WO2024031990A1 - Groupe générateur - Google Patents

Groupe générateur Download PDF

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Publication number
WO2024031990A1
WO2024031990A1 PCT/CN2023/082482 CN2023082482W WO2024031990A1 WO 2024031990 A1 WO2024031990 A1 WO 2024031990A1 CN 2023082482 W CN2023082482 W CN 2023082482W WO 2024031990 A1 WO2024031990 A1 WO 2024031990A1
Authority
WO
WIPO (PCT)
Prior art keywords
magnetic
rotating
magnetic components
levitation
components
Prior art date
Application number
PCT/CN2023/082482
Other languages
English (en)
Chinese (zh)
Inventor
郭树雄
Original Assignee
郭树雄
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 郭树雄 filed Critical 郭树雄
Publication of WO2024031990A1 publication Critical patent/WO2024031990A1/fr

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Classifications

    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02KDYNAMO-ELECTRIC MACHINES
    • H02K7/00Arrangements for handling mechanical energy structurally associated with dynamo-electric machines, e.g. structural association with mechanical driving motors or auxiliary dynamo-electric machines
    • H02K7/18Structural association of electric generators with mechanical driving motors, e.g. with turbines
    • H02K7/1807Rotary generators
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02KDYNAMO-ELECTRIC MACHINES
    • H02K7/00Arrangements for handling mechanical energy structurally associated with dynamo-electric machines, e.g. structural association with mechanical driving motors or auxiliary dynamo-electric machines
    • H02K7/08Structural association with bearings
    • H02K7/09Structural association with bearings with magnetic bearings
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02KDYNAMO-ELECTRIC MACHINES
    • H02K7/00Arrangements for handling mechanical energy structurally associated with dynamo-electric machines, e.g. structural association with mechanical driving motors or auxiliary dynamo-electric machines
    • H02K7/18Structural association of electric generators with mechanical driving motors, e.g. with turbines
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02NELECTRIC MACHINES NOT OTHERWISE PROVIDED FOR
    • H02N15/00Holding or levitation devices using magnetic attraction or repulsion, not otherwise provided for

Definitions

  • the present invention relates to an electric generator that is not subject to environmental restrictions and has green energy effects.
  • the main purpose of the present invention is to provide an electric generator that is not subject to environmental restrictions and has green energy effects.
  • the present invention provides an electric generator, which is characterized in that it mainly includes:
  • a containment area, the containment area is formed in the containment body, and the containment area is in a vacuum state;
  • a magnetic levitation rotating member located in the accommodation area;
  • a plurality of first suspended magnetic components, the plurality of first suspended magnetic components are provided on the magnetic levitation rotating member;
  • a plurality of second levitation magnetic components are provided on the accommodation body, and are positioned corresponding to the plurality of first levitation magnetic components, so as to promote the magnetic levitation rotating member to be in a magnetic levitation state through the magnetic levitation effect;
  • a plurality of first rotating magnetic components, the plurality of first rotating magnetic components are provided on the magnetic levitation rotating member;
  • a plurality of second rotating magnetic components are disposed on the accommodation body and are positioned corresponding to the plurality of first rotating magnetic components to drive the magnetic levitation rotating member to rotate through magnetic force. move;
  • a power-generating rotating part the power-generating rotating part is connected to the magnetic levitation rotating part and is located in the accommodation area;
  • a plurality of electromagnetic components which are arranged on the power-generating rotating part
  • a plurality of generating coils are arranged on the accommodation body and located on one side of the plurality of electromagnetic components to cooperate with the plurality of electromagnetic components to generate induced current;
  • An energy storage device the energy storage device is electrically connected to the power generation coil;
  • the power supply device is electrically connected to the power generation coil, the plurality of second suspended magnetic components, and the plurality of second rotating magnetic components for receiving the current given by the power generation coil and providing the plurality of second The currents of the suspended magnetic component and the plurality of second rotating magnetic components;
  • a state control component is connected to the power supply device for controlling the current given to the plurality of second suspended magnetic components and the plurality of second rotating magnetic components.
  • the power supply device and the accommodation body information are connected to a status monitoring device.
  • the status monitoring device and the status control component are connected to a notification device.
  • the magnetic levitation rotating member and the power generating rotating part rotate in the vacuum environment formed in the accommodation area.
  • a plurality of rotating buffers are provided in the accommodation body.
  • a plurality of magnetic levitation buffers are provided in the accommodation body.
  • the magnetic levitation rotating part is provided with a magnetic levitation center of gravity limiter
  • the power generation rotating part is provided with a rotor center of gravity limiter
  • the plurality of first levitation magnetic components and the plurality of second levitation magnetic components push the magnetic levitation rotating member to perform magnetic levitation action through one of electromagnetic levitation or superconducting magnetic levitation.
  • the plurality of first floating magnetic components and the plurality of first rotating magnetic components are permanent magnets.
  • the plurality of second suspended magnetic components and the plurality of second rotating magnetic components are excitation coils.
  • the power supply device can be controlled through the state control component to provide power to the second suspended magnetic component and the second rotating magnetic component, thereby controlling the magnetic states of the second suspended magnetic component and the second rotating magnetic component. , so as to utilize the mutual repulsion effect of the second suspended magnetic component and the first suspended magnetic component to push the magnetic levitation rotating member to be in a magnetic levitation state.
  • the electromagnetic state of the second rotating magnetic component is controlled to cooperate with the first rotating magnetic component to drive the magnetic levitation rotating member to rotate through a driving method similar to a linear motor.
  • the magnetic levitation rotating part When the magnetic levitation rotating part rotates, it will drive the power-generating rotating part (the rotor in the field of motors and generators) and the electromagnetic component to rotate, so that the power-generating coil (the rotor in the field of motors and generators) rotates through the electromagnetic component.
  • the stator generates induced current, which can be transmitted to the energy storage device and power supply device for use by users.
  • the magnetic levitation rotating parts and power generation rotating parts rotate in a vacuum containing area, air resistance can be minimized, thereby reducing energy consumption during power generation. . And because it uses the electromagnetic effect to generate electricity, it will not cause any pollution or noise, and it will not be restricted by the size of the environment during manufacturing, so the overall convenience can be greatly improved.
  • Figure 1 is a three-dimensional perspective view of the first preferred embodiment of the present invention.
  • Figure 2 is an exploded view of the first preferred embodiment of the present invention.
  • Figure 3 is a schematic structural block diagram of the first preferred embodiment of the present invention.
  • Figure 4 is a schematic cross-sectional view of the first preferred embodiment of the present invention.
  • Figure 5 is a schematic diagram (1) of the magnetic levitation drive according to the first preferred embodiment of the present invention.
  • Figure 6 is a schematic diagram (2) of the magnetic levitation drive according to the first preferred embodiment of the present invention.
  • Figure 7 is a schematic diagram of power generation according to the first preferred embodiment of the present invention.
  • Figure 8 is a schematic diagram of the control of the first preferred embodiment of the present invention.
  • Figure 9 is a schematic cross-sectional view of the second preferred embodiment of the present invention.
  • Figure 10 is a schematic structural block diagram of the second preferred embodiment of the present invention.
  • Figure 11 is a schematic cross-sectional view of the third preferred embodiment of the present invention.
  • Figure 12 is a schematic cross-sectional view of the fourth preferred embodiment of the present invention.
  • Figure 13 is a schematic cross-sectional view of the fifth preferred embodiment of the present invention.
  • Figure 14 is a schematic cross-sectional view of the sixth preferred embodiment of the present invention.
  • Figure 15 is a schematic cross-sectional view of the seventh preferred embodiment of the present invention.
  • Figure 16 is a perspective view of the eighth preferred embodiment of the present invention.
  • Figure 17 is a schematic diagram of the operation of the eighth preferred embodiment of the present invention.
  • Figure 18 is a perspective view of the ninth preferred embodiment of the present invention.
  • Figure 19 is a schematic cross-sectional view of the tenth preferred embodiment of the present invention.
  • the present invention includes:
  • An accommodating body 1, the accommodating body 1 has a bearing member 11 and a covering member 12 provided on the bearing member 11;
  • An accommodation area 13 is formed in the accommodation body 1, and the accommodation area 13 is in a vacuum state.
  • the air in the accommodation area 13 is extracted through high-pressure air extraction to form a vacuum state.
  • a magnetic levitation rotating member 2 is provided in the accommodation area 13.
  • a circular turntable with a U-shaped cross-section is used as an example;
  • a plurality of first levitation magnetic components 21 are provided on the magnetic levitation rotating member 2.
  • the first levitation magnetic components 21 in this embodiment take the permanent magnets surrounding the lower edge of the magnetic levitation rotating member 2 as an example;
  • a plurality of second levitation magnetic components 14 are provided on the accommodation body 1 and are positioned corresponding to the first levitation magnetic component 21.
  • the second levitation magnetic component 14 in this embodiment is an excitation coil that can control the magnetic state through a power supply as an example;
  • a plurality of first rotating magnetic components 22 are provided on the magnetic levitation rotating member 2.
  • the first rotating magnetic components 22 in this embodiment take permanent magnets surrounding the sides of the magnetic levitation rotating member 2 as an example;
  • a plurality of second rotating magnetic components 15 are provided on the accommodation body 1 and are positioned corresponding to the first rotating magnetic components 22.
  • the second rotating magnetic components 15 in this embodiment are excitation coils that can control the magnetic state through a power supply as an example. ;
  • a power-generating rotating part 3 (rotor in the field of motors and generators) connected to the magnetic levitation rotating member 2.
  • the power-generating rotating part 3 (rotor in the field of motors and generators) in this embodiment is connected to the magnetic levitation rotating part through screws.
  • a plurality of electromagnetic components 31 are provided on the power generation rotating part 3 (rotor in the field of motors and generators).
  • the electromagnetic components 31 in this embodiment use permanent magnets as an example;
  • a plurality of power generation coils 16 (stators in the field of motors and generators) provided on the accommodation body 1 and located at one side of the electromagnetic assembly 31;
  • An energy storage device 4 electrically connected to the power generation coil 16 (the stator in the field of motors and generators);
  • a power supply device 5 electrically connected to the power generation coil 16 (stator in the field of motors and generators), the second suspended magnetic component 14, and the second rotating magnetic component 15.
  • the energy storage device 4 and the power supply device 5 All use storage batteries that can access and output power as examples;
  • the state control component 6 in this embodiment takes an electronic controller as an example.
  • the user can store sufficient electric energy in the power supply device 5 first, and then lock the power generation rotating part 3 (the rotor in the field of motors and generators) through the screw lock. It is fixed on the lower side of the magnetic levitation rotating member 2, and then the magnetic levitation rotating member 2 and the power generation rotating part 3 (the rotor in the field of motors and generators) are placed in the bearing member 11, and the covering member 12 is covered on the bearing member 11 After that, a complete accommodation body 1 can be formed, thereby achieving the effect of convenient installation, and then the air in the accommodation area 13 is extracted through the air extraction device, so that the accommodation area 13 presents a vacuum state, and the air in the accommodation area 13 is evacuated.
  • the vacuum technology is based on existing technology currently on the market, so it will not be described in detail.
  • the user can control the current supply state of the power supply device 5 through the state control component 6, and as shown in Figures 4 to 7, thereby directing current to the second suspended magnetic component 14 and the second rotating magnetic component.
  • the magnetic states of the second suspended magnetic component 14 and the second rotating magnetic component 15 are controlled.
  • the second suspended magnetic component 14 and the first suspended magnetic component 21 will generate mutual repulsion. situation to form a magnetic levitation structure, thereby allowing the magnetic levitation rotating member 2 to be in a suspended state.
  • the magnetic state generated by the second rotating magnetic component 15 will cooperate with the magnetic force of the first rotating magnetic component 22 to cause the second rotating magnetic component 15 and the first rotating magnetic component 22 to form a linear synchronous motor structure.
  • the magnetic levitation rotating member 2 is pushed to rotate through a principle similar to a linear synchronous motor, thereby allowing the magnetic levitation rotating member 2 to rotate continuously in the accommodation body 1 in a manner similar to a maglev train. Rotation is performed by turning in circles.
  • the magnetic levitation is performed by means of electromagnetic levitation.
  • the magnetic levitation can also be performed by superconducting magnetic levitation.
  • the electromagnetic component 31 on the power generation rotating part 3 drives the power generation coil 16 (the stator in the field of motors and generators) to generate an induced current through the electromagnetic effect, that is, the power generation and rotation part 3 (rotor in the field of electric motors and generators) as the rotor in the field of electric motors and generators, and the generator coil 16 (stator in the field of electric motors and generators) and the accommodation body 1 as the field of electric motors and generators
  • the stator in the electric motor is used to perform the power generation operation in this way.
  • the induced current generated by the power generation coil 16 (the stator in the field of motors and generators) can be introduced into the energy storage device 4 and the power supply device 5 If the user needs to use it, he can directly connect the energy storage device 4 to utilize the power stored in the energy storage device 4 .
  • the magnetic levitation rotating member 2 and the power generation rotating part 3 are in a magnetic levitation state when they rotate, they will not come into contact with any parts during rotation, and because of the capacity in the vacuum state It is placed in the area 13, so the air friction can be reduced to the lowest point, so the loss during the overall rotation can be reduced to the lowest value to improve the efficiency of power generation, and because it is in a vacuum state, it can prevent foreign matter or The entry of dust can also reduce the jam caused by foreign matter or dust accumulation, so it can reduce the probability of overall damage, and there is no need to increase any fuel and exhaust emissions during operation, so it can also achieve no noise and no harm to the human body. situation.
  • the present invention generates power through electromagnetic effects, it does not create any environmental pollution and can naturally achieve the effect of green energy power generation. Moreover, this kind of power generation through magnetic levitation combined with electromagnetic effects will not cause any environmental pollution. Affected by any environmental factors, it can also match any size during manufacturing It can be manufactured and installed in any field, so it not only improves the convenience of use, but also eliminates the loss of power supply during transportation, thereby greatly improving the efficiency of manufacturing and use, and because the present invention uses Similar to the control method of a linear motor, the rotation speed and direction of the magnetic levitation rotating member 2 and the power generation rotating part 3 (the rotor in the field of motors and generators) can be controlled by changing the magnetic force, and the power generation coil 16 (the motor and generator) The current generated by the stator in the field of motors and generators is closely related to the rotation speed of the electromagnetic component 31 driven by the power generation rotating part 3 (the rotor in the field of motors and generators).
  • the rotation speed is used to adjust the amount of current that needs to be output according to the demand, and because the invention uses magnetic levitation and operates in a vacuum environment, it achieves frictionless power generation and can change the power generation by adjusting the rotation speed.
  • the output can naturally be driven by low-power electricity to produce a high-power output effect.
  • the output value can be adjusted to thousands of times greater than the input value according to demand to achieve the so-called motor generator effect.
  • This The invention only uses the above method to achieve an effect similar to a power amplifier (Amplifier), so it does not violate the law of energy conservation.
  • the magnetic levitation rotating member 2 and the power generation rotating part 3 are integrally formed. This can increase the number of the magnetic levitation rotating member 2 and the power generating rotating part 3. Rotors in the field of electric motors and generators) are combined with each other in a stable manner, and the magnetic levitation rotating member 2 (as shown in Figure 9) is a complete circular disk, thereby representing the magnetic levitation rotating member 2 and the power generation rotating part 3 There are no restrictions on the type of rotor (rotor in the field of electric motors and generators).
  • the power supply device 5 and the accommodation body 1 are information-connected to a status monitoring device 7, and the status monitoring device 7 and the status control component 6 are information-connected to a notification device 8.
  • the notification device 8 in this embodiment is Taking notification software that can be connected to relevant units as an example, the current status given by the power supply device 5 and the operating status of the accommodation body 1 are monitored through the status monitoring device 7.
  • the status monitoring device 7 of this embodiment uses a current sensor combined with a photography device. As an example, in this way, the current status of the power supply device 5 can be sensed through the current sensor, and the operating status of the accommodation body 1 can be observed through the photography equipment.
  • the notification device 8 When an abnormal condition is detected (for example, the power supply device 5 stops supplying current or the accommodation body 1 stops operating), the notification device 8 will notify the relevant unit to perform inspection and maintenance actions, or the user can observe by themselves. , if any abnormal situation is found, the notification device 8 can also be directly controlled through the status control component 6 to perform notification actions, thereby improving the safety of use and the efficiency of equipment maintenance.
  • the magnetic levitation rotating member 2 is disposed on the lower side of the power generation rotating part 3 (the rotor in the field of motors and generators), and connects the first levitation magnetic component 21 and the second levitation magnetic component 14 They are all located on the lower side of the magnetic levitation rotating part 2 to produce a magnetic levitation effect by pushing from bottom to top, thereby representing the magnetic levitation rotating part 2 and the power generation rotating part 3 (the rotor in the field of motors and generators). There is no limit to the positional relationship between them.
  • a plurality of rotating buffer members 17 are provided in the accommodation body 1, and are located on the upper and lower sides of the magnetic levitation rotating member 2 and the power generating rotating part 3 (rotors in the field of motors and generators), and
  • the rotating buffer 17 in this embodiment uses a rotatable bearing roller structure as an example.
  • the rotating buffer 17 can prevent the magnetic levitation of the rotating member 2
  • the power generation rotating part 3 the rotor in the field of motors and generators
  • the accommodation body 1 that is, the stator part of the generator
  • a plurality of magnetic levitation buffer members 18 are provided in the accommodation body 1, and are located around the magnetic levitation rotating member 2 and the power generation rotating part 3 (the rotor in the field of motors and generators), and this embodiment
  • the magnetic levitation buffer 18 in the example uses a rotatable bearing roller structure as an example. In this way, if an event occurs (such as an earthquake or vibration caused by being installed on a vehicle), the magnetic levitation buffer 18 can be used to prevent the magnetic levitation rotating component 2 from generating electricity.
  • the rotating part 3 (the rotor in the field of motors and generators) collides with the accommodation body 1, and because the magnetic levitation buffer 18 itself has a rotation effect, even if it collides with the magnetic levitation buffer 18, it can still pass through the rotatable magnetic levitation buffer. 18. Rotate smoothly without generating additional friction to prevent collision with the housing body 1 (that is, the stator part of the generator), thereby improving safety in use and extending the service life of the equipment.
  • the magnetic levitation rotating part 2 is provided with a magnetic levitation center of gravity limiter 23, and the power generation rotating part 3 (the rotor in the field of motors and generators) is provided with a rotor center of gravity limiter 32.
  • This implementation The magnetic levitation center of gravity limiter 23 and the rotor center of gravity limiter 32 of the example are both convex sharp points as an example.
  • the magnetic levitation center of gravity limiter 23 and the rotor center of gravity limiter 32 are both arranged at the central axis of rotation, the center of gravity during rotation can be stabilized by the magnetic levitation center of gravity limiter 23 and the rotor center of gravity limiter 32, and generate In the event of an impact, the magnetic levitation center of gravity limiter 23 and the rotor center of gravity limiter 32 can also produce a limiting effect to reduce the probability of damage.
  • the accommodation body 1 has a plurality of rotating buffer members 17 and a plurality of magnetic levitation buffer members 18.
  • the magnetic levitation rotating member 2 is provided with a magnetic levitation center of gravity limiter 23.
  • the electric rotating part 3 (the rotor in the field of motors and generators) is provided with a rotor center of gravity limiter 32 to represent the rotation buffer 17, the magnetic levitation buffer 18, the magnetic levitation center of gravity limiter 23 and the rotor center of gravity limiter 32 Can exist at the same time to achieve multiple protective effects.
  • a horizontal measuring member 9 is provided on the outside of the accommodation body 1 .
  • the horizontal measuring member 9 is pivotally connected to a plurality of circular collars 91 on the outside of the accommodation body 1 .
  • the composition is taken as an example, and since the circular collar 91 itself has weight, it will form a seesaw-like posture, so that each circular collar 91 presents a horizontal posture.
  • each circular collar 91 and the upper surface of the accommodation body 1 will be in a parallel state. If the accommodation body 1 is tilted, As shown in Figure 17, the circular collars 91 will still be in a horizontal state due to their own weight, so each circular collar 91 and the upper surface of the accommodation body 1 will not be in a parallel state. , so that the user can know the horizontal state of the accommodation body 1 at any time, and when adjustment is needed (for example, just after moving the accommodation body 1), the user can perform adjustment actions at any time according to the level measuring piece 9.
  • the horizontal measuring element 9 is taken as an example of a level disposed on the upper surface of the accommodation body 1 . This means that the type of the horizontal measuring element 9 is not limited.
  • the accommodation body 1 is miniaturized, which means that the magnetic levitation rotating part 2 and the power generation rotating part 3 (the rotor in the field of motors and generators) are in the form of a turntable formed in one piece, and the power generation is
  • the rotating part 3 (the rotor in the field of motors and generators) is defined as the central area of the magnetic levitation rotating member 2, and the electromagnetic component 31 is also disposed at the power-generating rotating part 3 (the rotor in the field of motors and generators) , and the magnetic levitation rotating member 2 will also be in a magnetic levitation state through the first rotating magnetic assembly 21 and the second rotating magnetic assembly 14, and drive the magnetic levitation rotating member 2 and generate electricity through the first rotating magnetic assembly 22 and the second rotating magnetic assembly 15.
  • the rotating part 3 (the rotor in the field of motors and generators) allows the electromagnetic component 31 to cooperate with the generator coil 16 (the stator in the field of motors and generators) to generate power.
  • the above structure shows that the structural form of the present invention is not limited, and can be miniaturized so that it can be installed in various places and machines, such as community buildings or various vehicles. , to improve the practicality of the present invention.

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  • Engineering & Computer Science (AREA)
  • Power Engineering (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Connection Of Motors, Electrical Generators, Mechanical Devices, And The Like (AREA)

Abstract

La présente invention concerne un moteur-générateur, comprenant un corps de réception, une région de réception dans un état sous vide, un élément rotatif à lévitation magnétique, une pluralité de premiers composants magnétiques en lévitation et des premiers composants magnétiques rotatifs, et une pluralité de seconds composants magnétiques en lévitation et des seconds composants magnétiques rotatifs. L'élément rotatif à lévitation magnétique est tel un disque rotatif à lévitation magnétique, et est entraîné en rotation par une structure similaire à un moteur linéaire. L'élément rotatif à lévitation magnétique est relié à une partie rotative de génération d'énergie, qui peut être entraînée en rotation. Une pluralité de composants magnétiques de génération d'énergie sont disposés sur la partie rotative de génération d'énergie Une pluralité de bobines de génération d'énergie situées sur un côté des composants magnétiques de génération d'énergie sont disposées sur le corps de réception pour former une structure de génération d'énergie. Un appareil d'alimentation électrique peut être commandé au moyen d'un composant de commande d'état pour fournir un courant pour les seconds composants magnétiques à lévitation et des seconds composants magnétiques rotatifs, moyennant quoi l'état de l'élément rotatif à lévitation magnétique est commandé, et l'effet, similaire à celui d'un amplificateur d'alimentation électrique, de génération d'une sortie à haute puissance avec une entrée à faible puissance est obtenu, une valeur de sortie étant des dizaines de milliers de fois supérieure à une valeur d'entrée, ce qui permet d'atteindre l'objectif du moteur-générateur de la présente solution, sans violer la loi de conservation d'énergie.
PCT/CN2023/082482 2022-08-08 2023-03-20 Groupe générateur WO2024031990A1 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CN202210943762.XA CN117578797A (zh) 2022-08-08 2022-08-08 电动发电机
CN202210943762.X 2022-08-08

Publications (1)

Publication Number Publication Date
WO2024031990A1 true WO2024031990A1 (fr) 2024-02-15

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Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2000060032A (ja) * 1998-08-05 2000-02-25 Koyo Seiko Co Ltd フライホイール式電力貯蔵装置
WO2003085805A2 (fr) * 2002-04-08 2003-10-16 Chng Geok Hwee Machine electrique tournante
CN101409478A (zh) * 2007-10-10 2009-04-15 孙昊天 永磁悬浮储能飞轮***
CN104079144A (zh) * 2013-03-29 2014-10-01 冯劭力 全效应磁悬浮无刷变频发电机
CN105591492A (zh) * 2014-10-31 2016-05-18 张瑞彬 一种立式磁悬浮飞轮储能***
CN111226378A (zh) * 2017-10-22 2020-06-02 马士基钻探股份公司 飞轮***和飞轮轴承模块

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2000060032A (ja) * 1998-08-05 2000-02-25 Koyo Seiko Co Ltd フライホイール式電力貯蔵装置
WO2003085805A2 (fr) * 2002-04-08 2003-10-16 Chng Geok Hwee Machine electrique tournante
CN101409478A (zh) * 2007-10-10 2009-04-15 孙昊天 永磁悬浮储能飞轮***
CN104079144A (zh) * 2013-03-29 2014-10-01 冯劭力 全效应磁悬浮无刷变频发电机
CN105591492A (zh) * 2014-10-31 2016-05-18 张瑞彬 一种立式磁悬浮飞轮储能***
CN111226378A (zh) * 2017-10-22 2020-06-02 马士基钻探股份公司 飞轮***和飞轮轴承模块

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