourth permanent magnet 5430, a sixth S pole piece 5440, and a fourth pole piece 5410. 8 permanent magnets 5450.
- the fourth N pole piece 5410, the fourth S pole piece 5520, and the fourth permanent magnet 5430 are the fourth N pole pieces 4410 of the magnetic holding device 4000 of FIGS. 10A to 10D.
- the fourth S-pole piece 4420 and the fourth permanent magnet 4430 are the same.
- the sixth S-pole piece 5440 has a first surface 5441 and a second surface 5442 and is a magnetic material.
- the eighth permanent magnet 5450 is disposed such that the N pole contacts the fourth N pole piece 5410 and the S pole contacts the sixth S pole piece 5440.
- the first surface 5701 of the third connecting pole piece 5700 face each other, and the second surface 5702 of the third connecting pole piece 5700 and the first surface of the sixth N-pole piece 5340.
- the first pole piece assembly (5341) faces each other, and the second face 5322 of the sixth N-pole piece 5340 and the first face 541 of the sixth S-pole piece 5440 face each other. 5100, second pole piece assembly 5200, third pole piece assembly 5300 and fourth pole piece assembly 5400, first connection pole piece 5500, second connection pole piece 5600, and third The connecting pole piece 5700 is disposed.
- first surfaces 5111, 5121, and 5141 of the first pole piece assembly 5100 and the second surfaces 5212, 5422, and 5442 of the fourth pole piece assembly 5400 may be configured to attach one attachment object 1. It is formed to hold. Specifically, the first S-pole piece 5120, the second N-pole piece 5210, the first connecting pole piece 5500, the third S-pole piece 5320, and the fourth N-pole piece 5410 are formed. The first N-pole piece 5110, the second S-pole piece 5220, the second connecting pole piece 5600, the third N-pole piece 5310 and the fourth S-pole piece 5520 are located in the space.
- a space formed by the fifth N-pole piece 5140, the fifth S-pole piece 5240, the third connecting pole piece 5700, the sixth N-pole piece 5340, and the sixth S-pole piece 5440 is formed by the fifth N-pole piece 5140, the fifth S-pole piece 5240, the third connecting pole piece 5700, the sixth N-pole piece 5340, and the sixth S-pole piece 5440.
- the first S-pole piece 5120, the second N-pole piece 5210, the first connecting pole piece 5500, the third S-pole piece 5320 and the fourth N-pole piece 5410 are located in the inside.
- the coil 5900 may include a first N pole piece 5110, a first S pole piece 5120, a second N pole piece 5210, a second S pole piece 5220, and a third N pole piece 5310. , 3rd S pole piece 5320, 4th N pole piece 5410, 4th S pole piece 5520, 5th N pole piece 5140, 5th S pole piece 5240, 6th N pole It is wound around one or more of the piece 5340, the sixth S-pole piece 5440, the first connecting pole piece 5500, the second connecting pole piece 5600, and the third connecting pole piece 5700.
- the coil 5900 may include a first connection pole piece 5500, a second connection pole piece 5600, a first S pole piece 5120, and a fourth N pole piece 5140 as shown in FIGS. 11A and 11B. ) Can be wound.
- the coil 5900 may be located inside the device, thereby reducing the device size.
- the coil 5900 can also be wound around the second N-pole piece 5210 or the third S-pole piece 5320.
- the coil 5900 may have various arrangements and numbers. When the number of the coils 5900 increases, the required value of the current applied to one coil 5900 may be reduced. However, since the volume becomes larger, the size of the magnetic holding device 5000, the required current application amount, etc. are taken into consideration. What is necessary is just to select the arrangement
- the structure of the magnetic holding device 3000 as shown in FIG. 3 is naturally applicable to the magnetic holding device to which the structure of the magnetic holding device 2000 of FIGS. 2A to 2D is applied. That is, the structure of the magnetic holding device 3000 is, the magnetic holding device 2000a of FIGS. 4A to 4C, the magnetic holding device 2000b of FIG. 7, the magnetic holding device 2000c of FIG. 9, and FIGS. 11A and 11B. It is applicable to the magnetic holding device 5000 of the.
- the first connection pole piece 5500 may be formed separately.
Landscapes
- Physics & Mathematics (AREA)
- Electromagnetism (AREA)
- Engineering & Computer Science (AREA)
- Mechanical Engineering (AREA)
- Power Engineering (AREA)
- Electromagnets (AREA)
Abstract
Cette invention concerne un dispositif de support de corps magnétique, comprenant : un premier ensemble de pièces polaires comprenant une première pièce de pôle N, une première pièce de pôle S, et un premier aimant permanent ; un deuxième ensemble de pièces polaires comprenant une deuxième pièce de pôle N, une deuxième pièce de pôle S, et un deuxième aimant permanent ; un troisième ensemble de pièces polaires comprenant une troisième pièce de pôle N, une troisième pièce de pôle S, et un troisième aimant permanent ; un quatrième ensemble de pièces polaires comprenant une quatrième pièce de pôle N, une quatrième pièce de pôle S, et un quatrième aimant permanent ; une bobine enroulée autour d'une ou plusieurs de la première pièce de pôle N et des pièces polaires ; et un dispositif de commande pour commander un courant appliqué à la bobine. Deux ou plusieurs du premier ensemble de pièces polaires, du deuxième ensemble de pièces polaires, du troisième ensemble de pièces polaires et du quatrième ensemble de pièces polaires peuvent se déplacer de telle sorte que la commutation est possible entre un premier agencement, dans lequel le deuxième ensemble de pièces polaires et le troisième ensemble de pièces polaires sont en contact mutuel, le premier ensemble de pièces polaires et le deuxième ensemble de pièces polaires sont espacés l'un de l'autre, et le troisième ensemble de pièces polaires et le quatrième ensemble de pièces polaires sont espacés l'un de l'autre, et un second agencement, dans lequel le premier ensemble de pièces polaires et le deuxième ensemble de pièces polaires sont en contact mutuel, le troisième ensemble de pièces polaires et le quatrième ensemble de pièces polaires sont en contact mutuel, et le deuxième ensemble de pièces polaires et le troisième ensemble de pièces polaires sont espacés l'un de l'autre. Le dispositif de commande commande un courant, qui est appliqué à la bobine, entraînant ainsi la commutation entre le premier agencement et le second agencement, et commandant ainsi la retenue de l'objet à fixer et la libération de celui-ci.
Applications Claiming Priority (2)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
KR10-2015-0036199 | 2015-03-16 | ||
KR1020150036199A KR101616999B1 (ko) | 2015-03-16 | 2015-03-16 | 자성체 홀딩 장치 |
Publications (1)
Publication Number | Publication Date |
---|---|
WO2016148321A1 true WO2016148321A1 (fr) | 2016-09-22 |
Family
ID=55916011
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
PCT/KR2015/002573 WO2016148321A1 (fr) | 2015-03-16 | 2015-03-17 | Dispositif de support de corps magnétique |
Country Status (2)
Country | Link |
---|---|
KR (1) | KR101616999B1 (fr) |
WO (1) | WO2016148321A1 (fr) |
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
WO2022266255A1 (fr) * | 2021-06-15 | 2022-12-22 | Magswitch Technology, Inc. | Systèmes et procédés de manipulation de composants |
Families Citing this family (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
KR102544759B1 (ko) * | 2021-09-14 | 2023-06-15 | 최태광 | 자기력 제어 장치 및 이를 이용한 자성체 홀딩 장치 |
CN113681327A (zh) * | 2021-09-15 | 2021-11-23 | 哈尔滨工业大学 | 一种可用于超精密主轴的磁力吸盘 |
Citations (5)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US4956625A (en) * | 1988-06-10 | 1990-09-11 | Tecnomagnete S.P.A. | Magnetic gripping apparatus having circuit for eliminating residual flux |
KR100668923B1 (ko) * | 2005-12-10 | 2007-01-12 | (주)에마텍 | 홀딩력이 극대화된 전자기력을 이용한 조작기 |
KR100708013B1 (ko) * | 2006-04-24 | 2007-04-16 | 이용구 | 마그네틱 척 |
KR101125280B1 (ko) * | 2010-09-20 | 2012-03-21 | 최태광 | 영구자석과 전자석을 결합한 자성체 홀딩장치 |
KR101130218B1 (ko) * | 2011-05-20 | 2012-03-26 | 최태광 | 영구자석과 전자석을 결합한 자성체 홀딩장치 |
Family Cites Families (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JPH0510326Y2 (fr) * | 1988-02-26 | 1993-03-15 | ||
FR2931994B1 (fr) * | 2008-05-27 | 2010-06-25 | Commissariat Energie Atomique | Dispositif de fixation magnetique bistable. |
KR101103381B1 (ko) * | 2010-02-17 | 2012-01-06 | (주)에마텍 | 영구자석과 스프링을 이용한 조작기 및 그것을 구비하는 구동 장치 |
KR101553168B1 (ko) * | 2014-06-24 | 2015-09-14 | 최태광 | 잔류 자기를 최소화한 자성체 홀딩 장치 |
-
2015
- 2015-03-16 KR KR1020150036199A patent/KR101616999B1/ko not_active IP Right Cessation
- 2015-03-17 WO PCT/KR2015/002573 patent/WO2016148321A1/fr active Application Filing
Patent Citations (5)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US4956625A (en) * | 1988-06-10 | 1990-09-11 | Tecnomagnete S.P.A. | Magnetic gripping apparatus having circuit for eliminating residual flux |
KR100668923B1 (ko) * | 2005-12-10 | 2007-01-12 | (주)에마텍 | 홀딩력이 극대화된 전자기력을 이용한 조작기 |
KR100708013B1 (ko) * | 2006-04-24 | 2007-04-16 | 이용구 | 마그네틱 척 |
KR101125280B1 (ko) * | 2010-09-20 | 2012-03-21 | 최태광 | 영구자석과 전자석을 결합한 자성체 홀딩장치 |
KR101130218B1 (ko) * | 2011-05-20 | 2012-03-26 | 최태광 | 영구자석과 전자석을 결합한 자성체 홀딩장치 |
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
WO2022266255A1 (fr) * | 2021-06-15 | 2022-12-22 | Magswitch Technology, Inc. | Systèmes et procédés de manipulation de composants |
Also Published As
Publication number | Publication date |
---|---|
KR101616999B1 (ko) | 2016-04-29 |
Similar Documents
Publication | Publication Date | Title |
---|---|---|
WO2016003040A1 (fr) | Dispositif de support de substance magnétique | |
WO2015156494A1 (fr) | Appareil de maintien de corps magnétique pour réduire au minimum le magnétisme résiduel | |
WO2016178473A1 (fr) | Dispositif de commande de flux magnétique | |
WO2017078431A1 (fr) | Moteur | |
WO2018169203A1 (fr) | Moteur à flux variable | |
WO2012060521A1 (fr) | Moteur à bobine mobile et procédé de commande de celui-ci | |
WO2020218746A1 (fr) | Actionneur pour caméra et module de caméra le comprenant | |
WO2015133731A1 (fr) | Actionneur d'appareil-photo ayant une fonction de mise au point automatique et fonction de correction de tremblement d'appareil-photo | |
WO2016148321A1 (fr) | Dispositif de support de corps magnétique | |
WO2016117751A1 (fr) | Dispositif de maintien de corps magnétique | |
WO2012026685A2 (fr) | Moteur linéaire | |
WO2018044141A1 (fr) | Appareil de détection d'emplacement de rotor et moteur comprenant l'appareil | |
WO2012033262A1 (fr) | Appareil de commutation d'énergie électrique empêchant un dysfonctionnement | |
WO2018182105A1 (fr) | Commutateur à grande vitesse | |
WO2014178470A1 (fr) | Dispositif d'actionnement à aimant permanent | |
WO2020080906A1 (fr) | Actionneur de caméra et module de caméra le comprenant | |
WO2020116835A1 (fr) | Dispositif de commande de trajet de flux magnétique | |
WO2023008822A1 (fr) | Actionneur de caméra | |
WO2017131296A1 (fr) | Machine à rotation électrique | |
WO2017204425A1 (fr) | Équipement électrique à aimant permanent et à longueur de pôle magnétique non uniforme | |
WO2023182749A1 (fr) | Système de regroupement de batteries utilisant un dispositif de génération d'énergie configuré pour générer de l'énergie de manière successive et indépendante | |
WO2019039684A1 (fr) | Émetteur-récepteur de puissance sans fil et appareil d'affichage doté de celui-ci | |
WO2023182750A1 (fr) | Système de regroupement de batteries utilisant un dispositif de génération d'énergie indépendant séquentiel ayant une fonction de sélection d'intensité du courant induit | |
EP3652762A1 (fr) | Émetteur-récepteur de puissance sans fil et appareil d'affichage doté de celui-ci | |
WO2021187774A1 (fr) | Ensemble d'extinction d'arc et disjoncteur le comprenant |
Legal Events
Date | Code | Title | Description |
---|---|---|---|
121 | Ep: the epo has been informed by wipo that ep was designated in this application |
Ref document number: 15885624 Country of ref document: EP Kind code of ref document: A1 |
|
NENP | Non-entry into the national phase |
Ref country code: DE |
|
122 | Ep: pct application non-entry in european phase |
Ref document number: 15885624 Country of ref document: EP Kind code of ref document: A1 |