CN108248428A - A kind of charging pile using off-network photovoltaic generation - Google Patents

A kind of charging pile using off-network photovoltaic generation Download PDF

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Publication number
CN108248428A
CN108248428A CN201810037661.XA CN201810037661A CN108248428A CN 108248428 A CN108248428 A CN 108248428A CN 201810037661 A CN201810037661 A CN 201810037661A CN 108248428 A CN108248428 A CN 108248428A
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CN
China
Prior art keywords
left end
commutating tooth
mutually
right end
gear
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Application number
CN201810037661.XA
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Chinese (zh)
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不公告发明人
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Individual
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Individual
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Priority to CN201810037661.XA priority Critical patent/CN108248428A/en
Publication of CN108248428A publication Critical patent/CN108248428A/en
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B60VEHICLES IN GENERAL
    • B60LPROPULSION OF ELECTRICALLY-PROPELLED VEHICLES; SUPPLYING ELECTRIC POWER FOR AUXILIARY EQUIPMENT OF ELECTRICALLY-PROPELLED VEHICLES; ELECTRODYNAMIC BRAKE SYSTEMS FOR VEHICLES IN GENERAL; MAGNETIC SUSPENSION OR LEVITATION FOR VEHICLES; MONITORING OPERATING VARIABLES OF ELECTRICALLY-PROPELLED VEHICLES; ELECTRIC SAFETY DEVICES FOR ELECTRICALLY-PROPELLED VEHICLES
    • B60L53/00Methods of charging batteries, specially adapted for electric vehicles; Charging stations or on-board charging equipment therefor; Exchange of energy storage elements in electric vehicles
    • B60L53/30Constructional details of charging stations
    • B60L53/31Charging columns specially adapted for electric vehicles
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02JCIRCUIT ARRANGEMENTS OR SYSTEMS FOR SUPPLYING OR DISTRIBUTING ELECTRIC POWER; SYSTEMS FOR STORING ELECTRIC ENERGY
    • H02J7/00Circuit arrangements for charging or depolarising batteries or for supplying loads from batteries
    • H02J7/34Parallel operation in networks using both storage and other dc sources, e.g. providing buffering
    • H02J7/35Parallel operation in networks using both storage and other dc sources, e.g. providing buffering with light sensitive cells
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02SGENERATION OF ELECTRIC POWER BY CONVERSION OF INFRARED RADIATION, VISIBLE LIGHT OR ULTRAVIOLET LIGHT, e.g. USING PHOTOVOLTAIC [PV] MODULES
    • H02S40/00Components or accessories in combination with PV modules, not provided for in groups H02S10/00 - H02S30/00
    • H02S40/30Electrical components
    • H02S40/38Energy storage means, e.g. batteries, structurally associated with PV modules
    • 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
    • Y02E10/50Photovoltaic [PV] energy
    • 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
    • Y02E70/00Other energy conversion or management systems reducing GHG emissions
    • Y02E70/30Systems combining energy storage with energy generation of non-fossil origin
    • 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
    • Y02T10/60Other road transportation technologies with climate change mitigation effect
    • Y02T10/70Energy storage systems for electromobility, e.g. batteries
    • 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
    • Y02T10/60Other road transportation technologies with climate change mitigation effect
    • Y02T10/7072Electromobility specific charging systems or methods for batteries, ultracapacitors, supercapacitors or double-layer capacitors
    • 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
    • Y02T90/00Enabling technologies or technologies with a potential or indirect contribution to GHG emissions mitigation
    • Y02T90/10Technologies relating to charging of electric vehicles
    • Y02T90/12Electric charging stations

Abstract

The invention discloses a kind of charging piles using off-network photovoltaic generation,Its structure includes fixed mechanism,Vertical support device,Place disk,Half-packaging folding umbrella device,Off-network photovoltaic generation mechanism,Lighting mechanism,Charging mechanism,The insertion of vertical support device lower end is mounted on fixed mechanism upper end and is mutually perpendicular to,The insertion of disk inner ring is placed to be mounted among vertical support device and in same axle center,The insertion of charging mechanism back is mounted on vertical support device,It is mutually welded with off-network photovoltaic generation mechanism front end at lighting mechanism back,The insertion of half-packaging folding umbrella device is mounted on vertical support device,Half-packaging open and-close umbrella mechanism includes open-and-close mechanism,Transmission mechanism,Half-packaging open and-close umbrella mechanism is set on transmission mechanism upper end,Using off-network photovoltaic generation,Electric energy conversion efficiency higher,It not only can be with sun-shading rain-proof after half-packaging folding umbrella device is fully deployed,Can mainly charging pile be protected not entered by rainwater,Extend charging pile service life.

Description

A kind of charging pile using off-network photovoltaic generation
Technical field
The present invention is a kind of charging pile using off-network photovoltaic generation, belongs to charging pile technical field.
Background technology
With the fast development of mobile Internet, mobile phone has become essential tool of communications in people's life, mesh The mobile phone that preceding people use is mostly smart mobile phone, with the recreational fast lifting of smart mobile phone, mobile phone screen it is increasing And operation program is excessive etc. that factors cause the power consumption of mobile phone to increase is swift and violent, and the electricity cruising ability of internal battery is then non- It is often limited, it does not exceed generally 24 hours.
The charging pile of off-network photovoltaic generation is generally mounted on outdoor by the prior art, and when encountering rainy weather, rainwater holds Easily entered inside charging pile by charge port, make the short out road of equipment internal powerline, charging pile is stopped.
Invention content
In view of the deficienciess of the prior art, it is an object of the present invention to provide a kind of charging pile using off-network photovoltaic generation, The charging pile of off-network photovoltaic generation is generally mounted on by outdoor with the prior art of solution, when encountering rainy weather, rainwater holds Easily entered inside charging pile by charge port, make the short out road of equipment internal powerline, the problem of charging pile is stopped.
To achieve these goals, the present invention is to realize by the following technical solutions:It is a kind of to be sent out using off-network photovoltaic The charging pile of electricity, structure include fixed mechanism, vertical support device, place disk, half-packaging folding umbrella device, off-network photovoltaic Generate electricity mechanism, lighting mechanism, charging mechanism, and vertical support device lower end insertion is mounted on fixed mechanism upper end and mutually Vertically, the placement disk inner ring insertion is mounted among vertical support device and in same axle center, the charging mechanism Back insertion is mounted on vertical support device, and the lighting mechanism back is mutually welded with off-network photovoltaic generation mechanism front end, institute State half-packaging folding umbrella device insertion be mounted on vertical support device on, the half-packaging open and-close umbrella mechanism include open-and-close mechanism, Transmission mechanism, the half-packaging open and-close umbrella mechanism are set on transmission mechanism upper end.
Further, the open-and-close mechanism includes canopy, umbrella stand, two-way spindle, the first bevel gear, the second bevel gear, the One driving belt, the first commutating tooth gear wheel, the first commutating tooth pinion gear, the second commutating tooth gear wheel, support plate, is consolidated the first driven wheel Dead axle bar, the umbrella stand insertion are mounted on canopy, and the umbrella stand mutually welds respectively with two-way spindle both ends, the two-way spindle Upper end is mutually welded and is mutually perpendicular to the first bevel gear lower end, the two-way spindle lower end and the first commutating tooth pinion gear upper end phase It welds and in same axle center, first bevel gear is set on the second bevel gear lower end and back and the second bevel gear front end phase Engagement, the first driving belt inner surface are bonded with the first driven wheel outer surface, and the first driven wheel back and first is just Tooth gear wheel front end is mutually welded, and the first commutating tooth gear wheel is set on the second commutating tooth gear wheel upper end and lower end and the second commutating tooth are big Gear back is meshed, and the second commutating tooth gear wheel left end is meshed and is mutually perpendicular to the first commutating tooth pinion gear right end, The fixed axostyle upper end is through the second commutating tooth gear wheel centre and in same axle center, the fixed axostyle lower end and branch It mutually welds and is mutually perpendicular in fagging upper end.
Further, the transmission mechanism includes supporting block, connection axostylus axostyle, the first driving wheel, transmission toothed chain, the second transmission Belt, center commutating tooth pinion gear, the second driven wheel, third bevel gear, two-way bevel gear, the 4th bevel gear, the small tooth of the second commutating tooth Wheel, third commutating tooth pinion gear, third driving belt, internal gear, the 4th commutating tooth pinion gear, third commutating tooth gear wheel, the first strut, Second strut, ratchet, L-type gag lever post, the connection axostylus axostyle left end insertion are mounted on supporting block right end, and the connection axostylus axostyle is right End is through two-way bevel gear left end and is mutually perpendicular to, and the two-way bevel gear back is meshed with third bevel gear front end, It is mutually welded with third bevel gear front end and in same axle center, the first commutating tooth gear wheel right side in the second driven wheel back End is meshed with transmission toothed chain left end, and the transmission toothed chain inner surface is bonded with the first active wheel outer surface, the transmission toothed chain Inner surface is bonded with the second driven wheel outer surface, the second driving belt inner surface and wheel outer surface in the commutating tooth pinion gear of center Fitting, the internal gear inner surface are meshed with third commutating tooth pinion gear outer surface, the internal gear inner surface and the 4th commutating tooth Pinion gear outer surface is meshed, and the internal gear inner surface is meshed with the second commutating tooth pinion gear outer surface, outside the internal gear Surface is bonded with third driving belt inner surface, the third driving belt inner surface and wheel outer surface in third commutating tooth gear wheel Fitting, the first strut upper end are fixedly connected on by pin on third commutating tooth gear wheel, and the first strut lower end passes through Pin is connected with the second strut upper end, and the second strut lower end is fixedly connected on by pin on ratchet, the L-type limiting Bar upper end is fixedly connected on by pin on ratchet.
Further, the charging mechanism include circuit board, USB interface, connector, USB interface protective plate, supporting rod, Charger case, the circuit board insertion are mounted on inside charger case, and the USB interface protective plate right end insertion is mounted on Charger case left end, the USB interface left end insertion is mounted on USB interface protective plate right end and is mutually perpendicular to, the USB Interface right end is mutually welded and is mutually perpendicular to circuit board left end, and the supporting rod left end insertion is mounted on charger case right end And it is mutually perpendicular to, the connector left end is mutually welded with charger case right end.
Further, the vertical support device includes actuating mechanism, support outer barrel, electricity storage mechanism, the electricity storage mechanism With outer tube inner surface is supported to be bonded, the electricity storage mechanism outer surface is set on actuating mechanism lower end for outer surface.
Further, the actuating mechanism includes ratchet lever, button pedestal, positioning pin, button flip, release link, first Resetting spring, retaining collar, limiting plate, second back-moving spring, limited block, the ratchet lever upper end are meshed simultaneously with ratchet lower end And be mutually perpendicular to, release link right end insertion is mounted among ratchet lever and in same axle center, the limiting plate with it is multiple Position bar is integrated, and second back-moving spring left end insertion is mounted on release link right end and is mutually parallel, and described the Two resetting spring inner surfaces are nested and are mutually parallel with reset rod outer surface, and the limited block right end insertion is mounted on support Outer tube inner surface, the release link left end is through button pedestal centre and is mutually perpendicular to, the (the first back-moving spring left end It is bonded with button pedestal right end, the positioning pin insertion is mounted on button pedestal upper end, and the button pedestal left end is lifted with button Lid right end is bonded and is in same axle center, and the retaining collar insertion, which is mounted on, supports outer tube inner surface, and described first resets bullet Spring right end is bonded with retaining collar inner surface.
Further, the electricity storage mechanism includes the second transmission pressure, leading-out terminal, input terminal, sealing plate, cathode Plate, partition board, positive plate, insulation sleeve, the second transmission pressure lower end is mutually welded with leading-out terminal upper end, under the leading-out terminal End is embedded to be mounted on sealing plate and is mutually perpendicular to, and the input terminal lower end insertion is mounted on sealing plate and mutually hangs down Directly, the input terminal is mutually parallel with leading-out terminal, and the sealing plate lower end insertion is mounted on insulation set upper side and is in Same axle center, the negative plate left end are bonded with partition board right end, and the negative plate is bonded with insulation sleeve inner surface, the positive plate Right end is bonded with partition board left end, and the positive plate is bonded with insulation sleeve inner surface.
Further, the off-network photovoltaic generation mechanism includes the first electricity output interface, tempered glass, EVA film, the sun Energy battery strings, TPT films, aluminium chassis, the first electricity output interface are mutually welded with solar cell string, the tempered glass left end It is bonded with EVA film right end, the EVA film left end is bonded with solar cell string right end, the TPT films right end and solar cell Left end of going here and there is bonded, and the PT films left end insertion is mounted on aluminium chassis left end, and the aluminium chassis left end is mutually welded with support outer barrel right end It connects, the first electricity output interface left end is mutually welded with the second transmission pressure right end, and the lighting mechanism, which includes the first transmission of electricity, leads Line, the second electricity output interface, illumination lamp housing, transparent prevention plate, LED light group, the first transmission pressure right end and solar energy Battery strings are mutually welded, and the second electricity output interface is mutually welded with the first transmission pressure, the transparent prevention plate right end insertion peace Mounted in illumination lamp housing left end, the LED light group right end insertion is mounted on headlamp enclosure, and the fixed mechanism includes spiral shell Bar, backing plate, nut, latch, pin rod, draw ring, pedestal, the screw rod upper end connects and mutual with support outer barrel lower thread Vertically, the screw rod lower end is mutually welded and is mutually perpendicular to nut upper end, and the backing plate upper end insertion is mounted on support outer barrel Lower end, the screw rod are connect through backing plate, the latch with support outer barrel lower thread, and the pin rod insertion is mounted on lock On tight plate, the draw ring right end is mutually welded with pin rod.
Further, umbrella stand right end insertion is mounted on vertical support device left end, the support plate left end with it is vertical Support device inner surface left end mutually welds, and the supporting block left end is mutually welded with vertical support device inner surface left end.
Advantageous effect
A kind of charging pile using off-network photovoltaic generation of the invention, when daytime is sunny, passes through off-network photovoltaic generation Solar cell string in mechanism acts on solar energy, and solar energy is carried out to be converted into electric energy, is connect by the first electricity output The storage that electric energy is carried out in the negative plate and positive plate of electricity storage mechanism is transported in oral instructions, is filled electricity supply by the second transmission pressure USB interface in motor structure allows the mobile phone of user to charge, and the LED light group supplied in lighting mechanism carries out night illumination It uses, when meeting with rainy weather, by pressing the button pedestal in actuating mechanism, makes button pedestal that ratchet lever be pushed to move right It is dynamic, it is engaged by ratchet lever with ratchet, ratchet is made to rotate counterclockwise, since L-type gag lever post is fixed on ratchet, L-type gag lever post Embedded ratchet lever upper end is rotated counterclockwise around the ratchet center of circle, fixes ratchet lever, the first strut passes through the second strut and ratchet phase Connection, ratchet is counterclockwise the second strut of rotation forces and the first strut are moved upwards since the first strut upper end is fixed on, the One strut pushes rotation counterclockwise, makes to pass through the internal gear that third driving belt connect with third commutating tooth gear wheel and rotates in same direction, Internal gear internal tooth drives center commutating tooth pinion gear by third commutating tooth pinion gear, the second commutating tooth pinion gear, the 4th commutating tooth pinion gear It rotates clockwise, makes to pass through the 4th bevel gear rotating Vortex that the second driving belt is connected with center commutating tooth pinion gear, second Driven wheel is meshed by two-way bevel gear conducts the power in the same direction of the 4th bevel-gear rotating, rotates clockwise the second driven wheel, Drive is rotated counterclockwise by the first commutating tooth gear wheel being meshed with moving teeth chain, and the first commutating tooth gear wheel is respectively to the 4th umbrella tooth Wheel and the power for transmitting two different directions to the second bevel gear by the first driving belt, the 4th bevel gear back and the first commutating tooth Gear wheel lower end is meshed, and makes that the 4th bevel gear rotates clockwise and left end is meshed with the first commutating tooth pinion gear, drives the The reverse rotation of one commutating tooth pinion gear makes umbrella stand be unfolded to the right together with canopy, and the second bevel gear and the first commutating tooth gear wheel are inverse in the same direction Hour hands rotate, and the second bevel gear front end is meshed with the first bevel gear back, and the first bevel gear is made reversely to rotate clockwise drive Umbrella stand is unfolded to the left together with canopy, can stop rainwater after half-packaging folding umbrella device is fully deployed, and after becoming a fine day, opens Button flip pushes release link that ratchet lever is made to be closed by half-packaging folding umbrella device during above-mentioned transmission to left movement, using from Net photovoltaic generation, electric energy conversion efficiency higher not only can be more main with sun-shading rain-proof after half-packaging folding umbrella device is fully deployed Charging pile can be protected not entered by rainwater, extend charging pile service life.
Description of the drawings
Upon reading the detailed description of non-limiting embodiments with reference to the following drawings, other feature of the invention, Objects and advantages will become more apparent upon:
Fig. 1 is a kind of structure diagram of charging pile using off-network photovoltaic generation of the invention;
Fig. 2 is a kind of internal structure schematic diagram of charging pile using off-network photovoltaic generation of the invention;
Fig. 3 is a kind of inside detailed construction schematic diagram of charging pile using off-network photovoltaic generation of the invention;
Fig. 4 is the close-up schematic view of Fig. 3;
Fig. 5 is the close-up schematic view of Fig. 3;
Fig. 6 is the close-up schematic view of Fig. 3;
Fig. 7 is the partial enlarged view of Fig. 3.
In figure:Fixed mechanism -1, places disk -3, half-packaging folding umbrella device -4, off-network light at vertical support device -2 Overhead generator structure -5, lighting mechanism -6, charging mechanism -7, half-packaging open and-close umbrella mechanism -4 include open-and-close mechanism -41, driver Structure 42, canopy -411, umbrella stand -412, two-way spindle -413, the first bevel gear -414, the second bevel gear -415, the first transmission skin The -416, first driven wheel -417 of band, the first commutating tooth gear wheel -418, the first commutating tooth pinion gear -419, the second commutating tooth gear wheel - 4110th, support plate -4111, fixed axostyle -4112, supporting block -421, connection axostylus axostyle -422, the first driving wheel -423, driving cog It is chain -424, the second driving belt -425, center commutating tooth pinion gear -426, the second driven wheel -427, third bevel gear -428, two-way Bevel gear -429, the 4th bevel gear -4210, the second commutating tooth pinion gear -4211, third commutating tooth pinion gear -4212, third transmission Belt -4213, internal gear -4214, the 4th commutating tooth pinion gear -4215, third commutating tooth gear wheel -4216, the first strut -4217, Second strut -4218, ratchet -4219, L-type gag lever post -4220, circuit board -71, USB interface -72, connector -73, USB connect Mouth protective plate -74, supporting rod -75, charger case -76, actuating mechanism -21, electricity storage mechanism -22, ratchet lever -211, button bottom Seat -212, positioning pin -213, button flip -214, release link -215, (the first back-moving spring -216, retaining collar -217, limiting Plate -218, second back-moving spring -219, limited block -2110, the second transmission pressure -221, leading-out terminal -222, input terminal - 223rd, sealing plate -224, negative plate -225, partition board -226, positive plate -227, the first electricity output interface -51, tempered glass -52, EVA film -53, solar cell string -54, TPT films -55, aluminium chassis -56, the lighting mechanism -6 include the first transmission pressure - 61st, the second electricity output interface -62, illumination lamp housing -63, transparent prevention plate -64, LED light group -65, the fixed mechanism -1 wrap Include screw rod -11, backing plate -12, nut -13, latch -14, pin rod -15, draw ring -16, pedestal -17.
Specific embodiment
To be easy to understand the technical means, the creative features, the aims and the efficiencies achieved by the present invention, with reference to Specific embodiment, the present invention is further explained.
It please refers to Fig.1, Fig. 2, Fig. 3, Fig. 4, Fig. 5, Fig. 6, the present invention provides a kind of charging pile using off-network photovoltaic generation Technical solution:Its structure includes fixed mechanism 1, vertical support device 2, places disk 3, half-packaging folding umbrella device 4, off-network light Overhead generator structure 5, lighting mechanism 6, charging mechanism 7,2 lower end of the vertical support device insertion are mounted on 1 upper end of fixed mechanism And it is mutually perpendicular to, the placement disk 3 inner ring insertion is mounted among vertical support device 2 and in same axle center, institute It states the insertion of 7 back of charging mechanism to be mounted on vertical support device 2,6 back of lighting mechanism and off-network photovoltaic generation mechanism 5 front ends are mutually welded, and the insertion of half-packaging folding umbrella device 4 is mounted on vertical support device 2, the half-packaging open and-close umbrella machine Structure 4 includes open-and-close mechanism 41, transmission mechanism 42, and the half-packaging open and-close umbrella mechanism 4 is set on 42 upper end of transmission mechanism, the folding Mechanism 41 includes canopy 411, umbrella stand 412, two-way spindle 413, the first bevel gear 414, the transmission of the second bevel gear 415, first Belt 416, the first driven wheel 417, the first commutating tooth gear wheel 418, the first commutating tooth pinion gear 419, the second commutating tooth gear wheel 4110, Support plate 4111, fixed axostyle 4112, the insertion of umbrella stand 412 are mounted on canopy 411, the umbrella stand 412 and two-way spindle 413 both ends are mutually welded respectively, and 413 upper end of two-way spindle is mutually welded and is mutually perpendicular to 414 lower end of the first bevel gear, institute 413 lower end of two-way spindle is stated mutually to weld with 419 upper end of the first commutating tooth pinion gear and in same axle center, first bevel gear 414 are meshed set on 415 lower end of the second bevel gear and back with 415 front end of the second bevel gear, first driving belt 416 Inner surface is bonded with 417 outer surface of the first driven wheel, 417 back of the first driven wheel and 418 front end of the first commutating tooth gear wheel It mutually welds, the first commutating tooth gear wheel 418 is set on 4110 upper end of the second commutating tooth gear wheel and lower end and the second commutating tooth gear wheel 4110 backs are meshed, and 4110 left end of the second commutating tooth gear wheel is meshed with 419 right end of the first commutating tooth pinion gear and phase Mutually vertical, 4112 upper end of fixed axostyle is described through 4110 centre of the second commutating tooth gear wheel and in same axle center 4112 lower end of fixed axostyle is mutually welded and is mutually perpendicular to 4111 upper end of support plate, and the transmission mechanism 42 includes supporting block 421st, connect axostylus axostyle 422, the first driving wheel 423, transmission toothed chain 424, the second driving belt 425, center commutating tooth pinion gear 426, Second driven wheel 427, third bevel gear 428, two-way bevel gear 429, the 4th bevel gear 4210, the second commutating tooth pinion gear 4211, Third commutating tooth pinion gear 4212, third driving belt 4213, internal gear 4214, the 4th commutating tooth pinion gear 4215, third commutating tooth are big Gear 4216, the first strut 4217, the second strut 4218, ratchet 4219, L-type gag lever post 4220, the connection axostylus axostyle 422 are left End is embedded to be mounted on 421 right end of supporting block, and connection 422 right end of axostylus axostyle is through two-way 429 left end of bevel gear and mutually Vertically, 429 back of two-way bevel gear is meshed with 428 front end of third bevel gear, 427 back of the second driven wheel and the It mutually welds and in same axle center, 418 right end of the first commutating tooth gear wheel and transmission toothed chain 424 in three bevel gears, 428 front end Left end is meshed, and transmission 424 inner surface of toothed chain is bonded with 423 outer surface of the first driving wheel, in the transmission toothed chain 424 Surface is bonded with 427 outer surface of the second driven wheel, in 425 inner surface of the second driving belt and center commutating tooth pinion gear 426 Wheel outer surface is bonded, and 4214 inner surface of internal gear is meshed with 4212 outer surface of third commutating tooth pinion gear, the internal gear 4214 inner surfaces are meshed with 4215 outer surface of the 4th commutating tooth pinion gear, 4214 inner surface of internal gear and the small tooth of the second commutating tooth It takes turns 4211 outer surfaces to be meshed, 4214 outer surface of internal gear is bonded with 4213 inner surface of third driving belt, the third 4213 inner surface of driving belt is bonded with wheel outer surface in third commutating tooth gear wheel 4216, and 4217 upper end of the first strut leads to It crosses pin to be fixedly connected on third commutating tooth gear wheel 4216,4217 lower end of the first strut passes through pin and the second strut 4218 upper ends are connected, and 4218 lower end of the second strut is fixedly connected on by pin on ratchet 4219, the L-type gag lever post 4220 upper ends are fixedly connected on by pin on ratchet 4219, and the charging mechanism 7 includes circuit board 71, USB interface 72, connection Part 73, USB interference preventions plate 74, supporting rod 75, charger case 76, the insertion of circuit board 71 are mounted on charger case Inside 76,74 right end of the USB interface protective plate insertion is mounted on 76 left end of charger case, and 72 left end of USB interface is embedding Enter to be mounted on 74 right end of USB interface protective plate and be mutually perpendicular to, 72 right end of USB interface is mutually welded with 71 left end of circuit board And it is mutually perpendicular to, 75 left end of the supporting rod insertion is mounted on 76 right end of charger case and is mutually perpendicular to, the connection 73 left end of part is mutually welded with 76 right end of charger case, and the vertical support device 2 includes actuating mechanism 21, support outer barrel 22nd, electricity storage mechanism 23,23 outer surface of electricity storage mechanism are bonded with support 22 inner surface of outer barrel, 23 outer surface of electricity storage mechanism Set on 21 lower end of actuating mechanism, the actuating mechanism 21 includes ratchet lever 211, button pedestal 212, positioning pin 213, button and lifts Lid 214, release link 215, (the first back-moving spring 216, retaining collar 217, limiting plate 218, second back-moving spring 219, limited block 2110,211 upper end of ratchet lever is meshed and is mutually perpendicular to 4219 lower end of ratchet, 215 right end of the release link insertion Among ratchet lever 211 and in same axle center, the limiting plate 218 is integrated with release link 215, described The insertion of 219 left end of second back-moving spring is mounted on 215 right end of release link and is mutually parallel, in the second back-moving spring 219 Surface is nested and is mutually parallel with 215 outer surface of release link, and 2110 right end of the limited block insertion is mounted on support outer barrel 22 inner surfaces, 215 left end of release link is through 212 centre of button pedestal and is mutually perpendicular to, the (the first back-moving spring 216 left ends are bonded with 212 right end of button pedestal, and the insertion of positioning pin 213 is mounted on 212 upper end of button pedestal, the button 212 left end of pedestal is bonded with 214 right end of button flip and is in same axle center, and the insertion of retaining collar 217 is mounted on support 22 inner surface of outer barrel, 216 right end of (the first back-moving spring are bonded with 217 inner surface of retaining collar, and the electricity storage mechanism 22 is wrapped Include the second transmission pressure 221, leading-out terminal 222, input terminal 223, sealing plate 224, negative plate 225, partition board 226, positive plate 227th, insulation sleeve 228,221 lower end of the second transmission pressure are mutually welded with 222 upper end of leading-out terminal, the leading-out terminal 222 Lower end insertion is mounted on sealing plate 224 and is mutually perpendicular to, and 223 lower end of the input terminal insertion is mounted on sealing plate 224 It above and is mutually perpendicular to, the input terminal 223 is mutually parallel with leading-out terminal 222,224 lower end of the sealing plate insertion installation In 228 upper end of insulation sleeve and in same axle center, 225 left end of negative plate is bonded with 226 right end of partition board, the negative plate 225 are bonded with 228 inner surface of insulation sleeve, and 227 right end of positive plate is bonded with 226 left end of partition board, the positive plate 227 with absolutely Edge covers the fitting of 228 inner surfaces, and the off-network photovoltaic generation mechanism 5 includes the first electricity output interface 51, tempered glass 52, EVA films 53rd, solar cell string 54, TPT films 55, aluminium chassis 56, the first electricity output interface 51 are welded with 54 phase of solar cell string It connects, 52 left end of tempered glass is bonded with 53 right end of EVA film, and 53 left end of EVA film is pasted with 54 right end of solar cell string It closes, 55 right end of TPT films is bonded with 54 left end of solar cell string, and it is left that 55 left end of the PT films insertion is mounted on aluminium chassis 56 End, 56 left end of aluminium chassis are mutually welded with support 22 right end of outer barrel, 51 left end of the first electricity output interface and the second transmission of electricity 221 right end of conducting wire mutually welds, and the lighting mechanism 6 includes the first transmission pressure 61, the second electricity output interface 62, illumination lamp housing 63rd, transparent prevention plate 64, LED light group 65,61 right end of the first transmission pressure and 54 phase of solar cell string are welded, and described the Two electricity output interfaces 62 are welded with 61 phase of the first transmission pressure, and 64 right end of the transparent prevention plate insertion is mounted on illumination lamp housing 63 left ends, 65 right end of the LED light group insertion are mounted on inside illumination lamp housing 63, and the fixed mechanism 1 includes screw rod 11, pad Plate 12, nut 13, latch 14, pin rod 15, draw ring 16, pedestal 17,11 upper end of screw rod and support 22 lower thread of outer barrel It connects and is mutually perpendicular to, 11 lower end of screw rod is mutually welded and is mutually perpendicular to 13 upper end of nut, 12 upper end of backing plate Embedded to be mounted on 22 lower end of support outer barrel, the screw rod 11 is through backing plate 12, and the latch 14 is with supporting 22 lower end of outer barrel It is threadedly coupled, the insertion of pin rod 15 is mounted on latch 14, and 16 right end of draw ring is welded with 15 phase of pin rod, the umbrella The insertion of 412 right end of frame is mounted on 2 left end of vertical support device, 4111 left end of support plate and 2 inner surface of vertical support device Left end mutually welds, and 421 left end of supporting block is mutually welded with 2 inner surface left end of vertical support device.
Internal gear 4214 described in this patent is internal gear in inner circle, typically in inner engaging gear mechanism, gear ring On gear for internal gear, the USB interface 72 is to connect computer system and a kind of serial bus standard of external equipment, It is a kind of technical specification of input/output interface, is widely used in the information communications product such as PC and mobile equipment, And other related fields such as photographic goods, DTV, game machine are extended to, latest generation is USB3.1, and transmission speed is 10Gbit/s, three-stage voltage 5V/12V/20V, maximum power supply 100W, novel TypeC insert type no longer divide it is positive and negative.
It is carrying out in use, when daytime is sunny, is passing through the solar cell string 54 in off-network photovoltaic generation mechanism 5 Solar energy is acted on, solar energy is carried out to be converted into electric energy, electricity storage mechanism 22 is transmitted to by the first electricity output interface 51 Negative plate 225 and positive plate 227 in carry out the storage of electric energy, electricity is supplied by charging mechanism 7 by the second transmission pressure 221 In USB interface 72 mobile phone of user is allow to charge, supply lighting mechanism 6 in LED light group 65 carry out night illumination It uses, when meeting with rainy weather, by pressing the button pedestal 212 in actuating mechanism 21, button pedestal 212 is made to push spine Ratch 211 moves right, and is engaged by ratchet lever 211 with ratchet 4219, and ratchet 4219 is made to rotate counterclockwise, since L-type limits Bar 4220 is fixed on ratchet 4219, and L-type gag lever post 4220 is rotated counterclockwise around 4219 center of circle of ratchet in embedded ratchet lever 211 End, fixes ratchet lever 211, the first strut 4217 is connected by the second strut 4218 with ratchet 4219,4219 inverse time of ratchet Needle rotation forces the second strut 4218 and the first strut 4217 are moved upwards since 4217 upper end of the first strut is fixed on 4216 On, the first strut 4217 pushes 4216 rotations counterclockwise, makes with third commutating tooth gear wheel 4216 through third driving belt 4213 The internal gear 4214 of connection rotates in same direction, and 4214 internal tooth of internal gear passes through third commutating tooth pinion gear 4212, the second commutating tooth pinion gear 4211st, the 4th commutating tooth pinion gear 4215 drives center commutating tooth pinion gear 426 to rotate clockwise, and makes and center commutating tooth pinion gear 426 4210 rotating Vortex of the 4th bevel gear being connected by the second driving belt 425, the second driven wheel 427 pass through two-way bevel gear 429 be meshed conduction the 4th bevel gear 4210 rotation power in the same direction, rotate clockwise the second driven wheel 427, drive by with The first rotation counterclockwise of commutating tooth gear wheel 418 that moving teeth chain 424 is meshed, the first commutating tooth gear wheel 418 is respectively to the 4th umbrella tooth Wheel 4110 and the power for transmitting two different directions to the second bevel gear 415 by the first driving belt 416, the 4th bevel gear 4110 Back is meshed with 418 lower end of the first commutating tooth gear wheel, make the 4th bevel gear 4110 rotate clockwise and left end and first just Tooth pinion gear 419 is meshed, and drives the reverse rotation of the first commutating tooth pinion gear 419 that umbrella stand 412 is made to be opened up to the right together with canopy 411 It opens, the second bevel gear 415 and the rotation counterclockwise in the same direction of the first commutating tooth gear wheel 418,415 front end of the second bevel gear and the first umbrella tooth It takes turns 414 backs to be meshed, the first bevel gear 414 is made reversely to rotate clockwise, umbrella stand 412 is driven to be opened up to the left together with canopy 411 It opens, can stop rainwater after half-packaging folding umbrella device 4 is fully deployed, charging pile can provide pedestrian and take shelter from rain place, the same day After fine, open button flip 214 and push release link 215 that ratchet lever 211 is made to pass through half-packaging folding during above-mentioned transmission to left movement Umbrella device 4 is closed.
The present invention solves the prior art and the charging pile of off-network photovoltaic generation generally is mounted on outdoor, when encountering rainy weather When, rainwater is easily entered by charge port inside charging pile, makes the short out road of equipment internal powerline, and what charging pile was stopped asks Topic, being combined with each other by above-mentioned component of the invention, using off-network photovoltaic generation, electric energy conversion efficiency higher, when half-packaging is opened Close after umbrella device is fully deployed not only mainly can protect charging pile not entered by rainwater with sun-shading rain-proof, extend charging Stake service life.
The basic principles, main features and the advantages of the invention have been shown and described above, for this field skill For art personnel, it is clear that the present invention is not limited to the details of above-mentioned exemplary embodiment, and without departing substantially from the present invention spirit or In the case of essential characteristic, the present invention can be realized in other specific forms.Therefore, in all respects, should all incite somebody to action Embodiment regards exemplary as, and is non-limiting, the scope of the present invention by appended claims rather than on state Bright restriction, it is intended that including all changes falling within the meaning and scope of the equivalent requirements of the claims in the present invention It is interior.Any reference numeral in claim should not be considered as to the involved claim of limitation.
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 each embodiment can also be properly combined, forms those skilled in the art The other embodiment being appreciated that.

Claims (9)

1. a kind of charging pile using off-network photovoltaic generation, it is characterised in that:Its structure includes fixed mechanism (1), vertical support Device (2) places disk (3), half-packaging folding umbrella device (4), off-network photovoltaic generation mechanism (5), lighting mechanism (6), charging Mechanism (7), it is characterised in that:
Vertical support device (2) the lower end insertion is mounted on fixed mechanism (1) upper end and is mutually perpendicular to, the placement disk (3) inner ring insertion is mounted among vertical support device (2) and in same axle center, charging mechanism (7) the back insertion On vertical support device (2), lighting mechanism (6) back is mutually welded with off-network photovoltaic generation mechanism (5) front end, institute It is embedded on vertical support device (2) to state half-packaging folding umbrella device (4), the half-packaging open and-close umbrella mechanism (4) includes Open-and-close mechanism (41), transmission mechanism (42), the half-packaging open and-close umbrella mechanism (4) is set on transmission mechanism (42) upper end.
2. a kind of charging pile using off-network photovoltaic generation according to claim 1, it is characterised in that:The open-and-close mechanism (41) including canopy (411), umbrella stand (412), two-way spindle (413), the first bevel gear (414), the second bevel gear (415), One driving belt (416), the first driven wheel (417), the first commutating tooth gear wheel (418), the first commutating tooth pinion gear (419), second Commutating tooth gear wheel (4110), support plate (4111), fixed axostyle (4112), the umbrella stand (412) is embedded to be mounted on canopy (411) On, the umbrella stand (412) is mutually welded respectively with two-way spindle (413) both ends, two-way spindle (413) upper end and the first umbrella tooth Wheel (414) lower end is mutually welded and is mutually perpendicular to, two-way spindle (413) lower end and first commutating tooth pinion gear (419) upper end It mutually welds and in same axle center, first bevel gear (414) is set on the second bevel gear (415) lower end and back and second Bevel gear (415) front end is meshed, and the first driving belt (416) inner surface is bonded with the first driven wheel (417) outer surface, First driven wheel (417) back is mutually welded with first commutating tooth gear wheel (418) front end, the first commutating tooth gear wheel (418) it is meshed set on the second commutating tooth gear wheel (4110) upper end and lower end with second commutating tooth gear wheel (4110) back, it is described Second commutating tooth gear wheel (4110) left end is meshed and is mutually perpendicular to, the fixation with first commutating tooth pinion gear (419) right end Axostylus axostyle (4112) upper end is intermediate through the second commutating tooth gear wheel (4110) and in same axle center, the fixed axostyle (4112) lower end is mutually welded and is mutually perpendicular to support plate (4111) upper end.
3. a kind of charging pile using off-network photovoltaic generation according to claim 1, it is characterised in that:The transmission mechanism (42) including supporting block (421), connection axostylus axostyle (422), the first driving wheel (423), transmission toothed chain (424), the second driving belt (425), center commutating tooth pinion gear (426), the second driven wheel (427), third bevel gear (428), two-way bevel gear (429), Four bevel gears (4210), the second commutating tooth pinion gear (4211), third commutating tooth pinion gear (4212), third driving belt (4213), Internal gear (4214), the 4th commutating tooth pinion gear (4215), third commutating tooth gear wheel (4216), the first strut (4217), second Bar (4218), ratchet (4219), L-type gag lever post (4220), connection axostylus axostyle (422) left end insertion are mounted on supporting block (421) right end, connection axostylus axostyle (422) right end through two-way bevel gear (429) left end and is mutually perpendicular to, described two-way Bevel gear (429) back is meshed with third bevel gear (428) front end, the second driven wheel (427) back and third umbrella tooth It mutually welds and in same axle center, the first commutating tooth gear wheel (418) right end and transmission toothed chain (424) in wheel (428) front end Left end is meshed, and transmission toothed chain (424) inner surface is bonded with the first driving wheel (423) outer surface, the transmission toothed chain (424) inner surface is bonded with the second driven wheel (427) outer surface, the second driving belt (425) inner surface and center commutating tooth The interior wheel outer surface fitting of pinion gear (426), internal gear (4214) inner surface and third commutating tooth pinion gear (4212) outer surface It is meshed, internal gear (4214) inner surface is meshed with the 4th commutating tooth pinion gear (4215) outer surface, the internal gear (4214) inner surface is meshed with second commutating tooth pinion gear (4211) outer surface, and internal gear (4214) outer surface is passed with third Dynamic belt (4213) inner surface fitting, third driving belt (4213) inner surface and third commutating tooth gear wheel (4216) lubrication groove Outer surface is bonded, and the first strut (4217) upper end is fixedly connected on by pin on third commutating tooth gear wheel (4216), institute It states the first strut (4217) lower end by pin with the second strut (4218) upper end to be connected, the second strut (4218) lower end It is fixedly connected on ratchet (4219) by pin, L-type gag lever post (4220) upper end is fixedly connected on ratchet by pin (4219) on.
4. a kind of charging pile using off-network photovoltaic generation according to claim 1, it is characterised in that:The charging mechanism (7) including circuit board (71), USB interface (72), connector (73), USB interface protective plate (74), supporting rod (75), charger Shell (76), the embedded charger case (76) that is mounted on of the circuit board (71) is internal, USB interface protective plate (74) right end Embedded to be mounted on charger case (76) left end, it is right that USB interface (72) the left end insertion is mounted on USB interface protective plate (74) It holds and is mutually perpendicular to, USB interface (72) right end is mutually welded and is mutually perpendicular to circuit board (71) left end, the support The insertion of bar (75) left end is mounted on charger case (76) right end and is mutually perpendicular to, connector (73) left end and charger Shell (76) right end mutually welds.
5. a kind of charging pile using off-network photovoltaic generation according to claim 1, it is characterised in that:The vertical support Device (2) includes actuating mechanism (21), support outer barrel (22), electricity storage mechanism (23), electricity storage mechanism (23) outer surface and branch The fitting of outer barrel (22) inner surface is supportted, electricity storage mechanism (23) outer surface is set on actuating mechanism (21) lower end.
6. a kind of charging pile using off-network photovoltaic generation according to claim 5, it is characterised in that:The actuating mechanism (21) including ratchet lever (211), button pedestal (212), positioning pin (213), button flip (214), release link (215), first Resetting spring (216), retaining collar (217), limiting plate (218), second back-moving spring (219), limited block (2110), the spine Ratch (211) upper end is meshed and is mutually perpendicular to ratchet (4219) lower end, and release link (215) the right end insertion is mounted on Ratchet lever (211) is intermediate and in same axle center, and the limiting plate (218) is integrated with release link (215), described The insertion of second back-moving spring (219) left end is mounted on release link (215) right end and is mutually parallel, the second back-moving spring (219) inner surface is nested and is mutually parallel with release link (215) outer surface, limited block (2110) the right end insertion installation In support outer barrel (22) inner surface, release link (215) left end is intermediate through button pedestal (212) and is mutually perpendicular to, (the first back-moving spring (216) left end is bonded with button pedestal (212) right end, and embedded be mounted on of the positioning pin (213) is pressed Key pedestal (212) upper end, button pedestal (212) left end are bonded with button flip (214) right end and are in same axle center, institute It states embedded be mounted on of retaining collar (217) and supports outer barrel (22) inner surface, (the first back-moving spring (216) right end and fixing sleeve Ring (217) inner surface is bonded.
7. a kind of charging pile using off-network photovoltaic generation according to claim 5, it is characterised in that:The electricity storage mechanism (22) including the second transmission pressure (221), leading-out terminal (222), input terminal (223), sealing plate (224), negative plate (225), partition board (226), positive plate (227), insulation sleeve (228), the second transmission pressure (221) lower end and leading-out terminal (222) upper end is mutually welded, and leading-out terminal (222) the lower end insertion is mounted on sealing plate (224) and is mutually perpendicular to, described The insertion of input terminal (223) lower end is mounted on sealing plate (224) and is mutually perpendicular to, the input terminal (223) and output Terminal (222) is mutually parallel, and sealing plate (224) the lower end insertion is mounted on insulation sleeve (228) upper end and in same axis The heart, negative plate (225) left end are bonded with partition board (226) right end, the negative plate (225) and insulation sleeve (228) inner surface Fitting, positive plate (227) right end are bonded with partition board (226) left end, the positive plate (227) and insulation sleeve (228) interior table Face paste is closed.
8. a kind of charging pile using off-network photovoltaic generation according to claim 1, it is characterised in that:The off-network photovoltaic Power generation mechanism (5) includes the first electricity output interface (51), tempered glass (52), EVA film (53), solar cell string (54), TPT Film (55), aluminium chassis (56), the first electricity output interface (51) are mutually welded with solar cell string (54), the tempered glass (52) left end is bonded with EVA film (53) right end, and EVA film (53) left end is bonded with solar cell string (54) right end, described TPT films (55) right end is bonded with solar cell string (54) left end, and PT films (55) the left end insertion is mounted on aluminium chassis (56) Left end, aluminium chassis (56) left end with support outer barrel (22) right end mutually weld, the first electricity output interface (51) left end with Second transmission pressure (221) right end mutually welds, and the lighting mechanism (6) connects including the first transmission pressure (61), the second electricity output Mouthful (62), illumination lamp housing (63), transparent prevention plate (64), LED light group (65), the first transmission pressure (61) right end with too Positive energy battery strings (54) are mutually welded, and the second electricity output interface (62) is mutually welded with the first transmission pressure (61), described transparent The insertion of protective plate (64) right end is mounted on illumination lamp housing (63) left end, and LED light group (65) the right end insertion is mounted on illumination Lamp housing (63) is internal, and the fixed mechanism (1) includes screw rod (11), backing plate (12), nut (13), latch (14), pin rod (15), draw ring (16), pedestal (17), screw rod (11) upper end connect with support outer barrel (22) lower thread and mutually hang down Directly, screw rod (11) lower end is mutually welded and is mutually perpendicular to nut (13) upper end, backing plate (12) the upper end insertion installation In support outer barrel (22) lower end, the screw rod (11) is through backing plate (12), and the latch (14) is with supporting under outer barrel (22) End is threadedly coupled, and the pin rod (15) is embedded to be mounted on latch (14), and draw ring (16) right end is mutually welded with pin rod (15) It connects.
9. a kind of charging pile using off-network photovoltaic generation according to claim 2, it is characterised in that:The umbrella stand (412) right end insertion is mounted on vertical support device (2) left end, support plate (4111) left end and vertical support device (2) Inner surface left end mutually welds, and supporting block (421) left end is mutually welded with vertical support device (2) inner surface left end.
CN201810037661.XA 2018-01-16 2018-01-16 A kind of charging pile using off-network photovoltaic generation Withdrawn CN108248428A (en)

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