Vertical charging pile
Technical Field
The utility model belongs to the technical field of charging piles, and particularly relates to a vertical charging pile.
Background
The charging pile is a device for providing electric energy for the electric automobile and is an important component of the ecological system of the new energy automobile. The existing many electric pile shells that fill are integrated into one piece, only are equipped with the preceding cabinet door, comparatively troublesome when meetting the device maintenance of internal circuit module and changing, especially be located the device of shell rear portion or side to many electric pile's devices are direct mount in the inside wall of shell, and the structure is unstable, damages easily when receiving external force.
Accordingly, the above problems are further improved.
Disclosure of utility model
The utility model mainly aims to provide a vertical charging pile, which is linked through a main body, a cabinet door unit, a first bracket unit and a second bracket unit, so that operations such as overhaul and replacement of corresponding electric appliances are performed through corresponding access doors, and then devices of a circuit module are installed on the bracket units, so that the installation stability is improved.
In order to achieve the above object, the present utility model provides a vertical charging pile, comprising a housing module and a circuit module, wherein the circuit module is mounted on the housing module, the housing module comprises a main body, a cabinet door unit, a first bracket unit and a second bracket unit, wherein:
The front part of the main body is provided with a front plate installation area, a first side part of the main body is provided with a first charging gun connecting end (the charging gun is connected with an internal circuit module so as to charge external electric equipment), a first charging gun placing end (hung on the main body when the charging gun is not used), a first access door placing area and a second access door placing area, the first charging gun connecting end and the first charging gun placing end are both positioned between the first access door placing area and the second access door placing area, a second charging gun connecting end, a second charging gun placing end, a third access door placing area and a fourth access door placing area are arranged on a second side part of the main body, and the second charging gun connecting end and the second charging gun placing end are both positioned between the third access door placing area and the fourth access door placing area;
The cabinet door unit includes a first access door, a second access door, a third access door, a fourth access door, and a main cabinet door mounted to the front panel mounting area, the first access door mounted to the first access door placement area and the second access door mounted to the second access door placement area, the third access door mounted to the third access door placement area and the fourth access door mounted to the fourth access door placement area;
the first support unit and the second support unit are both arranged in the main body, and the first support unit and the second support unit are both used for installing the circuit module.
As a further preferable technical scheme of the technical scheme, the first access door, the second access door, the third access door and the fourth access door are all provided with a plurality of heat dissipation ventilation holes.
As a further preferable mode of the above technical means, one side of the first rack unit is located in the first access door placement area and the other side of the first rack unit is located in the third access door placement area, one side of the second rack unit is located in the second access door placement area and the other side of the second rack unit is located in the fourth access door placement area (devices of the circuit modules on the corresponding rack units can be exposed by opening the corresponding access doors directly), thereby facilitating disassembly and maintenance.
As a further preferable technical solution of the above technical solution, the first bracket unit and the second bracket unit each include a top plate, a bottom plate, a first riser, a second riser, a third riser, a first partition plate, and a second partition plate, wherein:
The top plate is mounted on top of the first riser, the second riser and the third riser and the bottom plate is mounted on bottoms of the first riser, the second riser and the third riser, the second riser is located between the first riser and the third riser, the first isolation plate is fixedly mounted between the first riser and the second isolation plate is fixedly mounted between the second riser and the third riser (devices of the circuit module can be mounted on the isolation plate, the risers and the bottom plate and can be electrically isolated, and safety is improved).
As a further preferable aspect of the above technical aspect, the first riser and the second riser are each provided with a mounting hole (for connection of a device).
Drawings
Fig. 1 is a schematic structural view of the present utility model.
Fig. 2 is a schematic structural view of the present utility model.
Fig. 3 is a schematic structural view of the main body of the present utility model.
Fig. 4 is a schematic structural view of the first rack unit or the second rack unit of the present utility model.
The reference numerals comprise 10, a main body, 11, a front panel mounting area, 12, a first charging gun connecting end, 13, a first charging gun placing end, 14, a first access door placing area, 15, a second access door placing area, 16, a second charging gun connecting end, 17, a second charging gun placing end, 18, a third access door placing area, 19, a fourth access door placing area, 20, a cabinet door unit, 21, a first access door, 22, a second access door, 23, a third access door, 24, a fourth access door, 25, a main cabinet door, 30, a first bracket unit, 31, a top plate, 32, a bottom plate, 33, a first vertical plate, 34, a second vertical plate, 35, a third vertical plate, 36, a first isolation plate, 37, a second isolation plate, 38, a mounting hole and 40, and a second bracket unit.
Detailed Description
The following description is presented to enable one of ordinary skill in the art to make and use the utility model. The preferred embodiments in the following description are by way of example only and other obvious variations will occur to those skilled in the art. The basic principles of the utility model defined in the following description may be applied to other embodiments, variations, modifications, equivalents, and other technical solutions without departing from the spirit and scope of the utility model.
The utility model discloses a vertical charging pile, and the following describes the specific embodiment of the utility model further by combining with the preferred embodiment.
In the embodiments of the present utility model, those skilled in the art will note that the circuit module and the like to which the present utility model relates can be regarded as the prior art.
Preferred embodiments.
As shown in fig. 1 to 4, the present utility model discloses a vertical type charging pile, comprising a housing module and a circuit module, the circuit module is mounted to the housing module, the housing module comprises a main body 10, a cabinet door unit 20, a first bracket unit 30 and a second bracket unit 40, wherein:
The front part of the main body 10 is provided with a front plate mounting area 11, a first side part of the main body 10 is provided with a first charging gun connecting end 12 (a charging gun is connected with an internal circuit module so as to charge external electric equipment), a first charging gun placing end 13 (hung on the main body when the charging gun is not used), a first access door placing area 14 and a second access door placing area 15, the first charging gun connecting end 12 and the first charging gun placing end 13 are positioned between the first access door placing area 14 and the second access door placing area 15, a second charging gun connecting end 16, a second charging gun placing end 17, a third access door placing area 18 and a fourth access door placing area 19 are arranged on a second side part of the main body 10, and the second charging gun connecting end 16 and the second charging gun placing end 17 are positioned between the third access door placing area 18 and the fourth access door placing area 19;
The door unit 20 includes a first access door 21, a second access door 22, a third access door 23, a fourth access door 24, and a main door 25, the main door 25 being mounted to the front panel mounting area 11, the first access door 21 being mounted to the first access door placement area 14 and the second access door 22 being mounted to the second access door placement area 15, the third access door 23 being mounted to the third access door placement area 18 and the fourth access door 24 being mounted to the fourth access door placement area 19;
The first stand unit 30 and the second stand unit 40 are both built in the main body 10, and the first stand unit 30 and the second stand unit 40 are both used for installing the circuit module.
Specifically, the first access door 14, the second access door 15, the third access door 18, and the fourth access door 19 are each provided with a plurality of heat dissipation ventilation holes.
More specifically, one side of the first rack unit 30 is located at the first access door placement area 14 and the other side of the first rack unit 30 is located at the third access door placement area 18, one side of the second rack unit 40 is located at the second access door placement area 15 and the other side of the second rack unit 40 is located at the fourth access door placement area 19 (devices of the circuit modules on the corresponding rack units can be exposed directly by opening the corresponding access doors, thereby facilitating disassembly and overhaul).
Further, the first rack unit 30 and the second rack unit 40 each include a top plate 31, a bottom plate 32, a first riser 33, a second riser 34, a third riser 35, a first partition plate 36, and a second partition plate 37, wherein:
The top plate 31 is mounted on top of the first, second and third risers 33, 34 and 35 and the bottom plate 32 is mounted on the bottoms of the first, second and third risers 33, 34 and 35, the second riser 34 is located between the first and third risers 33 and 35, the first spacer 36 is fixedly mounted between the first and second risers 33 and 34 and the second spacer 37 is fixedly mounted between the second and third risers 34 and 35 (components of the circuit module may be mounted on spacers, risers and bottom plate and may also be electrically isolated for improved safety).
Still further, the first riser 33 and the second riser 34 are each provided with mounting holes 38 (for connection of devices).
It should be noted that technical features such as a circuit module related to the present application should be regarded as the prior art, and specific structures, working principles, and control modes and spatial arrangements possibly related to the technical features should be selected conventionally in the art, and should not be regarded as the utility model point of the present application, which is not further specifically expanded and detailed.
Modifications of the embodiments described above, or equivalents of some of the features may be made by those skilled in the art, and any modifications, equivalents, improvements or etc. within the spirit and principles of the present utility model are intended to be included within the scope of the present utility model.