CN208669979U - Wind-power electricity generation double drive transmission device - Google Patents

Wind-power electricity generation double drive transmission device Download PDF

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Publication number
CN208669979U
CN208669979U CN201821270345.9U CN201821270345U CN208669979U CN 208669979 U CN208669979 U CN 208669979U CN 201821270345 U CN201821270345 U CN 201821270345U CN 208669979 U CN208669979 U CN 208669979U
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China
Prior art keywords
clutch
gear
wind
driving
electricity generation
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Withdrawn - After Issue
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CN201821270345.9U
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Chinese (zh)
Inventor
尉立
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Kunshan Xinmeng Energy Technology Co ltd
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Individual
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Priority to CN201821270345.9U priority Critical patent/CN208669979U/en
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    • 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
    • Y02E10/00Energy generation through renewable energy sources
    • Y02E10/70Wind energy
    • Y02E10/72Wind turbines with rotation axis in wind direction

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Abstract

The utility model provides a kind of wind-power electricity generation double drive transmission device comprising: power input mechanism and transmission mechanism, the power input mechanism drive the transmission mechanism to drive generator work.For the utility model by the clutch between master and movable block, the continuously and stably output of electric energy, generating efficiency with higher and good environmental benefit are realized in the clutch between engagement sleeves axis and transmission gear.

Description

Wind-power electricity generation double drive transmission device
Technical field
The utility model relates to technical field of wind power generation more particularly to a kind of wind-power electricity generation double drive transmission devices.
Background technique
Wind-power electricity generation, which refers to, switchs to electric energy for the kinetic energy of wind.It is non-using wind-power electricity generation since wind energy is a kind of clean energy resource Chang Huanbao, and the electric energy generated is very huge, therefore more and more countries more pay attention to wind-power electricity generation.Currently, wind-power electricity generation Rely primarily on wind-driven generator, wherein the working principle of wind-driven generator is to drive air vane to rotate using wind-force, then pass through Gearbox promotes the speed of rotation, to promote electrical power generators or non-speedup to cooperate using huge permanent magnet direct-drive generator Expensive total power frequency converter power generation.However, the wind-driven generator based on above-mentioned working principle needs to lead to wind by gearbox The internal structure of power generator is extremely complex;Or it is at high cost using permanent magnet direct-drive generator cooperation total power frequency converter.Meanwhile Existing wind-driven generator heavier-weight, to improve the burden requirement and cost for wind-driven generator entirety.Therefore, In view of the above-mentioned problems, it is necessary to propose further solution.
Utility model content
The utility model is intended to provide a kind of wind-power electricity generation double drive transmission device, with overcome it is existing in the prior art not Foot.
In order to solve the above technical problems, the technical solution of the utility model is:
A kind of wind-power electricity generation double drive transmission device comprising: power input mechanism and transmission mechanism, the power input Mechanism drives generator shaft to be rotated by the transmission mechanism;
The power input mechanism includes asynchronous settings: the first power input unit and the second power input unit, institute It states the first power input unit and the second power input unit is arranged side by side on same hub spindle;
Any power input unit includes: master, L-type swing rod and the movable block that clutch is carried out with the master;
The master is set on the hub spindle, and synchronizes movement, the master with the rotation of the hub spindle It is equally spacedly provided with that multiple masters are convex on circumferential side wall, is provided with the position convex with the master on the side wall of the master two sides Multiple push wheels corresponding with quantity;
The movable block include: reciprocatingly slide by the convex promotion of the master coaster hanger and with the master The car body of clutch is carried out, one end of the sliding stroke of the movable block is initial position, and the other end is to cut out position, the L Type swing rod is pivotally connected on the mainframe of the master, and is arranged towards the side wall of the master, and the movable block is located at When cutting out position, the push wheel pushes the L-type swing rod to pivot, and the L-type swing rod pushes the movable block to cut out;
The transmission mechanism includes: the first gear unit and the second gear unit of transmission gear and asynchronous settings, is appointed One gear unit includes: set axis, clutch and resetting-mechanism;
For the set axle sleeve loaded on the gear shaft of the transmission gear two sides, the clutch is installed on the driving cog On the gear shaft for taking turns two sides, and it is located at set axis side, the clutch asynchronous settings of two sides, the driving cog of either side Wheel is moved synchronously with the set axis by the engagement of clutch, and the set axis passes through composite steel band and corresponding power input unit Movable block transmission connection, the resetting-mechanism includes weight rack gear, the gear of the weight rack gear and set axis one end Ring is meshed;
The transmission gear is meshed with the driven gear being set on generator shaft.
The improvement of wind-power electricity generation double drive transmission device as the utility model, the L-type swing rod have it is long-armed and With long-armed one end galianconism connected vertically, the pivotal connection of the L-type swing arm and the mainframe is located at the length On arm, and it is arranged close to the galianconism.
The improvement of wind-power electricity generation double drive transmission device as the utility model is led between the car body and coaster hanger It crosses keyway to match, is additionally provided with spring between the car body and coaster hanger.
The improvement of wind-power electricity generation double drive transmission device as the utility model, the clutch includes: locking jaw Block, driving cuff, driving lantern ring and clutch tooth wheel disc;
The locking rest shoe is several, several locking rest shoes are distributed in the interior of the driving cuff with abutting each other Side, and be adjacent to the driving cuff by lozenges thereon, and the locking rest shoe is bonded with the driving cuff Side is slidably connected by dovetail groove, and the clutch tooth wheel disc is set on the gear shaft of the transmission gear, the clutch gear Disk is located at the inside of several locking rest shoes, and leads to the locking rest shoe phase clutch, the driving cuff and locking rest shoe It crosses side spline to be placed in the keyway of the transmission gear side, the driving lantern ring includes the first driving lantern ring and the second actuating sleeve Ring, the first driving lantern ring and the second actuating sleeve are located on the driving cuff outer ring, pass through respectively with the driving cuff It is threadedly coupled, the first driving lantern ring and the second driving lantern ring are contrary with the driving connection screw thread of cuff.
The improvement of wind-power electricity generation double drive transmission device as the utility model, the first actuating sleeve ring are kept fixed When motionless, the driving cuff drives the centripetal movement of the locking rest shoe and the clutch with the rotation of the transmission gear Gear holds engagement tightly.
The improvement of wind-power electricity generation double drive transmission device as the utility model, the second actuating sleeve ring are kept fixed When motionless, the driving cuff drives the locking rest shoe outward movment and the clutch with the rotation of the transmission gear Gear is detached from.
The improvement of wind-power electricity generation double drive transmission device as the utility model, any locking rest shoe and it is described from That closes the clutch of toothed disc phase is provided with the first fine and closely woven engaging tooth, the clutch gear and the locking rest shoe phase clutch on one side It is provided with the second fine and closely woven engaging tooth on one side.
The improvement of wind-power electricity generation double drive transmission device as the utility model, the driving cuff include ontology and The convex block matched with the locking rest shoe integrally extended from the ontology.
The improvement of wind-power electricity generation double drive transmission device as the utility model, any locking rest shoe includes clutch Portion and the sliding part for being integrally formed or being fixedly connected with clutch part, the clutch part and the clutch tooth wheel disc phase clutch, institute Sliding part is stated to be slided along the keyway.
The improvement of wind-power electricity generation double drive transmission device as the utility model, the wind-power electricity generation double drive transmission dress Setting further includes hydraulic expansion mechanism, and the hydraulic expansion mechanism is located at the lower section of the composite steel band comprising: spring self-restoring Oil cylinder, fixed pulley and fixed pulley bracket, the fixed pulley are installed on the fixed pulley bracket, the spring self-restoring oil cylinder with Fixed pulley carriage drive connection, and drive with the fixed pulley and the composite steel band carry out selectivity against.
The improvement of wind-power electricity generation double drive transmission device as the utility model, the power input mechanism and driver Structure is mutually matched multiple groups.
Compared with prior art, the utility model has the beneficial effects that the utility model by master and movable block it Between clutch, the clutch between engagement sleeves axis and transmission gear realizes the continuously and stably output of electric energy, hair with higher Electrical efficiency and No. two environmental benefits.
Detailed description of the invention
In order to illustrate the embodiment of the utility model or the technical proposal in the existing technology more clearly, below will be to embodiment Or attached drawing needed to be used in the description of the prior art is briefly described, it should be apparent that, the accompanying drawings in the following description is only It is some embodiments recorded in the utility model, for those of ordinary skill in the art, is not making the creative labor Under the premise of, it is also possible to obtain other drawings based on these drawings.
Fig. 1 is the stereoscopic schematic diagram of the wind-power electricity generation double drive transmission device of the utility model;
Fig. 2 is the stereoscopic schematic diagram of master in the wind-power electricity generation double drive transmission device of the utility model;
Fig. 3 is the three-dimensional enlarged diagram of transmission mechanism in Fig. 1.
Specific embodiment
The following will be combined with the drawings in the embodiments of the present invention, carries out the technical scheme in the embodiment of the utility model Clearly and completely describe, it is clear that the described embodiments are only a part of the embodiments of the utility model, rather than whole Embodiment.Based on the embodiments of the present invention, those of ordinary skill in the art are without making creative work Every other embodiment obtained, fall within the protection scope of the utility model.
As shown in Figures 1 to 3, the wind-power electricity generation double drive transmission device of the utility model includes: power input mechanism 7 and passes Motivation structure 8, the power input mechanism 7 drive generator shaft to be rotated by the transmission mechanism 8.Wherein, the power Input mechanism 7 and transmission mechanism 8 can be mutually matched multiple groups.Preferably, the power input mechanism 7 and transmission mechanism 8 It is one group.
The power input mechanism 7 includes asynchronous settings: the first power input unit 10 and the second power input unit 11, the first power input unit 10 and the second power input unit 11 are arranged side by side on same hub spindle.
Any power input unit includes: master 12, L-type swing rod 13 and the mobile cunning that clutch is carried out with the master 12 Vehicle 14.
The master 12 is set on the hub spindle, and synchronizes movement with the rotation of the hub spindle.To institute The kinetic energy that hub spindle rotates blade is stated, the master 12 is transferred to and it is driven to be rotated.Wherein, the master 12 is circumferential It is equally spacedly provided with multiple masters convex 15 on side wall, the position with the master convex 15 is provided on the side wall of 12 two sides of master Multiple push wheels corresponding with quantity.
In addition, the circumferential outer ring of the master 12 is begun by convex 15 side of the master, master 12 is set along composite steel band winding zone It is set to step type, the composite steel band multi-turn overlapping when master 12 is rotated by the composite steel band actuating sleeve axis is corrected and draws The speed difference risen.
The movable block 14 include: reciprocatingly slide by the master it is convex 15 push coaster hanger 16 and with institute The car body 17 that master 12 carries out clutch is stated, one end of the sliding stroke of the movable block 14 is initial position, and the other end is to cut Out position.To output power when the master convex 15 of the movable block 14 and the master 12 cooperates, with the master of master 12 convex 15 The initial position is returned to when separation.
It is matched between the car body 17 and coaster hanger 16 by keyway, between the car body 17 and coaster hanger 16 also It is provided with spring.By the way that the spring is arranged, when the movable block 14 resets, pass through the car body 17 and the coaster hanger 17 pull-up of car body to the height that can cooperate with the master convex 15 can be convenient for convex 15 band of the master by the spring in 16 keyways It moves the car body 17 and synchronizes movement.
Further, the L-type swing rod 13 is pivotally connected on the mainframe of the master 12, and towards the master 12 Side wall setting, the movable block 14 is located at when cutting out position, and the push wheel pushes the L-type swing rod 13 to pivot, the L-type Swing rod 13 pushes the movable block 14 to cut out.
In one embodiment, the L-type swing rod 13 has long-armed and connected vertically with described long-armed one end Galianconism, the pivotal connection of the L-type swing arm and the mainframe be located at it is described it is long-armed on, and be arranged close to the galianconism.
To, the push wheel with the master 12 turn to it is described cut out position before, the push wheel pushes the L-type swing rod 13 galianconism drive the L-type swing rod 13 to rotate, and the long-armed end of the L-type swing rod 13 is under the rotation of the L-type swing rod 13 Pressure drives the car body 17 to be detached from the master convex 15, and compresses the bullet in the headstock and 14 suspension vehicle frame keyway of movable block Spring.When the car body 17 resets after being detached from the master convex 15, by the car body 17 and the 14 frame keyway of movable block Spring by 17 pull-up of car body to master it is convex 15 cooperation height.
The transmission mechanism 8 includes: the first gear unit 19 and the second transmission list of transmission gear 18 and asynchronous settings Member 20.To, first gear unit 19 and the second gear unit 20 is asynchronous is staggered, and the cooperation of the two alternate reciprocating motion is corresponding The clutch realize generator shaft continuous rotation driving.
Specifically, any gear unit includes: set axis 21, clutch 22 and resetting-mechanism 23.The transmission gear 18 are meshed with the driven gear being set on generator shaft.
The set axis 21 is set on the gear shaft of the transmission gear 18, and the clutch 22 is installed on the transmission On the gear shaft of 18 two sides of gear, and it is located at 21 side of set axis, 22 asynchronous settings of clutch of two sides.The transmission Gear 18 is moved synchronously with the set axis 21 by the engagement of clutch 22.Meanwhile the set axis 21 by composite steel band with The movable block 14 of corresponding power input unit is sequentially connected.To which the master 12 can be pulled by the movable block 14 The composite steel band, and the gear shaft for being further driven to transmission gear 18 is rotated the output to realize power.
The resetting-mechanism 23 for realizing movable block 14 reset comprising weight rack gear, the weight rack gear with The gear ring of described 21 one end of set axis is meshed, and carries out elevating movement.To which the weight rack gear is driven with the gear ring Shi Shangsheng accumulation of energy, the weight rack gear, since gravity falls, are matched when clutch 22 is in disengaged position by rack gear It closes and the set axis 21 is driven to invert, and then composite steel band pulls movable block 14 to be resetted.
The clutch 22 includes: locking rest shoe 24, driving cuff 25, driving lantern ring 26 and clutch tooth wheel disc 27. Preferably, the driving cuff 25, driving lantern ring 26, clutch tooth wheel disc 27 are arranged concentrically according to mutual alignment relation holding.
Wherein, the locking rest shoe 24 is several, several locking rest shoes 24 are distributed in the driving with abutting each other The inside of cuff 25, and be adjacent to the driving cuff 25 by lozenges thereon, and the locking rest shoe 24 and institute The driving fitting of cuff 25 side is stated to be slidably connected by dovetail groove.
The clutch tooth wheel disc 27 is set on the gear shaft of the transmission gear 18, and the clutch tooth wheel disc 27 is located at institute State the insides of several locking rest shoes 24, and with the upper 24 phase clutch of locking rest shoe, the driving cuff 25 with lock rest shoe 24 It is placed in the 18 side keyway of transmission gear by side spline.
In order to realize the clutch action between several locking rest shoes 24 and clutch tooth wheel disc 27, any locking jaw Block 24 is provided with the first fine and closely woven engaging tooth, the clutch gear and the lock with the 27 phase clutch of clutch tooth wheel disc on one side The 24 phase clutch of tight rest shoe is provided with the second fine and closely woven engaging tooth on one side.To several locking rest shoes 24 and clutch tooth wheel disc 27 When engagement, it can be driven to rotate;When disengaged, can stop applying active force.
The driving lantern ring 26 is for driving the driving cuff 25 to be moved, and specifically, the driving lantern ring 26 wraps The first driving lantern ring 26 and the second driving lantern ring 26 are included, the first driving lantern ring 26 and the second driving lantern ring 26 are placed on the drive Dynamic 25 outer ring of cuff, is connected through a screw thread with the driving cuff 25 respectively, the first driving lantern ring 26 and the second actuating sleeve Ring 26 is contrary with the driving connection screw thread of cuff 25.So set, the first driving lantern ring 26 and the second driving Connection screw thread between lantern ring 26 and driving cuff 25 also has self-locking function.
In one embodiment, the driving cuff 25 includes ontology and integrally extends from the ontology The convex block matched with the locking rest shoe 24.Correspondingly, any locking rest shoe 24 includes clutch part and and clutch The sliding part that portion is integrally formed or is fixedly connected, the clutch part and the 27 phase clutch of clutch tooth wheel disc, the sliding part edge The keyway is slided.
When the first driving lantern ring 26 remains stationary, the rotation for driving cuff 25 with the transmission gear 18 Turn, the centripetal movement of the locking rest shoe 24 is driven to engage with clutch gear holding.The second driving lantern ring 26 keeps solid When fixed motionless, the driving cuff 25 with the transmission gear 18 rotation, drive 24 outward movment of locking rest shoe and The clutch gear is detached from.
Specifically, when the gear shaft of the clutch tooth wheel disc 27 and the transmission gear 18 cooperates, first actuating sleeve Ring 26 is fixed under external world's control, as gear shaft rotation drives the driving cuff 25 to rotate, is closed by screw thread System, the positive axial movement of the driving cuff 25.The driving cuff 25 passes through wedge-shaped block structure and drives the locking rest shoe 24 The clutch tooth wheel disc 27 is held in centripetal movement tightly.It is detached to the next first driving lantern ring 26 of complete hold and extraneous control, with The clutch 22 and 18 synchronous rotary of transmission gear.
When the gear shaft of the clutch tooth wheel disc 27 and the transmission gear 18 is detached from, the second driving lantern ring 26 is outside It is fixed under boundary's control, as driven shaft rotation drives the driving cuff 25 to rotate, by threaded relation, the drive The dynamic reversely axial movement of cuff 25.The driving cuff 25 pass through wedge-shaped block structure drive 24 outward movment of locking rest shoe and The clutch gear is detached from.The second driving lantern ring 26 is detached from external world's control after completely disengaging contacts, with the clutch Mechanism 22 and 18 synchronous rotary of transmission gear.
In addition, for the ease of carrying out clutch, the wind-power electricity generation double drive transmission dress between movable block 14 and master 12 Setting further includes hydraulic expansion mechanism 28, and the hydraulic expansion mechanism 28 is located at the lower section of the composite steel band comprising: spring is certainly Drawback cylinder 29, fixed pulley 30 and fixed pulley bracket 31.Wherein, the fixed pulley 30 is installed on the fixed pulley bracket 31, The spring self-restoring oil cylinder 29 is sequentially connected with the fixed pulley bracket 31, and drive with the fixed pulley 30 with it is described compound Steel band carry out selectivity against.
To which when the movable block 14 is rotated with movable gear shaft, 29 piston of the spring self-restoring oil cylinder ejection will The composite steel band tensioner rope closing;Before the movable block 14 faces and cuts out, 29 pressure release of spring self-restoring oil cylinder, the bullet The piston whereabouts slack rope of spring self-resetting oil cylinder 29 assists the movable block 14 to unload.
In conclusion the utility model is by clutch between master and movable block, engagement sleeves axis and transmission gear it Between clutch, realize the continuously and stably output of electric energy, generating efficiency with higher and No. two environmental benefits.
It is obvious to a person skilled in the art that the present invention is not limited to the details of the above exemplary embodiments, and And without departing substantially from the spirit or essential attributes of the utility model, it can realize that this is practical new in other specific forms Type.Therefore, in all respects, the present embodiments are to be considered as illustrative and not restrictive, this is practical new The range of type is indicated by the appended claims rather than the foregoing description, it is intended that containing for the equivalent requirements of the claims will be fallen in All changes in justice and range are embraced therein.It should not treat any reference in the claims as limiting Related claim.
In addition, it should be understood that although this specification is described in terms of embodiments, but not each embodiment is only wrapped Containing an independent technical solution, this description of the specification is merely for the sake of clarity, and those skilled in the art should It considers the specification as a whole, the technical solutions in the various embodiments may also be suitably combined, forms those skilled in the art The other embodiments being understood that.

Claims (11)

1. a kind of wind-power electricity generation double drive transmission device, which is characterized in that the wind-power electricity generation double drive transmission device includes: dynamic Power input mechanism and transmission mechanism, the power input mechanism drive generator shaft to be rotated by the transmission mechanism;
The power input mechanism includes asynchronous settings: the first power input unit and the second power input unit, and described One power input unit and the second power input unit are arranged side by side on same hub spindle;
Any power input unit includes: master, L-type swing rod and the movable block that clutch is carried out with the master;
The master is set on the hub spindle, and synchronizes movement with the rotation of the hub spindle, and the master is circumferential Side wall on be equally spacedly provided with that multiple masters are convex, the position sum number convex with the master is provided on the side wall of the master two sides Measure corresponding multiple push wheels;
The movable block include: reciprocatingly slide by the convex promotion of the master coaster hanger and with the master carry out The car body of clutch, one end of the sliding stroke of the movable block are initial position, and the other end is to cut out position, the L-type pendulum Bar is pivotally connected on the mainframe of the master, and is arranged towards the side wall of the master, and the movable block, which is located at, to be cut out When position, the push wheel pushes the L-type swing rod to pivot, and the L-type swing rod pushes the movable block to cut out;
The transmission mechanism includes: the first gear unit and the second gear unit of transmission gear and asynchronous settings, Ren Yichuan Moving cell includes: set axis, clutch and resetting-mechanism;
For the set axle sleeve loaded on the gear shaft of the transmission gear two sides, the clutch is installed on the transmission gear two On the gear shaft of side, and it is located at set axis side, the clutch asynchronous settings of two sides, the transmission gear is with the set axis It is moved synchronously by the engagement of clutch, the set axis is passed by composite steel band with the movable block of corresponding power input unit Dynamic connection, the resetting-mechanism includes weight rack gear, and the weight rack gear is meshed with the gear ring of set axis one end;
The transmission gear is meshed with the driven gear being set on generator shaft.
2. wind-power electricity generation double drive transmission device according to claim 1, which is characterized in that the L-type swing rod has length Arm and with long-armed one end galianconism connected vertically, the L-type swing arm and the pivotal connection of the mainframe are located at It is described it is long-armed on, and close to the galianconism be arranged.
3. wind-power electricity generation double drive transmission device according to claim 1, which is characterized in that the car body and coaster hanger Between matched by keyway, be additionally provided with spring between the car body and coaster hanger.
4. wind-power electricity generation double drive transmission device according to claim 1, which is characterized in that the clutch includes: Lock rest shoe, driving cuff, driving lantern ring and clutch tooth wheel disc;
The locking rest shoe is several, several locking rest shoes are distributed in the inside of the driving cuff with abutting each other, and It is adjacent to the driving cuff by lozenges thereon, and the locking rest shoe is bonded side with the driving cuff and passes through Dovetail groove is slidably connected, and the clutch tooth wheel disc is set on the gear shaft of the transmission gear, and the clutch tooth wheel disc is located at The inside of several locking rest shoes, and pass through side with the locking rest shoe phase clutch, the driving cuff and locking rest shoe Spline is placed in the keyway of the transmission gear side, and the driving lantern ring includes the first driving lantern ring and the second driving lantern ring, institute It states the first driving lantern ring and the second actuating sleeve is located on the driving cuff outer ring, connected respectively with the driving cuff by screw thread It connects, the first driving lantern ring and the second driving lantern ring are contrary with the driving connection screw thread of cuff.
5. wind-power electricity generation double drive transmission device according to claim 4, which is characterized in that the first actuating sleeve environmental protection When holding fixed, the driving cuff drives the centripetal movement of the locking rest shoe and institute with the rotation of the transmission gear It states clutch gear and holds engagement tightly.
6. wind-power electricity generation double drive transmission device according to claim 4, which is characterized in that the second actuating sleeve environmental protection When holding fixed, the driving cuff drives the locking rest shoe outward movment and institute with the rotation of the transmission gear State clutch gear disengaging.
7. wind-power electricity generation double drive transmission device according to claim 4, which is characterized in that any locking rest shoe with The clutch tooth wheel disc phase clutch is provided with the first fine and closely woven engaging tooth, the clutch gear and the locking rest shoe phase on one side Clutch is provided with the second fine and closely woven engaging tooth on one side.
8. wind-power electricity generation double drive transmission device according to claim 4, which is characterized in that the driving cuff includes this Body and the convex block matched with the locking rest shoe integrally extended from the ontology.
9. wind-power electricity generation double drive transmission device according to claim 4, which is characterized in that any locking rest shoe packet Include clutch part and be integrally formed with clutch part or the sliding part that is fixedly connected, the clutch part and clutch tooth wheel disc phase from It closes, the sliding part is slided along the keyway.
10. wind-power electricity generation double drive transmission device according to claim 1, which is characterized in that the wind-power electricity generation is double to be driven Dynamic transmission device further includes hydraulic expansion mechanism, and the hydraulic expansion mechanism is located at the lower section of the composite steel band comprising: bullet Spring self-resetting oil cylinder, fixed pulley and fixed pulley bracket, the fixed pulley are installed on the fixed pulley bracket, the spring runback Position oil cylinder is connect with the fixed pulley carriage drive, and is driven and carried out selective support with the fixed pulley and the composite steel band It leans on.
11. wind-power electricity generation double drive transmission device according to claim 1, which is characterized in that the power input mechanism It is mutually matched multiple groups with transmission mechanism.
CN201821270345.9U 2018-08-08 2018-08-08 Wind-power electricity generation double drive transmission device Withdrawn - After Issue CN208669979U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201821270345.9U CN208669979U (en) 2018-08-08 2018-08-08 Wind-power electricity generation double drive transmission device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201821270345.9U CN208669979U (en) 2018-08-08 2018-08-08 Wind-power electricity generation double drive transmission device

Publications (1)

Publication Number Publication Date
CN208669979U true CN208669979U (en) 2019-03-29

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN201821270345.9U Withdrawn - After Issue CN208669979U (en) 2018-08-08 2018-08-08 Wind-power electricity generation double drive transmission device

Country Status (1)

Country Link
CN (1) CN208669979U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108708954A (en) * 2018-08-08 2018-10-26 尉立 Wind-power electricity generation double drive transmission device

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108708954A (en) * 2018-08-08 2018-10-26 尉立 Wind-power electricity generation double drive transmission device
CN108708954B (en) * 2018-08-08 2023-08-29 华能新能源股份有限公司山西分公司 Wind power generation double-drive transmission device

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Effective date of registration: 20190730

Address after: No. 600 Yuyang Road, Yushan Town, Kunshan City, Suzhou City, Jiangsu Province

Patentee after: Kunshan Xinmeng Energy Technology Co.,Ltd.

Address before: 200 000 No. 57, Lane 1, 588, Jinfeng Road, Minhang District, Shanghai

Patentee before: Wei Li

AV01 Patent right actively abandoned
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Granted publication date: 20190329

Effective date of abandoning: 20230829

AV01 Patent right actively abandoned

Granted publication date: 20190329

Effective date of abandoning: 20230829