Modularized assembly type energy station
By designing cleaning brushes and protective mechanisms in a modular prefabricated energy station, the problem of debris accumulation affecting heat dissipation is solved, the cleaning of the top of the box and the protection of the motor is achieved, and the heat dissipation effect and the reliability of the motor are ensured.
Patent Information
- Application Number
- CN202421688646.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-17
- Publication Date
- 2025-08-05
- Estimated Expiration
- 2034-07-17
AI Technical Summary
Debris in the environment accumulates on the top of the box of the modular prefabricated energy station, affecting the heat dissipation effect.
A modular prefabricated energy station is designed, including a cleaning brush and a protective mechanism. The motor is started regularly through the PLC control switch to drive the screw to rotate, the cleaning brush moves horizontally to clean up debris, and the motor is protected by the protective mechanism to prevent it from being directly exposed to the environment.
Effectively clean the debris on the top of the box, ensure the heat dissipation effect, and extend the service life of the motor.
Smart Images

Figure CN223193904U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of energy stations, and in particular relates to a modular assembled energy station. Background Art
[0002] An energy station is a facility that realizes energy conversion, storage, distribution and management. It can convert one form of energy into another form of energy as needed to meet the different needs of users.
[0003] The power storage container is also a type of modular assembled energy station. By assembling various functional modules in a container, electric energy can be stored and released when needed, thereby providing stable power energy support. The energy storage container is flexible in design, easy to transport and deploy, and can be quickly deployed anywhere that requires energy supply without waiting for a long time of installation and construction. However, when the power storage container is in use, debris in the environment will accumulate on the top of the box. After a long period of accumulation, it is easy for the top of the box to be unable to contact the air, which will hinder the normal circulation of air and cause the top of the box to be unable to dissipate heat normally, thereby affecting the heat dissipation effect of the energy station.
[0004] Therefore, the present invention provides a modular assembled energy station to solve the above problems. Utility Model Content
[0005] The purpose of the present utility model is to provide a modular assembled energy station, which aims to solve the problem in the prior art that debris in the environment will accumulate on the top of the box, causing the debris to affect the heat dissipation of the top of the box, thereby affecting the heat dissipation effect of the energy station.
[0006] To achieve the above-mentioned purpose, the utility model provides the following technical solutions: a modular assembled energy station, comprising a box body, the top surface of the box body is connected to a vertical block, the top surface of the vertical block is connected to a cross bar, a movable groove is opened on the bottom surface of one end of the cross bar, and bearings are connected to the two end surfaces of the inner side of the movable groove, a screw is connected between the two bearings, one end of the screw extends into the cross bar and is connected to the output end of the motor, and a movable block is passed through and connected at one end of the screw, a connecting groove is opened on one side surface of the movable block, the inner surface of the connecting groove is connected to the connecting block, a butterfly bolt is passed through and connected to the surface of one end of the movable block, one end of the butterfly bolt extends into the first fixing hole opened on the surface of one end of the connecting block, and the bottom surface of the connecting block The surface is connected with a cleaning brush, and a protective mechanism is also provided on the surface of one side of the cross bar, and the protective mechanism includes: a slot, a shield, a sealing ring, a slot, a positioning block, a positioning groove, a bolt, a second fixing hole and a vent. A slot is provided on the surface of one side of the cross bar outside the motor, and the inner surface of the slot is connected to one end of the shield, and the outer surface of one end of the shield is connected to a sealing ring, one end of the sealing ring extends into the slot opened in the cross bar, and the two end surfaces of the shield are connected with positioning blocks, one end of the positioning block extends into the positioning groove opened on one side surface of the cross bar, and a bolt is connected through the surface of one side of the positioning block, and one end of the bolt extends into the second fixing hole opened in the cross bar, and a vent is provided on the bottom surface of the shield.
[0007] In order to achieve normal operation control of the motor and drive the screw to rotate, as a preferred modular assembled energy station of the present invention, the motor is electrically connected to the external power supply through a PLC control switch, and a fixed connection is formed between the output end of the motor and the screw.
[0008] In order to realize the movement of the movable block, as a preferred modular assembled energy station of the present invention, the movable block and the screw rod are threadedly connected, and the movable block is slidably connected to the cross bar through the movable groove.
[0009] In order to realize the disassembly and assembly of the cleaning brush, as a preferred modular assembled energy station of the utility model, the connecting block forms a sliding connection with the movable block through the connecting groove, and the butterfly bolt forms a threaded connection between the movable block and the first fixing hole by passing through.
[0010] In order to realize the disassembly and assembly of the shield and improve the sealing between the shield and the cross bar, as a preferred modular assembled energy station of the utility model, the shield is preferably connected to the cross bar through a slot, the sealing ring is connected to the cross bar through a snap-fit structure, the positioning block is connected to the cross bar through a positioning slot, and the bolt is connected to the second fixing hole through a threaded connection.
[0011] Compared with the prior art, the beneficial effects of the present invention are:
[0012] The utility model provides a cleaning brush, which allows the PLC control switch to start the motor at a fixed time, so that the output end of the motor drives the screw to rotate, and the movable block on the screw drives the cleaning brush connected to the bottom to move horizontally. In this way, the cleaning brush can clean the debris accumulated on the top of the box during the movement, thereby ensuring the cleanliness of the top of the box, avoiding the accumulation of debris affecting the heat dissipation of the top of the box, and ensuring that the heat dissipation effect of the energy station box will not be affected.
[0013] The utility model can shield and protect the motor by providing a protective mechanism and installing a shield, thereby preventing the motor from being directly exposed to the environment, reducing the impact of the environment on the motor, and ensuring the service life of the motor. BRIEF DESCRIPTION OF THE DRAWINGS
[0014] The accompanying drawings are used to provide a further understanding of the present invention and constitute a part of the specification. Together with the embodiments of the present invention, they are used to explain the present invention and do not constitute a limitation of the present invention. In the accompanying drawings:
[0015] Figure 1 This is a schematic diagram of the three-dimensional structure of the utility model;
[0016] Figure 2 This is a schematic diagram of the partial structure of the utility model at the upright block when viewed from above;
[0017] Figure 3 This is a schematic diagram of the partial explosion structure of the connecting block of the utility model;
[0018] Figure 4 This is a schematic diagram of the exploded structure of the local section of the slot of the utility model.
[0019] In the figure: 1. Box body; 2. Vertical block; 3. Cross bar; 4. Movable slot; 5. Bearing; 6. Screw; 7. Motor; 8. Movable block; 9. Connecting slot; 10. Connecting block; 11. Butterfly bolt; 12. First fixing hole; 13. Cleaning brush; 14. Slot; 15. Shield; 16. Sealing ring; 17. Slot; 18. Positioning block; 19. Positioning slot; 20. Bolt; 21. Second fixing hole; 22. Vent. DETAILED DESCRIPTION
[0020] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0021] See also Figure 1-Figure 4 The utility model provides the following technical solutions: a modular assembled energy station, including a box body 1, a vertical block 2 is connected to the top surface of the box body 1, a cross bar 3 is connected to the top surface of the vertical block 2, a movable groove 4 is opened on the bottom surface of one end of the cross bar 3, and bearings 5 are connected to the surfaces at both ends of the inner side of the movable groove 4. A screw 6 is connected between the two bearings 5, one end of the screw 6 extends into the cross bar 3 and is connected to the output end of the motor 7, and a movable block 8 is penetrated and connected at one end of the screw 6, a connecting groove 9 is opened on one side surface of the movable block 8, and a connecting block 10 is connected to the inner surface of the connecting groove 9. A butterfly bolt 11 is penetrated and connected to one end surface of the movable block 8, and one end of the butterfly bolt 11 extends into the first fixing hole 12 opened on the surface of one end surface of the connecting block 10, and a cleaning brush 13 is connected to the bottom surface of the connecting block 10. The surface is also provided with a protective mechanism, which includes: a slot 14, a block cover 15, a sealing ring 16, a slot 17, a positioning block 18, a positioning groove 19, a bolt 20, a second fixing hole 21 and a vent 22. A slot 14 is provided on one side surface of the cross bar 3 outside the motor 7, and the inner surface of the slot 14 is connected to one end of the block cover 15. The outer surface of one end of the block cover 15 is connected to a sealing ring 16, and one end of the sealing ring 16 extends into the slot 17 opened inside the cross bar 3. Positioning blocks 18 are connected to the surfaces of both ends of the block cover 15, and one end of the positioning block 18 extends into the positioning groove 19 opened on one side surface of the cross bar 3. A bolt 20 is connected to the surface of one side of the positioning block 18, and one end of the bolt 20 extends into the second fixing hole 21 opened inside the cross bar 3. A vent 22 is provided on the bottom surface of the block cover 15.
[0022] When it is necessary to assemble an electric energy storage container, first move the box body 1 to the designated position, and then assemble the energy storage battery module, heat dissipation module, fire protection module, intelligent control module and other modules that have been pre-assembled in the factory into the box body 1, thereby forming an electric energy storage container. The modules inside the box body 1 can store electric energy, so that when the electric energy needs to be released, the intelligent control module can efficiently and safely increase the supply of electric energy. At the same time, the intelligent control module will also monitor and regulate the operating status of the energy station in real time to ensure the stability and safety of the energy storage container energy station.
[0023] During specific use, one end of the shield 15 is slid and inserted into the slot 14. At this time, the sealing ring 16 on the shield 15 will be driven to the position of the card slot 17, so that the sealing ring 16 can be elastically engaged in the card slot 17, thereby increasing the seal between the shield 15 and the cross bar 3. At this time, the positioning block 18 on the shield 15 will also slide into the positioning slot 19, and the bolt 20 is passed through the positioning block 18 and screwed into the second fixing hole 21 to fix the position of the shield 15 on one side of the cross bar 3, so that the shield 15 can cover and protect the motor 7. A protective net is provided on the inner side of the vent 22, and the vent 22 can dissipate the heat generated by the shield 15.
[0024] Preferably, the motor 7 is electrically connected to the external power supply via a PLC control switch, and a fixed connection is formed between the output end of the motor 7 and the screw 6 .
[0025] In specific use, the PLC control switch model is a S7-200 small PLC control switch. The PLC control switch can be programmed to switch the connected equipment on and off at a fixed time, so that the PLC control switch will start the motor 7 at a fixed time, allowing the output end of the motor 7 to drive the screw 6 to rotate.
[0026] Preferably, the movable block 8 is connected to the screw rod 6 by a thread, and the movable block 8 is connected to the cross bar 3 by a sliding connection via the movable groove 4 .
[0027] During specific use, when the screw rod 6 rotates, the movable block 8 on the screw rod 6 moves along the movable groove 4 on the cross bar 3.
[0028] Preferably, the connecting block 10 is slidably connected to the movable block 8 through the connecting groove 9 , and the butterfly bolt 11 is threadedly connected to the first fixing hole 12 by passing through the movable block 8 .
[0029] During specific use, the connecting block 10 can slide in the connecting groove 9. When the connecting block 10 is slid into the connecting groove 9, the butterfly bolt 11 is passed through the movable block 8 and screwed into the first fixing hole 12 to fix the position of the connecting block 10 in the connecting groove 9.
[0030] Preferably: the shield 15 forms a sliding connection with the cross bar 3 through the slot 14, the sealing ring 16 forms a snap-fit structure with the cross bar 3 through the slot 17, the positioning block 18 forms a sliding connection with the cross bar 3 through the positioning slot 19, and the bolt 20 forms a threaded connection between the positioning block 18 and the second fixing hole 21.
[0031] During specific use, one end of the shield 15 can slide in the slot 14. When the shield 15 is slid and inserted into the slot 14, the sealing ring 16 can be driven to move to the position of the card slot 17, so that the sealing ring 16 is engaged in the card slot 17. At the same time, it will also drive the positioning block 18 to slide into the positioning slot 19. The bolt 20 is passed through the positioning block 18 and screwed into the second fixing hole 21 to fix the position of the positioning block 18 in the positioning slot 19.
[0032] Working implementation principle: When using the modular assembled energy station, by programming the PLC control switch, the PLC control switch can start the motor 7 at a fixed time, so that the output end of the motor 7 drives the screw 6 to rotate in the bearing 5, so that the movable block 8 on the screw 6 will slide along the movable groove 4, and when the movable block 8 is moving, it will drive the cleaning brush 13 connected at the bottom end to run horizontally, so that the cleaning brush 13 will clean the debris accumulated on the top surface of the box 1 during the movement, so that the debris on the top of the box 1 will be swept down, thereby ensuring the cleanliness of the top surface of the box 1 and avoiding the accumulation of debris affecting the heat dissipation of the top surface of the box 1. When the cleaning brush 13 needs maintenance, just twist the butterfly bolt 11 to separate one end of the butterfly bolt 11 from the second By inserting the fixing hole 12 into the fixing hole 12, the connecting block 10 can be separated from the connecting groove 9, so that the cleaning brush 13 can be removed, and the operator can maintain the cleaning brush 13. Secondly, one end of the shield 15 is slid and inserted into the slot 14. At this time, the sealing ring 16 on the shield 15 will be driven to the position of the card slot 17, so that the sealing ring 16 can be elastically engaged in the card slot 17, thereby increasing the seal between the shield 15 and the cross bar 3. At this time, the positioning block 18 on the shield 15 will also slide into the positioning groove 19, and the bolt 20 is used to penetrate the positioning block 18 and screw it into the second fixing hole 21, so that the position of the shield 15 can be fixed on one side of the cross bar 3, so that the shield 15 can cover and protect the motor 7, prevent the motor 7 from being directly exposed to the environment, weaken the impact of the environment on the motor 7, and ensure the service life of the motor 7.
[0033] Finally, it should be noted that the above description is merely a preferred embodiment of the present invention and is not intended to limit the present invention. Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art will be able to modify the technical solutions described in the aforementioned embodiments or replace some of the technical features therein with equivalents. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principles of the present invention shall be included within the scope of protection of the present invention.
Claims
1. A modular assembled energy station, comprising a box (1), characterized in that: The top surface of the box body (1) is connected to a vertical block (2), the top surface of the vertical block (2) is connected to a horizontal bar (3), a movable groove (4) is provided on the bottom surface at one end of the horizontal bar (3), bearings (5) are connected to the inner surfaces of the two ends of the movable groove (4), a screw rod (6) is connected between the two bearings (5), one end of the screw rod (6) extends into the horizontal bar (3) and is connected to the output end of the motor (7), and a movable block (8) is connected through one end of the screw rod (6). A connecting groove (9) is provided on one side surface of the movable block (8), and a connecting block (10) is connected to the inner side surface of the connecting groove (9). A butterfly bolt (11) is connected through one end surface of the movable block (8), and one end of the butterfly bolt (11) extends into a first fixing hole (12) provided on one end surface of the connecting block (10). A cleaning brush (13) is connected to the bottom surface of the connecting block (10). A protective mechanism is also provided on one side surface of the cross bar (3), and the protective mechanism includes: A slot (14), a shield (15), a sealing ring (16), a slot (17), a positioning block (18), a positioning slot (19), a bolt (20), a second fixing hole (21) and a vent (22), wherein a slot (14) is provided on one side surface of the cross bar (3) outside the motor (7), an inner surface of the slot (14) is connected to one end of the shield (15), an outer surface of one end of the shield (15) is connected to a sealing ring (16), and one end of the sealing ring (16) is provided. The shield (15) extends into a slot (17) provided inside the cross bar (3); positioning blocks (18) are connected to the surfaces of both ends of the shield (15); one end of the positioning block (18) extends into a positioning slot (19) provided on one side surface of the cross bar (3); a bolt (20) is passed through the surface of one side of the positioning block (18); one end of the bolt (20) extends into a second fixing hole (21) provided inside the cross bar (3); and a vent (22) is provided on the bottom surface of the shield (15).
2. A modular assembled energy station according to claim 1, characterized in that: The motor (7) is electrically connected to an external power supply via a PLC control switch, and a fixed connection is formed between the output end of the motor (7) and the screw (6).
3. The modular assembled energy station according to claim 1, characterized in that: The movable block (8) is in threaded connection with the screw rod (6), and the movable block (8) is in sliding connection with the cross bar (3) via the movable groove (4).
4. The modular assembled energy station according to claim 1, characterized in that: The connecting block (10) forms a sliding connection with the movable block (8) through the connecting groove (9), and the butterfly bolt (11) forms a threaded connection with the first fixing hole (12) by passing through the movable block (8).
5. The modular assembled energy station according to claim 1, characterized in that: The shield (15) is connected to the cross bar (3) in a sliding manner through the slot (14); the sealing ring (16) is connected to the cross bar (3) in a snap-fitting manner through the slot (17); the positioning block (18) is connected to the cross bar (3) in a sliding manner through the positioning slot (19); and the bolt (20) is connected to the second fixing hole (21) in a threaded manner through the positioning block (18).