CN101741190A - Integrated multi-rotor motor-driven generator - Google Patents
Integrated multi-rotor motor-driven generator Download PDFInfo
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- CN101741190A CN101741190A CN200810172121A CN200810172121A CN101741190A CN 101741190 A CN101741190 A CN 101741190A CN 200810172121 A CN200810172121 A CN 200810172121A CN 200810172121 A CN200810172121 A CN 200810172121A CN 101741190 A CN101741190 A CN 101741190A
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Abstract
The invention relates to an integrated multi-rotor motor-driven generator. A plurality of motors are combined in various modes in a machine body in order to be used as a motor and/or a generator so the machine volume is decreased. The invention can simultaneously provide a rotating power output having same speed and power and different speed and power when power is supplied, can simultaneously provide a direct current or alternated current power supply having same power and different power when a rotating power is input, can simultaneously provide a different-power rotating power and a multi-path power supply when the power supply and the power input are both provided in order to satisfy a complex condition which limits the machine volume in different technical fields and simultaneously outputs rotating power and power supply or different-speed rotating power and power supply having different-power.
Description
Technical field
The present invention relates to a kind of multi-rotor motor-driven, generating all-in-one, a plurality of rotors that two (containing two) are above are combined in the body in a variety of forms, both can be used as motor, can be used as generator again, can also dwindle body volume simultaneously as motor and generator.Both can under the situation that the power supply input is arranged, provide simultaneously with speed with power and the different power rotary power output of friction speed, direct current or AC power with power and different capacity can be provided under the situation that the rotary power input is arranged again simultaneously, simultaneously not only export different power rotary power but also export multiple power supplies under the situation that can also have power supply and power to import at the same time, restricted to satisfy the different technologies field to body volume, both outputting rotary power when seeking common ground again, out-put supply or while had both been exported the friction speed rotary power again, exported the complex environment of different power power-supply again.
Background technology
Existing motor and generator mostly are a cover stator and a cover rotor-support-foundation system is formed, can only outputting power or out-put supply in same service time, can't satisfy the while both outputting rotary power, out-put supply or while had both been exported the friction speed rotary power again, exported the complicated requirement of different power power-supply again.
Summary of the invention
Purpose of the present invention, be to provide a kind of multi-rotor motor-driven, the generating all-in-one, both can under the situation that the power supply input is arranged, provide simultaneously with speed and the output of friction speed rotary power, direct current or AC power with power and different capacity can be provided under the situation that the rotary power input is arranged again simultaneously, export different power rotary power and multiple power supplies simultaneously under the situation that can also have power supply and power to import at the same time, a plurality of rotors that two { containing two } are above are combined in the body in a variety of forms, both can be used as motor, can be used as generator again, can also be simultaneously not only as motor but also as generator, the volume that has dwindled body takies.
Technical scheme of the present invention is as follows
A kind of multi-rotor motor-driven, generating all-in-one comprise main shaft 1, commutator and brush 2, main shaft bearing 3, casing 4, stator 5, internal layer rotor winding 6, outer rotor winding 7, internal layer rotor winding frame 8, outer rotor winding frame 9, outer counter shaft bearing 10, outer countershaft 11, clutch 12, lead 13.
When power supply or servo power supply flow to internal layer rotor winding 6 by commutator and brush 2, produce rotary power under the action of a magnetic field in stator 5 and casing 4, drive internal layer rotor winding 6 and rotate, and drive internal layer rotor winding frame 8 and be fixed on main shaft 1 rotation on the main shaft bearing 3 with outputting power;
When power supply or servo power supply flow to outer rotor winding 7 by commutator and brush 2, produce rotary power under the action of a magnetic field in stator 5 and casing 4, drive outer rotor winding 7 and rotate, and drive outer rotor winding frame 9 and be fixed on outer countershaft 11 rotations on the outer counter shaft bearing 10 with outputting power;
When rotary power drives internal layer rotor winding 6 and rotates by main shaft 1, clutch 12, internal layer rotor winding frame 8, magnetic field magnetic line in the coil cutting stator 5 of internal layer rotor winding 6 and the casing 4 sends electric power, and by commutator and brush 2 and lead 13 out-put supplies;
When driving outer rotor winding 7 by outer countershaft 11, clutch 12, outer rotor winding frame 9, rotary power rotates, magnetic field magnetic line in the coil cutting stator 5 of outer rotor winding 7 and the casing 4 sends electric power, and by commutator and brush 2 and lead 13 out-put supplies;
When power supply or same frequency servo power supply flow to internal layer rotor winding 6 and outer rotor winding 7 simultaneously by commutator and brush 2, can drive internal layer rotor winding 6 and 7 rotations of outer rotor winding simultaneously, export simultaneously with rotating speed power by main shaft 1 or outer countershaft 11; Also can be under the cooperation of clutch different conditions, by main shaft 1 or outer countershaft 11 independent outputting powers;
When power supply or different frequency servo power supply flow to internal layer rotor winding 6 and outer rotor winding 7 respectively by commutator and brush 2, can drive internal layer rotor winding 6 and outer rotor winding 7 with the different rotating speeds rotation, and export different rotating speeds power simultaneously by main shaft 1 and outer countershaft 11;
When rotary power by main shaft 1 drive 6 rotations of internal layer rotor winding, when having power supply or servo power supply to flow to outer rotor winding 7 simultaneously by commutator and brush 2, internal layer rotor winding 6 cutting magnetic lines send electric power and by commutator and brush 2 and lead 13 out-put supplies; Meanwhile, outer rotor winding 7 rotates under the effect in electric current and magnetic field, and by outer countershaft 11 outputting rotary powers.Simultaneously both as motor, again as generator.When rotary power drives outer rotor winding 7, power supply received internal layer rotor winding 6 simultaneously, then the output of rotary power and power supply will become axle, modified line.
Under the cooperation of clutch, when rotary power drives internal layer rotor winding 6 and outer rotor winding 7 when rotating with rotating speed simultaneously by main shaft 1 or countershaft 11, the electric power that each winding sends can be by commutator and brush 2 and the 13 difference out-put supplies of lead separately separately, also can be with output lead 13 parallel connections of two windings, with output different capacity power supply.
Multi-rotor motor-driven of the present invention, the generating all-in-one not only can be along main shaft diameter to a plurality of rotor set are combined in the body with multilayer, also can axially a plurality of rotor set of multi-disc be combined in the body, also can axially reach radially with multilayer, the hybrid combining of multi-disc rotor along main shaft respectively along main shaft; Stator can place body middle inside axle position (external rotor), also can place body outer shell position (internal rotor); The body internal magnetic field can be fixed magnetic field, also can be rotating magnetic field.
The present invention not only can be used for permanent magnetic motor, also can be used for exciter and encourage, the permanent magnetism mixer; Wide and general it, also can be used for the rotor and electronic, the generating all-in-one of direct current, interchange, synchronous, asynchronous, stepping, single-phase, heterogeneous, wire-wound group, printing winding, cage modle, cheese, sheet shape, various ways such as cup-shaped and type.
Description of drawings
Fig. 1 is multi-rotor motor-driven of the present invention, generating all-in-one machine structure schematic diagram.
Fig. 2 represents that body internal magnetic field of the present invention can be rotating magnetic field.
Fig. 3 represents that the present invention can be along main shaft diameter to a plurality of rotor set are combined in the body with multilayer.
Fig. 4 represents that the present invention can axially be combined in a plurality of rotor set of multi-disc in the body along main shaft.
Embodiment
The present invention mainly realizes by the following method.
When power supply or servo power supply flow to internal layer rotor winding 6 by commutator and brush 2, produce rotary power under the action of a magnetic field in stator 5 and casing 4, drive internal layer rotor winding 6 and rotate, and drive internal layer rotor winding frame 8 and be fixed on main shaft 1 rotation on the main shaft bearing 3 with outputting power;
When power supply or servo power supply flow to outer rotor winding 7 by commutator and brush 2, produce rotary power under the action of a magnetic field in stator 5 and casing 4, drive outer rotor winding 7 and rotate, and drive outer rotor winding frame 9 and be fixed on outer countershaft 11 rotations on the outer counter shaft bearing 10 with outputting power;
When rotary power drives internal layer rotor winding 6 and rotates by main shaft 1, clutch 12, internal layer rotor winding frame 8, magnetic field magnetic line in the coil cutting stator 5 of internal layer rotor winding 6 and the casing 4 sends electric power, and by commutator and brush 2 and lead 13 out-put supplies;
When driving outer rotor winding 7 by outer countershaft 11, clutch 12, outer rotor winding frame 9, rotary power rotates, magnetic field magnetic line in the coil cutting stator 5 of outer rotor winding 7 and the casing 4 sends electric power, and by commutator and brush 2 and lead 13 out-put supplies;
When power supply or same frequency servo power supply flow to internal layer rotor winding 6 and outer rotor winding 7 simultaneously by commutator and brush 2, can drive internal layer rotor winding 6 and 7 rotations of outer rotor winding simultaneously, export simultaneously with rotating speed power by main shaft 1 or outer countershaft 11; Also can be under the cooperation of clutch different conditions, by main shaft 1 or outer countershaft 11 independent outputting powers;
When power supply or different frequency servo power supply flow to internal layer rotor winding 6 and outer rotor winding 7 respectively by commutator and brush 2, can drive internal layer rotor winding 6 and outer rotor winding 7 with the different rotating speeds rotation, and export different rotating speeds power simultaneously by main shaft 1 and outer countershaft 11;
When rotary power by main shaft 1 drive 6 rotations of internal layer rotor winding, when having power supply or servo power supply to flow to outer rotor winding 7 simultaneously by commutator and brush 2, internal layer rotor winding 6 cutting magnetic lines send electric power and by commutator and brush 2 and lead 13 out-put supplies; Meanwhile, outer rotor winding 7 rotates under the effect in electric current and magnetic field, and by outer countershaft 11 outputting rotary powers.Simultaneously both as motor, again as generator.When rotary power drives outer rotor winding 7, power supply received internal layer rotor winding 6 simultaneously, then the output of rotary power and power supply will become axle, modified line.
Under the cooperation of clutch, when rotary power drives internal layer rotor winding 6 and outer rotor winding 7 when rotating with rotating speed simultaneously by main shaft 1 or countershaft 11, the electric power that each winding sends can be by commutator and brush 2 and the 13 difference out-put supplies of lead separately separately, also can be with output lead 13 parallel connections of two windings, with output different capacity power supply.
Multi-rotor motor-driven of the present invention, the generating all-in-one not only can be along main shaft diameter to a plurality of rotor set are combined in the body with multilayer, also can axially a plurality of rotor set of multi-disc be combined in the body, also can axially reach radially with multilayer, the hybrid combining of multi-disc rotor along main shaft respectively along main shaft; Stator can place body middle inside axle position (external rotor), also can place body outer shell position (internal rotor); The body internal magnetic field can be fixed magnetic field, also can be rotating magnetic field.
The present invention not only can be used for permanent magnetic motor, also can be used for exciter and encourage, the permanent magnetism mixer; Wide and general it, can be used for the rotor and electronic, the generating all-in-one of direct current, interchange, synchronous, asynchronous, stepping, single-phase, heterogeneous, wire-wound group, printing winding, cage modle, cheese, sheet shape, various ways such as cup-shaped and type.
Claims (10)
1. a multi-rotor motor-driven, generating all-in-one is characterized in that: comprise main shaft 1, commutator and brush 2, main shaft bearing 3, casing 4, stator 5, internal layer rotor winding 6, outer rotor winding 7, internal layer rotor winding frame 8, outer rotor winding frame 9, outer counter shaft bearing 10, outer countershaft 11, clutch 12, lead 13.
2. multi-rotor motor-driven according to claim 1, generating all-in-one, it is characterized in that: a plurality of rotors that two (containing two) are above are combined in the body in a variety of forms, both can be used as motor, can be used as generator again, can also dwindle body volume simultaneously as motor and generator.Both can under the situation that the power supply input is arranged, provide simultaneously with speed with power and the different power rotary power output of friction speed, direct current or AC power with power and different capacity can be provided under the situation that the rotary power input is arranged again simultaneously, not only export different power rotary power but also export multiple power supplies simultaneously under the situation that can also have power supply and rotary power to import at the same time.
3. multi-rotor motor-driven according to claim 1, generating all-in-one, it is characterized in that: when power supply or servo power supply flow to internal layer rotor winding 6 by commutator and brush 2, produce rotary power under the action of a magnetic field in stator 5 and casing 4, drive internal layer rotor winding 6 and rotate, and drive internal layer rotor winding frame 8 and be fixed on main shaft 1 rotation on the main shaft bearing 3 with outputting power; When power supply or servo power supply flow to outer rotor winding 7 by commutator and brush 2, produce rotary power under the action of a magnetic field in stator 5 and casing 4, drive outer rotor winding 7 and rotate, and drive outer rotor winding frame 9 and be fixed on outer countershaft 11 rotations on the outer counter shaft bearing 10 with outputting power.
4. multi-rotor motor-driven according to claim 1, generating all-in-one, it is characterized in that: when rotary power drives internal layer rotor winding 6 and rotates by main shaft 1, clutch 12, internal layer rotor winding frame 8, magnetic field magnetic line in the coil cutting stator 5 of internal layer rotor winding 6 and the casing 4 sends electric power, and by commutator and brush 2 and lead 13 out-put supplies; When driving outer rotor winding 7 by outer countershaft 11, clutch 12, outer rotor winding frame 9, rotary power rotates, magnetic field magnetic line in the coil cutting stator 5 of outer rotor winding 7 and the casing 4 sends electric power, and by commutator and brush 2 and lead 13 out-put supplies.
5. multi-rotor motor-driven according to claim 1, generating all-in-one, it is characterized in that: when power supply or same frequency servo power supply flow to internal layer rotor winding 6 and outer rotor winding 7 simultaneously by commutator and brush 2, can drive internal layer rotor winding 6 and 7 rotations of outer rotor winding simultaneously, export simultaneously with rotating speed power by main shaft 1 or outer countershaft 11; Also can be under the cooperation of clutch different conditions, by main shaft 1 or outer countershaft 11 independent outputting powers.
6. multi-rotor motor-driven according to claim 1, generating all-in-one, it is characterized in that: when power supply or different frequency servo power supply flow to internal layer rotor winding 6 and outer rotor winding 7 respectively by commutator and brush 2, can drive internal layer rotor winding 6 and outer rotor winding 7 with the different rotating speeds rotation, and export different rotating speeds power simultaneously by main shaft 1 and outer countershaft 11.
7. multi-rotor motor-driven according to claim 1, generating all-in-one, it is characterized in that: when rotary power by main shaft 1 drive 6 rotations of internal layer rotor winding, when having power supply or servo power supply to flow to outer rotor winding 7 simultaneously by commutator and brush 2, internal layer rotor winding 6 cutting magnetic lines send electric power and by commutator and brush 2 and lead 13 out-put supplies; Meanwhile, outer rotor winding 7 rotates under the effect in electric current and magnetic field, and by outer countershaft 11 outputting rotary powers.Simultaneously both as motor, again as generator.When rotary power drives outer rotor winding 7, power supply received internal layer rotor winding 6 simultaneously, then the output of rotary power and power supply will become axle, modified line.
8. multi-rotor motor-driven according to claim 5, generating all-in-one, it is characterized in that: under the cooperation of clutch, when rotary power drives internal layer rotor winding 6 and outer rotor winding 7 when rotating with rotating speed simultaneously by main shaft 1 or countershaft 11, the electric power that each winding sends can be by commutator and brush 2 and the 13 difference out-put supplies of lead separately separately, also can be with output lead 13 parallel connections of two windings, with output different capacity power supply.
9. multi-rotor motor-driven according to claim 1, generating all-in-one, it is characterized in that: multi-rotor motor-driven of the present invention, the generating all-in-one not only can be along main shaft diameter to a plurality of rotor set are combined in the body with multilayer, also can axially a plurality of rotor set of multi-disc be combined in the body, also can axially reach radially with multilayer, the hybrid combining of multi-disc rotor along main shaft respectively along main shaft; Stator can place body middle inside axle position (external rotor), also can place body outer shell position (internal rotor); The body internal magnetic field can be fixed magnetic field, also can be rotating magnetic field.
10. multi-rotor motor-driven according to claim 7, the generating all-in-one, it is characterized in that: the present invention not only can be used for permanent magnetic motor, also can be used for exciter and encourage, the permanent magnetism mixer; Wide and general it, also can be used for the rotor and electronic, the generating all-in-one of direct current, interchange, synchronous, asynchronous, stepping, single-phase, heterogeneous, wire-wound group, printing winding, cage modle, cheese, sheet shape, various ways such as cup-shaped and type.
Priority Applications (1)
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CN200810172121A CN101741190A (en) | 2008-11-11 | 2008-11-11 | Integrated multi-rotor motor-driven generator |
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CN200810172121A CN101741190A (en) | 2008-11-11 | 2008-11-11 | Integrated multi-rotor motor-driven generator |
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Cited By (7)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN102368655A (en) * | 2011-10-27 | 2012-03-07 | 张骏 | Multi-output-shaft type motor with multiple rotors |
CN103368322A (en) * | 2012-04-03 | 2013-10-23 | 波音公司 | Nested-rotor open-core flywheel |
CN103595203A (en) * | 2013-10-18 | 2014-02-19 | 孙屹东 | Asynchronous permanent magnet synchronous generator |
CN103633800A (en) * | 2013-12-05 | 2014-03-12 | 孙屹东 | Horizontal power generator with dual rotors |
CN104321954A (en) * | 2012-04-20 | 2015-01-28 | 路易斯·芬克尔 | Hybrid induction motor with self aligning permanent magnet inner rotor |
CN111030405A (en) * | 2019-12-30 | 2020-04-17 | 李佩 | Synchronous and asynchronous composite motor device |
DE102023201124A1 (en) | 2023-02-10 | 2024-08-14 | Zf Friedrichshafen Ag | Electric machine, electric axle drive, motor vehicle and method for operating an electric machine |
-
2008
- 2008-11-11 CN CN200810172121A patent/CN101741190A/en active Pending
Cited By (12)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN102368655A (en) * | 2011-10-27 | 2012-03-07 | 张骏 | Multi-output-shaft type motor with multiple rotors |
CN102368655B (en) * | 2011-10-27 | 2013-08-28 | 张骏 | Multi-output-shaft type motor with multiple rotors |
CN103368322A (en) * | 2012-04-03 | 2013-10-23 | 波音公司 | Nested-rotor open-core flywheel |
CN104321954A (en) * | 2012-04-20 | 2015-01-28 | 路易斯·芬克尔 | Hybrid induction motor with self aligning permanent magnet inner rotor |
JP2015515254A (en) * | 2012-04-20 | 2015-05-21 | フィンクル ルイFINKLE, Louie | Hybrid induction motor with self-adjustable permanent magnet type inner rotor |
CN104321954B (en) * | 2012-04-20 | 2017-11-07 | 路易斯·芬克尔 | Hybrid induction motor with autoregistration permanent magnet internal rotor |
CN103595203A (en) * | 2013-10-18 | 2014-02-19 | 孙屹东 | Asynchronous permanent magnet synchronous generator |
CN103633800A (en) * | 2013-12-05 | 2014-03-12 | 孙屹东 | Horizontal power generator with dual rotors |
CN103633800B (en) * | 2013-12-05 | 2016-06-08 | 孙屹东 | A kind of horizontal birotor generator |
CN111030405A (en) * | 2019-12-30 | 2020-04-17 | 李佩 | Synchronous and asynchronous composite motor device |
CN111030405B (en) * | 2019-12-30 | 2022-05-27 | 李佩 | Synchronous and asynchronous composite motor device |
DE102023201124A1 (en) | 2023-02-10 | 2024-08-14 | Zf Friedrichshafen Ag | Electric machine, electric axle drive, motor vehicle and method for operating an electric machine |
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Open date: 20100616 |