CN108590974A - A kind of engine - Google Patents

A kind of engine Download PDF

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Publication number
CN108590974A
CN108590974A CN201810760034.9A CN201810760034A CN108590974A CN 108590974 A CN108590974 A CN 108590974A CN 201810760034 A CN201810760034 A CN 201810760034A CN 108590974 A CN108590974 A CN 108590974A
Authority
CN
China
Prior art keywords
bevel gear
gear
wall
chamber
fixedly connected
Prior art date
Legal status (The legal status 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 status listed.)
Withdrawn
Application number
CN201810760034.9A
Other languages
Chinese (zh)
Inventor
张振寰
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Xuancheng Fei Cheng Environmental Protection Technology Co Ltd
Original Assignee
Xuancheng Fei Cheng Environmental Protection Technology Co Ltd
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 Xuancheng Fei Cheng Environmental Protection Technology Co Ltd filed Critical Xuancheng Fei Cheng Environmental Protection Technology Co Ltd
Priority to CN201810760034.9A priority Critical patent/CN108590974A/en
Publication of CN108590974A publication Critical patent/CN108590974A/en
Withdrawn legal-status Critical Current

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Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F03MACHINES OR ENGINES FOR LIQUIDS; WIND, SPRING, OR WEIGHT MOTORS; PRODUCING MECHANICAL POWER OR A REACTIVE PROPULSIVE THRUST, NOT OTHERWISE PROVIDED FOR
    • F03DWIND MOTORS
    • F03D9/00Adaptations of wind motors for special use; Combinations of wind motors with apparatus driven thereby; Wind motors specially adapted for installation in particular locations
    • F03D9/20Wind motors characterised by the driven apparatus
    • F03D9/25Wind motors characterised by the driven apparatus the apparatus being an electrical generator
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B60VEHICLES IN GENERAL
    • B60KARRANGEMENT OR MOUNTING OF PROPULSION UNITS OR OF TRANSMISSIONS IN VEHICLES; ARRANGEMENT OR MOUNTING OF PLURAL DIVERSE PRIME-MOVERS IN VEHICLES; AUXILIARY DRIVES FOR VEHICLES; INSTRUMENTATION OR DASHBOARDS FOR VEHICLES; ARRANGEMENTS IN CONNECTION WITH COOLING, AIR INTAKE, GAS EXHAUST OR FUEL SUPPLY OF PROPULSION UNITS IN VEHICLES
    • B60K16/00Arrangements in connection with power supply of propulsion units in vehicles from forces of nature, e.g. sun or wind
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F03MACHINES OR ENGINES FOR LIQUIDS; WIND, SPRING, OR WEIGHT MOTORS; PRODUCING MECHANICAL POWER OR A REACTIVE PROPULSIVE THRUST, NOT OTHERWISE PROVIDED FOR
    • F03DWIND MOTORS
    • F03D15/00Transmission of mechanical power
    • F03D15/10Transmission of mechanical power using gearing not limited to rotary motion, e.g. with oscillating or reciprocating members
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F03MACHINES OR ENGINES FOR LIQUIDS; WIND, SPRING, OR WEIGHT MOTORS; PRODUCING MECHANICAL POWER OR A REACTIVE PROPULSIVE THRUST, NOT OTHERWISE PROVIDED FOR
    • F03DWIND MOTORS
    • F03D9/00Adaptations of wind motors for special use; Combinations of wind motors with apparatus driven thereby; Wind motors specially adapted for installation in particular locations
    • F03D9/30Wind motors specially adapted for installation in particular locations
    • F03D9/32Wind motors specially adapted for installation in particular locations on moving objects, e.g. vehicles
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B60VEHICLES IN GENERAL
    • B60KARRANGEMENT OR MOUNTING OF PROPULSION UNITS OR OF TRANSMISSIONS IN VEHICLES; ARRANGEMENT OR MOUNTING OF PLURAL DIVERSE PRIME-MOVERS IN VEHICLES; AUXILIARY DRIVES FOR VEHICLES; INSTRUMENTATION OR DASHBOARDS FOR VEHICLES; ARRANGEMENTS IN CONNECTION WITH COOLING, AIR INTAKE, GAS EXHAUST OR FUEL SUPPLY OF PROPULSION UNITS IN VEHICLES
    • B60K16/00Arrangements in connection with power supply of propulsion units in vehicles from forces of nature, e.g. sun or wind
    • B60K2016/006Arrangements in connection with power supply of propulsion units in vehicles from forces of nature, e.g. sun or wind wind power driven
    • 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
    • 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
    • Y02E10/728Onshore wind turbines
    • 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
    • Y02TCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO TRANSPORTATION
    • Y02T10/00Road transport of goods or passengers
    • Y02T10/80Technologies aiming to reduce greenhouse gasses emissions common to all road transportation technologies
    • Y02T10/90Energy harvesting concepts as power supply for auxiliaries' energy consumption, e.g. photovoltaic sun-roof

Abstract

The invention discloses a kind of engines, including first device main body, the regulating device being set in the first device main body transmission device, the first transmission device being set on the downside of regulating device, the second transmission device being set on rear side of the regulating device and the wind energy plant being set in the first device main body, the regulating device includes the first movement chamber being set in the first device main body, the present apparatus can carry out wind-power electricity generation while starting as power using wind-force, using wind-force as power-assisted while electric power is as power, it can also generate electricity simultaneously, simple wind-force may be selected in the case where electricity storage is full as power-assisted, when electricity is relatively low, power generation storage electric power is carried out while wind-force may be selected as power, also simple wind-power electricity generation may be selected, power generation storage electric power can be carried out when not riding in this way.

Description

A kind of engine
Technical field
The present invention relates to energy-conserving and emission-cutting technology field, specifically a kind of engine.
Background technology
In modern society, the use of vehicle is more and more, and the automobile that present electric power starts is also more and more, can save in this way A large amount of resource is saved, but electric vehicle will be very inconvenient in the case of out of power, usage time is not long and charges very yet Trouble, during running car, opposite will produce wind, uses wind to the power-assisted as traveling and can carry out certain hair Electricity can improve the cruising ability of automobile, so design is a kind of, have must when can utilize wind energy power-assisted and a kind of engine of power generation Want, the present apparatus can carry out wind-power electricity generation while starting as power using wind-force, while electric power is as power with Wind-force can also generate electricity as power-assisted, and simple wind-force may be selected in the case where electricity storage is full as power-assisted, work as electricity When relatively low, power generation storage electric power is carried out while wind-force may be selected as power, simple wind-power electricity generation also may be selected, in this way not Power generation storage electric power can be carried out when riding.
Invention content
Technical problem to be solved by the invention is to provide a kind of engine, above-mentioned existing asking in the art can be solved Topic.
The present invention is achieved through the following technical solutions:A kind of engine of the present invention, including first device main body, The regulating device that is set in the first device main body transmission device, the first transmission device being set on the downside of regulating device, The second transmission device being set on rear side of the regulating device and the wind energy plant being set in the first device main body, institute It includes the first movement chamber being set in the first device main body to state regulating device, the first movement intracavitary it is symmetrical and Slidable to be provided with the first sliding block, symmetrical in the first movement chamber upper inside walls and being provided with of being connected first is led Chamber is slided, is fixedly installed first motor in the inner wall between the first slide guide chamber, first motor left and right ends power is matched Conjunction is connected with the first screw rod, and first upper end of slide block is fixedly installed extension and is passed through the first slide guide intracavitary and screw-thread fit It is connected to the first slider guide of first screw rod, is rotatably provided with the first column spinner in first sliding block, described It is provided with the opposite telescopic hole of being open in one column spinner, the telescopic hole is symmetrical in the inner wall of both sides up and down and what is be connected is provided with Second mobile cavity, is slidably provided with the first rotary shaft in the telescopic hole, first rotary shaft up and down both sides close to institute It states one end of first motor symmetrically and is fixedly installed the first fixed block for extending and being passed through in second mobile cavity, described first The one end of rotary shaft far from the first motor is connected to the wind energy plant, and first column spinner is close to the first motor One end is fixedly connected with first bevel gear by shaft, be connected in inner wall on the downside of the first movement chamber to be provided with first logical Hole is rotatably provided with upper end in the first through hole and extends the second column spinner for being passed through the first movement intracavitary, described Second column spinner lower end, which extends, to be passed through in first transmission device, and second column spinner upper end, which is fixedly installed, to be engageable to The second bevel gear of the first bevel gear is provided through the second through-hole in second column spinner up and down, and described second is logical Hole, which is provided with to be rotatably assorted, is connected to the second rotary shaft of second through-hole wall, and second rotary shaft upper end, which extends, to be passed through The first movement intracavitary is simultaneously fixedly connected with third hand tap gear, and the third hand tap gear upper end is fixedly connected with by shaft Four bevel gears, what is be connected in the first through hole inner wall is provided with the first lifting chamber, and the first lifting intracavitary is slidable Inner rotation is provided with to be connected in the elevator of second column spinner, the downside inner wall of first lifting chamber front end It is fixedly installed the second motor, second motor upper end power is connected with the second screw rod, and second screw flight is matched The front end for being connected to the elevator is closed, what is be connected in the inner wall of the first lifting chamber left side rear end is provided with the first promotion Chamber, is slidably provided with right end in first push chamber and is fixedly connected on the first of elevator left end face rear end and push away Block, what is be connected in inner wall on the downside of first push chamber is provided with the second push chamber, slidable in second push chamber It is provided with the second pushing block, first is fixedly connected between the front end of second pushing block and the front inner wall of second push chamber Spring, what is be connected in inner wall on the downside of second push chamber is provided with third mobile cavity, inner wall on rear side of the third mobile cavity What is be inside connected is provided with the first drive cavity, and upper end is slidably provided in the third mobile cavity and is fixedly connected with then second Second sliding block of pushing block is rotatably provided with third rotary shaft in second sliding block, and the front end of the third rotary shaft is prolonged It stretches and is passed through the third mobile cavity and is fixedly connected with the 5th bevel gear, the rear end of the third rotary shaft, which extends, is passed through described the In one drive cavity and it is fixedly connected with the first spur gear, it is engageable on the right side of first spur gear to be provided with the second spur gear, Second spur gear rear end is connected to second transmission device.
First transmission device includes second be set in the first device main body as a preferred technical solution, Drive cavity, second drive cavity upper end are communicated in the first through hole, and second column spinner lower end, which extends, is passed through described the In two drive cavities and it is fixedly connected with the 6th bevel gear, second rotary shaft lower end, which extends, to be passed through in second drive cavity simultaneously It is fixedly connected with third spur gear, the rear side that is provided with being connected in the inner wall of the second drive cavity upside left end is communicated in institute The first gear chamber of third mobile cavity is stated, the first gear intracavitary is rotatably provided with the 7th bevel gear, first tooth What is be connected in wheel chamber inner left wall is provided with third through-hole, and electric energy conversion is fixedly installed in the third through-hole inner left wall Device, the 7th bevel gear is rotatably assorted by shaft is connected to the device for converting electric energy, on the right side of second drive cavity What is be connected in the inner wall of lower end is provided with second gear chamber, and it is engageable that the second gear intracavitary is rotatably provided with left end It is described in being provided with third drive cavity in the 4th spur gear of the third spur gear, the upper inside walls of the second gear chamber 4th spur gear upper end is fixedly connected with the 8th bevel gear, the 8th cone by extending to the shaft in the third drive cavity Gear right end engaged transmission is provided with the 9th bevel gear, and what is be connected in the inner wall of the third drive cavity right side is provided with four-way Hole, the 9th bevel gear right end are fixedly connected with to be rotatably assorted and are connected to the fourth hole inner wall and extend to extraneous the Four rotary shafts, the 4th rotary shaft right end are fixedly connected with runner.
Second transmission device includes being set on rear side of first drive cavity in inner wall as a preferred technical solution, The 4th drive cavity, be rotatably provided with the tenth bevel gear in the 4th drive cavity, the tenth bevel gear front end passes through Shaft is fixedly connected on second spur gear, and what the tenth bevel gear upper end was meshed is provided with the 11st bevel gear, institute It states in the 4th drive cavity upper inside walls and is provided with the 5th drive cavity by what through-hole was connected, it is rotatable in the 5th drive cavity The 12nd bevel gear for being provided with lower end and being fixedly connected on 11 bevel gear, the 12nd bevel gear left end is meshed Be provided with the tenth third hand tap gear, the tenth third hand tap gear front end is fixedly connected with extension and is passed through the first movement intracavitary 5th rotary shaft, the 5th rotary shaft front end are fixedly connected with the 14th bevel gear.
The wind energy plant includes in being symmetrically disposed at left and right sides of the first movement chamber as a preferred technical solution, In wall and pre-and post perforative ventilation opening, it is fixedly installed the second fixed block between inner wall at left and right sides of the ventilation opening, it is described It is provided with the 6th drive cavity in second fixed block, the 14th bevel gear is rotatably provided in the 6th drive cavity, it is described 14th bevel gear front end is fixedly connected with fan by extending to the shaft in the ventilation opening, and the 14th bevel gear is right Hold what is be meshed to be provided with the 15th bevel gear, the 15th bevel gear right end is fixedly connected on first rotary shaft.
The beneficial effects of the invention are as follows:The configuration of the present invention is simple, it is easy to operate, when being started by the present apparatus, it is elected to It selects when only doing power, the first slide guide chamber starts, and then drives the first slider guide to close to the side of first motor by the first screw rod First bevel gear is driven to move right to movement, and then by the first sliding block, when first bevel gear and third hand tap gear are meshed When stop, fan rotates under wind action at this time, and then drives the rotation of the 14th bevel gear by shaft, and then passes through the tenth Four bevel gears engage with the gear of the 15th bevel gear drives the rotation of the 15th bevel gear, and then drives the rotation of the first rotary shaft, And then the rotation of the first column spinner is driven by the first fixed block, and then third hand tap gear rotation is driven by first bevel gear, into And the rotation of the second rotary shaft is driven, and then engaged with the gear of the 4th spur gear by third spur gear and drive the 4th straight-tooth rotation It is dynamic, and then the rotation of the 8th bevel gear is driven by shaft, and then the rotation of the 9th bevel gear is driven, and then pass through the 4th rotary shaft band Turn wheel rotates, and when selection only generates electricity, first motor reversion, first bevel gear is disengaged from third hand tap gear at this time, the Two electric motor startings, and then drive elevator to rise by the second screw rod, and then second bevel gear is driven to rise, work as first bevel gear Stop when being meshed with second bevel gear, the 6th bevel gear is meshed with the 7th bevel gear at this time, at this time third spur gear and Two gear cavities are disengaged from, and first bevel gear drives second bevel gear rotation at this time, and then drive the rotation of the 6th bevel gear, in turn It drives the 7th bevel gear to rotate, and then is generated electricity by device for converting electric energy, when selecting not only as power but also when generating electricity, second Motor reversal, the second column spinner declines at this time, and then the 4th bevel gear is driven to decline, when the 4th bevel gear and first bevel gear phase Stop when engagement, third spur gear is meshed with second gear chamber at this time, and the 4th bevel gear mutually nibbles with the 14th bevel gear at this time It closes, third spur gear is meshed with the 4th spur gear at this time, and the first pushing block moves down under the drive of elevator at this time, in turn It pushes the second pushing block that the elastic force of the first spring is overcome to act on to move forward, and then the second sliding block is driven to move forward, and then pass through Third rotary shaft drives the 5th bevel gear and the first spur gear to move forward, and the 5th bevel gear mutually nibbles with the 7th bevel gear at this time It closes, the first spur gear is meshed with the second spur gear, and first bevel gear drives the rotation of the 4th bevel gear at this time, and then drives the tenth Four bevel gears rotate, and then drive the rotation of the tenth triconodont wheel by the 5th rotary shaft, and then drive the rotation of the 12nd bevel gear, The rotation of 11 bevel gears is driven by shaft in turn, and then drives the rotation of the tenth bevel gear, and then is straight by shaft drive second Gear rotates, and drives the rotation of the 5th bevel gear into drive the first spur gear rotation, and then by third rotary shaft, and then drive 7th bevel gear rotates, and third spur gear drives the rotation of the 4th spur gear at this time, that is, realizes that power and power generation are carried out at the same time.
Description of the drawings
The present invention is described in detail by following specific embodiment and attached drawing for ease of explanation,.
Fig. 1 is a kind of internal structure schematic diagram of engine of the present invention;
Fig. 2 is the schematic diagram in direction " A-A " in Fig. 1;
Fig. 3 is the partial schematic diagram in direction " B-B " in Fig. 1;
Fig. 4 is the enlarged diagram of " A " in Fig. 1.
Specific implementation mode
As Figure 1-Figure 4, a kind of engine of the invention, including first device main body 11, be set to it is described first dress It sets the regulating device in 11 transmission device of main body, the first transmission device being set on the downside of regulating device, be set to the adjusting The second transmission device on rear side of device and the wind energy plant being set in the first device main body 11, the regulating device packet Include the first movement chamber 12 being set in the first device main body 11, it is symmetrical in the first movement chamber 12 and slidably Be provided with the first sliding block 13, it is symmetrical in 12 upper inside walls of first movement chamber and what is be connected is provided with the first slide guide Chamber 91 is fixedly installed first motor 92,92 left and right ends of the first motor in the inner wall between the first slide guide chamber 91 Power is connected with the first screw rod 100, and 13 upper end of the first sliding block is fixedly installed extension and is passed through the first slide guide chamber In 91 and screw-thread fit is connected to the first slider guide 93 of first screw rod 100, is rotatably set in first sliding block 13 It is equipped with the first column spinner 14, the opposite telescopic hole 15 that is open, about 15 telescopic hole are provided in first column spinner 14 It is symmetrical and what is be connected is provided with the second mobile cavity 16 in the inner wall of both sides, slidably it is provided with the first rotation in the telescopic hole 15 Shaft 17, first rotary shaft, about 17 both sides are symmetrical close to one end of the first motor 92 and to be fixedly installed extension logical Enter the first fixed block 18 in second mobile cavity 16, the one end of first rotary shaft 17 far from the first motor 92 connects It is connected to the wind energy plant, first column spinner 14 is fixedly connected with first close to 92 one end of the first motor by shaft Bevel gear 20, what is be connected in 12 downside inner wall of the first movement chamber is provided with first through hole 21, in the first through hole 21 The rotatable upper end that is provided with extends the second column spinner 22 being passed through in the first movement chamber 12, under second column spinner 22 End, which extends, to be passed through in first transmission device, and 22 upper end of the second column spinner, which is fixedly installed, is engageable to first cone The second bevel gear 23 of gear 20 is provided through the second through-hole 24, second through-hole in second column spinner 22 up and down 24 are provided with to be rotatably assorted and are connected to the second rotary shaft 27 of 24 inner wall of the second through-hole, and 27 upper end of the second rotary shaft is prolonged It stretches and is passed through in the first movement chamber 12 and is fixedly connected with third hand tap gear 28,28 upper end of the third hand tap gear passes through shaft It is fixedly connected with the 4th bevel gear 29, what is be connected in 21 inner wall of the first through hole is provided with the first lifting chamber 25, and described Inner rotation is slidably provided in one lifting chamber 25 to be connected in the elevator 26 of second column spinner 22, described the The second motor 61 is fixedly installed in the downside inner wall of one 25 front end of lifting chamber, second motor, 61 upper end power is connected There are the second screw rod 62,62 screw-thread fit of the second screw rod to be connected to the front end of the elevator 26, the first lifting chamber 25 What is be connected in the inner wall of left side rear end is provided with the first push chamber 46, and the right side is slidably provided in first push chamber 46 End is fixedly connected on the first pushing block 47 of 26 left end face rear end of the elevator, phase in first push chamber, 46 downside inner wall Connection is provided with the second push chamber 43, is slidably provided with the second pushing block 44 in second push chamber 43, and described second The first spring 45 is fixedly connected between the front end of pushing block 44 and the front inner wall of second push chamber 43, described second pushes What is be connected in 43 downside inner wall of chamber is provided with third mobile cavity 37, and what is be connected in 37 rear side inner wall of the third mobile cavity sets It is equipped with the first drive cavity 41, upper end is slidably provided in the third mobile cavity 37 and is fixedly connected with then the second pushing block 44 Second sliding block 38 is rotatably provided with third rotary shaft 39, the front end of the third rotary shaft 39 in second sliding block 38 Extension is passed through the third mobile cavity 37 and is fixedly connected with the 5th bevel gear 40, and the rear end of the third rotary shaft 39, which extends, to be led to Enter in first drive cavity 41 and be fixedly connected with the first spur gear 42, the engageable setting in first spur gear, 42 right side There are the second spur gear 71,71 rear end of the second spur gear to be connected to second transmission device.
Valuably, first transmission device includes the second drive cavity 30 being set in the first device main body 11, Second drive cavity, 30 upper end is communicated in the first through hole 21, and 22 lower end of the second column spinner, which extends, is passed through described second In drive cavity 30 and it is fixedly connected with the 6th bevel gear 31,27 lower end of the second rotary shaft, which extends, is passed through second drive cavity In 30 and it is fixedly connected with third spur gear 32, after what is be connected in the inner wall of second drive cavity, 30 upside left end is provided with Side is communicated in the first gear chamber 33 of the third mobile cavity 37, and the 7th cone is rotatably provided in the first gear chamber 33 Gear 35, what is be connected in 33 inner left wall of first gear chamber is provided with third through-hole 34,34 left side of the third through-hole Device for converting electric energy 36 is fixedly installed in inner wall, the 7th bevel gear 35 is rotatably assorted by shaft is connected to the electric energy Conversion equipment 36, what is be connected in the inner wall of second drive cavity, 30 right side lower end is provided with second gear chamber 81, and described Rotatably it is provided with the 4th spur gear 82 that left end is engageable to the third spur gear 32 in two gear cavities 81, described second Third drive cavity 83 is provided in the upper inside walls of gear cavity 81,82 upper end of the 4th spur gear is by extending to the third Shaft in drive cavity 83 is fixedly connected with the 8th bevel gear 84, and 84 right end of the 8th bevel gear engaged transmission is provided with the 9th Bevel gear 85, what is be connected in 83 right side inner wall of the third drive cavity is provided with fourth hole 86, the 9th bevel gear 85 Right end is fixedly connected with to be rotatably assorted and is connected to 86 inner wall of the fourth hole and extends to the 4th extraneous rotary shaft 87, described 4th rotary shaft, 87 right end is fixedly connected with runner 88.
Valuably, second transmission device includes the 4th transmission being set in first drive cavity, 41 rear side inner wall Chamber 68 is rotatably provided with the tenth bevel gear 70 in the 4th drive cavity 68, and 70 front end of the tenth bevel gear is by turning Axis is fixedly connected on second spur gear 71, and what 70 upper end of the tenth bevel gear was meshed is provided with the 11st bevel gear 69,68 upper inside walls of the 4th drive cavity are interior to be provided with the 5th drive cavity 63, the 5th transmission by what through-hole was connected Rotatably it is provided with the 12nd bevel gear 67 that lower end is fixedly connected on 11 bevel gear 69 in chamber 63, the described 12nd What 67 left end of bevel gear was meshed is provided with the tenth third hand tap gear 66, and 66 front end of the tenth third hand tap gear is fixedly connected with extension The 5th rotary shaft 65 being passed through in the first movement chamber 12,65 front end of the 5th rotary shaft are fixedly connected with the 14th cone tooth Wheel 64.
Valuably, the wind energy plant is in 12 left and right sides inner wall of the first movement chamber and preceding including being symmetrically disposed on Perforative ventilation opening 94 afterwards, is fixedly installed the second fixed block 95 between 94 left and right sides inner wall of the ventilation opening, and described second It is provided with the 6th drive cavity 96 in fixed block 95, the 14th bevel gear 97 is rotatably provided in the 6th drive cavity 96, 14th bevel gear, 97 front end is fixedly connected with fan by extending to the shaft in the ventilation opening 94, and the described 14th What 97 right end of bevel gear was meshed is provided with the 15th bevel gear 98, and 98 right end of the 15th bevel gear is fixedly connected on described First rotary shaft 17.
When being started by the present apparatus, when selection only does power, the first slide guide chamber 91 starts, and then passes through the first spiral shell Bar 100 drives the first slider guide 93 to be moved to close to the direction of first motor 92, and then drives the first cone by the first sliding block 13 Gear 20 moves right, and stops when first bevel gear 20 and third hand tap gear 28 are meshed, fan is under wind action at this time Rotation, and then the rotation of the 14th bevel gear 97 is driven by shaft, and then pass through the 14th bevel gear 97 and the 15th bevel gear 98 gear engagement drives the rotation of the 15th bevel gear 98, and then drives the rotation of the first rotary shaft 17, and then is fixed by first Block 18 drives the rotation of the first column spinner 14, and then drives third hand tap gear 28 to rotate by first bevel gear 20, and then drives the Two rotary shafts 27 rotate, and then are engaged with the gear of the 4th spur gear 82 by third spur gear 32 and drive 82 turns of the 4th spur gear It is dynamic, and then the rotation of the 8th bevel gear 84 is driven by shaft, and then the rotation of the 9th bevel gear 85 is driven, and then pass through the 4th rotation Axis 87 drives runner 88 to rotate, and when selection only generates electricity, first motor 92 inverts, at this time first bevel gear 20 and third hand tap gear 28 are disengaged from, and the second motor 61 starts, and then drive elevator 26 to rise by the second screw rod 62, and then drive the second cone tooth Wheel 23 rises, and stops when first bevel gear 20 is meshed with second bevel gear 23, and the 6th bevel gear 31 and the 7th bores tooth at this time Wheel 35 is meshed, and third spur gear 32 is disengaged from second gear chamber 81 at this time, and first bevel gear 20 drives the second cone at this time Gear 23 rotates, and then drives the rotation of the 6th bevel gear 31, and then drives the rotation of the 7th bevel gear 35, and then is converted by electric energy Device 36 generates electricity, when selecting not only as power but also when generating electricity, the reversion of the second motor 61, at this time the second column spinner 22 decline, And then the 4th bevel gear 29 is driven to decline, stop when the 4th bevel gear 29 is meshed with first bevel gear 20, third is straight at this time Gear 32 is meshed with second gear chamber 81, and the 4th bevel gear 29 is meshed with the 14th bevel gear 64 at this time, and third is straight at this time Gear 32 is meshed with the 4th spur gear 82, and the first pushing block 47 moves down under the drive of elevator 26 at this time, and then pushes Second pushing block 44 overcomes the elastic force of the first spring 45 to act on forward movement, and then the second sliding block 38 is driven to move forward, Jin Ertong Crossing third rotary shaft 39 drives the 5th bevel gear 40 and the first spur gear 42 to move forward, and the 5th bevel gear 40 and the 7th is bored at this time Gear 35 is meshed, and the first spur gear 42 is meshed with the second spur gear 71, and first bevel gear 20 drives the 4th bevel gear at this time 29 rotations, and then the rotation of the 14th bevel gear 64 is driven, and then the rotation of the tenth third hand tap gear 66 is driven by the 5th rotary shaft 65, And then the rotation of the 12nd bevel gear 67 is driven, and then the rotation of 11 bevel gears 69 is driven by shaft, and then drive the tenth cone tooth 70 rotation of wheel, and then drive the rotation of the second spur gear 71 by shaft into driving the rotation of the first spur gear 42, and then passes through the Three rotary shafts 39 drive the rotation of the 5th bevel gear 40, and then drive the rotation of the 7th bevel gear 35, and third spur gear 32 drives at this time 4th spur gear 82 rotates, that is, realizes that power and power generation are carried out at the same time.
The beneficial effects of the invention are as follows:The configuration of the present invention is simple, it is easy to operate, when being started by the present apparatus, it is elected to It selects when only doing power, the first slide guide chamber starts, and then drives the first slider guide to close to the side of first motor by the first screw rod First bevel gear is driven to move right to movement, and then by the first sliding block, when first bevel gear and third hand tap gear are meshed When stop, fan rotates under wind action at this time, and then drives the rotation of the 14th bevel gear by shaft, and then passes through the tenth Four bevel gears engage with the gear of the 15th bevel gear drives the rotation of the 15th bevel gear, and then drives the rotation of the first rotary shaft, And then the rotation of the first column spinner is driven by the first fixed block, and then third hand tap gear rotation is driven by first bevel gear, into And the rotation of the second rotary shaft is driven, and then engaged with the gear of the 4th spur gear by third spur gear and drive the 4th straight-tooth rotation It is dynamic, and then the rotation of the 8th bevel gear is driven by shaft, and then the rotation of the 9th bevel gear is driven, and then pass through the 4th rotary shaft band Turn wheel rotates, and when selection only generates electricity, first motor reversion, first bevel gear is disengaged from third hand tap gear at this time, the Two electric motor startings, and then drive elevator to rise by the second screw rod, and then second bevel gear is driven to rise, work as first bevel gear Stop when being meshed with second bevel gear, the 6th bevel gear is meshed with the 7th bevel gear at this time, at this time third spur gear and Two gear cavities are disengaged from, and first bevel gear drives second bevel gear rotation at this time, and then drive the rotation of the 6th bevel gear, in turn It drives the 7th bevel gear to rotate, and then is generated electricity by device for converting electric energy, when selecting not only as power but also when generating electricity, second Motor reversal, the second column spinner declines at this time, and then the 4th bevel gear is driven to decline, when the 4th bevel gear and first bevel gear phase Stop when engagement, third spur gear is meshed with second gear chamber at this time, and the 4th bevel gear mutually nibbles with the 14th bevel gear at this time It closes, third spur gear is meshed with the 4th spur gear at this time, and the first pushing block moves down under the drive of elevator at this time, in turn It pushes the second pushing block that the elastic force of the first spring is overcome to act on to move forward, and then the second sliding block is driven to move forward, and then pass through Third rotary shaft drives the 5th bevel gear and the first spur gear to move forward, and the 5th bevel gear mutually nibbles with the 7th bevel gear at this time It closes, the first spur gear is meshed with the second spur gear, and first bevel gear drives the rotation of the 4th bevel gear at this time, and then drives the tenth Four bevel gears rotate, and then drive the rotation of the tenth triconodont wheel by the 5th rotary shaft, and then drive the rotation of the 12nd bevel gear, The rotation of 11 bevel gears is driven by shaft in turn, and then drives the rotation of the tenth bevel gear, and then is straight by shaft drive second Gear rotates, and drives the rotation of the 5th bevel gear into drive the first spur gear rotation, and then by third rotary shaft, and then drive 7th bevel gear rotates, and third spur gear drives the rotation of the 4th spur gear at this time, that is, realizes that power and power generation are carried out at the same time, this dress Wind-power electricity generation can be carried out while starting as power using wind-force by setting, while electric power is as power using wind-force as Power-assisted, while can also generate electricity, in the case where electricity storage is full, optional simple wind-force is as power-assisted, when electricity is relatively low, Power generation storage electric power is carried out while wind-force may be selected as power, also optional simple wind-power electricity generation, do not riding in this way When can carry out power generation storage electric power.
The above description is merely a specific embodiment, but scope of protection of the present invention is not limited thereto, any The change or replacement expected without creative work, should be covered by the protection scope of the present invention.Therefore, of the invention Protection domain should be determined by the scope of protection defined in the claims.

Claims (4)

1. a kind of engine, including first device main body, be set in the first device main body transmission device regulating device, It is set to the first transmission device on the downside of regulating device, the second transmission device being set on rear side of the regulating device and setting Wind energy plant in the first device main body, it is characterised in that:The regulating device includes being set to the first device First movement chamber in main body, the first movement intracavitary is symmetrical and is slidably provided with the first sliding block, and described first It is symmetrical and what is be connected is provided with the first slide guide chamber in mobile cavity upper inside walls, in the inner wall between the first slide guide chamber It is fixedly installed first motor, first motor left and right ends power is connected with the first screw rod, on first sliding block End is fixedly installed extension and is passed through the first slide guide intracavitary and screw-thread fit is connected to the first slider guide of first screw rod, It is rotatably provided with the first column spinner in first sliding block, opposite stretch that be open is provided in first column spinner Hole, the telescopic hole is symmetrical in both sides inner walls up and down and what is be connected is provided with the second mobile cavity, in the telescopic hole slidably Be provided with the first rotary shaft, both sides are symmetrical close to one end of the first motor up and down and are fixedly installed for first rotary shaft There is extension to be passed through the first fixed block in second mobile cavity, the one end of first rotary shaft far from the first motor connects It is connected to the wind energy plant, first column spinner is fixedly connected with the first cone tooth close to described first motor one end by shaft It takes turns, what is be connected in inner wall on the downside of the first movement chamber is provided with first through hole, is rotatably arranged in the first through hole There is upper end to extend the second column spinner for being passed through the first movement intracavitary, second column spinner lower end, which extends, is passed through described first In transmission device, second column spinner upper end is fixedly installed the second bevel gear for being engageable to the first bevel gear, institute It states in the second column spinner and is provided through the second through-hole up and down, second through-hole, which is provided with to be rotatably assorted, is connected to described second Second rotary shaft of through-hole wall, second rotary shaft upper end, which extends, to be passed through the first movement intracavitary and is fixedly connected with the Third hand tap gear, the third hand tap gear upper end are fixedly connected with the 4th bevel gear by shaft, phase in the first through hole inner wall Connection is provided with the first lifting chamber, and the first lifting intracavitary is slidably provided with inner rotation and is connected in described the The elevator of two column spinners is fixedly installed the second motor, second electricity in the downside inner wall of first lifting chamber front end Machine upper end power is connected with the second screw rod, and second screw flight is connected in the front end of the elevator, described What is be connected in the inner wall of rear end on the left of first lifting chamber is provided with the first push chamber, is slidably set in first push chamber It is equipped with the first pushing block that right end is fixedly connected on elevator left end face rear end, phase in inner wall on the downside of first push chamber Connection is provided with the second push chamber, and the second pushing block is slidably provided in second push chamber, second pushing block The first spring is fixedly connected between front end and the front inner wall of second push chamber, on the downside of second push chamber in inner wall What is be connected is provided with third mobile cavity, and what is be connected in the third mobile cavity rear side inner wall is provided with the first drive cavity, institute It states and is slidably provided with the second sliding block that upper end is fixedly connected with then the second pushing block in third mobile cavity, in second sliding block Rotatable to be provided with third rotary shaft, the front end of the third rotary shaft, which extends, to be passed through the third mobile cavity and is fixedly connected There is the 5th bevel gear, the rear end of the third rotary shaft, which extends, to be passed through in first drive cavity and be fixedly connected with the first straight-tooth Wheel, engageable on the right side of first spur gear to be provided with the second spur gear, second spur gear rear end is connected to described the Two transmission devices.
2. a kind of engine according to claim 1, it is characterised in that:First transmission device is described including being set to The second drive cavity in first device main body, second drive cavity upper end are communicated in the first through hole, second rotation Column lower end, which extends, is passed through in second drive cavity and is fixedly connected with the 6th bevel gear, and second rotary shaft lower end extends logical Enter in second drive cavity and be fixedly connected with third spur gear, is connected in the inner wall of the second drive cavity upside left end The rear side that is provided be communicated in the first gear chamber of the third mobile cavity, the first gear intracavitary is rotatably provided with the Seven bevel gears, what is be connected in the first gear chamber inner left wall is provided with third through-hole, the third through-hole inner left wall It is inside fixedly installed device for converting electric energy, the 7th bevel gear is rotatably assorted by shaft is connected to the electric energy converting means It sets, what is be connected in the inner wall of lower end on the right side of second drive cavity is provided with second gear chamber, and the second gear intracavitary can The 4th spur gear for being provided with left end and being engageable to the third spur gear of rotation, in the upper inside walls of the second gear chamber It is provided with third drive cavity, the 4th spur gear upper end is fixedly connected with by extending to the shaft in the third drive cavity 8th bevel gear, the 8th bevel gear right end engaged transmission are provided with the 9th bevel gear, third drive cavity right side inner wall What is be inside connected is provided with fourth hole, and the 9th bevel gear right end, which is fixedly connected with to be rotatably assorted, is connected to the four-way Hole inner wall and the 4th rotary shaft for extending to the external world, the 4th rotary shaft right end are fixedly connected with runner.
3. a kind of engine according to claim 1, it is characterised in that:Second transmission device is described including being set to The 4th drive cavity on rear side of first drive cavity in inner wall is rotatably provided with the tenth bevel gear in the 4th drive cavity, institute It states the tenth bevel gear front end and second spur gear is fixedly connected on by shaft, what the tenth bevel gear upper end was meshed sets It is equipped with the 11st bevel gear, the 4th drive cavity upper inside walls are interior to be provided with the 5th drive cavity, institute by what through-hole was connected It states and is rotatably provided with the 12nd bevel gear that lower end is fixedly connected on 11 bevel gear in the 5th drive cavity, described What 12 bevel gear left ends were meshed is provided with the tenth third hand tap gear, and it is logical that the tenth third hand tap gear front end is fixedly connected with extension Enter the 5th rotary shaft of the first movement intracavitary, the 5th rotary shaft front end is fixedly connected with the 14th bevel gear.
4. a kind of engine according to claim 1, it is characterised in that:The wind energy plant is described including being symmetrically disposed on At left and right sides of first movement chamber in inner wall and pre-and post perforative ventilation opening, fixation is set between inner wall at left and right sides of the ventilation opening It is equipped with the second fixed block, the 6th drive cavity is provided in second fixed block, is rotatably arranged in the 6th drive cavity There are the 14th bevel gear, the 14th bevel gear front end to be fixedly connected with wind by extending to the shaft in the ventilation opening Fan, what the 14th bevel gear right end was meshed is provided with the 15th bevel gear, and the 15th bevel gear right end, which is fixed, to be connected It is connected to first rotary shaft.
CN201810760034.9A 2018-07-11 2018-07-11 A kind of engine Withdrawn CN108590974A (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110925141A (en) * 2019-12-20 2020-03-27 诸暨都高风能科技有限公司 Telescopic wind driven generator capable of being used generally

Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US6113350A (en) * 1998-08-31 2000-09-05 Stokwang Windpower Industrial Inc. Vertical-axle power machine
CN202056004U (en) * 2011-05-26 2011-11-30 白黎明 Novel spring energy storage wind driven generator
CN204961174U (en) * 2015-07-10 2016-01-13 安徽工程大学 A wind power generation set for storage battery car

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US6113350A (en) * 1998-08-31 2000-09-05 Stokwang Windpower Industrial Inc. Vertical-axle power machine
CN202056004U (en) * 2011-05-26 2011-11-30 白黎明 Novel spring energy storage wind driven generator
CN204961174U (en) * 2015-07-10 2016-01-13 安徽工程大学 A wind power generation set for storage battery car

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110925141A (en) * 2019-12-20 2020-03-27 诸暨都高风能科技有限公司 Telescopic wind driven generator capable of being used generally

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Application publication date: 20180928