Energy storage device
Technical Field
The utility model belongs to the technical field of electrical equipment structures, and particularly relates to energy storage equipment.
Background
At present, many outdoor energy storage products only consider the independent aesthetic property of product outward appearance when outward appearance ID designs, and the number of pieces that the shell can be split is few for the product shell has uniqueness, and the shell of product generally includes upper cover, well shell and bottom, and upper cover and bottom are installed respectively in the upper and lower both ends of well shell, with the cover number of saving the mould, reduce the equipment process, reduce the cost of labor, and various functional module are all concentrated and are installed on well shell.
However, the middle shell has a complex structure, the die cost is high, the middle shell occupies the main part of the shell, only certain functional modules are added or reduced in the similar products or aiming at different national standards and different functional configurations, for example, an electric jack is added or reduced, when the appearance is not too different in practice, the middle shell needs to be redesigned, the die needs to be redesigned, the required time period is relatively long, and the market demand, the product preemption market rate, the product life cycle and the product value are seriously influenced.
Disclosure of utility model
The utility model aims to provide energy storage equipment, which aims to solve the problems that the structure of a middle shell of the existing product is complex, the cost of a die is high, the middle shell occupies the main part of the structure of a shell, certain functional modules are only increased or reduced in similar products according to different national standards and different functional configurations, the middle shell is required to be redesigned when the appearance is not too much different, the die is required to be redesigned, the required time period is relatively long, and the market demand, the product preemption market rate, the product life cycle and the product value are seriously influenced.
The utility model is realized in that an energy storage device comprises:
a master controller;
The power supply module is electrically connected with the main controller;
The top shell is provided with a first concave cavity, a first slot and two second slots which are oppositely arranged, and the first slot and the second slot are communicated with the first concave cavity;
The bottom shell is provided with a second concave cavity, a third slot and two fourth slots which are oppositely arranged, the third slot and the fourth slots are communicated with the second concave cavity, the bottom shell is connected with the top shell, the first concave cavity and the second concave cavity are communicated and enclose to form an accommodating space, the first slot is communicated with the third slot, the two second slots are respectively communicated with the two fourth slots, and the power supply module and the main controller are both arranged in the accommodating space;
The decoration assembly comprises a front decoration piece, a first side decoration piece and a second side decoration piece, wherein two ends of the front decoration piece are respectively inserted into the first slot and the third slot, two ends of the first side decoration piece are respectively inserted into the second slot and the fourth slot, two ends of the second side decoration piece are respectively inserted into the second slot and the fourth slot, and the front decoration piece, the first side decoration piece and the second side decoration piece are electrically connected with the main controller.
Optionally, the front decoration piece includes the front shroud and installs in man-machine interface on the front shroud, the both ends of front shroud insert respectively in first slot with in the third slot, man-machine interface with the master controller electricity is connected.
Optionally, the first side decoration piece includes right apron and is used for being connected with external power source's supply socket, supply socket install in on the right apron, the both ends of right apron insert respectively in one second slot and one in the fourth slot, supply socket with the master controller electricity is connected.
Optionally, the second side decoration piece includes left apron and at least one output socket that is used for being connected with outside consumer, output socket install in on the left apron, the both ends of left apron insert respectively in another second slot and another in the fourth slot, output socket with the master controller electricity is connected.
Optionally, the energy storage device further includes a plurality of first fasteners, the top shell is further provided with a plurality of first perforations, the top shell includes a first shell and a plurality of first studs protruding on an inner wall of the first shell, the first perforations sequentially penetrate through the first shell and the corresponding first studs, and the first slots and the second slots are both arranged on the first shell;
The bottom shell comprises a second shell body and a plurality of second studs which are all arranged on the inner wall of the second shell body in a protruding mode, the second studs are provided with first threaded holes, the first shell body is in butt joint with the second shell body, the first fasteners penetrate through the corresponding first through holes and then are connected with the first threaded holes, and the third slots and the fourth slots are all arranged on the second shell body.
Optionally, the power module includes battery compartment, power strip, a plurality of lithium cell, a plurality of electrode plate and two conducting strips, the battery compartment runs through and is equipped with a plurality of clamping holes, each lithium cell is installed respectively in each clamping hole, the lithium cell has positive pole head and with the negative pole head that the positive pole head corresponds the setting, each lithium cell is between being connected through corresponding electrode plate, wherein at least one the positive pole head of lithium cell constitutes the positive pole tip, at least another the negative pole head of lithium cell constitutes the negative pole tip, two the one end of conducting strip respectively with positive pole tip with negative pole tip electricity is connected, two the other end of conducting strip all passes through the power strip with the master controller electricity is connected.
Optionally, the power strip includes branch accuse board, positive electrode seat and negative electrode seat, the positive electrode seat with the negative electrode seat all install in on the branch accuse board, the positive electrode seat with the negative electrode seat is all through divide accuse board with the master controller electricity is connected, two the conducting strip respectively with the positive electrode seat with the negative electrode seat electricity is connected.
Optionally, the power module further includes two second fasteners, the positive electrode base is provided with a second threaded hole, the negative electrode base is provided with a third threaded hole, two conductive sheets are respectively provided with a second through hole and a third through hole, one of the second fasteners passes through the second through hole and then is connected with the second threaded hole, and the other second fastener passes through the third through hole and then is connected with the third threaded hole.
Optionally, the energy storage device further includes a plurality of third fasteners, the battery compartment is further provided with a plurality of fourth perforations, the bottom shell is further provided with a plurality of fourth threaded holes, and the third fasteners pass through the corresponding fourth perforations and are connected with the fourth threaded holes.
Optionally, the inner wall of the first concave cavity and the inner wall of the second concave cavity are respectively provided with a plurality of grid grooves for heat dissipation.
According to the utility model, the top shell, the bottom shell, the front ornament, the first side ornament and the second side ornament are utilized to jointly form the shell of the energy storage device, the top shell and the bottom shell can be set as standard parts, the front ornament, the first side ornament and the second side ornament are not required to be replaced, only certain functions are added or reduced according to customer requirements or ID requirements, only the front ornament or the first side ornament or the second side ornament are required to be redesigned, flexible matching is realized, the like products are required to be upgraded or different functional configurations aiming at different national standards, the decomposed parts are simple in structure, modular design is adopted, the manufacturing cost of the die is low, the production period is short, the development period and the design cost can be shortened, the assembly is simple, the efficiency is high, the energy storage device product can occupy the market rate conveniently, the life period is long, the product value is high, and the energy storage device is suitable for large-scale popularization.
Drawings
Fig. 1 is a perspective view of an energy storage device according to an embodiment of the present utility model;
fig. 2 is a second perspective view of the energy storage device according to the embodiment of the present utility model;
FIG. 3 is an exploded view of FIG. 2;
FIG. 4 is a perspective view of a top housing provided by an embodiment of the present utility model;
FIG. 5 is a perspective view of a front trim piece provided by an embodiment of the present utility model;
fig. 6 is a perspective view of a master controller, a power module and a bottom case combined according to an embodiment of the present utility model;
FIG. 7 is an exploded view of FIG. 6;
Fig. 8 is a perspective view of a bottom chassis provided in an embodiment of the present utility model;
fig. 9 is a perspective view of a power module according to an embodiment of the present utility model;
FIG. 10 is an exploded view of FIG. 9;
fig. 11 is an exploded view of fig. 9.
Reference numerals:
10. A master controller; 20, a power supply module; 21, a battery compartment; 211, clamping holes, 212, fourth holes, 213, sixth holes, 214, top frame, 215, connecting frame, 22, power panel, 221, sub-control plate, 222, positive seat, 2221, second threaded hole, 223, negative seat, 2231, third threaded hole, 23, lithium battery, 231, positive head, 232, negative head, 233, positive end, 234, negative end, 235, first battery pack, 236, second battery pack, 24, electrode plate, 25, conducting strip, 251, second through hole, 252, third through hole, 26, separator, 30, top case, 31, first cavity, 311, grid slot, 32, first slot, 33, second slot, 34, first through hole, 35, first housing, 36, first stud, 37, fifth through hole, 38, third stud, 40, bottom case, 41, second cavity, 42, third slot, 43, fourth slot, 44, second housing, 45, second stud, 451, first threaded hole, 46, fourth cavity, 471, 53, first through hole, 53, 35, first through hole, 53, 35, 37, fifth through hole, 38, third stud, 40, bottom case, 41, second cavity, 42, 43, 53, 51, 53, 512, 53, etc.
Detailed Description
The present utility model will be described in further detail with reference to the drawings and examples, in order to make the objects, technical solutions and advantages of the present utility model more apparent. It should be understood that the specific embodiments described herein are for purposes of illustration only and are not intended to limit the scope of the utility model.
It will be understood that when an element is referred to as being "mounted" or "disposed" on another element, it can be directly on the other element or intervening elements may also be present. When an element is referred to as being "connected to" another element, it can be directly connected to the other element or intervening elements may also be present.
It should be noted that, in this embodiment, terms of left, right, up, down, etc. are merely relative concepts or references to normal use states of the product, and should not be construed as limiting.
Referring to fig. 1 to 8, an energy storage device is disclosed in an embodiment of the present utility model, which includes a main controller 10, a power module 20, a top case 30, a bottom case 40 and a decoration assembly 50, wherein the power module 20 is electrically connected with the main controller 10, the top case 30 is provided with a first concave cavity 31, a first slot 32 and two opposite second slots 33, the first slot 32 and the two second slots 33 are respectively disposed on three sides of the top case 30, and the first slot 32 and the second slot 33 are both communicated with the first concave cavity 31.
The bottom shell 40 is provided with a second concave cavity 41, a third slot 42 and two fourth slots 43 which are oppositely arranged, the third slot 42 and the two fourth slots 43 are respectively arranged on three sides of the bottom shell 40, the third slot 42 and the fourth slots 43 are communicated with the second concave cavity 41, the bottom shell 40 is connected with the top shell 30, the first concave cavity 31 and the second concave cavity 41 are communicated and enclose to form an accommodating space, the first slot 32 and the third slot 42 are communicated, the two second slots 33 are respectively communicated with the two fourth slots 43, and the power module 20 and the main controller 10 are all arranged in the accommodating space.
The decoration assembly 50 comprises a front decoration piece 51, a first side decoration piece 52 and a second side decoration piece 53, wherein two ends of the front decoration piece 51 are respectively inserted into the first slot 32 and the third slot 42, two ends of the first side decoration piece 52 are respectively inserted into the second slot 33 and the fourth slot 43, two ends of the second side decoration piece 53 are respectively inserted into the second slot 33 and the fourth slot 43, the front decoration piece 51, the first side decoration piece 52 and the second side decoration piece 53 are all electrically connected with the main controller 10, and the top shell 30, the bottom shell 40, the front decoration piece 51, the first side decoration piece 52 and the second side decoration piece 53 are utilized to jointly form the shell of the energy storage device.
In this embodiment, the front ornament 51 includes a front cover plate 511 and a man-machine interface 512 mounted on the front cover plate 511, two ends of the front cover plate 511 are respectively inserted into the first slot 32 and the third slot 42, and the man-machine interface 512 is electrically connected with the main controller 10, so that the energy storage device can be controlled through the man-machine interface 512.
In some embodiments, the human-computer interface 512 includes A circuit board 5121, A display 5122 and A plurality of buttons 5123, where the display 5122 and the buttons 5123 are all fixed on the circuit board 5121, the circuit board 5121 is located in the accommodating space, the display 5122 and the buttons 5123 are both installed on the front cover 511, the display 5122 and the buttons 5123 are all electrically connected with the main controller 10 through the circuit board 5121, and the display 5122 can be used for displaying real-time electric quantity conditions of the power module 20 and various alarm information, etc., and of course, TYPEC-DC and USB-A output interfaces can be installed on the front cover 511 to enrich products, flexibly select and increase market share.
The first side decoration piece 52 includes a right cover plate 521, a power socket 522 and a heat dissipation fan 523, the heat dissipation fan 523 and the power socket 522 are all installed on the right cover plate 521, two ends of the right cover plate 521 are respectively inserted into a second slot 33 and a fourth slot 43, the heat dissipation fan 523 and the power socket 522 are electrically connected with the main controller 10, the right cover plate 521 is provided with a wind gap 5211 corresponding to the heat dissipation fan 523, the heat dissipation fan 523 is used for dissipating heat of the power module 20, the power socket 522 is used for being connected with an external power supply, the right cover plate 521 is smaller, the structure is simple, the mold manufacturing is simple, the material cost and the processing cost are low, the flexibility is good, the right cover plate 521 can be allocated with different colors according to requirements, and meanwhile, different power sockets 522 can be designed according to different national regulations to serve as AC input ports.
The second side decoration piece 53 includes a left cover plate 531 and at least one output socket 532 for being connected with external electric equipment, the output socket 532 is installed on the left cover plate 531, the both ends of the left cover plate 531 insert respectively in another second slot 33 and another fourth slot 43, the output socket 532 is connected with the master controller 10 electricity, the left cover plate 531 is smaller, the structure is simple, the mould manufacturing is simpler, the material cost and the processing cost are low, the flexibility is better, the left cover plate 531 can allocate different colors according to the demand, and simultaneously different output sockets 532 can be designed according to different national regulations to serve as an AC or DC output port.
It should be noted that, in this embodiment, the traditional middle shell is split into the left cover plate 531, the front cover plate 511 and the right cover plate 521, and these three components can increase or decrease some functions according to the customer requirement or the ID requirement, but the mold cost of one set of left cover plate 531 and right cover plate 521 is increased, but these three components have simple structure, low mold manufacturing cost and short production cycle, and can be flexibly matched, and when some functions are increased or decreased, for example, one electric jack is increased or decreased, only the left cover plate 531 or the front cover plate 511 or the right cover plate 521 needs to be redesigned, so that the development cycle is shortened, the production efficiency is improved, and the production cost is reduced.
The energy storage device further comprises a plurality of first fasteners 60, the top shell 30 is further provided with a plurality of first through holes 34, the top shell 30 comprises a first shell 35 and a plurality of first studs 36 which are all arranged on the inner wall of the first shell 35 in a protruding mode, the first through holes 34 sequentially penetrate through the first shell 35 and the corresponding first studs 36, the first slot 32 and the second slot 33 are all arranged on the first shell 35, the bottom shell 40 comprises a second shell 44 and a plurality of second studs 45 which are all arranged on the inner wall of the second shell 44 in a protruding mode, the second studs 45 are provided with first threaded holes 451, the first shell 35 is abutted against the second shell 44, the first studs 36 are abutted against the corresponding second studs 45, the first fasteners 60 penetrate through the corresponding first through holes 34 and are connected with the first threaded holes 451, so that the top shell 30 is fixed on the bottom shell 40, and the third slot 42 and the fourth slot 43 are all arranged on the second shell 44.
Referring to fig. 2, 3, and 6-11, in this embodiment, the power module 20 includes a battery compartment 21, a power board 22, a plurality of lithium batteries 23, a plurality of electrode boards 24, and two conductive plates 25, the battery compartment 21 is provided with a plurality of side-by-side holding holes 211, each lithium battery 23 is correspondingly installed in each holding hole 211 to avoid collision between adjacent lithium batteries 23, each lithium battery 23 has a positive electrode head 231 and a negative electrode head 232 corresponding to the positive electrode head 231, each lithium battery 23 is connected through a corresponding electrode board 24, the number and structure of the electrode boards 24 can be set according to actual needs, the positive electrode head 231 of at least one lithium battery 23 forms a positive electrode end 233, the negative electrode head 232 of at least one other lithium battery 23 forms a negative electrode end 234, one end of each conductive plate 25 is electrically connected with the positive electrode end 233 and the negative electrode end 234, and the other end of each conductive plate 25 is electrically connected with the main controller 10 through the power board 22, so as to realize power supply of the power module 20 to the main controller 10.
In some embodiments, the plurality of lithium batteries 23 disposed laterally and side by side may be packaged into a plurality of first battery packs 235 and a plurality of second battery packs 236 respectively in at least two groups, the orientation of the lithium batteries 23 in the first battery packs 235 is opposite to the orientation of the lithium batteries 23 in the second battery packs 236, the plurality of first battery packs 235 and the plurality of second battery packs 236 are alternately disposed on the battery compartment 21, the positive electrode end 231 of each lithium battery 23 of one first battery pack 235 forms the positive electrode end 233, and the negative electrode end 232 of each lithium battery 23 of one second battery pack 236 forms the negative electrode end 234.
The power module 20 further includes a plurality of separators 26, wherein the separators 26 are mounted on the battery compartment 21, and the separators 26 cover the corresponding electrode plates 24, respectively, so as to avoid the electrode plates 24 from contacting with external metal objects.
In this embodiment, the power panel 22 includes a sub-control board 221, a positive electrode base 222 and a negative electrode base 223, the positive electrode base 222 and the negative electrode base 223 are all installed at the bottom of the sub-control board 221, the positive electrode base 222 and the negative electrode base 223 are all electrically connected with the main controller 10 through the sub-control board 221, and the two conductive sheets 25 are respectively electrically connected with the positive electrode base 222 and the negative electrode base 223, so as to realize the electrical connection between the power panel 22 and the lithium battery 23.
The power module 20 further includes two second fasteners, the positive electrode base 222 is provided with a second threaded hole 2221, the negative electrode base 223 is provided with a third threaded hole 2231, the two conductive plates 25 are respectively provided with a second through hole 251 and a third through hole 252, one of the second fasteners passes through the second through hole 251 and then is connected with the second threaded hole 2221, and the other second fastener passes through the third through hole 252 and then is connected with the third threaded hole 2231, so that the connection mode between the power panel 22 and the lithium battery 23 is improved, and the power supply stability of the energy storage device is enhanced.
The energy storage device further includes a plurality of third fasteners, the battery compartment 21 is further provided with a plurality of fourth through holes 212, the bottom shell 40 is further provided with a plurality of fourth threaded holes 46, and the third fasteners pass through the corresponding fourth through holes 212 and are connected with the fourth threaded holes 46, so that the power module 20 is stably fixed on the bottom shell 40.
The energy storage device further comprises a plurality of fourth fasteners 70, the top shell 30 is further provided with a plurality of fifth through holes 37, the top shell 30 further comprises a plurality of third studs 38 which are all arranged on the inner wall of the first shell 35 in a protruding mode, the fifth through holes 37 sequentially penetrate through the first shell 35 and the third studs 38, the bottom shell 40 further comprises a plurality of fourth studs 47 which are all arranged on the inner wall of the second shell 44 in a protruding mode, the fourth studs 47 are provided with fifth threaded holes 471, the battery compartment 21 is provided with a plurality of sixth through holes 213, and the fourth fasteners 70 sequentially penetrate through the corresponding fifth through holes 37 and the sixth through holes 213 and then are connected with the fifth threaded holes 471 so as to further fix the power supply module 20.
The battery compartment 21 comprises a top frame 214 and two connecting frames 215, the two connecting frames 215 are oppositely arranged and connected, a plurality of clamping holes 211 are formed by encircling the two connecting frames 215, the top frame 214 is arranged at the top of the two connecting frames 215, a plurality of fourth through holes 212 are respectively formed in the two connecting frames 215, a sixth through hole 213 is formed in the top frame 214, and a sub-control board 221 is positioned between the top frame 214 and the connecting frames 215.
In some embodiments, the inner wall of the first cavity 31 and the inner wall of the second cavity 41 are provided with a plurality of grid slots 311, so as to facilitate heat dissipation of the power module 20.
In some embodiments, the energy storage device further includes a handle 80, the handle 80 being mounted to the top housing 30, the handle 80 being used to lift the energy storage device.
The energy storage device has the following advantages:
1. The original middle shell is changed into three small parts of the front cover plate 511, the right cover plate 521 and the left cover plate 531, and the novel middle shell has the advantages of small size, simple structure, simple required die, short processing period and low cost.
2. After the right cover plate 521 and the left cover plate 531 are modularly designed, the appearance can be designed with different ID effects according to the requirement.
3. After the right cover plate 521 and the left cover plate 531 are modularly designed, certain functions can be added or reduced according to different national regulations and different customer requirements.
4. After the front cover plate 511 is modularly designed, the appearance can be different in appearance effect according to the ID design, the main body is unchanged, and the product model is enriched.
5. After the mold design, the color tower of the front cover plate 511, the right cover plate 521 and the left cover plate 531 can be changed according to the appearance design.
In summary, the top shell 30, the bottom shell 40, the front decoration piece 51, the first side decoration piece 52 and the second side decoration piece 53 are used to form the shell of the energy storage device, the top shell 30 and the bottom shell 40 can be set to be standard components without replacement, the front decoration piece 51, the first side decoration piece 52 and the second side decoration piece 53 can only increase or decrease certain functions according to customer requirements or ID requirements, only the front decoration piece 51 or the first side decoration piece 52 or the second side decoration piece 53 needs to be redesigned, flexible matching is achieved, the like products can be met, different national standards and different functional configurations are required to be upgraded or aimed at, the decomposed components are simple in structure, the modularized design is adopted, the manufacturing cost of the die is low, the production period is short, the development period and the design cost can be shortened, the assembly is simple, the efficiency is high, the energy storage device product can occupy the market rate conveniently, the life cycle is long, the product value is high, and the energy storage device is suitable for being widely popularized.
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, or alternatives falling within the spirit and principles of the utility model.