But battery module quick assembly disassembly's power supply box
Technical Field
The utility model belongs to the technical field of power supply boxes, and relates to a power supply box with a battery module capable of being quickly disassembled and assembled.
Background
The defects of the existing power box in the aspect of quick assembly and disassembly of the battery module are mainly reflected in operation complexity, time consumption, safety risk and maintenance cost. These drawbacks are often caused by the mechanical structure, electrical connection and degree of modularity of the power box design. For example, some power boxes may be conventionally connected by screws, snaps, or welding, which have limitations in achieving quick assembly and disassembly, resulting in cumbersome and time-consuming disassembly and assembly processes.
Conventional countermeasures include the use of modular designs, quick connect and disconnect interfaces, and standardized battery modules. The modular design can simplify the replacement process of the battery module, and the quick plug interface can reduce the time required for connection and disconnection. The standardized battery module can improve compatibility among different devices, thereby reducing maintenance cost and time. However, these methods also have drawbacks. The modular design, although improving the replacement speed, may increase the volume and weight of the power box, and may increase the cost due to higher requirements on the manufacturing precision, so that a power box with a battery module capable of being quickly assembled and disassembled is needed to solve the above problems.
Disclosure of utility model
Aiming at the defects in the prior art, the utility model aims to provide a power box with a battery module capable of being quickly assembled and disassembled, and solves the problems in the prior art.
The utility model is realized by the following technical scheme that the power supply box with the battery module capable of being quickly disassembled comprises side support plates and a power connection end, wherein the side support plates are provided with two groups and are respectively arranged on the upper side and the lower side of a box body, and the overlooking cross section of the box body is of a rectangular structure;
the battery pack is characterized in that a group of battery driving assemblies for providing electric energy for the inside of the box body are arranged in the left side of the front end of the box body, a group of connecting frames for clamping and limiting the inner battery pack are arranged on the rear side of the battery driving assemblies, the right-side cross section of each connecting frame is of a concave structure and is fixedly connected with the battery driving assemblies, the outer sides of the inner battery pack are fixedly connected with the connecting frames through insulating glue, when a worker needs to quickly disassemble and assemble the battery driving assemblies, the hidden handle is opened from the inside of the sealing panel, the worker pulls the hidden handle outwards, and can take out the battery driving assemblies, the connecting frames and the inner battery pack from the inside of the box body, meanwhile, the discharging end of the rear side of the inner battery pack is disconnected with the electricity receiving end, the situation that the worker needs to disassemble the box body and other complex means to repair the inside of the power box is avoided, and the disassembly efficiency of the battery module is improved.
As a preferred embodiment, the battery driving assembly is connected with the inner battery pack through a wire, the specific use model of the battery driving assembly is matched with that of the inner battery pack, and the battery driving assembly controls the internal electric energy condition of the inner battery pack.
As a preferred implementation mode, the front side of the battery driving assembly is provided with a group of sealing panels which are mutually insulated and attached to the box body, the sealing panels are mutually sealed and embedded with the front side of the box body, the front side of the sealing panels is provided with a group of hidden handles which are convenient for workers to draw and hide and store, and the hidden handles, the sealing panels, the power driving assembly, the connecting frame and the inner battery pack are of an integrated structure.
As a preferred implementation manner, the rear side of the inner battery pack is provided with a group of discharge ends, the rear side of the discharge ends is provided with a group of electric connection ends for being electrically connected with the inner battery pack, and the electric connection ends comprise two groups of electric conduction sheets and a group of electric conduction cores.
As a preferred implementation mode, the two groups of electric connection guide plates are made of copper materials, are symmetrically arranged and are connected with the conductive core in a soldering mode, and a group of electric energy distribution equipment for electric power splitting is arranged at the upper end of the conductive core.
As a preferred implementation mode, the left side of the electric energy distribution device is provided with a group of cooling fans for rapidly cooling the inside of the box body, the left side of the cooling fans is provided with a group of cooling grooves for discharging heat, and the right sides of the upper end and the lower end of the box body are respectively provided with a group of air inlet grooves for sucking external cooling air.
As a preferred implementation mode, the inner sides of the two groups of air inlet grooves are respectively provided with a group of dust blocking nets for preventing dust from entering, the lower ends of the heat dissipation grooves are provided with a plurality of groups of outer joints for distributing and connecting electric energy, and the outer joints and the electric energy distribution equipment are of an integrated structure.
As a preferred implementation mode, a plurality of groups the outer joint outside is equipped with a set of side board that is used for keeping the location to the box outside, the side board passes through bolted connection with the box left side fixedly, box front side right-hand member is equipped with a set of switch module that is used for controlling the inside whole power break-make of box, box front end inboard is equipped with a set of fixed shell that is used for with side shell connection support, the fixed shell front side is equipped with a set of side shell board that is convenient for the staff to its dismantlement, when the staff dismantles the inside electric energy distribution equipment of box, keeps sealing connection to the box inside through using sealed panel to power drive and interior group battery to keep the location effect of power drive and interior group battery, prevent simultaneously that the dust from getting into the box inside.
After the technical scheme is adopted, when a worker needs to quickly disassemble and assemble the battery driving assembly, the hidden handle is opened from the inside of the sealing panel, the worker pulls the hidden handle outwards, so that the battery driving assembly, the connecting frame and the inner battery pack can be taken out from the inside of the box body, meanwhile, the discharging end at the rear side of the inner battery pack is disconnected from the power receiving end, the worker is prevented from disassembling the box body and other complicated means to repair the inside of the power box, the disassembling efficiency of the battery module is improved, and when the worker disassembles the electric energy distribution equipment in the box body, the sealing panel is used for maintaining sealing connection of the power driving and the inner battery pack, thereby maintaining the positioning effect of the power driving and the inner battery pack and preventing dust from entering the inside of the box body.
Drawings
In order to more clearly illustrate the embodiments of the utility model or the technical solutions of the prior art, the drawings which are used in the description of the embodiments or the prior art will be briefly described, it being obvious that the drawings in the description below are only some embodiments of the utility model, and that other drawings can be obtained according to these drawings without inventive faculty for a person skilled in the art.
Fig. 1 is a schematic view of a right front oblique side top view structure of a power box with a battery module capable of being quickly assembled and disassembled;
FIG. 2 is a schematic view of a left oblique front side top view of a battery module in a power box with a quickly detachable battery module when the box body is separated from a power drive and an inner battery assembly is positioned in the box body;
FIG. 3 is a schematic top view of the front side of the interior of a power box with a battery module according to the present utility model;
in the figure, the side support plate is 100-side support plate, 110-fixing hole, 120-fixing shell, 130-side shell plate, 140-hidden handle, 150-sealing panel, 160-air inlet groove, 170-switch component, 180-heat radiation port, 190-outer joint, 200-side panel, 210-inner battery pack, 220-battery driving component, 230-connecting frame, 240-heat radiation fan and 250-electric terminal.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
Referring to fig. 1-3, a power box with a battery module capable of being quickly assembled and disassembled includes a side support plate 100, an inner battery pack 210, a battery driving assembly 220 and a power connection end 250, wherein the side support plate 100 is provided with two groups, and is respectively installed on the upper side and the lower side of the box body, and the cross section of the box body in a overlooking manner is a rectangular structure;
The left side of the front end of the box body is internally provided with a group of battery driving assemblies 220 for providing electric energy for the box body, the rear side of the battery driving assemblies 220 is provided with a group of connecting frames 230 for clamping and limiting the inner battery packs 210, the right-side cross section of each connecting frame 230 is of a concave structure and is fixedly connected with the corresponding battery driving assemblies 220, and the outer sides of the inner battery packs 210 are fixedly connected with the connecting frames 230 through insulating glue.
The battery driving assembly 220 is connected with the inner battery pack 210 through a wire, the specific use model of the battery driving assembly 220 is matched with that of the inner battery pack 210, and the battery driving assembly 220 controls the internal electric energy condition of the inner battery pack 210.
The front side of the battery driving assembly 220 is provided with a group of sealing panels 150 which are mutually insulated and attached to the box body, the sealing panels 150 are mutually sealed and embedded with the front side of the box body, the front side of the sealing panels 150 is provided with a group of hidden handles 140 which are convenient for workers to draw and hide and store, and the hidden handles 140, the sealing panels 150, the power driving assembly, the connecting frame 230 and the inner battery pack 210 are of an integrated structure.
The rear side of the inner battery pack 210 is provided with a set of discharge ends, the rear side of the discharge ends is provided with a set of power connection ends 250 for electrically connecting with the inner battery pack 210, and the power connection ends 250 comprise two sets of conductive sheets and a set of conductive cores.
The two groups of electric guide sheets are made of copper materials, are symmetrically arranged and are connected with the conductive core in a soldering manner, and a group of electric energy distribution equipment for electric power splitting is arranged at the upper end of the conductive core.
The left side of the electric energy distribution device is provided with a group of cooling fans 240 for rapidly cooling the inside of the box, the left side of the cooling fans 240 is provided with a group of cooling grooves for discharging heat, and the right sides of the upper end and the lower end of the box are respectively provided with a group of air inlet grooves 160 for sucking external cooling air.
The inner sides of the two groups of air inlet grooves 160 are respectively provided with a group of dust blocking nets for preventing dust from entering, the lower ends of the heat dissipation grooves are provided with a plurality of groups of outer joints 190 for distributing and connecting electric energy, and the outer joints 190 and the electric energy distribution equipment are of an integrated structure.
The outside of the plurality of groups of outer joints 190 is provided with a group of side panels 200 for keeping the outside of the box in position, the side panels 200 are fixedly connected with the left side of the box through bolts, the right end of the front side of the box is provided with a group of switch assemblies 170 for controlling the on-off of the whole power supply inside the box, the inside of the front end of the box is provided with a group of fixing shells 120 for being connected and supported with the side shell plates 130, and the front side of the fixing shells 120 is provided with a group of side shell plates 130 which are convenient for workers to detach.
Referring to fig. 1-3, as a first embodiment of the present utility model, when a worker needs to quickly detach the battery-driven assembly 220, the hidden handle 140 is opened from the inside of the sealing panel 150, and since the front side of the sealing panel 150 is provided with a set of hidden handles 140 which are convenient for the worker to pull and hide and store, the hidden handles 140, the sealing panel 150, the power-driven assembly, the connection frame 230 and the inner battery pack 210 are in an integral structure, the worker pulls the hidden handles 140 outwards, so that the battery-driven assembly 220, the connection frame 230 and the inner battery pack 210 can be removed from the inside of the case, and meanwhile, the discharging end at the rear side of the inner battery pack 210 is disconnected from the power-receiving end 250, thereby avoiding the need for the worker to detach the case and other complicated means to repair the inside of the power case, and improving the efficiency of battery module detachment.
Referring to fig. 1 to 3, as a second embodiment of the present utility model, further, when a worker removes the power distribution apparatus inside the case, since the front side of the battery driving unit 220 is provided with a set of sealing panels 150 for being insulated from the case, the sealing panels 150 are sealed and engaged with the front side of the case, and the worker maintains a sealing connection with the power supply and the inner battery pack 210 inside the case by using the sealing panels 150, thereby maintaining the positioning effect of the power supply and the inner battery pack 210 while preventing dust from entering the case.
The foregoing description of the preferred embodiments of the utility model is not intended to be limiting, but rather is intended to cover all modifications, equivalents, alternatives, and improvements that fall within the spirit and scope of the utility model.