MUTE SELF-GENERATING POWER GENERATOR
20210135540 · 2021-05-06
Inventors
Cpc classification
A63B21/0051
HUMAN NECESSITIES
H02K29/03
ELECTRICITY
H02K5/24
ELECTRICITY
H02K21/22
ELECTRICITY
International classification
Abstract
A mute self-generating power generator comprises a stator power generation armature and a rotor excitation magnet. The armature extends in a direction towards the magnet to form a plurality of cylindrical induction magnetic poles, and windings are wound on the poles; the magnet comprises at least two layers of structures in a direction towards the armature, one of which consists of a non-magnetic conductive material, and the other layer is formed by alternately arranging ferromagnetic material excitation magnets and magnetic conduction material magnetizers in a circumferential direction; a combination ratio of the number of the ferromagnetic material cylindrical induction magnetic poles and the ferromagnetic material excitation magnets on the magnet meets a double three-phase power generation condition. The generator eliminates the root cause of vibration and noise from the principle, so that it works in a mute state, and can well meet use requirements of various fitness equipment.
Claims
1. A mute self-generating power generator, characterized in that, comprising a stator power generation armature and a rotor excitation magnet, wherein: the stator power generation armature extends a plurality of cylindrical induction magnetic poles in a direction towards the rotor excitation magnet, and power generation windings are wound on the cylindrical induction magnetic poles; and the rotor excitation magnet comprises at least two layers of structures attached to each other, one of which is made of a non-magnetic conductive material, and the other layer is formed by alternately arranging ferromagnetic material excitation magnets and magnetic conduction material magnetizers in a circumferential direction, accordingly forming a plurality of couples of excitation magnets for power generation.
2. The mute self-generating power generator according to claim 1, wherein the stator power generation armature and the rotor excitation magnet use a structure of outer rotor and inner stator, wherein the stator power generation armature has an inner ring, a plurality of cylindrical induction magnetic poles are extended outwards from the inner ring, and the cylindrical induction magnetic poles are wound with the power generation windings.
3. The mute self-generating power generator according to claim 2, wherein the rotor excitation magnet comprises three layers in a direction towards the stator power generation armature, and the three layers are arranged in the following order: rotor outer ring composed of magnetic conductive material; rotor middle layer composed of non-magnetic conductive material; rotor inner ring, formed by alternately arranging the ferromagnetic material excitation magnets and the magnetic conduction material magnetizers in a circumferential direction.
4. The mute self-generating power generator according to claim 2, wherein a face of the ferromagnetic material excitation magnet facing the stator power generation armature has a thick middle forming an inner arc surface and two thin edges forming an inclined plane.
5. The mute self-generating power generator according to claim 1, wherein the stator power generation armature and the rotor excitation magnet use a structure of outer stator and inner rotor, wherein the stator power generation armature has an outer ring, a plurality of cylindrical induction magnetic poles are extended inwards from the outer ring, and the cylindrical induction magnetic poles are wound with the power generation windings.
6. The mute self-generating power generator according to claim 5, wherein the rotor excitation magnet comprises two layers in a direction towards the stator power generation armature, and the two layers are arranged in the following order: rotor inner ring composed of non-magnetic conductive material; rotor outer ring, formed by alternately arranging the ferromagnetic material excitation magnets and the magnetic conduction material magnetizers in a circumferential direction.
7. The mute self-generating power generator according to claim 5, wherein the ferromagnetic material excitation magnet has a thick middle forming an outer arc surface and two thin edges forming an inclined plane.
8. The mute self-generating power generator according to claim 1, wherein a combination ratio of the number of the cylindrical induction magnetic poles and the number of the ferromagnetic material excitation magnets on the rotor excitation magnet meets a double three-phase power generation condition.
9. The mute self-generating power generator according to claim 8, wherein the number of the cylindrical induction magnetic poles is 12 and the ferromagnetic material excitation magnets has five pairs, and thus the combination ratio meets the double three-phase double pole power generation; or the number of the cylindrical induction magnetic poles is 24 and the ferromagnetic material excitation magnets has ten pairs, and thus the combination ratio meets the double three-phase four pole power generation.
10. The mute self-generating power generator according to claim 9, wherein power generation output circuits of the double three-phase double pole power generation or the double three-phase four pole power generation utilize single group three-phase power generation output or double group three-phase power generation output.
Description
BRIEF DESCRIPTION OF THE DRAWING(S)
[0030] The present invention will be in detail explained and the implement approaches and advantages of the present invention will be better understood through the following exemplary embodiments with reference to the accompanying drawings. The contents shown in the accompanying drawings are only for explanation of the present invention, and do not constitute any limitation to the present invention in any sense, in which:
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[0032]
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DETAILED DESCRIPTION OF THE INVENTION
[0040] As shown in
[0041] The rotor excitation magnet 11 comprises three layers in a direction towards the stator power generation armature 12, which are arranged in the following order:
[0042] rotor outer ring 110 composed of magnetic conductive material and having a function of magnetic field shielding;
[0043] rotor middle layer 112 composed of non-magnetic conductive material;
[0044] rotor inner ring 111, formed by alternately arranging the ferromagnetic material excitation magnets 1110 and the magnetic conduction material magnetizers 1111 in a circumferential direction.
[0045] As shown in
[0046]
[0047] In a body structure of double three-phase two pole power generator, as shown in
[0048] As shown in
[0049] Processing method: the rotor outer ring 110 is beneficially cast together with other parts of the rotor, and the rotor middle layer 112 is usefully separately processed into a ring and inserted into the rotor inner ring 110. For the rotor inner ring 111, the ferromagnetic material excitation magnets 1110 are processed and shaped to magnetize, in order to excite the self-generating power generator, and the magnetic material magnets 1111 are formed by small iron bars which are generally stamped by iron plate or steel plate. The small iron bars are inserted between two ferromagnetic material excitation magnets 1110 (such as permanent magnets or electromagnetic materials), in order to relieve sudden change of magnetic potential difference between two permanent magnets or two magnetic poles N and S of electromagnetic material, namely, to relieve the sudden change of magnetic potential difference in a junction area of excitation magnetic field.
[0050] In the present invention, the combination ratio of the number of the cylindrical induction magnetic poles and the number of the excitation magnets satisfy the double three-phase power generation condition, so that vibration force of the excitation magnetic field on iron core is weakened.
[0051] Power generation output circuits of the double three-phase double pole power generation or the double three-phase four pole power generation utilize single group three-phase power generation output, or optionally double group three-phase power generation output.
[0052]
[0053]
[0054]
[0055] rotor outer ring 310 composed of magnetic conductive material;
[0056] rotor middle layer 312 composed of non-magnetic conductive material;
[0057] rotor inner ring 311, formed by alternately arranging the ferromagnetic material excitation magnets 3110 and the magnetic conduction material magnetizers 3111 in a circumferential direction.
[0058] The principle in such a structural is similar to that in
[0059] For double three-phase four pole power generation, the winding structure principle of each phase is the same as that of double three-phase double pole power generation. For example, four A1 are marked on the stator cylindrical induction magnetic poles on the stator power generation armature 32, and they are distributed at an angle of 90 degrees relatively to each other, indicating the locations occupied by the A-phase windings of the first group of three-phase four pole combination. The other phases are similar to this winding method.
[0060] It is proved by experiments that no matter double three-phase double pole or double three-phase four pole power generation, single group of three-phase power generation output or double group of three-phase power generation output are optionally adopted, and anti-vibration effect is not affected.
[0061] As shown in
[0062] The rotor excitation magnet 21 contains two layers in a direction towards the stator power generation armature 22, which are arranged in the following order:
[0063] rotor inner ring 212 composed of non-magnetic conductive material;
[0064] rotor outer ring 211, formed by alternately arranging the ferromagnetic material excitation magnets and the magnetic conduction material magnetizers in a circumferential direction.
[0065] The structure in
[0066] In a preferred embodiment, as shown in
[0067] The structure principle in
[0068] In the present solution to mute power generation, in the structure, the excitation magnet uses at least two layers of different materials; and the ferromagnetic material excitation magnets is an irregular shape with the thick middle and two thin edges. In the method features, magnetic circuit distribution properties of the double three-phase power generation are applied, so that the mute self-generating power generator can eliminate the source of vibration and noise from the root, and provides excellent new generator products for the sports fitness equipment industry and high demand power generation places.
[0069] The preferred embodiments of the present invention have been described above with reference to the accompanying drawings. A variety of variants to implement the present invention will be achieved by one ordinary skilled in the art without departing from the scope and spirit of the present invention. For example, the features shown or described as part of one embodiment may be used in another embodiment to obtain still another embodiment. The preferred and feasible embodiments of the present invention are described above, and it is not a limitation for the claimed scope of the present invention. All equivalent changes made by using the description and the accompanying drawings of the present invention are included in the claimed scope of the present invention.