CN213649354U - Vibration-damping and overheating-preventing multi-position integrated charging device - Google Patents

Vibration-damping and overheating-preventing multi-position integrated charging device Download PDF

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CN213649354U
CN213649354U CN202022719624.2U CN202022719624U CN213649354U CN 213649354 U CN213649354 U CN 213649354U CN 202022719624 U CN202022719624 U CN 202022719624U CN 213649354 U CN213649354 U CN 213649354U
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charging
base
vibration
damping
middle beam
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袁超
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Anhui Zhuxing Electronic Technology Co ltd
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Anhui Zhuxing Electronic Technology Co ltd
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • 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

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Abstract

The invention discloses a vibration-damping overheating-preventing multi-position integrated charging device which comprises a base, a hollow vertical beam, a vibration-damping group cushion, a vibration-damping insulating ring sleeve, an arc surface support, a side-opening charging box component, a temperature control alarm component, an upper screw cover, a solar warning component, a herringbone cover body and a solar cell panel. The energy-saving charging device has good vibration reduction and heat dissipation effects, can prevent the charging assembly from being overheated, eliminates potential safety hazards caused by overheating, has an energy-saving warning function, realizes multi-position integrated charging, and is convenient to move.

Description

Vibration-damping and overheating-preventing multi-position integrated charging device
Technical Field
The invention relates to the field of vibration-damping and overheating-preventing multi-position integrated charging devices, and particularly belongs to a vibration-damping and overheating-preventing multi-position integrated charging device.
Background
In recent years, the new energy industry is rapidly developed, and electric locomotives including electric mopeds, electric automobiles and small-sized battery cars are gradually widely used by people. With the increasing popularity of electric vehicles, the problem of safe charging of electric vehicles has become a problem that users must face. Along with the popularization of electric vehicles, the range of use of charging device equipment matched with the electric vehicle in the life of people is gradually expanded, and a large number of different types of electric vehicle charging device equipment are generated at the same time. However, the conventional charging device for an electric vehicle has the following problems in practical use: 1, most common charging devices are fixedly installed on a specific area of a working area or a living area of people and cannot move, so that the use requirement that people need to move and fix charging equipment after moving according to the difference of actual or charging distances cannot be met; 2, because the charging electric control board in the charging device can generate heat in the actual charging process, the common charging device is not provided with a temperature control alarm component and cannot sense in time, and serious safety accidents such as fire disasters and the like can be caused sometimes because the temperature in the charging device is overhigh; 3, the general charging device has poor overall vibration damping or anti-bumping and vibration performance, and sometimes manufacturers of some charging device equipment manufacture the bottom or the supporting component of the charging device equipment into an overall sealed type in order to pursue the overall stability of the charging device equipment, so that the ventilation and heat dissipation performance of the charging device equipment is poor; 4, the common charging device has a certain volume and needs to occupy a certain space range, and at night or in dark places, the common charging device has no warning component, and sometimes the common charging device is knocked or collided onto the charging device by people without attention, so that the charging device is damaged; 5, the charging case of ordinary charging device designs unreasonablely, can not put into the charging case with the whole charger that connects of electric motor car complete set area pencil, when rainy spot or special weather, can take place the electric motor car often and complete set area pencil and connect the charger and be drenched with rain scheduling problem. Therefore, the invention provides a vibration-damping and overheating-preventing multi-position integrated charging device.
Disclosure of Invention
The invention provides a vibration-damping and overheating-preventing multi-position integrated charging device which solves the problems in the background technology through the overall research and development design of a base, a hollow vertical beam, a vibration-damping group pad, a vibration-damping insulating ring sleeve, an arc surface support, a side-opening charging box assembly, a temperature control alarm assembly, an upper screw cover, a solar warning assembly, a herringbone cover body and a solar cell panel. Meanwhile, the invention has good overall vibration reduction and heat dissipation effects, can effectively prevent the charging assembly from being overheated, eliminates potential safety hazards caused by overheating, has an energy-saving warning function, ensures that multiple parts are charged together, and has the advantages of convenient movement, good reliability, good stability and long service life.
The technical scheme adopted by the invention is as follows:
a vibration-damping anti-overheating multi-position integrated charging device is characterized by comprising a base, a hollow vertical beam, a vibration-damping group cushion, a vibration-damping insulating ring sleeve, an arc surface support, a side-arranged charging box component, a temperature control alarm component, an upper screw cover, a solar warning component, a herringbone cover body and a solar cell panel, wherein the hollow vertical beam is arranged on the base, the vibration-damping group cushion is arranged in the base, the arc surface support is rotatably arranged on the hollow vertical beam, the vibration-damping insulating ring sleeve is arranged around the arc surface support, the side-arranged charging box component is arranged on the vibration-damping insulating ring sleeve and the arc surface support, the upper screw cover is in pin joint with the side-arranged charging box component, the temperature control alarm component is arranged on the inner part of the upper screw cover, the solar warning component is arranged on the outer side surface of the upper screw cover, the top of the herringbone cover body is connected with the upper screw cover body into a, the hollow vertical beam is integrally in a hollow vertical column shape, the side surface of the hollow vertical beam is provided with a sector notch from top to bottom, the inner side of the sector notch is provided with two curved surface grooves, a ventilation and heat dissipation plate is inserted in the curved surface grooves, the upper surface of the ventilation and heat dissipation plate is provided with an outer convex bottom ventilation hole, the temperature control alarm component is provided with a temperature sensor, an automatic control switch, a buzzer alarm and a small storage battery, the temperature sensor is connected with the side-open charging box component, the temperature sensor is connected with the buzzer alarm through the automatic control switch, the temperature sensor and the buzzer alarm are connected with the small storage battery through a wire harness, the small storage battery is connected with a solar cell panel, when the temperature in the side-opening charging box component is too high, the automatic control switch between the temperature sensor and the buzzer alarm can be automatically switched on, the buzzer alarm can send out a buzzer alarm with lamplight, and the solar warning component is connected with a small storage battery in the temperature control alarm component through a wire harness.
Preferably, the base is integrally a hollow square box body, an inner buckle edge is arranged on the periphery of the inner side of the bottom surface of the base, notches are formed in the four corners of the bottom surface of the base by the inner buckle edge, a hollow area is formed above the inner buckle edge, an L-shaped through hole is formed in the side surface of the base, a four-roller carrier with a middle beam is installed in the hollow area above the inner buckle edge of the bottom surface of the base, the four-roller carrier with the middle beam is provided with a square frame, rollers and a middle beam, the rollers are installed at the four corners of the square frame, the middle beam is fixed in the middle of the square frame, two ends of the middle beam of the four-roller carrier with the middle beam are installed in the L-shaped through hole in the side surface of the base, a rotary lifting handle is installed at one end of the middle beam, the four-roller carrier with the middle beam can be adjusted by the.
Preferably, when the rotary handle drives the four-roller frame with the middle beam to lift, the rotary handle is located at the upper part of the L-shaped through hole in the side surface of the base, the four-roller frame with the middle beam is located in a hollow area above the inner buckling edge of the bottom surface of the base integrally, the rollers of the four-roller frame with the middle beam are not in contact with the ground, when the rotary handle drives the four-roller frame with the middle beam to lower the base in time, the rotary handle is located at the lower part of the L-shaped through hole in the side surface of the base integrally, the four-roller frame with the middle beam is supported by the inner buckling edge of the bottom surface of the base integrally, the rollers of the four-roller frame with the middle beam pass through notches of the inner buckling edge at the four corners of the bottom surface of the base, and the rollers of the four-roller frame with the middle beam are in contact with.
Preferably, the whole damping cushion is in a hollow step horn shape, the damping cushion is made by embedding a soft steel belt in rubber, the periphery of the upper end of the damping cushion is fixedly installed on the inner side of the upper top surface of the base, when the roller of the four roller carrier with the middle beam in the base is in contact with the bottom surface, the bottom of the damping cushion is not in contact with the ground, when the roller of the four roller carrier with the middle beam in the base is not in contact with the bottom surface, the base is in contact with the ground, and the bottom of the damping cushion is in contact with the ground.
Preferably, the side-open charging box assembly comprises a charging box, a central control charging electric control board, a charging control switch, a charging socket, an external power line with a plug, a short-circuit protector and two side-surface insulating resin boards with clamping grooves, the charging box is a hollow shell without a bottom surface, the number of the side-surface insulating resin boards with the clamping grooves is two, the two side-surface insulating resin boards with the clamping grooves are fixedly arranged in the middle area of the charging box through bolts, the left side and the right side of the central control charging electric control board are respectively inserted into the inner sides of the clamping grooves of the two side-surface insulating resin boards with the clamping grooves, one end of the external power line with the plug is connected with the central control charging electric control board, the other end of the external power line with the plug can be connected with an external power supply, the charging control switch and the short-circuit protector are arranged on the central control charging electric control, the socket fixed mounting that charges is in the charging case side, there is the protecting cover that opens and shuts the socket side that charges, and the side of the protecting cover that opens and shuts is installed in the socket side that charges through the pin, and when using the socket that charges, the protecting cover that opens and shuts can be followed the pin and closed the lid and close on the socket that charges, temperature sensor and well accuse in the control by temperature change warning assembly charge automatically controlled board and be connected, and temperature sensor can the sensing transmission in the accuse charge the temperature of automatically controlled board.
Preferably, the left and right sides of the charging box and the front edge are pinned with an opening and closing cover door, the opening and closing cover door can be opened or closed along the edge, the left and right sides and the front inner side of the charging box are provided with embedded semi-sinking boxes, the peripheral edge of each embedded semi-sinking box is welded with the edge of the charging box into a whole, the bottom of the inner side surface of each embedded semi-sinking box is provided with a through hole, the side surface of each embedded semi-sinking box is provided with a charging socket of an opening and closing protective cover, the charging socket is fixedly arranged in the through hole at the bottom of the inner side surface of each embedded semi-sinking box, the tail of the inner side of the charging socket with the opening and closing protective cover at the side surface is connected with a central control charging electric control panel, a charging control switch and a short-circuit protector through a wire harness, the back side surface of the charging box is provided with a code scanning payment sensing panel and a coin feeding payment assembly, the code scanning payment, the electric control panel that charges can be controlled in the sensing instruction, and the control switch that charges, short-circuit protector and the socket circular telegram that charges, pegs graft the electric vehicle charger on the socket that charges, can charge the work to the electric motor car.
Preferably, there is the ventilation louvre around the lower part that the cambered surface held in the palm, ventilation cooling plate is above-mentioned to have the hole of outer convex bottom, and the bottom surface of hole ventilates at the bottom of the outer convex, and the side of hole can not ventilate at the bottom of the outer convex, and the side of hole can rain-proof dustproof entering cavity upright beam at the bottom of the outer convex.
Compared with the prior art, the invention has the following beneficial effects:
the vibration-damping anti-overheating multi-position integrated charging device is manufactured by the overall optimization design combination of the base, the hollow vertical beam, the vibration-damping group cushion, the vibration-damping insulating ring sleeve, the cambered surface support, the side-opening charging box assembly, the temperature control alarm assembly, the upper screw cover, the solar warning assembly, the herringbone cover body and the solar cell panel. The problem of ordinary electric motor car charging device when in actual use, exist is solved: 1, most common charging devices are fixedly installed on a specific area of a working area or a living area of people and cannot move, so that the use requirement that people need to move and fix charging equipment after moving according to the difference of actual or charging distances cannot be met; 2, because the charging electric control board in the charging device can generate heat in the actual charging process, the common charging device is not provided with a temperature control alarm component and cannot sense in time, and serious safety accidents such as fire disasters and the like can be caused sometimes because the temperature in the charging device is overhigh; 3, the general charging device has poor overall vibration damping or anti-bumping and vibration performance, and sometimes manufacturers of some charging device equipment manufacture the bottom or the supporting component of the charging device equipment into an overall sealed type in order to pursue the overall stability of the charging device equipment, so that the ventilation and heat dissipation performance of the charging device equipment is poor; 4, the common charging device has a certain volume and needs to occupy a certain space range, and at night or in dark places, the common charging device has no warning component, and sometimes the common charging device is knocked or collided onto the charging device by people without attention, so that the charging device is damaged; 5, the charging case of ordinary charging device designs unreasonablely, can not put into the charging case with the whole charger that connects of electric motor car complete set area pencil, when rainy spot or special weather, can take place the electric motor car often and complete set area pencil and connect the charger and be drenched with rain scheduling problem.
The energy-saving charging device has good overall vibration reduction and heat dissipation effects, can effectively prevent the charging assembly from being overheated, eliminates potential safety hazards caused by overheating, has an energy-saving warning function, is convenient to move, good in reliability, good in stability and long in service life while ensuring that multiple parts are charged together. The charging device is suitable for being popularized and used as a residential electric vehicle or an electric moped.
Drawings
FIG. 1 is a schematic view of the overall structure of the present invention;
fig. 2 is an enlarged schematic view of the hollow vertical beam, the cambered surface support and the side-opening charging box assembly after the assembly is completed.
FIG. 3 is a schematic view of the assembly of the heat dissipation plate and the hollow vertical beam according to the present invention;
FIG. 4 is a schematic view of the whole base of the present invention when the handle is located at the lower part of the L-shaped through hole on the side of the base and drives the four roller frames with the center sill to press down.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
The present invention will be described in further detail with reference to examples and specific embodiments.
Referring to the drawings: a vibration-damping anti-overheating multi-position integrated charging device is characterized by comprising a base 1, a hollow vertical beam 2, a vibration-damping pad assembly 10, a vibration-damping insulating ring sleeve, an arc surface support 3, a side-opening charging box assembly 4, a temperature control alarm assembly 6, an upper screw cap 5, a solar alarm assembly 7, a herringbone cover body 8 and a solar cell panel 9, wherein the hollow vertical beam 2 is installed on the base 1, the vibration-damping pad assembly 10 is installed inside the base 1, the arc surface support 3 is screwed on the hollow vertical beam 2, the vibration-damping insulating ring sleeve is installed around the arc surface support 3, the side-opening charging box assembly 4 is installed on the vibration-damping insulating ring sleeve and the arc surface support 3, the upper screw cap 5 is in pin joint with the side-opening charging box assembly 4, the temperature control alarm assembly 6 is installed on the inner side of the upper screw cap 5, the solar alarm assembly 7 is arranged on the outer side surface of the upper screw cap 5, the top of the upper screw cap 5 is provided with the herringbone cover, the solar cell panel 9 is fixedly installed on the outer side of the top of the herringbone cover body 8, the hollow vertical beam 2 is integrally in a hollow vertical column shape, a sector notch 21 is formed in the side face of the hollow vertical beam 2 from top to bottom, two curved grooves 23 are formed in the inner side of the sector notch 21, a ventilation and heat dissipation plate 22 is inserted in the curved grooves 23, an outer convex bottom ventilation hole 221 is formed in the upper face of the ventilation and heat dissipation plate 22, the temperature control alarm assembly 6 is provided with a temperature sensor 63, an automatic control switch, a buzzer alarm 62 and a small storage battery 61, the temperature sensor 63 is connected with the side-opening charging box assembly 4, the temperature sensor 63 is connected with the buzzer alarm 62 through the automatic control switch, the temperature sensor 63 and the buzzer alarm 62 are connected with the small storage battery 61 through a wiring harness, the small storage battery 61 is connected with the solar cell panel 9, when the temperature in the side-opening charging box assembly 4 is too, the buzzer alarm 62 can send out a buzzer alarm with a lamp light, and the solar warning component 7 is connected with the small storage battery 61 in the temperature control alarm component 6 through a wire harness.
Preferably, the base 1 is a hollow square box, an inner buckle edge is arranged around the inner side of the bottom surface of the base 1, the inner buckle edge is provided with a notch at the four corners of the bottom surface of the base 1, a hollow area is arranged above the inner buckle edge, the side surface of the base 1 is provided with an L-shaped through hole 11, a four-roller frame 12 with a center sill is arranged in the hollow area above the inner buckle edge of the bottom surface of the base 1, the four-roller frame 12 with the center sill is provided with a square frame, rollers 122 and a center sill 121, the rollers 122 are arranged at the four corners of the square frame, the center sill 121 is fixed in the middle of the square frame, two ends of the center sill 121 of the four-roller frame 12 with the center sill are arranged in the L-shaped through hole 11 at the side surface of the base 1, one end of the center sill 121 is provided with a turning handle 1211, the four-roller frame 12 with the center sill can be adjusted through the turning handle 1211, and the two ends in.
Preferably, when the lifting handle 1211 drives the four-roller frame 12 with the middle beam to lift, the lifting handle 1211 is located at the upper part of the L-shaped through hole 11 on the side surface of the base 1, at this time, the four-roller frame 12 with the middle beam is located entirely in the hollow area above the inner buckling edge of the bottom surface of the base 1, the roller 122 of the four-roller frame 12 with the middle beam is not in contact with the ground, when the lifting handle 1211 drives the four-roller frame 12 with the middle beam to lift, the lifting handle 1211 is located at the lower part of the L-shaped through hole 11 on the side surface of the base 1, at this time, the four-roller frame 12 with the middle beam is entirely supported by the inner buckling edge of the bottom surface of the base 1, the roller 122 of the four-roller frame 12 with the middle beam passes through the notch of the inner buckling edge at the four corners of the base 1, the roller 122 of the four-roller frame 12 with the middle beam is in contact with.
Preferably, the whole damping pad assembly 10 is in a hollow step horn shape, the damping pad assembly 10 is made by embedding a soft steel belt in rubber, the periphery of the upper end of the damping pad assembly 10 is fixedly installed on the inner side of the upper top surface of the base 1, when the roller 122 with the middle beam four-roller frame 12 in the base 1 is contacted with the bottom surface, the bottom of the damping pad assembly 10 is not contacted with the ground, when the roller 122 with the middle beam four-roller frame 12 in the base 1 is not contacted with the bottom surface, the base 1 is contacted with the ground, and the bottom of the damping pad assembly 10 is contacted with the ground.
Preferably, the side-open charging box assembly 4 comprises a charging box 45, a central-control charging electric control board 44, a charging control switch 43, a charging socket 41, an external power line 48 with a plug, a short-circuit protector and side-surface insulating resin boards 411 with clamping grooves, the charging box 45 is a hollow shell without a bottom surface, the side-surface insulating resin boards 411 with clamping grooves are two, the two side-surface insulating resin boards 411 with clamping grooves are fixedly arranged in the middle area of the inside of the charging box 45 through bolts, the left side and the right side of the central-control charging electric control board 44 are respectively inserted into the inner sides of the clamping grooves of the two side-surface insulating resin boards 411, one end of the external power line 48 with the plug is connected with the central-control charging electric control board 44, the other end of the external power line 48 with the plug can be connected with an external power supply, the charging control switch 43 and the short-circuit protector are arranged on the central-, Charging control switch 43 and short-circuit protector all are connected through pencil and charging socket 41, and charging socket 41 fixed mounting is in charging case 45 side, there is the protecting cover 42 that opens and shuts charging socket 41 side, and the side of the protecting cover 42 that opens and shuts is installed in charging socket 41 side through the pin, and when using charging socket 41, the protecting cover 42 that opens and shuts can be opened along the pin, and when not using charging socket 41, the protecting cover 42 that opens and shuts can be followed the pin and closed the lid and close on charging socket 41, temperature sensor 63 among the control by temperature change alarm component 6 is connected with well accuse electric control board 44 that charges, and the temperature sensor 63 can sense the transmission in the accuse temperature of electric control board 44 that charges.
Preferably, the open-close cover doors 47 are pinned on the left and right sides and the front edge of the charging box 45, the open-close cover doors 47 can be opened or closed along the edge, the embedded semi-heavy boxes 46 are arranged on the left and right sides and the front inner side of the charging box 45, the peripheral edge of the embedded semi-heavy box 46 is welded with the edge of the charging box 45 into a whole, the bottom of the inner side surface of the embedded semi-heavy box 46 is provided with a through hole, the side surface is provided with the charging socket 41 of the open-close protecting cover 42 and fixedly arranged in the through hole at the bottom of the inner side surface of the embedded semi-heavy box 46, the inner tail part of the charging socket 41 with the open-close protecting cover 42 on the side surface is connected with the central control charging electric control panel 44, the charging control switch 43 and the short-circuit protector through a wire harness, the code scanning payment sensing panel 49 and the coin feeding payment assembly 410 are arranged on the back side surface of the charging box 45, when the code scanning payment sensing board 49 or the coin inserting payment component 410 receives the payment information, the charging electronic control board 44 can be controlled to work in the sensing instruction, the charging control switch 43, the short-circuit protector and the charging socket 41 are electrified, the electric vehicle charger is plugged on the charging socket 41, and the electric vehicle can be charged.
Preferably, there are ventilation louvres around the lower part of cambered surface support 3, ventilation cooling plate 22 upper surface has outer convex bottom ventilation hole 221, and the bottom surface of outer convex bottom ventilation hole 221 ventilates, and the side of outer convex bottom ventilation hole 221 can not ventilate, and the side of outer convex bottom ventilation hole 221 can rain-proof dustproof entering cavity upright beam 2.
When in use: the whole installation of the invention is completed as above, the whole of the invention is connected with an external power supply through an external power line 48 with a plug, the time required for charging the electric vehicle is charged through a code scanning payment induction board 49 or a coin-feed payment component 410 on the back side surface of the charging box 45 according to the charging standard of one or two yuan per five minutes, after the related fee is paid, when the code scanning payment induction board 49 or the coin-feed payment component 410 receives the payment information, the charging electric control board 44 can be controlled to work in a sensing instruction, the charging control switch 43, the short-circuit protector and the charging socket 41 are electrified, the electric vehicle charger is plugged on the charging socket 41, and the electric vehicle can be charged;
meanwhile, the electric vehicle to be charged is integrally placed in the embedded semi-sinking box 46 on the left side surface or the right side surface or the inner side of the front surface of the charging box 45, wherein the electric vehicle is matched with the charger with the wire harness connector; the embedded semi-submerged boxes 46 on the left side surface, the right side surface and the inner side of the front surface of the charging box 45 can prevent the problem that an electric vehicle to be charged is drenched in rainy spots or special weather when being matched with a charger with a wire harness joint;
the solar warning component 7 is attached to the outer side surface of the upper spiral cover 5, the solar warning component 7 is connected with the small storage battery 61 in the temperature control alarm component 6 through a wire harness, and the solar warning component 7 can warn the whole charging device at night or in dark places, so that the problem that the charging device is damaged due to impact or collision of people without attention to the charging device is solved;
the side surface of the hollow vertical beam 2 is provided with a sector notch 21 from top to bottom, the inner side of the sector notch 21 is provided with two curved surface grooves 23, a ventilation heat dissipation plate 22 is inserted in the curved surface grooves 23, an outer convex bottom ventilation hole 221 is arranged on the upper surface of the ventilation heat dissipation plate 22, the hollow vertical beam 2, the ventilation heat dissipation plate 22, the outer convex bottom ventilation hole 221 and ventilation heat dissipation holes around the lower part of the arc support 3 are arranged, the charging box 45 is a hollow shell without a bottom surface, the base 1 is integrally a hollow square box body, the bottom and the supporting assembly of the charging device can be ensured, and the integral ventilation and heat dissipation effects of the open charging box assembly 4 and the temperature control alarm assembly 6;
the temperature sensor 63 in the temperature control alarm component 6 is connected with the central control charging electric control board 44, the temperature sensor 63 can sense the temperature of the transmission central control charging electric control board 44, when the temperature in the side-opening charging box component 4 is too high, the automatic control switch between the temperature sensor 63 and the buzzer alarm 62 can be automatically switched on, the buzzer alarm 62 can send out a buzzer alarm with light, and the problems that the charging electric control board in the charging device can generate heat in the actual charging process, a common charging device does not have the temperature control alarm component and cannot sense in time, and a fire disaster and other major safety accidents are caused sometimes because the temperature in the charging device is too high can be solved;
the four roller frames 12 with the middle beams are arranged in a hollow area above the inner buckling edge of the bottom surface of the base 1, two ends of a middle beam 121 of the four roller frames 12 with the middle beams are arranged in L-shaped through holes 11 on the side surfaces of the base 1, one end of the middle beam 121 is provided with a rotary lifting handle 1211, when the rotary lifting handle 1211 drives the four roller frames 12 with the middle beams to be pressed down, the rotary lifting handle 1211 is positioned at the lower parts of the L-shaped through holes 11 on the side surfaces of the base 1, the whole four roller frames 12 with the middle beams are supported by the inner buckling edge of the bottom surface of the base 1, rollers 122 of the four roller frames 12 with the middle beams penetrate through gaps at the four corners of the bottom surface of the base 1 on the inner buckling edge, the rollers 122 of the four roller frames 12 with the middle beams are in contact with the ground and can roll on the ground, so that the whole base 1 can be driven to move on the ground, the problem that a common charging device is fixedly arranged on a specific location of a working area or a living area of, can move and then fix the use requirement after moving.
In addition, the damping pad assembly 10 is made by embedding a soft steel belt in the rubber, the periphery of the upper end of the damping pad assembly 10 is fixedly installed on the inner side of the upper top surface of the base 1, when the roller 122 with the center sill four-roller frame 12 in the base 1 is not contacted with the bottom surface, and the base 1 of the invention is contacted with the ground, the bottom of the damping pad assembly 10 is contacted with the ground, and the damping pad assembly 10 can play a damping role for the whole invention and the base 1.
The invention solves the problems existing in the actual use of the common charging device for the electric vehicle: 1, most common charging devices are fixedly installed on a specific area of a working area or a living area of people and cannot move, so that the use requirement that people need to move and fix charging equipment after moving according to the difference of actual or charging distances cannot be met; 2, because the charging electric control board in the charging device can generate heat in the actual charging process, the common charging device is not provided with a temperature control alarm component and cannot sense in time, and serious safety accidents such as fire disasters and the like can be caused sometimes because the temperature in the charging device is overhigh; 3, the general charging device has poor overall vibration damping or anti-bumping and vibration performance, and sometimes manufacturers of some charging device equipment manufacture the bottom or the supporting component of the charging device equipment into an overall sealed type in order to pursue the overall stability of the charging device equipment, so that the ventilation and heat dissipation performance of the charging device equipment is poor; 4, the common charging device has a certain volume and needs to occupy a certain space range, and at night or in dark places, the common charging device has no warning component, and sometimes the common charging device is knocked or collided onto the charging device by people without attention, so that the charging device is damaged; 5, the charging case of ordinary charging device designs unreasonablely, can not put into the charging case with the whole charger that connects of electric motor car complete set area pencil, when rainy spot or special weather, can take place the electric motor car often and complete set area pencil and connect the charger and be drenched with rain scheduling problem.
The energy-saving charging device has good overall vibration reduction and heat dissipation effects, can effectively prevent the charging assembly from being overheated, eliminates potential safety hazards caused by overheating, has an energy-saving warning function, is convenient to move, good in reliability, good in stability and long in service life while ensuring that multiple parts are charged together. The charging device is suitable for being popularized and used as a residential electric vehicle or an electric moped.
The foregoing is only a preferred embodiment of the present invention, and it should be noted that, for those skilled in the art, various changes and modifications can be made without departing from the inventive concept of the present invention, and these changes and modifications are all within the scope of the present invention.

Claims (7)

1. A vibration-damping anti-overheating multi-position integrated charging device is characterized by comprising a base, a hollow vertical beam, a vibration-damping group cushion, a vibration-damping insulating ring sleeve, an arc surface support, a side-arranged charging box component, a temperature control alarm component, an upper screw cover, a solar warning component, a herringbone cover body and a solar cell panel, wherein the hollow vertical beam is arranged on the base, the vibration-damping group cushion is arranged in the base, the arc surface support is rotatably arranged on the hollow vertical beam, the vibration-damping insulating ring sleeve is arranged around the arc surface support, the side-arranged charging box component is arranged on the vibration-damping insulating ring sleeve and the arc surface support, the upper screw cover is in pin joint with the side-arranged charging box component, the temperature control alarm component is arranged on the inner part of the upper screw cover, the solar warning component is arranged on the outer side surface of the upper screw cover, the top of the herringbone cover body is connected with the upper screw cover body into a, the hollow vertical beam is integrally in a hollow vertical column shape, the side surface of the hollow vertical beam is provided with a sector notch from top to bottom, the inner side of the sector notch is provided with two curved surface grooves, a ventilation and heat dissipation plate is inserted in the curved surface grooves, the upper surface of the ventilation and heat dissipation plate is provided with an outer convex bottom ventilation hole, the temperature control alarm component is provided with a temperature sensor, an automatic control switch, a buzzer alarm and a small storage battery, the temperature sensor is connected with the side-open charging box component, the temperature sensor is connected with the buzzer alarm through the automatic control switch, the temperature sensor and the buzzer alarm are connected with the small storage battery through a wire harness, the small storage battery is connected with a solar cell panel, when the temperature in the side-opening charging box component is too high, the automatic control switch between the temperature sensor and the buzzer alarm can be automatically switched on, the buzzer alarm can send out a buzzer alarm with lamplight, and the solar warning component is connected with a small storage battery in the temperature control alarm component through a wire harness.
2. The vibration-damping overheating-preventing multi-position integrated charging device according to claim 1, wherein the base is a hollow square box, an inner buckle edge is arranged around the inner side of the bottom surface of the base, the inner buckle edge is provided with a notch at the four corners of the bottom surface of the base, a hollow area is arranged above the inner buckle edge, the side surface of the base is provided with an L-shaped through hole, a four-roller frame with a center beam is arranged in the hollow area above the inner buckle edge of the bottom surface of the base, the four-roller carrier with the middle beam is provided with a square frame, rollers and a middle beam, the rollers are arranged at the four corners of the square frame, the middle beam is fixed in the middle of the square frame, two ends of a middle beam of the four-roller carrier with the middle beam are arranged in L-shaped through holes on the side surface of the base, one end of the middle beam is provided with a turning handle, the four-roller carrier with the middle beam can be adjusted through the turning handle, the lifting or pressing is carried out in the L-shaped through hole on the side surface of the base and in the hollow area above the inner buckling edge of the bottom surface of the base.
3. The vibration-damping overheating-preventing multi-position integrated charging device according to claim 2, wherein when the lifting handle drives the four middle beam roller frames to lift up, the lifting handle is located at the upper portion of the L-shaped through hole on the side surface of the base, the four middle beam roller frames are located in the hollow area above the inner buckle edge of the bottom surface of the base integrally, the rollers of the four middle beam roller frames are not in contact with the ground, when the lifting handle drives the four middle beam roller frames to lift down, the lifting handle is located at the lower portion of the L-shaped through hole on the side surface of the base, the four middle beam roller frames are supported by the inner buckle edge of the bottom surface of the base integrally, the rollers of the four middle beam roller frames pass through the notches of the inner buckle edge at the four corners of the bottom surface of the base, the rollers of the four middle beam roller frames are in contact with the ground, and can roll on the ground, and further drive the whole base to move on the ground.
4. A vibration-damping overheating-preventing multi-position integrated charging device according to any one of claims 1 to 3, wherein the vibration-damping cushion is formed by embedding a soft steel belt in rubber, the vibration-damping cushion is fixedly mounted on the inner side of the upper top surface of the base around the upper end thereof, when the roller of the four-roller carrier with the middle beam in the base is in contact with the bottom surface, the bottom of the vibration-damping cushion is not in contact with the ground, and when the roller of the four-roller carrier with the middle beam in the base is not in contact with the bottom surface, the base is in contact with the ground, and the bottom of the vibration-damping cushion is in contact with the ground.
5. The vibration-damping overheating-preventing multi-position integrated charging device according to claim 1, wherein the side-opening charging box assembly comprises a charging box, a central-control charging electric control board, a charging control switch, a charging socket, an external power line with a plug, a short-circuit protector and insulating resin boards with clamping grooves on the sides, the charging box is a hollow shell without a bottom surface, the insulating resin boards with clamping grooves on the sides are two, the two insulating resin boards with clamping grooves on the sides are fixedly arranged in the middle area of the charging box through bolts, the left side and the right side of the central-control charging electric control board are respectively inserted into the inner sides of the clamping grooves of the two insulating resin boards with clamping grooves on the sides, one end of the external power line with the plug is connected with the central-control charging electric control board, the other end of the external power line with the plug can be connected with an external power supply, and the charging control switch, well accuse automatically controlled board that charges, charge control switch and short-circuit protection ware all are connected with the socket that charges through the pencil, and socket fixed mounting that charges is in charging case side, there is the protecting cover that opens and shuts the socket side that charges, and the side of the protecting cover that opens and shuts is installed in the socket side that charges through the pin, and when using the socket that charges, the protecting cover that opens and shuts can be followed the pin and closed the lid and close on the socket that charges, temperature sensor among the control by temperature change warning assembly is connected with well accuse automatically controlled board that charges, and temperature sensor can the sensing transmission in the accuse of the temperature of automatically controlled board that charges.
6. The vibration-damping overheating-preventing multi-bit integrated charging device according to claim 5, wherein the charging box has open/close doors pinned to the left and right sides and the front edges, the open/close doors can be opened or closed along the edges, the charging box has embedded semi-heavy boxes on the left and right sides and the front inner sides, the peripheral edge of the embedded semi-heavy box is welded to the edges of the charging box, the bottom of the inner side of the embedded semi-heavy box has through holes, the charging socket with open/close cover is fixed in the through hole at the bottom of the inner side of the embedded semi-heavy box, the inner tail of the charging socket with open/close cover is connected with the central control charging electric control panel, the charging control switch and the short circuit protector through wiring harnesses, the back side of the charging box has a code scanning payment sensing panel and a coin feeding payment assembly, the code scanning payment sensing panel and the coin feeding payment assembly are connected with the central control charging electric control panel through wiring harnesses, when sweeping code payment tablet or coin the payment subassembly and receiving payment information, can sense the work of accuse automatically controlled board that charges in the instruction, charging control switch, short-circuit protection ware and the socket circular telegram that charges peg graft the electric motor car charger on the socket that charges, can charge the work to the electric motor car.
7. The vibration-damping anti-overheating multi-position integrated charging device according to claim 1, wherein ventilation and heat dissipation holes are formed in the periphery of the lower portion of the arc support, outer convex bottom ventilation holes are formed in the ventilation and heat dissipation plate, the bottom surfaces of the outer convex bottom ventilation holes are ventilated, the side surfaces of the outer convex bottom ventilation holes cannot ventilate, and the side surfaces of the outer convex bottom ventilation holes can prevent rain and dust from entering the hollow vertical beams.
CN202022719624.2U 2020-11-23 2020-11-23 Vibration-damping and overheating-preventing multi-position integrated charging device Active CN213649354U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202022719624.2U CN213649354U (en) 2020-11-23 2020-11-23 Vibration-damping and overheating-preventing multi-position integrated charging device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202022719624.2U CN213649354U (en) 2020-11-23 2020-11-23 Vibration-damping and overheating-preventing multi-position integrated charging device

Publications (1)

Publication Number Publication Date
CN213649354U true CN213649354U (en) 2021-07-09

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Family Applications (1)

Application Number Title Priority Date Filing Date
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Country Status (1)

Country Link
CN (1) CN213649354U (en)

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