DC Magnetic System and a Power Equipment
20200105449 ยท 2020-04-02
Inventors
Cpc classification
F16K31/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
H01F7/1646
ELECTRICITY
H01H2050/365
ELECTRICITY
International classification
Abstract
The invention relates to a DC magnetic system and a power equipment, comprises a yoke and an armature. The yoke comprise a bent U-shaped magnetic conductive member and a cover plate with a hole connected to a top end of the magnetic conductive member. The armature with a laminated structure is inserted into the yoke through the hole in the cover plate, and a bottom surface of the armature is in contact with the magnetic conductive member.
Claims
1. A DC magnetic system, comprising a yoke and an armature, wherein the yoke comprises a U-shaped magnetic conductive member and an armature moving up and down in a limited space within the U-shaped magnetic conductive member, the armature being of a laminated structure.
2. The DC magnetic system according to claim 1, wherein the yoke further comprises a cover plate with a through hole, the armature passing through the through hole of the cover plate so as to be inserted into the yoke.
3. The DC magnetic system according to claim 1, wherein when moving up and down, a bottom surface of the armature is in direct contact with an inner side of a bottom surface of the magnetic conductive member.
4. The DC magnetic system according to claim 1, wherein the yoke further comprises a seat connected to an inner side of a bottom surface of the U-shaped magnetic conductive member; and when moving up and down, the bottom surface of the armature is in contact with an upper surface of the seat.
5. The DC magnetic system according to claim 4, wherein the seat has a laminated structure.
6. The DC magnetic system according to claim 4, wherein the upper surface of the seat is of a platform-like structure, the armature having a flat bottom surface structure matching the upper surface of the seat in size.
7. The DC magnetic system according to claim 4, wherein the seat is of a square structure having an inverted trapezoidal recess provided on the upper surface thereof, the armature having a trapezoidal lower portion structure matching the inverted trapezoidal recess of the upper surface of the seat in size.
8. The DC magnetic system according to claim 1, wherein the DC magnetic system further comprises an induction coil provided on an outer side of the yoke and wound around a frame, and a control circuit connected to the induction coil and used for controlling a current in the induction coil.
9. The DC magnetic system according to claim 8, wherein the DC magnetic system further comprises a conductor provided within a plastic frame above the induction coil, one end of the conductor being connected to the control circuit, and another end thereof being connected to an external power source.
10. A power equipment, comprising the DC magnetic system claim 1.
11. A contactor comprising: a yoke comprising a conductive U-shaped member having a base and first and second arms extending in parallel from first and second ends of the base; and a laminated armature configured to move between the first and second arms and towards the base.
12. The contactor of claim 11, wherein the yoke further comprises a cover plate extending between the first and second arms, and wherein the armature is configured to pass through a hole in the cover plate.
13. The contactor of claim 12, wherein the yoke further comprises a seat on the base between the first and second arms and wherein the armature is configured to contact the seat when fully inserted into the yoke.
14. The contactor of claim 13, wherein the seat is laminated.
15. The contactor of claim 13, wherein the armature has a flat surface configured to mate with a flat surface of the seat when the armature is fully inserted into the yoke.
16. The contactor of claim 13, wherein the armature has a portion configured to mate with a recess in the seat when the armature is fully inserted into the yoke.
17. The contactor of claim 16, wherein the recess is trapezoidal.
18. The contactor of claim 11, further comprising an induction coil disposed within the yoke between the first and second arms and wherein the armature is configured to move in an opening in the induction coil.
19. The contactor of claim 18, wherein the yoke further comprises a cover plate extending between the first and second arms, wherein the armature is configured to pass through a hole in the cover plate, and wherein the induction coil is disposed between the cover plate and the base.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION
[0023] To make objectives, technical solutions, and advantages of the present invention clearer and more comprehensible, the present invention will be further described in detail below through specific embodiments with reference to the accompanying drawings. It should be understood that the specific embodiments described herein are only intended to explain the present invention, rather than to limit the present invention.
[0024] The operating principle of a DC controlled contactor is different from that of an AC controlled contactor; in existing design solutions, when a contact housing frame of a DC controlled contactor is the same as that of an AC controlled contactor in size, the size of the DC control contactor is generally about 10% larger than that of the AC controlled contactor. In addition, the inventor has noticed that the reason for having a larger DC controlled contactor is mainly because the volume of a magnet in a magnetic conductive body is relatively large.
[0025] In order to reduce the size of the DC controlled contactor while maintaining an energy consumption level similar to the original low energy consumption level, the inventor has proposed a DC controlled contactor after research. The main design idea is that a magnetic conductive body of a DC magnetic system adopts a combination of a bent single-piece yoke and a laminated armature. Such a design reduces the volume of the DC magnetic system; at the same time, the system is ensured to have the same low energy consumption level as that of a DC magnetic system using the current solution. The description will be provided below with reference to specific embodiments.
[0026] A preferred embodiment of the present invention provides a DC magnetic system. The magnetic system comprises a yoke 1 for transmitting magnetic lines of force and constraining magnetic flux leakage from diffusing outwards; an armature 2 capable of moving up and down in a direction perpendicular to a lower surface of the yoke 1 under the reaction force; an induction coil 3 wound around a frame; and a control circuit 4 for controlling a current flowing through the induction coil 3.
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[0034] Although a seat with a recess and a rectangular boss are adopted as examples to illustrate the yoke structure with the seat provided by the present invention in the above embodiments, a person of ordinary skill in the art shall understand that the shape of the seat provided by the present invention can be arbitrarily adjusted according to actual requirements so that the seat can be used in conjunction with the armature. In addition, although the above embodiments adopt a cover plate with a through hole to limit an upward and downward movement direction of the armature, a person skilled in the art shall understand that other means can also be adopted to achieve the above position-limiting function, such as adopting a position-limiting protruding block.
[0035] Although the present invention has been described by using the preferred embodiments, the present invention is not limited thereto; and various changes and modifications can be made without departing from the scope of the present invention.