CN105379077B - The application method of the motor-driven supplementary device for the flying wheel battery energy that can be automatically separated - Google Patents

The application method of the motor-driven supplementary device for the flying wheel battery energy that can be automatically separated Download PDF

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Publication number
CN105379077B
CN105379077B CN201480038773.7A CN201480038773A CN105379077B CN 105379077 B CN105379077 B CN 105379077B CN 201480038773 A CN201480038773 A CN 201480038773A CN 105379077 B CN105379077 B CN 105379077B
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Prior art keywords
wheel
flywheel
energy
driving wheel
centrifugal mechanism
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CN105379077A (en
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张井荣
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NANTONG TUHAI MACHINERY Co.,Ltd.
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Taizhou Yongsheng Packaging Ltd By Share Ltd
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    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02JCIRCUIT ARRANGEMENTS OR SYSTEMS FOR SUPPLYING OR DISTRIBUTING ELECTRIC POWER; SYSTEMS FOR STORING ELECTRIC ENERGY
    • H02J3/00Circuit arrangements for ac mains or ac distribution networks
    • H02J3/28Arrangements for balancing of the load in a network by storage of energy
    • H02J3/30Arrangements for balancing of the load in a network by storage of energy using dynamo-electric machines coupled to flywheels
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16FSPRINGS; SHOCK-ABSORBERS; MEANS FOR DAMPING VIBRATION
    • F16F15/00Suppression of vibrations in systems; Means or arrangements for avoiding or reducing out-of-balance forces, e.g. due to motion
    • F16F15/30Flywheels
    • F16F15/31Flywheels characterised by means for varying the moment of inertia
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E60/00Enabling technologies; Technologies with a potential or indirect contribution to GHG emissions mitigation
    • Y02E60/16Mechanical energy storage, e.g. flywheels or pressurised fluids

Abstract

A kind of application method of the motor-driven supplementary device of flying wheel battery (3) energy that can be automatically separated.An inner driving device containing magnet and centrifugal mechanism (12) is set up in the vacuum box (33) of flying wheel battery (3), an outer drive device containing magnet is set outside in vacuum box (33), both magnet passes through magnetic coupling.The outer drive device (2) of driven by engine rotates, pass through the coupling in magnetic field, rotate the centrifugal mechanism (12) in inner driving device, when the rotation of centrifugal mechanism (12) reaches certain speed, under the influence of centrifugal force, centrifugal mechanism (12) driving flywheel (31) rotates storage energy;After engine stop, centrifugal mechanism (12) leaves flywheel (31) automatically.Flywheel (31) is rotated further by the kinetic energy of storage;When the external world needs electric energy, the kinetic energy of flywheel (31) is converted into electric energy by generator (34), exports to external loading.In non-transformer occasion, kinetic energy can be inputted to flying wheel battery (3) with engine.Centrifugal mechanism (12) therein can automatically with flywheel (31) division, to avoid unnecessary energy loss.

Description

The application method of the motor-driven supplementary device for the flying wheel battery energy that can be automatically separated
Technical field
The present invention is on flying wheel battery (or energy accumulation device for fly wheel) field, is supplemented more particularly to a kind of flying wheel battery The device of energy.
Background technology
In numerous energy storage devices, flying wheel battery breaches the limitation of chemical cell, and energy storage is realized with physical method.When winged As soon as wheel is rotated with fixed angular speed, there is certain kinetic energy, flying wheel battery is converted into electric energy with its kinetic energy.Flying wheel battery is with changing Learn battery to compare, the outstanding advantage such as with its high efficiency, the charging interval is short, be correspondingly small in size, cleanliness without any pollution is expected to turn into most The energy-storage battery of prospect.
The operation principle of flying wheel battery:There is a motor (electronic/power generation all-in-one machine) in flying wheel battery, during charging, the electricity Machine is operated with motorjbrm, and the electric energy of external world's input is converted into the kinetic energy storage of flywheel, i.e. flywheel by motor Battery " charging ";When the external world needs electric energy, the motor is rotated with generator forms, is converted the kinetic energy of flywheel by generator For electric energy, export to external loading, i.e. flying wheel battery " electric discharge ".In order to reduce the energy loss such as windage loss, friction, flywheel electricity Pond is arranged in vacuum box, and uses magnetic suspension bearing support rotating part.
The energy storage density of flying wheel battery is big, the characteristics of being correspondingly small in size, and is especially suitable for being carried on field non-transformer occasion, can Electric power is supported with the light to laptop computer, radio, relatively high power.But because flying wheel battery is arranged in vacuum box, at present The generator flywheel driven in vacuum box can only be driven to rotate with the mode of energization, make flywheel store kinetic energy, and do not had in the wild There is the power supply that can be charged to flying wheel battery.
The content of the invention
It is an object of the invention to provide it is a kind of in the wild, or in power free occasion, give flying wheel battery to mend with engine Fill the device and method of kinetic energy.
Major technique thinking of the present invention:Because flying wheel battery operates in vacuum box, so driving flywheel turns Rotary shaft can not stretch out the outer drive device with the external world of vacuum box and be connected, otherwise it is difficult to ensure that flying wheel battery is transported under vacuum conditions OK.Thus following technical thought is released:The inner driving device of a flywheel connectable is set up in the vacuum box of flying wheel battery, should The magnet of polylith second is set on device, it is corresponding that an outer drive device containing the magnet of polylith first is set outside vacuum box, Using drive device outside driven by engine, by the magnetic couple between magnet, make the inner driving device flywheel driven in vacuum box Rotate, with this in flywheel store kinetic energy.It is interior to avoid consuming unnecessary energy after flywheel stores enough energy Drive device must be automatically separated with flywheel automatically.
The concrete technical scheme of the present invention:Flywheel and generator in vacuum box and vacuum box including flying wheel battery, It is characterized in that setting up an inner driving device in the vacuum box, the inner driving device includes magnetic driving wheel, centrifugal mechanism and friction Concave wheel, the magnetic driving wheel are connected by rotating shaft with centrifugal mechanism, and the sliding sleeve in centrifugal mechanism is recessed with rubbing by connecting rod Wheel connection, compression spring is set between sliding sleeve and friction concave wheel, sliding sleeve can move in rotating shaft;On the magnetic driving wheel The magnet of polylith second is set;
One end connection generator of the flywheel, the other end connect an attrition cam, the attrition cam and friction concave wheel Discontinuity connects;
One outer drive device is set outside the vacuum box, and the outer drive device includes containing the first magnet described in polylith Actuating sleeve, driving wheel, the driving wheel are connected by jackshaft with actuating sleeve;Driving is set on the vacuum of the flying wheel battery Box periphery, and it is concentric with magnetic driving wheel;First magnet in actuating sleeve and the second magnet number on the magnetic driving wheel Measure coupling that is equal, and corresponding and pass through magnetic field;The driving wheel is connected with engine;
Said apparatus application method:Driven by engine driving wheel and actuating sleeve rotate, first magnet in actuating sleeve Coupling with second magnet on magnetic driving wheel by magnetic field, actuating sleeve is set to drive magnetic driving wheel, centrifugal mechanism and friction concave wheel Rotate together, when the rotation of centrifugal mechanism reaches certain speed, under the influence of centrifugal force, the sliding sleeve in centrifugal mechanism The elastic force of compression spring is overcome to be moved towards attrition cam direction, so that the friction concave wheel and friction projection that are connected with sliding sleeve Wheel engagement, flywheel turns are driven to store energy with this;When flywheel reaches certain rotating speed, stop the rotation of engine, driving wheel, Therefore actuating sleeve, magnetic driving wheel, centrifugal mechanism and friction concave wheel also stop operating;The centrifugal force of centrifugal mechanism disappears, compression spring Elastic force promote sliding sleeve so that the friction concave wheel being connected with sliding sleeve leaves attrition cam;Flywheel is by the dynamic of storage It can be rotated further;When the external world needs electric energy, the kinetic energy of flywheel is converted into electric energy by generator, exports to external loading.
The present invention compared with prior art the characteristics of be:
First, in non-transformer occasion, kinetic energy can be inputted to flying wheel battery with engine.
2nd, when engine rotation, drive mechanism can be automatically close to flywheel, and provides kinetic energy to flywheel.When engine stops After only, drive mechanism can separate with flywheel automatically, to avoid unnecessary energy loss.
3rd, engine and drive mechanism need not leave flying wheel battery, consequently facilitating quickly can be carried again to flying wheel battery For kinetic energy.
4th, during inputting kinetic energy to flying wheel battery, flying wheel battery can export electric energy to external loading simultaneously.
Brief description of the drawings
Fig. 1 is the schematic perspective view of the present invention.
Fig. 2 is Fig. 1 sectional view.
Fig. 3 is Fig. 1 left view schematic diagram.
Fig. 4 is the schematic internal view of the present invention.
Fig. 5 is Fig. 4 partial sectional view.
Fig. 6 is the vertical view of the present invention.
Embodiment
The invention will be further described with reference to the accompanying drawings and detailed description:
Referring to Fig. 2, in order to drive the flywheel 31 in the vacuum box 33 of flying wheel battery 3, and in order to which flywheel 31 obtains certain move Energy rear drive mechanism departs from flywheel 31 automatically, and the present invention sets up driving in such in the vacuum box 33 of flying wheel battery and filled Put:The inner driving device includes magnetic driving wheel 11 and centrifugal mechanism 12 and friction concave wheel 13.Magnetic driving wheel 11 passes through rotating shaft 121 and centrifugation Mechanism 12 is connected, and the sliding sleeve 125 in centrifugal mechanism 12 is connected by connecting rod 127 with friction concave wheel 13, sliding sleeve 125 Compression spring 126 is set between friction concave wheel 13, sliding sleeve 125 can move in rotating shaft 121;Set on the magnetic driving wheel 11 Put the second magnet of polylith 111;
Centrifugal mechanism 12 is a kind of mechanical automatic control device based on centrifugal motion principle.Its structure such as Fig. 2, Fig. 4 Shown in Fig. 5:In rotating shaft 121, two first pull bars 122 are respectively provided with two weights 123.First pull bar 122 can be vertical Swung in plane around bearing pin 129.When rotating shaft 121 rotates, flyball 123 produces centrifugal motion tendency, and the first pull bar 122 is opened Certain angle, and the sliding sleeve 125 for making to be enclosed in rotating shaft 121 by the second pull bar 124 moves one to the direction of attrition cam 32 Segment distance, the attrition cam 32 are connected with flywheel 31, and the other end of flywheel 31 connection generator 34.The rotating speed of rotating shaft 121 is bigger, The subtended angle of first pull bar 122 is bigger, and sliding sleeve 125 moves to obtain bigger, the sliding sleeve 125 of distance after overcoming the resistance of compression spring 126 Friction concave wheel 13 is connected by connecting rod 127, friction concave wheel 13 is close to attrition cam 32 and engages, and makes flywheel 31 therewith Rotate, then flywheel 31 starts store kinetic energy.
One outer drive device 2 is set outside vacuum box 33, and the outer drive device 2 includes the drive containing the first magnet of polylith 23 Dynamic set 21, driving wheel 22, driving wheel 22 are connected by jackshaft 29 with actuating sleeve 21;Actuating sleeve 21 is arranged on flying wheel battery 3 The periphery of vacuum box 33, and it is concentric with magnetic driving wheel 11;On first magnet 23 and the magnetic driving wheel 11 in actuating sleeve 21 The quantity of the second magnet 111 it is equal, and correspond and the coupling that passes through magnetic field;The driving wheel 22 and engine are (not Draw) connected by belt 4 or other means;
Said apparatus application method:Driven by engine driving wheel 22 and actuating sleeve 21 rotate, and described in actuating sleeve 21 Coupling of one magnet 23 with second magnet 111 on magnetic driving wheel 11 by magnetic field, make actuating sleeve 21 drive magnetic driving wheel 11, from Concentric mechanism 12 and friction concave wheel 13 rotate together, when the rotation of centrifugal mechanism 12 reaches certain speed, in the effect of centrifugal force Under, the sliding sleeve 125 in centrifugal mechanism 12 overcomes the elastic force of compression spring 126 to be moved towards the direction of attrition cam 32, thus makes Obtain the friction concave wheel 13 being connected with sliding sleeve 125 to engage with attrition cam 32, drive flywheel 31 to rotate storage energy with this;When Flywheel 31 reaches certain rotating speed, stops the rotation of engine, driving wheel 22, actuating sleeve 21, magnetic driving wheel 11, the and of centrifugal mechanism 12 Therefore friction concave wheel 13 also stops operating;The centrifugal force of centrifugal mechanism 12 disappears, and the elastic force of compression spring 126 promotes sliding sleeve 125 so that the friction concave wheel 13 being connected with sliding sleeve 125 leaves attrition cam 32;Flywheel 31 continues by the kinetic energy of storage Rotate;When the external world needs electric energy, the kinetic energy of flywheel 31 is converted into electric energy by generator 34, exports to external loading.

Claims (5)

1. a kind of application method of the motor-driven supplementary device for the flying wheel battery energy that can be automatically separated, it is characterised in that including flying The flywheel and generator in the vacuum box and vacuum box of battery are taken turns, an inner driving device is set up in the vacuum box, the institute Stating inner driving device includes magnetic driving wheel, centrifugal mechanism, friction concave wheel and rotating shaft, the magnetic driving wheel by the rotating shaft with it is described from Concentric mechanism is connected, and the sliding sleeve in the centrifugal mechanism is connected by connecting rod with the friction concave wheel, the sliding sleeve Compression spring is set between the friction concave wheel, the sliding sleeve can move in rotating shaft;Set on the magnetic driving wheel more The magnet of block second;
One end connection generator of the flywheel, the other end connect an attrition cam, the attrition cam and the friction concave wheel Discontinuity connects;
One outer drive device is set outside the vacuum box, and the outer drive device includes the driving containing the magnet of polylith first Set, driving wheel and driving wheel described in jackshaft are connected by jackshaft with the actuating sleeve;The driving is set on described fly The vacuum box periphery of battery is taken turns, and it is concentric with the magnetic driving wheel;First magnet in the actuating sleeve moves with the magnetic The second magnet quantity on wheel is equal, and the coupling for corresponding and passing through magnetic field;The driving wheel is connected with engine;
The application method of the motor-driven supplementary device for the flying wheel battery energy that can be automatically separated includes:
Driving wheel described in the driven by engine and the actuating sleeve rotate, on first magnet and magnetic driving wheel in actuating sleeve Second magnet by the coupling in magnetic field, make actuating sleeve drive magnetic driving wheel, centrifugal mechanism and friction concave wheel to rotate together, it is sliding The friction concave wheel of moving sleeve connection engages with attrition cam, driving flywheel turns storage energy;
Stop the rotation of engine, therefore driving wheel, actuating sleeve, magnetic driving wheel, centrifugal mechanism and friction concave wheel also stop operating;Institute State friction concave wheel and leave the attrition cam.
2. application method according to claim 1, it is characterised in that the friction concave wheel of sliding sleeve connection with The specific method of the attrition cam engagement includes:
Under the influence of centrifugal force, the sliding sleeve in the centrifugal mechanism overcomes the elastic force of the compression spring towards described Attrition cam direction is moved, and the friction concave wheel of the sliding sleeve connection engages with the attrition cam.
3. application method according to claim 1, it is characterised in that the friction concave wheel leaves the tool of the attrition cam Body method includes:
The centrifugal force of the centrifugal mechanism disappears, and the elastic force of the compression spring promotes the sliding sleeve, makes and the slip The friction concave wheel of sleeve connection leaves the attrition cam.
4. application method according to claim 1, it is characterised in that it is described friction concave wheel leave the attrition cam it Afterwards, the application method includes:
The flywheel is rotated further by the kinetic energy of storage.
5. according to any described application methods of claim 1-4, it is characterised in that the application method also includes:
When the external world needs electric energy, the kinetic energy of the flywheel is converted into electric energy by generator, exports to external loading.
CN201480038773.7A 2013-09-18 2014-08-13 The application method of the motor-driven supplementary device for the flying wheel battery energy that can be automatically separated Active CN105379077B (en)

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CN201480038773.7A CN105379077B (en) 2013-09-18 2014-08-13 The application method of the motor-driven supplementary device for the flying wheel battery energy that can be automatically separated

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CN2013104271031 2013-09-18
CN201310427103.1A CN103501075A (en) 2013-09-18 2013-09-18 Automatically-separated flywheel battery energy capacity engine-driven supplementary device and use method
PCT/CN2014/084278 WO2015039510A1 (en) 2013-09-18 2014-08-13 Method of using engine-driven supplementary device for energy of automatically-separable flywheel battery
CN201480038773.7A CN105379077B (en) 2013-09-18 2014-08-13 The application method of the motor-driven supplementary device for the flying wheel battery energy that can be automatically separated

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CN105379077B true CN105379077B (en) 2017-12-05

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CN103501075A (en) * 2013-09-18 2014-01-08 杜文娟 Automatically-separated flywheel battery energy capacity engine-driven supplementary device and use method
CN104467265A (en) * 2013-09-18 2015-03-25 杜文娟 Flywheel battery energy motor-driven supplement device capable of separating rapidly
FR3043366A1 (en) * 2015-11-05 2017-05-12 Antoine Zalcman MECHANISM FOR THE TRANSMISSION OF KINETIC ENERGY WITHOUT FRICTION BY WHEEL AT A VARIABLE TIME
EP3649727A4 (en) * 2017-07-03 2021-03-24 Clean Powr Pty Ltd. Apparatus for generating energy

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WO2008125860A1 (en) * 2007-04-16 2008-10-23 Ricardo Uk Ltd. Flywheel arrangement for motor vehicles
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WO2015039510A1 (en) 2015-03-26
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