CN201594434U - Bipolar splicing structure of magnet - Google Patents

Bipolar splicing structure of magnet Download PDF

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Publication number
CN201594434U
CN201594434U CN2010201247988U CN201020124798U CN201594434U CN 201594434 U CN201594434 U CN 201594434U CN 2010201247988 U CN2010201247988 U CN 2010201247988U CN 201020124798 U CN201020124798 U CN 201020124798U CN 201594434 U CN201594434 U CN 201594434U
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China
Prior art keywords
magnetic
magnet
conductive board
vertical
magnetic conductive
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Expired - Fee Related
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CN2010201247988U
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Chinese (zh)
Inventor
潘君昂
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PAN YUEQUN
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PAN YUEQUN
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Priority to CN2010201247988U priority Critical patent/CN201594434U/en
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Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

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Abstract

A bipolar splicing structure of a magnet comprises a magnet. One end of an optional magnetic pole of the magnet is fixedly connected with a transverse magnetic-conducting plate, one side or two sides of the magnet are provided with vertical magnetic-conducting plates perpendicularly connected with the transverse magnetic-conducting plate, and a non-magnetic-conducting partition with certain thickness is disposed between the vertical magnetic-conducting plate and the magnet. As the transverse magnetic-conducting plate and the vertical magnetic-conducting plates can generate magnetic flux after the transverse magnetic-conducting plate is connected with the magnet, under action of the magnetic flux, a magnetic line of force of the end of the magnet contacting with the transverse magnetic-conducting plate can be shortened and reach the other pole of the magnet via magnetic-conducting paths of the transverse magnetic-conducting plate and the vertical magnetic-conducting plates,. During the process, the magnetic line of force is squeezed to extend upwards when reaching the other pole of the magnet because the magnetic line of force is conducted and restrained by the transverse magnetic-conducting plate and the vertical magnetic-conducting plates, thereby realizing the purpose of strengthening magnetic force on conditions without changing texture or volume of the magnet. When the magnet with the bipolar splicing structure is applied to magnetic products such as motors, generators, electromagnetic equipment and the like, the bipolar splicing structure has the advantages of saving energy, reducing consumption, increasing work efficiency and the like.

Description

A kind of multipole of magnet is pieced together magnetic structure
Technical field:
The utility model relates to a kind of multipole of magnet and pieces together magnetic structure, and it is applicable to fields such as motor, generator, electromagnetic product and medicine equipment.
Background technology
As everyone knows, the magnetic line of force shape of magnet and magnetism intensity depend on the density of the quality of magnet own and the size of magnet volume, and its magnetic line of force shape and magnetism intensity can not change under the constant situation of same quality and volume size.
The utility model content:
The purpose of this utility model is to overcome above-mentioned the deficiencies in the prior art, provides a kind of multipole that still can strengthen magnetic force under the situation that does not change magnet quality and volume to piece together magnetic structure.
For achieving the above object, the utility model has adopted following technical scheme:
A kind of multipole of magnet is pieced together magnetic structure, comprise magnet, one end of the arbitrary magnetic pole of described magnet is connected with a horizontal magnetic conductive board, the one or both sides of described magnet are provided with the vertical magnetic conductive board with horizontal magnetic conductive board vertical connection, are provided with certain thickness non-magnetic conduction sept between described vertical magnetic conductive board and the magnet.
The both sides of described magnet be respectively equipped with one with the horizontal vertical magnetic conductive board of magnetic conductive board vertical connection.
Described horizontal magnetic conductive board and vertical magnetic conductive board can be magnetic conduction iron plates, also can be the magnetic conduction steel plates.
Described non-magnetic conduction sept can be any one in epoxy plate, non-magnetic stainless steel plate, timber, timber synthetic, PVC plate, pottery and the glass.
Described magnet can be cuboid shape or cylindrical shape.
Described magnet can be permanent magnet or electromagnet.
Can adopt bonding way to fix between described horizontal magnetic conductive board and the magnet, also can adopt the mode of being spirally connected to fix.
Described vertical magnetic conductive board and laterally the vertical connection between the magnetic conductive board can be bonding, weld, be spirally connected or integrally formed.
The utility model has following advantage with respect to prior art after adopting above technical scheme:
The utility model splicing can produce magnetic flux at the horizontal magnetic conductive board and the vertical magnetic conductive board of the arbitrary magnetic pole of magnet, under the effect of magnetic flux, the magnetic line of force of that end that magnet contacts with horizontal magnetic conductive board will shorten also through laterally magnetic conductive board and vertically another utmost point of magnetic conduction path arrival magnet of magnetic conductive board, in this process, the magnetic line of force produces extruding because of the conducting constraint that is subjected to horizontal magnetic conductive board and vertical magnetic conductive board and extends upward when arriving another utmost point of magnet, thereby magnetic force is increased.The magnet applications of this multipole being pieced together magnetic structure is on band magnetic products such as motor, generator, electromagnetic equipment the time, advantage such as have energy-saving consumption-reducing, increase work efficiency.
Description of drawings:
Fig. 1 is for carrying out the structural representation that multipole is pieced together magnetic to cuboid shape magnet;
Fig. 2 is for carrying out the radially structural representation of multipole assembly magnetic to the cylindrical shape magnet;
Fig. 3 is for carrying out the structural representation that axial multipole is pieced together magnetic to the cylindrical shape magnet;
Fig. 4 is the schematic side view of Fig. 3.
Embodiment:
As shown in the figure, enumerated the multipole of cuboid shape magnet and cylindrical shape magnet among Fig. 1 to Fig. 4 respectively and pieced together magnetic structure, among the figure: 1 is magnet, and 2 is that horizontal magnetic conductive board, 3 is that vertical magnetic conductive board, 4 is non-magnetic conduction sept.
Multipole according to magnet described in the utility model is pieced together magnetic structure, comprise magnet 1, the N utmost point of magnet 1 (also can be the S utmost point, present embodiment is with the N utmost point for example) end is connected with a horizontal magnetic conductive board 2, the both sides of magnet 1 be respectively equipped with one with the horizontal vertical magnetic conductive board 3 of magnetic conductive board 2 vertical connections (also can be only a vertical magnetic conductive board to be set in magnet one side, but from increasing the effect aspect of magnetic force, optimal way is to adopt the magnet both sides that the structure of vertical magnetic conductive board all is set, so present embodiment is given an example with the latter), be provided with certain thickness non-magnetic conduction sept 4 between vertical magnetic conductive board 3 and the magnet 1.Can produce magnetic flux owing to be connected horizontal magnetic conductive board 2 in back and vertical magnetic conductive board 3 with magnet 1, therefore under the effect of magnetic flux, the magnetic line of force of that end that magnet 1 contacts with horizontal magnetic conductive board 2 will shorten also through laterally magnetic conductive board 2 and vertically the magnetic conduction path arrival magnet S utmost point of magnetic conductive board 3, in this process, the magnetic line of force produces extruding because of the conducting constraint that is subjected to horizontal magnetic conductive board 2 and vertical magnetic conductive board 3 and extends upward when arriving the S utmost point of magnet 1, thereby reaches the purpose of enhancing magnet magnetic force.
Laterally the thickness of magnetic conductive board 2, vertical magnetic conductive board 3 and non-magnetic conduction sept 4 can be chosen as 1/3~1/6 of magnet 1 thickness, and preferred value is 1/4; Mode such as laterally can adopt between magnetic conductive board 2 and the magnet 1 or be spirally connected bonding and fix, but can not adopt welding manner, because magnet the demagnetization phenomenon can occur under the situation of welding, then can adopt between vertical magnetic conductive board 3 and the horizontal magnetic conductive board 2 bonding, weld, be spirally connected or mode vertical connection such as integrally formed.Laterally magnetic conductive board 2 and vertical magnetic conductive board 3 can be magnetic conduction iron plates, also can be magnetic conduction steel plate or other permeability magnetic material, and non-magnetic conduction sept 4 can be non-magnetic stainless steel plate, epoxy plate, timber, timber synthetic, PVC plate, pottery, glass etc.Magnet 1 both can be a permanent magnet, also can be electromagnet, and its shape can be various regular shapes such as cuboid shape or cylindrical shape.
Test statistics factually, multipole assembly magnetic structure of the present utility model can make the magnetic force of magnet increase more than 15%.By this principle, as using this to piece together magnetic structure on the motor, can still can obtain same torsional forces more than 15% reducing power consumption, equally under the constant situation of power consumption, Motor torque power can improve more than 15%, therefore this assembly magnetic structure have energy-saving consumption-reducing, advantage such as increase work efficiency.
The foregoing description is only for the usefulness that the utility model is described; and be not to restriction of the present utility model; the those of ordinary skill in relevant technologies field; under the situation that does not break away from spirit and scope of the present utility model; can also make various variations and modification; therefore all technical schemes that are equal to also belong to category of the present utility model, and scope of patent protection of the present utility model should be limited by each claim.

Claims (8)

1. the multipole of a magnet is pieced together magnetic structure, comprise magnet, it is characterized in that: an end of the arbitrary magnetic pole of described magnet is connected with a horizontal magnetic conductive board, the one or both sides of described magnet are provided with the vertical magnetic conductive board with horizontal magnetic conductive board vertical connection, are provided with certain thickness non-magnetic conduction sept between described vertical magnetic conductive board and the magnet.
2. the multipole of magnet is pieced together magnetic structure according to claim 1, it is characterized in that: the both sides of described magnet be respectively equipped with one with the horizontal vertical magnetic conductive board of magnetic conductive board vertical connection.
3. piece together magnetic structure as the multipole of magnet as described in the claim 2, it is characterized in that: described horizontal magnetic conductive board and vertical magnetic conductive board can be magnetic conduction iron plates, also can be the magnetic conduction steel plates.
4. piece together magnetic structure as the multipole of magnet as described in the claim 2, it is characterized in that: described non-magnetic conduction sept can be any one in epoxy plate, non-magnetic stainless steel plate, timber, timber synthetic, PVC plate, pottery, the glass.
5. piece together magnetic structure as the multipole of magnet as described in the claim 2, it is characterized in that: described magnet can be cuboid shape or cylindrical shape.
6. piece together magnetic structure as the multipole of magnet as described in the claim 2, it is characterized in that: described magnet can be permanent magnet or electromagnet.
7. piece together magnetic structure as the multipole of magnet as described in the claim 2, it is characterized in that: can adopt bonding way to fix between described horizontal magnetic conductive board and the magnet, also can adopt the mode of being spirally connected to fix.
8. piece together magnetic structure as the multipole of magnet as described in the claim 2, it is characterized in that: described vertical magnetic conductive board and vertical connection between the horizontal magnetic conductive board can be bonding, weld, be spirally connected or integrally formed.
CN2010201247988U 2010-03-08 2010-03-08 Bipolar splicing structure of magnet Expired - Fee Related CN201594434U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN2010201247988U CN201594434U (en) 2010-03-08 2010-03-08 Bipolar splicing structure of magnet

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN2010201247988U CN201594434U (en) 2010-03-08 2010-03-08 Bipolar splicing structure of magnet

Publications (1)

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CN201594434U true CN201594434U (en) 2010-09-29

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110136920A (en) * 2019-06-14 2019-08-16 无锡市振华开祥科技有限公司 A kind of demagnetizing mechanism
CN112133516A (en) * 2020-09-15 2020-12-25 宁波韵升股份有限公司 Spliced magnetic steel, tool and assembly method

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110136920A (en) * 2019-06-14 2019-08-16 无锡市振华开祥科技有限公司 A kind of demagnetizing mechanism
CN110136920B (en) * 2019-06-14 2024-03-01 无锡市振华开祥科技有限公司 Demagnetizing device
CN112133516A (en) * 2020-09-15 2020-12-25 宁波韵升股份有限公司 Spliced magnetic steel, tool and assembly method
CN112133516B (en) * 2020-09-15 2021-10-08 宁波韵升股份有限公司 Spliced magnetic steel, tool and assembly method

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C14 Grant of patent or utility model
GR01 Patent grant
C17 Cessation of patent right
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20100929

Termination date: 20120308