Frame circuit breaker fast assembly module and energy storage container
By separating the busbar section into a quick-installation module for the frame circuit breaker, the structure of the energy storage container is simplified, the amount of copper busbars used is reduced, convenient installation and maintenance are achieved, and the space occupied is reduced.
Patent Information
- Application Number
- CN202520189947.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-06
- Publication Date
- 2026-02-27
- Estimated Expiration
- 2035-02-06
AI Technical Summary
In existing energy storage containers, the manifold and control components are designed in one cabinet, which is complex in structure, costly, difficult to install, occupies a lot of space, and is difficult to maintain.
The busbar section is separated into a frame circuit breaker quick-installation module, including a frame and a panel, which integrates functional devices such as circuit breakers, fuses, and copper busbars. It adopts a quick-installation structure to connect with the energy storage container, simplifying the structure and making flexible use of space.
The structure of the energy storage container has been simplified, the amount of copper busbars used has been reduced, installation and maintenance are convenient, space occupancy has been reduced, and space utilization has been improved.
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Figure CN223957079U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application belongs to the technical field of energy storage, and particularly relates to a frame circuit breaker quick-mounting module and an energy storage container. BACKGROUND
[0002] The energy storage container comprises a plurality of modules, wherein the DC busbar module is a wiring module for ensuring the orderly connection and busbar function of photovoltaic modules in a photovoltaic power generation system, and the module can protect the circuit when the photovoltaic system is maintained and inspected. In the related art, at the current stage, most container energy storage companies design the busbar part and the control part in one cabinet. The structure of the cabinet in which the busbar part and the control part are designed is complex, the material is much and the cost is high. When the cabinet is installed and fixed, a large operation space is required and the installation is difficult because other components or their installation and fixing structures need to be avoided. The occupied space is too large due to the reserved operation space for installation, which is not conducive to the effective use of space and makes the maintenance difficult. CONTENT OF THE UTILITY MODEL
[0003] The application aims to provide a frame circuit breaker quick-mounting module and an energy storage container. The busbar part is separately split out, which simplifies the structure and flexibly utilizes the internal space of the container. The busbar part can be separately disassembled during the later maintenance, the entire control busbar part does not need to be disassembled, and the use amount of copper bars is saved.
[0004] The application provides a frame circuit breaker quick-mounting module, which comprises a frame and a panel. The frame is integrated with a circuit breaker, a fuse, a copper bar, an insulator and other functional devices. The panel is arranged around the frame and the functional devices.
[0005] The frame comprises a longitudinal beam, a bottom beam and a cross beam. The bottom beam is located at the lower end of the longitudinal beam, and the cross beam is located at the middle of the longitudinal beam.
[0006] The panel comprises an insulating top plate, a breathable partition plate, a back insulating partition plate and a front panel. The insulating top plate is arranged on the top surface of the frame. The back insulating partition plate and the front panel are arranged on opposite sides. The breathable partition plate is arranged on the side surface adjacent to the back insulating partition plate and the front panel.
[0007] A copper bar support seat mounting plate is arranged on the bottom beam. A PCS wiring copper bar, a first high-voltage box wiring copper bar and a second high-voltage box wiring copper bar are arranged on the copper bar support seat mounting plate.
[0008] The circuit breaker and the fuse are arranged on the cross beam. The circuit breaker is connected with the PCS wiring copper bar through a first connecting copper bar. The circuit breaker is connected with the fuse through a second connecting copper bar. The circuit breaker is connected with the second high-voltage box wiring copper bar. The fuse is connected with the first high-voltage box wiring copper bar.
[0009] The bottom beam is also provided with a quick mounting structure, and the frame circuit breaker quick mounting module is detachably connected with the energy storage container through the quick mounting structure.
[0010] In some embodiments, the bottom beam is provided with a first middle beam, the front side of the first middle beam is provided with a first copper bar support seat mounting plate, the first copper bar support seat mounting plate is provided with a first copper bar support seat, the PCS wiring copper bar is arranged on the first copper bar support seat, the rear side of the first middle beam is provided with a second copper bar support seat mounting plate, the second copper bar support seat mounting plate is provided with a second copper bar support seat and a third copper bar support seat, the second copper bar support seat is provided with a first high-voltage box wiring copper bar, and the third copper bar support seat is provided with a second high-voltage box wiring copper bar.
[0011] In some embodiments, the first high-voltage box wiring copper bar is located on the left side of the first copper bar, and the second high-voltage box wiring copper bar is located on the right side of the first copper bar.
[0012] In some embodiments, cable fixing plates and copper bar partition limiters are also arranged at intervals between the first copper bar support seat mounting plate and the second copper bar support seat mounting plate, the copper bar partition limiters are installed with copper bar partitions, and the copper bar partitions are used for spacing the PCS wiring copper bar, the first high-voltage box wiring copper bar and the second high-voltage box wiring copper bar.
[0013] In some embodiments, the copper bar partition limiters are arranged in pairs, one of each pair of copper bar partition limiters is arranged on the rear side of the first copper bar support seat mounting plate, and the other is arranged on the front side of the second copper bar support seat mounting plate, the copper bar partition limiters are provided with clamping grooves, and the copper bar partitions are inserted into the clamping grooves.
[0014] In some embodiments, the first copper bar support seats are arranged in pairs, one of each pair of first copper bar support seats is arranged on the first copper bar support seat mounting plate, and the other is arranged on the second copper bar support seat mounting plate, and one PCS wiring copper bar is installed on each pair of first copper bar support seat groups, so that the PCS wiring copper bar extends on the first copper bar support seat group.
[0015] In some embodiments, a circuit breaker fixing plate is arranged on the front side of the second middle beam, and the circuit breaker is fixed on the circuit breaker fixing plate, so that the circuit breaker is eccentrically arranged in the frame.
[0016] In some embodiments, insulating bakelite is arranged on the second middle beam, and insulating sub is arranged on the first high-voltage box wiring copper bar.
[0017] In some embodiments, the quick mounting structure comprises a rectangular notch arranged on the rear side of the bottom beam and a fixing plate installed on the front end face of the bottom beam, the fixing plate is provided with a bottom beam fixing hole, and the rectangular notch and the fixing plate are used for limiting and detachably connecting with the mounting guide rail on the energy storage container.
[0018] The application also provides an energy storage container, which is internally provided with a cabin, the cabin is divided into chambers by a bracket, and functional modules are placed in the chambers, the functional modules include the frame circuit breaker quick mounting module, and the chamber in which the frame circuit breaker quick mounting module is placed is provided with a mounting guide rail, the mounting guide rail includes a horizontal limiting piece, a vertical limiting piece, a rear limiting piece and a mounting fixing hole, when the frame circuit breaker quick mounting module is mounted, the horizontal limiting piece elastically abuts against the side surface of the bottom beam, the vertical limiting piece is clamped with the rectangular notch on the bottom beam, so that the displacement of the bottom beam in the longitudinal direction is limited, the rear limiting piece limits the displacement of the bottom beam in the front-rear direction, and the mounting fixing hole is connected with the bottom beam fixing hole on the fixing plate through a screw.
[0019] The application can achieve the following beneficial effects:
[0020] 1. The frame circuit breaker, copper bar and fuse, which are hard connection components, are integrated in the quick mounting module, so that the components are not limited by space during assembly, and installation and maintenance are facilitated.
[0021] 2. In the structure, the copper bar is directly connected with the functional device, so that the extension copper bar of the circuit breaker and the extension copper bar of the high-voltage box are omitted, and the circuit breaker is eccentrically mounted, so that the copper bar is not bent in a large amount, and the use amount of the copper bar is greatly reduced.
[0022] 3. The copper bar partition plate is arranged between the copper bars, so that the safe gap between the copper bars is ensured without reducing the space occupancy ratio, the internal space of the frame circuit breaker module is more compact, and the occupancy space of the entire module in the energy storage container is reduced. BRIEF DESCRIPTION OF DRAWINGS
[0023] Figure 1 is a frame circuit breaker quick mounting module structure schematic view provided by the utility model;
[0024] Figure 2 is a frame circuit breaker quick mounting module structure explosion view provided by the utility model;
[0025] Figure 3 is a frame structure schematic view of a frame circuit breaker quick mounting module provided by the utility model;
[0026] Figure 4 is an internal structure schematic view of a frame circuit breaker quick mounting module provided by the utility model;
[0027] Figure 5 is a front view of a frame circuit breaker quick mounting module provided by the utility model;
[0028] Figure 6 is a mounting guide rail structure schematic view of an energy storage container provided by the utility model;
[0029] Figure 7 is a mounting structure schematic view of a frame circuit breaker quick mounting module and a mounting guide rail provided by the utility model;
[0030] Figure 8 is a storage energy container structure schematic view provided by the utility model;
[0031] Figure 9 is an internal mounting structure schematic view of a storage energy container provided by the utility model;
[0032] In order to more clearly illustrate the technical scheme of the embodiments of the present application, the following will briefly introduce the drawings needed to be used in the embodiments, and it should be understood that the following drawings only show some embodiments of the present application, and therefore should not be regarded as a limitation to the scope, and for those skilled in the art, other related drawings can also be obtained without creative labor on the premise.
[0033] Mark explanation: 1-circuit breaker quick mounting module, 12-frame, 121-bottom beam, 1211-first middle beam, 122-longitudinal beam, 123-cross beam, 1231-second middle beam, 124-first copper bar support seat mounting plate, 125-second copper bar support seat mounting plate, 126-copper bar partition plate, 1261-copper bar partition plate limiting piece, 1262-clamping groove, 127-cable fixing plate, 1271-cable fixing groove, 128-circuit breaker fixing plate, 129-bottom beam fixing plate, 1291-bottom beam fixing hole, 1292-rectangular notch; 131-ventilation partition plate, 132-front panel, 133-insulating top plate, 134-back insulating partition plate, 135-circuit breaker window; 14-circuit breaker; 15-fuse; 161-PCS wiring copper bar, 162-first high-voltage box wiring copper bar, 163-second high-voltage box wiring copper bar, 164-first connecting copper bar, 165-second connecting copper bar, 166-short-circuit copper bar, 168-first copper bar support seat, 169-second copper bar support seat, 170-third copper bar support seat; 17-insulator, 18-insulating bakelite; 2-storage energy container; 21-cabin body, 22-carrier; 3-power module; 4-control module; 5-thunder protection module; 6-firefighting module; 7-liquid cooling host; 8-mounting guide rail, 81-horizontal limiting piece, 82-vertical limiting piece, 83-rear limiting piece, 84-mounting fixing hole. DETAILED DESCRIPTION
[0034] In order to more clearly understand the above-mentioned purposes, features and advantages of the utility model, the following will make a detailed description of the utility model by combining with the drawings and specific embodiments. It should be noted that the embodiments of the present application and the features in the embodiments can be combined with each other without conflict.
[0035] Numerous specific details are set forth in the following description to provide a full understanding of the present invention. The described embodiments are merely some, not all, of the embodiments of the present invention. All other embodiments obtained by those skilled in the art based on the embodiments of the present invention without inventive effort are within the scope of protection of the present invention.
[0036] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention pertains. The terminology used herein is for the purpose of describing particular embodiments only and is not intended to be limiting of the invention.
[0037] In this document, the term "embodiment" means that a particular feature, structure, or characteristic described in connection with an embodiment may be included in at least one embodiment of this application. The appearance of this phrase in various places throughout the specification does not necessarily refer to the same embodiment, nor is it a separate or alternative embodiment mutually exclusive with other embodiments. It will be explicitly and implicitly understood by those skilled in the art that the embodiments described herein can be combined with other embodiments.
[0038] This embodiment provides a quick-install module 1 for a frame circuit breaker, including a frame 12 and a panel, as well as functional components located inside the frame 12 and the panel. The frame 12 and the panel form a hexahedron. The functional components include a circuit breaker 14, a fuse 15, several copper busbars, and insulators 17, etc. Figures 1-2 As shown.
[0039] The frame 12 includes a bottom beam 121, longitudinal beams 122, and transverse beams 123. The bottom beam 121 is located at the bottom of the frame 12. The longitudinal beams 122 are vertically erected at diagonal points of the bottom beam 121. The transverse beams 123 are located at the middle of the longitudinal beams 122 and are horizontally arranged. The plane of the transverse beams 123 is parallel to the plane of the bottom beams 121. Furthermore, the bottom beam 121 also includes a first middle beam 1211, and the transverse beams 123 also include a second middle beam 1231. The first middle beam 1211 and the second middle beam 1231 are parallel to each other, located on the same vertical plane, and both are parallel to the front panel 132. Figure 3 As shown.
[0040] The panel is made of acrylic material, which has good insulation performance. The panel includes an insulating top plate 133, a breathable partition plate 131, a back insulating partition plate 134, and a front panel 132. The insulating top plate 133 is arranged on the top surface of the frame 12. The back insulating partition plate 134 and the front panel 132 are arranged on opposite sides. The front panel 132 is arranged in front of the frame 12. The front panel 132 is provided with a plurality of air holes on the lower side and a circuit breaker window 135 on the upper side. The breathable partition plate 131 is arranged on the side adjacent to the back insulating partition plate 134 and the front panel 132. The breathable partition plate 131 is provided with a plurality of air holes. The air holes on the front panel 132 and the breathable partition plate 131 can prevent accidental contact when operating other components while ensuring heat dissipation of the copper bar. In some embodiments, the breathable partition plate 131 is only arranged around the longitudinal beam 122 at the lower part of the cross beam 123.
[0041] A first copper bar support seat mounting plate 124 is arranged on the front side of the first middle beam 1211, and a second copper bar support seat mounting plate 125 is arranged on the rear side of the first middle beam 1211. A cable fixing plate 127 and a copper bar partition limiting piece 1261 are arranged between the first copper bar support seat mounting plate 124 and the second copper bar support seat mounting plate 125. The cable fixing plate 127 is provided with a plurality of cable fixing grooves 1271 on the upper and lower edges. The cable fixing grooves 1271 are used to fix the cable and facilitate the route management of the cable, avoiding cable clutter and improving space utilization. The copper bar partition limiting piece 1261 is arranged in pairs. One of each pair of copper bar partition limiting pieces 1261 is arranged on the rear side of the first copper bar support seat mounting plate 124, and the other is arranged on the front side of the second copper bar support seat mounting plate 125. The copper bar partition limiting piece 1261 is provided with a clamping groove 1262. The copper bar partition 126 is inserted into the clamping groove 1262 for clamping and fixing. Preferably, the copper bar partition limiting piece 1261 is fixed to the first copper bar support seat mounting plate 124 and the second copper bar support seat mounting plate 125 by welding. By arranging the copper bar partition 126, the safety gap between the copper bars can be ensured while reducing the distance between the copper bars. Therefore, the internal space of the circuit breaker 14 module can be further compacted, as shown in Figure 2
[0042] Two groups of first copper bar support seats 168 are arranged in pairs on the first copper bar support seat mounting plate 124 and the second copper bar support seat mounting plate 125. One of each pair of first copper bar support seats 168 is arranged on the first copper bar support seat mounting plate 124, and the other is arranged on the second copper bar support seat mounting plate 125. One PCS wiring copper bar 161 is installed on each group of first copper bar support seats 168, so that the PCS wiring copper bar 161 extends on the first copper bar support seat 168. The PCS wiring copper bar 161 is connected to the PCS, as shown in Figures 4-5
[0043] The second copper bar support seat installation plate 125 is further provided with a second copper bar support seat 169, and the first high-voltage box wiring copper bar 162 is installed on the second copper bar support seat 169 and located on the left side of the PCS wiring copper bar 161. The second copper bar support seat installation plate 125 is further provided with a third copper bar support seat 170, and the second high-voltage box wiring copper bar 163 is installed on the third copper bar support seat 170 and located on the right side of the PCS wiring copper bar 161. The PCS wiring copper bar 161, the first high-voltage box wiring copper bar 162 and the second high-voltage box wiring copper bar 163 are spaced by a copper bar partition plate 126. The first high-voltage box wiring copper bar 162 and the second high-voltage box wiring copper bar 163 are connected with the high-voltage box output end.
[0044] Further, the first copper bar support seat 168, the second copper bar support seat 169 and the third copper bar support seat 170 are insulating blocks, which play a safe isolation and insulation role.
[0045] The circuit breaker 14 is fixed on the circuit breaker fixing plate 128, and the output end of the circuit breaker 14 is provided with a short copper bar 166 for short-circuiting two phases in the circuit breaker 14. The circuit breaker 14 is connected with the second high-voltage box wiring copper bar 163 through the short copper bar 166 and directly connected with the high-voltage box through the second high-voltage box wiring copper bar 163, thereby eliminating the connection horizontal row from the high-voltage box to the circuit breaker 14. The circuit breaker 14 is further connected with the first connection copper bar 164 through a bolt, the first connection copper bar 164 extends downward and is connected with the PCS wiring copper bar 161, and the circuit breaker 14 is connected with the fuse 15 through the second connection copper bar 165. In the prior art, the circuit breaker 14 is connected to the PCS by first extending the terminal of the circuit breaker 14 with a copper bar and then connecting the first connection copper bar 164 to the PCS wiring copper bar 161. Such a structure is complex, the amount of copper bar used is large, and it is not conducive to controlling the electrical clearance of the copper bar. In the present application, the extended copper bar is deleted, and the first connection copper bar 164 is directly connected to the PCS wiring copper bar 161, thereby reducing the amount of copper bar used and effectively increasing the electrical clearance between the copper bars by virtue of the front and rear position difference of the second high-voltage box wiring copper bar 163.
[0046] In the embodiment, the second middle beam 1231 is provided with an insulating bakelite 18, which plays an insulation role and is also used for controlling the safety clearance between the copper bar and the frame 12.
[0047] The horizontal beam 123 is further provided with the fuse 15, the fuse 15 is connected with the high-voltage box through the first high-voltage box wiring copper bar 162, and the insulator 17 is further provided on the first high-voltage box wiring copper bar 162, which plays an insulation role and controls the safety clearance between the copper bar and the frame 12.
[0048] The distances between the first central beam 1211 and the second central beam 1231 and the front panel 132 are less than the distances between the first central beam 1211 and the second central beam 1231 and the back insulating partition 134. Therefore, the circuit breaker is located on the side closer to the front panel 132. Compared to the traditional method of center-mounting circuit breakers, which requires bending multiple copper busbars to ensure electrical clearance between copper busbars of different polarities, the eccentric mounting of the circuit breaker effectively controls the electrical clearance of the copper busbars while reducing the number of bending operations, thus effectively reducing the amount of copper busbars used.
[0049] The bottom beam 121 is also equipped with a quick-installation structure, which is symmetrically arranged on both sides of the bottom beam 121. The quick-installation module 1 of the frame circuit breaker is detachably connected to the energy storage container 2 through the quick-installation structure. The quick-installation structure includes a rectangular notch 1292 on the rear side of the bottom beam 121 and a bottom beam fixing plate 129 installed on the front side of the bottom beam 121. The bottom beam fixing plate 129 is provided with bottom beam fixing holes 1291. The rectangular notch 1292 and the bottom beam fixing plate 129 are used to limit and detach the connection with the mounting guide rail 8 on the energy storage container 2.
[0050] The mounting rails 8 on the energy storage container 2 include horizontal limiting components 81, vertical limiting components 82, rear limiting components 83, and mounting holes 84, such as... Figures 6-7 As shown. When the quick-installation module 1 of the frame circuit breaker is installed, the horizontal limiting member 81 elastically abuts against the side of the bottom beam 121, and the vertical limiting member 82 engages with the rectangular notch 1292 on the bottom beam 121, thereby limiting the longitudinal displacement of the bottom beam 121. The rear limiting member 83 limits the front-to-back displacement of the bottom beam 121. The mounting fixing hole 84 is connected to the bottom beam fixing hole 1291 on the bottom beam fixing plate 129 by screws.
[0051] This application also provides an energy storage container 2, which has an internal compartment 21. The compartment 21 is divided into chambers by brackets 22, and the chambers are used to house functional modules, such as... Figure 8 As shown. To ensure sufficient space within the chamber to accommodate the functional modules, the mounting position of the bracket 22 along the height of the cabin 21 can be adjusted according to the height of the functional modules. The functional modules include the aforementioned quick-installation frame circuit breaker module 1, as well as a power supply module 3, a control module 4, a lightning protection module 5, the aforementioned quick-installation frame circuit breaker module 1, a fire protection module 6, and a liquid-cooled main unit 7.
[0052] This application uses three brackets 22 to divide the cabin 21 into four chambers along its height, from top to bottom: the first chamber, the second chamber, the third chamber, and the fourth chamber. The first chamber houses the power module 3, the second chamber houses the control module 4, the third chamber houses the lightning protection module 5, and the fourth chamber houses the frame circuit breaker quick-installation module 1 and the fire protection module 6. Figure 9 As shown.
[0053] The fourth chamber is provided with a mounting rail 8, when mounting, the bottom beam 121 of the frame circuit breaker quick mounting module 1 is inserted into the mounting rail 8, and is fixed through bolts passing through the bottom beam fixing hole 1291 of the bottom beam 121 and the mounting fixing hole 84 on the mounting rail 8 at the same time.
[0054] The circuit breaker 14, the fuse 15 and the copper bus bar are integrated in the frame 12, and the frame circuit breaker quick mounting module 1 is detachably connected with the energy storage container 2 through the quick mounting structure, so that the frame circuit breaker quick mounting module 1 is not limited by space when being assembled, and is convenient to install and maintain. Through reasonable layout of the positions of the circuit breakers, a large amount of bending of the copper bus bar is avoided, so that the use amount of the copper bus bar is greatly reduced. The copper bus bar is provided with a copper bus bar partition plate 126, so that the safety gap between the copper bus bars is ensured without reducing the space occupancy, the internal space of the circuit breaker 14 module is more compact, and the occupancy space of the whole module in the energy storage container 2 is reduced.
[0055] The above describes the embodiments of the present application in detail, and the principles and implementation modes of the present application are described by applying specific examples, and the above embodiment descriptions are only used to help understand the method of the present application and the core idea thereof.
[0056] It is obvious for those skilled in the art that the present application is not limited to the details of the above exemplary embodiments, and the present application can be realized in other specific forms without departing from the spirit or essential characteristics of the present application. Therefore, the embodiments should be regarded as exemplary and non-limiting, and the scope of the present application is defined by the appended claims rather than the above description, and all changes falling within the meaning and scope of the equivalent elements of the claims are intended to be included in the present application. Any reference signs in the claims should not be regarded as limiting the claims. In addition, it is obvious that the word "comprising" does not exclude other units or steps, and the singular does not exclude the plural. The plurality of units or devices stated in the system claims can also be realized by one unit or device through software or hardware. The words "first", "second" and the like are used to indicate names, and do not indicate any specific order.
[0057] Meanwhile, for those skilled in the art, according to the idea of the present application, the specific implementation modes and application ranges will be changed, and according to the above, the content of the present description should not be understood as limiting the present application.
Claims
1. A frame circuit breaker quick-mount module, characterized by, The frame is integrated with a circuit breaker, a fuse, a copper bar, an insulator and other functional devices, and the panel is arranged around the frame and the functional devices. The frame comprises longitudinal beams, a bottom beam and cross beams, the bottom beam is located at the lower end of the longitudinal beams, and the cross beams are located at the middle of the longitudinal beams. The panel comprises an insulating top plate, a breathable partition plate, a back insulating partition plate and a front panel, the insulating top plate is arranged on the top surface of the frame, the back insulating partition plate and the front panel are arranged on opposite sides, and the breathable partition plate is arranged on the side surface adjacent to the back insulating partition plate and the front panel. The bottom beam is provided with a copper bar support seat mounting plate, and the PCS wiring copper bar, the first high-voltage box wiring copper bar and the second high-voltage box wiring copper bar are arranged on the copper bar support seat mounting plate. The circuit breaker and the fuse are arranged on the cross beams, the circuit breaker is connected with the PCS wiring copper bar through a first connecting copper bar, the circuit breaker is connected with the fuse through a second connecting copper bar, the circuit breaker is connected with the second high-voltage box wiring copper bar, and the fuse is connected with the first high-voltage box wiring copper bar. The bottom beam is also provided with a quick mounting structure, and the frame circuit breaker quick mounting module is detachably connected with the energy storage container through the quick mounting structure.
2. The frame circuit breaker quick-fit module as claimed in claim 1, characterized in that The bottom beam is provided with a first middle beam, the first copper bar support seat mounting plate is arranged on the front side of the first middle beam, the first copper bar support seat is arranged on the first copper bar support seat mounting plate, the PCS wiring copper bar is arranged on the first copper bar support seat, the second copper bar support seat mounting plate is arranged on the rear side of the first middle beam, the second copper bar support seat and the third copper bar support seat are arranged on the second copper bar support seat mounting plate, the second copper bar support seat is provided with the first high-voltage box wiring copper bar, and the third copper bar support seat is provided with the second high-voltage box wiring copper bar.
3. The frame circuit breaker quick-fit module according to claim 2, characterized in that The first high-voltage box wiring copper bar is located on the left side of the first copper bar, and the second high-voltage box wiring copper bar is located on the right side of the first copper bar.
4. The frame circuit breaker quick-fit module of claim 3, wherein, The cable fixing plate and the copper bar partition plate limiting piece are also arranged at intervals between the first copper bar support seat mounting plate and the second copper bar support seat mounting plate, the copper bar partition plate limiting piece is provided with the copper bar partition plate, and the copper bar partition plate is used for spacing the PCS wiring copper bar, the first high-voltage box wiring copper bar and the second high-voltage box wiring copper bar.
5. The frame circuit breaker quick-fit module of claim 4, wherein, The copper bar partition plate limiting pieces are arranged in pairs, one of each pair of copper bar partition plate limiting pieces is arranged on the rear side of the first copper bar support seat mounting plate, and the other is arranged on the front side of the second copper bar support seat mounting plate, the copper bar partition plate limiting piece is provided with a clamping groove, and the copper bar partition plate is inserted into the clamping groove.
6. The frame circuit breaker quick-fit module as claimed in claim 2, wherein, The first copper bar support seats are arranged in pairs, one of each pair of first copper bar support seats is arranged on the first copper bar support seat mounting plate, and the other is arranged on the second copper bar support seat mounting plate, one PCS wiring copper bar is arranged on each pair of first copper bar support seat groups, so that the PCS wiring copper bar extends on the first copper bar support seat group.
7. The frame circuit breaker quick-fit module as claimed in claim 1, wherein, The circuit breaker fixing plate is arranged on the front side of the second middle beam, and the circuit breaker is fixed on the circuit breaker fixing plate, so that the circuit breaker is eccentrically arranged in the frame.
8. The frame circuit breaker quick-fit module as claimed in claim 1, wherein, The insulating bakelite is arranged on the second middle beam, and the insulator is arranged on the first high-voltage box wiring copper bar.
9. The frame circuit breaker quick-fit module as claimed in claim 1, wherein, The quick mounting structure comprises a rectangular gap arranged at the rear side of the bottom beam and a fixing plate arranged on the front end surface of the bottom beam, and the fixing plate is provided with a bottom beam fixing hole; the rectangular gap and the fixing plate are used for limiting and detachably connecting with the mounting guide rail on the energy storage container.
10. An energy storage container, internally provided with a cabin, the cabin is separated into a chamber by a bracket, a functional module is placed in the chamber, the functional module comprises the frame circuit breaker quick mounting module according to any one of claims 1-9, and the chamber in which the frame circuit breaker quick mounting module is placed is provided with a mounting guide rail, the mounting guide rail comprises a horizontal limiting piece, a vertical limiting piece, a rear limiting piece and a mounting fixing hole; when the frame circuit breaker quick mounting module is mounted, the horizontal limiting piece elastically abuts against the side surface of the bottom beam, the vertical limiting piece is clamped with the rectangular gap on the bottom beam, so as to limit the displacement of the bottom beam in the longitudinal direction, the rear limiting piece limits the displacement of the bottom beam in the front-rear direction, and the mounting fixing hole is connected with the bottom beam fixing hole on the fixing plate through a screw.