CN107985409B - Charger mounting frame with heat dissipation function - Google Patents

Charger mounting frame with heat dissipation function Download PDF

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Publication number
CN107985409B
CN107985409B CN201810030073.3A CN201810030073A CN107985409B CN 107985409 B CN107985409 B CN 107985409B CN 201810030073 A CN201810030073 A CN 201810030073A CN 107985409 B CN107985409 B CN 107985409B
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China
Prior art keywords
charger
clamping
plug
unit
mode
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CN201810030073.3A
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CN107985409A (en
Inventor
刘名反
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Jiangxian Energy Storage Co ltd
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Jiangxian Energy Storage Co ltd
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Priority to CN201810030073.3A priority Critical patent/CN107985409B/en
Publication of CN107985409A publication Critical patent/CN107985409A/en
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B62LAND VEHICLES FOR TRAVELLING OTHERWISE THAN ON RAILS
    • B62DMOTOR VEHICLES; TRAILERS
    • B62D21/00Understructures, i.e. chassis frame on which a vehicle body may be mounted
    • B62D21/09Means for mounting load bearing surfaces
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05KPRINTED CIRCUITS; CASINGS OR CONSTRUCTIONAL DETAILS OF ELECTRIC APPARATUS; MANUFACTURE OF ASSEMBLAGES OF ELECTRICAL COMPONENTS
    • H05K7/00Constructional details common to different types of electric apparatus
    • H05K7/20Modifications to facilitate cooling, ventilating, or heating
    • H05K7/2089Modifications to facilitate cooling, ventilating, or heating for power electronics, e.g. for inverters for controlling motor
    • H05K7/20909Forced ventilation, e.g. on heat dissipaters coupled to components

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  • Engineering & Computer Science (AREA)
  • Microelectronics & Electronic Packaging (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Transportation (AREA)
  • Mechanical Engineering (AREA)
  • Physics & Mathematics (AREA)
  • Thermal Sciences (AREA)
  • Charge And Discharge Circuits For Batteries Or The Like (AREA)
  • Toys (AREA)

Abstract

The utility model belongs to the technical field of auxiliary equipment structures for electric automobiles, and particularly relates to a charger mounting frame with a heat dissipation function, which comprises a chassis, a mounting frame, two clamping units and a sealing cover unit, wherein the chassis is arranged on a vehicle body in a screwed mode, the mounting frame is arranged on the chassis, the two clamping units are arranged in the mounting frame and are used for clamping a charger in a sliding close mode, the sealing cover unit is arranged in the mounting frame and is used for fixedly protecting the charger, the sealing cover unit is used for tensioning and fixing the clamping units in a downward pulling linkage unit mode, and a heat dissipation unit is further arranged at one side position on the chassis and is used for conducting heat dissipation operation on the charger in a blowing mode. The utility model has the advantages of convenient and quick installation and operation of the charger, high installation stability, difficult falling of the charger in the running process, convenient and flexible heat dissipation operation and complete and thorough heat dissipation.

Description

Charger mounting frame with heat dissipation function
Technical Field
The utility model belongs to the technical field of auxiliary equipment structures for electric automobiles, and particularly relates to a charger mounting frame with a heat dissipation function.
Background
The charger mounting frame generally comprises two types, namely a mounting frame arranged at fixed positions such as the wall, the ground and the like, and a mounting frame arranged on the electric automobile, wherein the mounting frame has higher requirements on mounting stability, and the problem that the charger accidentally drops in the driving process of the automobile is avoided. However, the existing charger mounting frame structure in the current market has the problem of poor stability to a certain extent, so that the charger fixed on the structure is easy to drop, on the other hand, in the placing process of the charger, the charger generates a certain amount of considerable heat, and after the heat is gathered, the normal working and the use of the charger are seriously affected, so that the charger mounting frame with high stability and a heat dissipation function is urgently needed in the market.
The utility model discloses a mounting frame of an automobile charger, which comprises a mounting plate, wherein a plurality of first fixing holes for fixing the charger are formed in the mounting plate, a fixing plate is arranged on one side of the mounting plate, a crushing notch is formed in the fixing plate, a bracket is fixedly connected to one side, far away from the mounting plate, of the fixing plate, an embedded groove for embedding an automobile front longitudinal beam is formed in the bracket, a plurality of second fixing holes for fixedly connecting the front longitudinal beam are formed in the bracket, and the crushing groove is formed in the bracket.
However, the mounting frame in the patent has the problem that the mounting stability is poor and the charger is easy to drop.
Disclosure of Invention
The utility model aims to provide a charger mounting rack with a heat dissipation function, which can achieve the aim of effectively and fixedly mounting a charger by arranging a clamping unit, a sealing cover unit, a linkage unit and a heat dissipation unit on a chassis and a mounting frame. The utility model has the advantages of convenient and quick installation and operation of the charger, high installation stability, difficult falling of the charger in the running process, convenient and flexible heat dissipation operation and complete and thorough heat dissipation.
The utility model adopts the technical proposal that: the utility model provides a take radiating function's machine mounting bracket that charges, includes the spiro union setting chassis on the automobile body, and the setting is in installation frame on the chassis is last, still including setting up in the installation frame and draw close the mode through the slip and be used for pressing from both sides two clamping unit that charge the machine, and set up in the installation frame and be used for fixed protection the closing cap unit of charge the machine, the closing cap unit is in through pulling down the linkage unit mode in order to be used for tautly fixing clamping unit, one side position department still is equipped with on the chassis in order to be used for right the radiating unit that charges the machine carries out the radiating operation through the mode of blowing, the radiating unit is including setting up sliding groove on the chassis, the card is combined and is slided to set up installation post on the sliding groove, peg graft the setting is in installation post upper end and be used for right through vertical rotatory mode the gear motor that charges the machine carries out the radiating operation, set up rotatory fan blade on the installation post lateral surface and be used for to gear motor power supply's group, the gear motor both ends are equipped with and are used for being used for in the grooving on the installation post upper end is equipped with the magnet and is equipped with the fixed ring face on the anchor ring face is equipped with the fixed angle to the magnet is used for the anchor ring face to the outer side of the anchor ring face.
The further preferable technical scheme is as follows: the clamping unit comprises an L-shaped slot arranged on the inner bottom surface of the mounting frame, a bottom plate arranged in the L-shaped slot in a sliding mode, a clamping plate arranged on the bottom plate and used for clamping and attaching to the side surface of the charger, and limiting columns respectively arranged on the bottom plate and the clamping plate and used for limiting and sliding on two side surfaces of the L-shaped slot, wherein the upper limiting column and the lower limiting column are respectively arranged in two pairs of sliding grooves on two side surfaces of the L-shaped slot in a sliding mode.
The further preferable technical scheme is as follows: the sealing cover unit comprises two plug-in ports which are respectively arranged on the inner bottom surface of the mounting frame and are different from the positions on two sides of the clamping unit, two ends of the sealing cover unit are respectively inserted and arranged in the two plug-in ports and are pressed on the upper end surface of the charger in a mode for fixedly protecting the sealing cover frame plate of the charger, and the plug-in ports are communicated with the two L-shaped grooves.
The further preferable technical scheme is as follows: the linkage unit comprises connecting ropes arranged between the limiting columns at the lower parts of the two clamping units, and clamping grooves which are arranged on the lower surfaces of the stand columns at the two ends of the cover sealing frame plate and used for downwards pulling and tensioning and fixing the clamping plates in a clamping mode.
The further preferable technical scheme is as follows: the sealing cover unit further comprises a magnetic part which is arranged in the plug-in port and is used for fixedly plugging the sealing cover frame plate in a magnetic attraction mode, and a stirring part which is arranged on the inner wall of the plug-in port and is used for communicating a circuit of the magnetic part in a stirring mode by inserting the sealing cover frame plate.
The further preferable technical scheme is as follows: the magnetic force part comprises an electromagnet arranged on the inner bottom surface of the plug-in port and a storage battery arranged on the inner bottom surface of the plug-in port and used for supplying power to the electromagnet, the electromagnet is fixedly bonded on a fixed column positioned on the inner bottom surface of the plug-in port, and a fixed magnet sheet used for magnetically attracting and connecting the electromagnet is arranged on the lower surface of the sealing cover frame plate.
The further preferable technical scheme is as follows: the magnetic force part also comprises a connecting column which is arranged on the side surface of the plug-in port and used for connecting the connecting wires at two ends of the electromagnet, and a connecting spring sheet which is arranged on the storage battery and used for pushing the storage battery through the poking part in order to be used for electrifying and connecting the connecting column.
The further preferable technical scheme is as follows: the storage battery is arranged in the sliding groove on the inner bottom surface of the plug-in port in a sliding manner through the tensioning spring, one end of the tensioning spring is arranged on the side surface of the storage battery, and the other end of the tensioning spring is arranged on the side wall of the plug-in port.
The further preferable technical scheme is as follows: the stirring part comprises a stirring slot arranged on the inner wall of the plug-in port, a rotating plate hinged in the middle part is arranged in the stirring slot, a trigger ball head arranged at the lower end of the rotating plate and protruding out of the stirring slot, and a pushing column arranged at the lower end of the rotating plate and used for pushing the storage battery.
The further preferable technical scheme is as follows: and the clamping plate and the sealing cover frame plate are respectively provided with a heat dissipation hole, and the side wall of the mounting frame is provided with a clamping groove for clamping and fixing a charger connecting wire.
According to the utility model, the aims of effectively and fixedly mounting the charger are achieved by arranging the clamping unit, the sealing cover unit, the linkage unit and the heat dissipation unit on the chassis and the mounting frame. The utility model has the advantages of convenient and quick installation and operation of the charger, high installation stability, difficult falling of the charger in the running process, convenient and flexible heat dissipation operation and complete and thorough heat dissipation.
Drawings
Fig. 1 is a schematic structural view of the present utility model.
Fig. 2 is a schematic diagram of a position structure of a fixed magnet assembly according to the present utility model.
Fig. 3 is a schematic view showing the location structure of the clamping unit and the capping unit in the present utility model.
Fig. 4 is a schematic diagram of a position structure of a linkage unit in the present utility model.
Fig. 5 is a schematic view showing the position structure of the clamping unit in the present utility model.
Fig. 6 is a schematic view of a position structure of a magnetic part in the present utility model.
Fig. 7 is a schematic view of a position structure of a toggle portion in the present utility model.
Detailed Description
The following description is of the preferred embodiments of the utility model and is not intended to limit the scope of the utility model.
Examples: as shown in fig. 1, 2, 3, 4, 5, 6 and fig. 7, a charger mounting rack with a heat dissipation function comprises a chassis 1 arranged on a vehicle body in a screwed manner, a mounting frame 2 arranged on the chassis 1, two clamping units 3 arranged in the mounting frame 2 and used for clamping a charger in a sliding approach mode, and a cover unit 4 arranged in the mounting frame 2 and used for fixedly protecting the charger, wherein the cover unit 4 is used for tensioning and fixing the clamping units 3 in a downward pulling linkage unit 5 mode, a heat dissipation unit 9 used for conducting heat dissipation operation on the charger in a blowing mode is further arranged at one side position on the chassis 1, the heat dissipation unit 9 comprises a sliding groove 901 arranged on the chassis 1, a mounting post 902 clamped and arranged on the sliding groove 901 in a sliding manner, a speed reducing motor 903 arranged at the upper end of the mounting post in a vertical approach rotation mode and used for conducting heat dissipation operation on the charger, a rotating fan blade 904 arranged on the mounting frame 2 and a rotating motor 903 arranged on the speed reducing motor 903, a magnetic force absorbing post 903 arranged at the outer side face of the mounting post 903 and used for conducting heat dissipation operation on the battery pack is arranged at the two sides of the mounting post 906, and the magnetic force post 906 is fixedly arranged at the two sides of the mounting post 906.
In this embodiment, the two clamping units 3 are used for clamping the charger from two sides, and the cover unit 4 is used for fixedly covering the charger from the upper surface of the charger, so that the charger obtains an omnibearing fixed installation effect. On the other hand, the capping unit 4 is arranged to realize capping protection, and simultaneously, the two clamping units 3 are tensioned through the linkage unit 5, so that capping operation of the upper surface and clamping operation of two sides can be realized through one action, and the mounting frame is ensured to have the advantages of convenient mounting operation and good mounting and fixing effects.
On the other hand, the heat dissipating unit 9 has the following advantages:
firstly, the rotating fan blade 904 rotates and blows, so as to ensure a basic heat dissipation effect, the gear motor 903 rotates vertically, the mounting column 902 slides horizontally, the heat dissipation unit 9 is ensured to have the advantages of large heat dissipation effective area and thorough heat dissipation, and targeted heat dissipation operation can be performed on different heating parts of the charger, so that the flexibility of heat dissipation operation is ensured;
secondly, the fixed magnet group 908 is used for fixing the plug-in posts 906 in the plug-in holes 907, so as to finally achieve the advantage that the gear motor 903 can be fixed and maintained at any time in the rotating process, so as to be used for performing blowing heat dissipation operations with different elevation angles on the charger;
thirdly, the mounting post 902 and the gear motor 903 are correspondingly provided with a holding post for pushing sliding and rotating in a vertical plane;
fourth, gear motor 903 and group battery 905 are in the paired equipment on the erection column 902, avoid gear motor 903 external power supply has guaranteed the work independence of heat dissipation unit 9 for whole the quick-witted mounting bracket has the advantage of simple structure compactness.
The clamping unit 3 comprises an L-shaped slot 301 arranged on the inner bottom surface of the mounting frame 2, a bottom plate 302 arranged in the L-shaped slot 301 in a sliding manner, a clamping plate 303 arranged on the bottom plate 302 and used for clamping and attaching to the side surface of the charger, and limit posts 304 respectively arranged at two side positions on the bottom plate 302 and the clamping plate 303 and used for limiting and sliding on two side surfaces of the L-shaped slot 301, wherein the upper and lower pairs of limit posts 304 are respectively arranged in two pairs of sliding grooves 305 on two side surfaces of the L-shaped slot 301 in a sliding manner. The linkage unit 5 comprises a connecting rope 501 arranged between the limiting columns 304 at the lower parts of the two clamping units 3, and a clamping groove 502 which is arranged on the lower surfaces of the upright posts at the two ends of the cover frame plate 402 and is used for downwards pulling and tightening and fixing the clamping plate 303 in a clamping and fixing mode.
In the present embodiment, the clamping unit 3 achieves the two-sided clamping purpose by:
first, the cover unit 4 pulls the connecting rope 501 downwards at the clamping groove 502, so that the bottom plate 302 is connected with the clamping plate 303 and is pulled towards the middle;
secondly, the two pairs of limit posts 304 slide in the two pairs of sliding grooves 305, and the clamping plates 303 are attached and pressed on the side surfaces of the charger to complete the clamping effect;
third, the capping unit 4 is lifted upwards, the connecting rope 501 loses tension, and the clamping plate 303 is loosened from the charger, so that the charger can be taken out conveniently.
In the present embodiment, the clamping unit 3 has the following advantages:
firstly, the clamping operation is completed by the linkage unit 5 through the insertion action of the cover sealing unit 4, so that the clamping operation is convenient and quick;
second, the capping protection operation of the capping unit 4 is concurrent with the clamping operation of the clamping unit 3, and disappears at the same time, so that the mounting frame has the advantage of "single operation, two fixing purposes being achieved at the same time".
The cover sealing unit 4 comprises two plug-in ports 401 which are respectively arranged on the inner bottom surface of the mounting frame 2 and are different from the positions on two sides of the clamping unit 3, two ends of the cover sealing unit are respectively plugged in the two plug-in ports 401 and are used for fixedly protecting a cover sealing frame plate 402 of the charger in a mode of being pressed on the upper end surface of the charger, and the plug-in ports 401 are communicated with the two L-shaped grooves 301. The cover unit 4 further comprises a magnetic part 403 arranged in the plug-in port 401 and used for fixing the plugged-in cover frame plate 402 through a magnetic attraction mode, and a poking part 404 arranged on the inner wall of the plug-in port 401 and used for communicating the circuit of the magnetic part 403 through the plug-in cover frame plate 402 in a poking mode. The magnetic part 403 comprises an electromagnet 403a arranged on the inner bottom surface of the plug-in interface 401 and a storage battery 403b arranged on the inner bottom surface of the plug-in interface 401 and used for supplying power to the electromagnet 403a, the electromagnet 403a is fixedly adhered to a fixed column 403c positioned on the inner bottom surface of the plug-in interface 401, and a fixed magnet piece 403g used for magnetically attracting and connecting the electromagnet 403a is arranged on the lower surface of the cover frame plate 402.
In this embodiment, after the cover frame plate 402 is inserted into the plug interface 401, the following method is used to implement the fixing operation:
first, the two end of the cover frame plate 402 are inserted into the plug-in port 401, and the poking part 404 is poked;
second, the toggle part 404 is toggled and triggered, the electromagnet 403a is electrically communicated with the storage battery 403b, the electromagnet 403a generates magnetic force, and the fixed magnet piece 403g is attracted downwards;
thirdly, the fixed magnet piece 403g is attracted downwards together with the whole cover frame plate 402 and finally presses on the electromagnet 403a, so that the cover protection operation of the cover frame plate 402 is completed, and meanwhile, the clamping groove 502 on the cover frame plate 402 pulls the connecting rope 501, so that the clamping unit 3 achieves the clamping effect.
In the present embodiment, the capping unit 4 has the following advantages:
firstly, the cover frame plate 402 completes the fixing operation in a magnetic attraction manner, so that the fixing effect has the advantage of lasting effectiveness;
secondly, the magnetic force effect of the magnetic force part 403 is controlled to be on-off by the stirring part 404, so that the magnetic force part 403 has the advantage of convenience and controllability of magnetic force, and the problem of electric energy waste of the magnetic force part 403 is avoided;
thirdly, the manner in which the stirring portion 404 is communicated with the magnetic portion 403 is the insertion action of the capping frame plate 402 itself, and the insertion triggers the communication, so that the fixing effect of the capping unit 4 has the advantage of convenient implementation.
The magnetic part 403 further includes a connection post 403d disposed on the side of the socket 401 and used for connecting the connection wires of two ends of the electromagnet 403a, and a connection spring plate 403e disposed on the battery 403b and pushing the battery 403b by the toggle part 404 to be electrically connected to the connection post 403 d. The storage battery 403b is slidably arranged in a chute positioned on the inner bottom surface of the plug-in port 401 through a tensioning spring 403f, one end of the tensioning spring 403f is arranged on the side surface of the storage battery 403b, and the other end of the tensioning spring is arranged on the side wall of the plug-in port 401.
In this embodiment, the magnetic on-off operation of the magnetic part 403 is implemented by the following means:
first, the tension spring 403f tensions the storage battery 403b, so that the connection spring piece 403e on the storage battery 403b is separated from the connection post 403d and presses on the striking part 404, and at this time, the magnetic force of the magnetic part 403 disappears;
second, when the cover frame plate 402 is inserted, the stirring part 404 is triggered by stirring, the storage battery 403b is stirred by the stirring part 404, the connecting spring plate 403e is pressed on the connecting column 403d, and the magnetic part 403 is electrically communicated, so as to realize magnetic attraction fixing operation;
second, when the cover plate 402 is pulled out, the tension spring 403f pulls back the battery 403b, and pushes and resets the pulling part 404, so that the cover plate 402 is ready for the next insertion operation.
In this embodiment, the magnetic force portion 403 is in operation, and has the advantage of easy control of magnetic force on-off by means of self spring tightening and elastic piece connection.
The stirring portion 404 includes a stirring slot 404a disposed on an inner wall of the socket 401, a rotating plate 404b hinged in the stirring slot 404a at a middle portion, a trigger ball 404c disposed at a lower end of the rotating plate 404b and protruding outside the stirring slot 404a, and a pushing column 404d disposed at a lower end of the rotating plate 404b and used for pushing the battery 403 b.
In this embodiment, the toggle portion 404 toggles the trigger and communicates with the magnetic portion 403 by:
firstly, the storage battery 403b is propped against the pushing post 404d, and the trigger ball 404c protrudes outside the poking slot 404 a;
secondly, the upright post for inserting the cover frame plate 402 pushes the trigger ball 404c inwards, the rotating plate 404b rotates around the shaft, and the pushing post 404d pushes the storage battery 403b to complete the energizing operation with the electromagnet 403 a;
third, the stand overcomes the magnetic force and pulls out the process, the stand passes over the trigger ball 404c first, at this time, the battery 403b is pulled back by the tension spring 403f, the electromagnet 403a loses the electromagnetic force, and the cover frame plate 402 can be pulled out easily.
In this embodiment, the toggle portion 404 has the advantages of sensitive toggle trigger and convenient toggle operation.
The clamping plate 303 and the cover frame plate 402 are respectively provided with a heat dissipation hole 6, and the side wall of the mounting frame 2 is provided with a clamping groove 7 for clamping and fixing a connecting wire of the charger.
The embodiments of the present utility model have been described in detail with reference to the drawings, but the present utility model is not limited to the above embodiments, and various modifications may be made within the knowledge of those skilled in the art without departing from the spirit of the present utility model. These are all non-inventive modifications which are intended to be protected by the patent laws within the scope of the appended claims.

Claims (3)

1. The utility model provides a take heat dissipation function's machine mounting bracket that charges, includes chassis (1) of spiro union setting on the automobile body to and set up installing frame (2) on chassis (1), its characterized in that: the battery charger comprises a mounting frame (2), two clamping units (3) which are arranged in the mounting frame (2) and are used for clamping a charger in a sliding close mode, a sealing cover unit (4) which is arranged in the mounting frame (2) and is used for fixedly protecting the charger, the sealing cover unit (4) is used for tensioning and fixing the clamping units (3) in a downward pulling linkage unit (5) mode, a radiating unit (9) which is used for conducting radiating operation on the charger in a blowing mode is further arranged at one side position on the chassis (1), the radiating unit (9) comprises a sliding groove which is arranged on the chassis (1), a mounting column (902) which is clamped and is arranged on the sliding groove in a sliding mode, a speed reducing motor (903) which is arranged at the upper end of the mounting column (902) in a vertical rotating mode and is used for conducting radiating operation on the charger, a rotating fan blade (904) which is arranged on the speed reducing motor (903) and a battery pack (905) which is arranged on the outer side surface of the mounting column (902) and is used for supplying power to the speed reducing motor (903), the mounting column (902) is provided with two ends which are arranged on the mounting column (906), a pair of fixed magnet groups (908) for magnetically attracting and fixing the vertical inclination angle of the gear motor (903) are arranged on the outer ring surface of the plug-in column (906) and the inner ring surface of the plug-in hole (907) at the two sides of the slot at the upper end,
the clamping unit (3) comprises an L-shaped slot (301) arranged on the inner bottom surface of the mounting frame (2), a bottom plate (302) arranged in the L-shaped slot (301) in a sliding manner, a clamping plate (303) arranged on the bottom plate (302) and used for clamping and attaching to the side surface of the charger, and limit posts (304) respectively arranged on the bottom plate (302) and the clamping plate (303) at two side positions and used for limiting and sliding on the two side surfaces of the L-shaped slot (301), wherein the upper and lower pairs of limit posts (304) are respectively arranged in two pairs of sliding slots on the two side surfaces of the L-shaped slot (301) in a sliding manner,
the sealing cover unit (4) comprises two plug-in ports (401) which are respectively arranged on the inner bottom surface of the mounting frame (2) and are different from the positions on two sides of the clamping unit (3), two ends of the sealing cover unit are respectively inserted and arranged in the two plug-in ports (401) and are used for fixing and protecting a sealing cover frame plate (402) of the charger in a mode of being pressed on the upper end surface of the charger, the plug-in ports (401) are communicated with the two L-shaped grooves (301),
the linkage unit (5) comprises a connecting rope (501) arranged between the lower limit posts (304) of the two clamping units (3) and a clamping groove which is arranged on the lower surfaces of the upright posts at the two ends of the cover sealing frame plate (402) and is used for downwards pulling and tensioning and fixing the clamping plate (303) in a clamping and fixing mode,
the cover sealing unit (4) also comprises a magnetic part (403) which is arranged in the plug-in port (401) and is used for fixing the plugged cover frame plate (402) in a magnetic attraction mode, and a stirring part (404) which is arranged on the inner wall of the plug-in port (401) and is used for communicating the circuit of the magnetic part (403) in a stirring mode through the plug-in cover frame plate (402),
the magnetic force part (403) comprises an electromagnet (403 a) arranged on the inner bottom surface of the plug-in port (401) and a storage battery (403 b) arranged on the inner bottom surface of the plug-in port (401) and used for supplying power to the electromagnet (403 a), the electromagnet (403 a) is adhered and fixed on a fixed column (403 c) positioned on the inner bottom surface of the plug-in port (401), the lower surface of the sealing cover frame plate (402) is provided with a fixed magnet sheet (403 g) used for magnetically attracting and connecting the electromagnet (403 a),
the magnetic force part (403) also comprises a connecting column (403 d) which is arranged on the side surface of the plug-in interface (401) and is used for connecting the two ends of the electromagnet (403 a) and a connecting spring piece (403 e) which is arranged on the storage battery (403 b) and pushes the storage battery (403 b) through the poking part (404) in a mode for electrifying and connecting the connecting column (403 d),
the stirring part (404) comprises a stirring slot (404 a) arranged on the inner wall of the plug-in port (401), a rotating plate (404 b) hinged in the stirring slot (404 a) at the middle part, a trigger ball head (404 c) arranged at the lower end of the rotating plate (404 b) and protruding outside the stirring slot (404 a), and a pushing column (404 d) arranged at the lower end of the rotating plate (404 b) and used for pushing the storage battery (403 b).
2. The charger mounting rack with heat dissipation function according to claim 1, wherein: the storage battery (403 b) is slidably arranged in a chute positioned on the inner bottom surface of the plug-in port (401) through a tensioning spring (403 f), one end of the tensioning spring (403 f) is arranged on the side surface of the storage battery (403 b), and the other end of the tensioning spring is arranged on the side wall of the plug-in port (401).
3. The charger mounting rack with heat dissipation function according to claim 1, wherein: the clamping plate (303) and the cover sealing frame plate (402) are respectively provided with a heat dissipation hole (6), and the side wall of the mounting frame (2) is provided with a clamping groove for clamping and fixing a connecting wire of the charger.
CN201810030073.3A 2018-01-12 2018-01-12 Charger mounting frame with heat dissipation function Active CN107985409B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201810030073.3A CN107985409B (en) 2018-01-12 2018-01-12 Charger mounting frame with heat dissipation function

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201810030073.3A CN107985409B (en) 2018-01-12 2018-01-12 Charger mounting frame with heat dissipation function

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Publication Number Publication Date
CN107985409A CN107985409A (en) 2018-05-04
CN107985409B true CN107985409B (en) 2024-04-12

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CN201810030073.3A Active CN107985409B (en) 2018-01-12 2018-01-12 Charger mounting frame with heat dissipation function

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Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115243519B (en) * 2022-07-25 2023-06-16 深圳市铁浪险电子科技有限公司 A place base for cell-phone is wireless to charge

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