A modular power supply station

Through the modularly designed power supply station, the structure of detachable hinges and hoisting rings is used to solve the problem of inconvenience in disassembly and assembly of existing power supply stations, and the rapid disassembly and installation are achieved, which meets the site's mobility needs, and maintains stability and load-bearing capacity.

CN115057329BActive Publication Date: 2025-08-08JINMAO INTELLIGENT TRANSPORTATION TECH CO LTD
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Patent Information

Application Number
CN202210642188.4
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-06-08
Publication Date
2025-08-08
Estimated Expiration
2042-06-08

AI Technical Summary

Technical Problem

Existing power supply stations generally use permanent or semi-permanent buildings, which cannot meet the needs of periodic movement of the site and is inconvenient to disassemble and assembly.

Method used

It adopts a modular design, including side units, top units, reinforcement ribs and support frames. It is connected by removable hinges and suspended rings to form a detachable structure to achieve rapid disassembly and assembly.

Benefits of technology

It realizes rapid and fixed-point disassembly and installation of the power supply station, meets the needs of periodic movement of the site, and has good stability and load-bearing capacity.

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Abstract

The present invention discloses a modular power supply station, which relates to the field of new energy technology. The supply station includes a side unit, a side unit, a top unit, a first reinforcing rib and a support frame that are detachably connected to the infrastructure. A detachable hinge is formed between the side unit and the side unit to facilitate positioning of the side unit during installation. The first reinforcing rib is detachably connected to the side unit and the side unit, respectively, to fix the side unit and the side unit. The top unit is detachably connected to the side unit, and every two top units are installed relative to each other and form a detachable hinge. A detachable hinge and a stable triangular structure are formed between each support frame and every two relatively installed top units. Lifting rings are respectively provided on the side unit and the top unit for lifting different units. The present invention modularizes the power supply station, which can be quickly disassembled and installed at a fixed point. While meeting the periodic movement requirements of the site, it also has good stability and load-bearing capacity.
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Description

Technical Field

[0001] The present invention relates to the field of new energy technology, and in particular to a modular power supply station. Background Art

[0002] With the increasing development of new energy technologies and the introduction of guiding policies, electric vehicles have been continuously promoted and popularized, and the number of power supply stations has also increased dramatically. The charging or battery replacement of electric vehicles is the guarantee for the driving of electric vehicles.

[0003] Existing power supply stations generally use permanent or semi-permanent structures, such as those constructed using a foundation and reinforced concrete, brick, or wood. While these structures provide the required load-bearing capacity and stability, they are difficult to install and dismantle, making them inconvenient for periodic station relocation. Summary of the Invention

[0004] In view of the above problems, the present invention is proposed to provide a modular power supply station that overcomes the above problems or at least partially solves the above problems.

[0005] The present invention provides a modular power supply station, comprising:

[0006] A plurality of walkway units, each walkway unit being connected to the infrastructure and comprising a plurality of first hinged members arranged in a horizontal direction;

[0007] A plurality of side units, each two of which are detachably connected to form four sides of the supply station, each of which includes a plurality of second hinges and a lifting ring located on the outside of the side unit for lifting the unit, the first hinge and the second hinge forming a detachable hinge to enable the side unit to be flipped along the walkway unit;

[0008] a plurality of first reinforcing ribs, detachably connected to the walkway unit and the side unit, respectively, so as to fix the walkway unit and the side unit;

[0009] A plurality of top units forming the top of the supply station, wherein one side end of each top unit is detachably connected to the side unit, and at least one third hinge is provided on each of the other three side ends. Every two top units are installed opposite each other and detachably hinged by the third hinge, wherein the lifting ring is also provided on the outer side of each top unit;

[0010] A plurality of support frames are provided, each support frame is arranged below the top unit and includes four fourth hinges arranged at the vertices, and the third hinge and the fourth hinge form a detachable hinge to form a triangular structure between each support frame and every two oppositely installed top units.

[0011] Optionally, the walkway unit includes two long beams and a plurality of width beams fixed at equal intervals between the two long beams;

[0012] Multiple first hinges are arranged at equal intervals on the long beam, a connecting pad is provided at the top end of the wide beam, the connecting pad is connected to the first reinforcement rib, and a connecting bottom plate is provided at the bottom end of the long beam and / or the wide beam, the connecting bottom plate is connected to the infrastructure.

[0013] Optionally, the side unit includes, from the outside to the inside, a side corrugated plate, a side frame, and a side sealing plate;

[0014] The second hinge is provided at the bottom end of the side frame, the lifting ring is installed on the upper part of the side frame, and a lower pad is further provided at the bottom end of the side frame, and the lower pad is connected to the first reinforcing rib.

[0015] Optionally, the supply station further comprises a caulking pipe, and when the side unit is in a vertical state, the caulking pipe is arranged between the side unit and the lane unit;

[0016] The supply station also includes a locking bolt, which vertically passes through the side frame, the caulking pipe and the long beam to fix the caulking pipe.

[0017] Optionally, the supply station further comprises a plurality of second reinforcing ribs, and the side unit and the top unit are connected via the second reinforcing ribs;

[0018] The plurality of second reinforcing ribs form a bearing surface in a horizontal direction. One side end of the top unit is located on the bearing surface and is fixed to the plurality of second reinforcing ribs respectively.

[0019] Optionally, an upper pad is provided between the side frame and the second reinforcing rib, and the second reinforcing rib is provided with at least one waist hole;

[0020] The second reinforcing rib is further provided with a limiting bolt, which passes through the waist hole and is fixed to the upper pad. In addition, the second reinforcing rib can be driven to move vertically along the waist hole to adjust the height of the top unit.

[0021] A side adjustment block is also provided on the top of the side frame, and the side adjustment block is located below the second reinforcing rib. An adjustment bolt is also provided on the side adjustment block, and the adjustment bolt passes through the side adjustment block from bottom to top and forms a pressure contact with the second reinforcing rib to limit the height of the top unit.

[0022] Optionally, the side frame further includes a horizontally arranged side water guide plate, and the side water guide plate is located above the second reinforcing rib.

[0023] Optionally, the top unit includes, from the outside to the inside, a top corrugated plate, a top frame, and a top sealing plate;

[0024] The third hinge and the lifting ring are respectively arranged on the top frame, and the top frame is fixed to the second reinforcing rib.

[0025] Optionally, the top unit further includes a horizontally arranged top water guide plate, and the top water guide plate is located at the top end of the top frame.

[0026] Optionally, the top unit and / or side unit is also equipped with a thermal insulation layer; wherein,

[0027] The thermal insulation layer is provided between the top corrugated plate and the top cover plate; and / or

[0028] The heat-insulating layer is provided between the side corrugated plates and the side sealing plates.

[0029] Compared to existing technologies, the present invention includes multiple runway units that are detachably connected to the infrastructure, multiple side units that form the four sides of the refueling station, multiple top units that form the top of the refueling station, multiple first reinforcing ribs, and multiple support frames. The side units and runway units are detachably hinged via first and second hinges, facilitating the positioning of the side units during installation. The first reinforcing ribs are detachably connected to the runway units and the side units, respectively, to secure them. The top unit is detachably connected to the side units, with each pair of top units mounted opposite each other and detachably hinged via a third hinge. The third hinge and a fourth hinge on the support frame detachably hinge each support frame and each pair of top units mounted opposite each other, forming a triangular structure. Furthermore, lifting rings are provided on the outer sides of the side units and the outer sides of the top unit for lifting different units. This modular structure allows for quick and easy installation and disassembly at specific locations. While meeting the requirements for periodic station relocation, it also offers excellent stability and load-bearing capacity.

[0030] The above description is only an overview of the technical solution of the present invention. In order to more clearly understand the technical means of the present invention, it can be implemented in accordance with the contents of the specification. In order to make the above and other purposes, features and advantages of the present invention more obvious and easy to understand, the specific implementation methods of the present invention are specifically listed below. BRIEF DESCRIPTION OF THE DRAWINGS

[0031] Various other advantages and benefits will become apparent to those skilled in the art upon reading the detailed description of the preferred embodiment below. The accompanying drawings are for illustration purposes only and are not to be construed as limiting the present invention. The same reference numerals are used throughout the accompanying drawings to denote the same components.

[0032] In the attached figure:

[0033] Figure 1 This is a schematic diagram of the three-dimensional structure of a modular power supply station provided by an embodiment of the present invention;

[0034] Figure 2 1 is a schematic structural diagram of a lane unit provided by an embodiment of the present invention;

[0035] Figure 3 This is a schematic structural diagram of a side unit provided by an embodiment of the present invention;

[0036] Figure 4 This is an exploded view of the structure of a side unit provided by an embodiment of the present invention;

[0037] Figure 5 1 is a schematic structural diagram of a top unit provided by an embodiment of the present invention;

[0038] Figure 6 This is an exploded diagram of the structure of a top unit provided by an embodiment of the present invention;

[0039] Figure 7 This is a schematic structural diagram of a top unit and a support frame connected together according to an embodiment of the present invention;

[0040] Figure 8 This is a schematic diagram of a structure in which a lane unit and a side unit are fixed, provided by an embodiment of the present invention;

[0041] Figure 9 This is a schematic diagram of a structure in which a side unit and a top unit are fixed, provided by an embodiment of the present invention;

[0042] Figure 10 This is a schematic diagram of a structure in which two third hinged parts are hinged together according to an embodiment of the present invention;

[0043] Figure 11 It is a schematic structural diagram of the hinged connection between the third hinge and the fourth hinge provided by an embodiment of the present invention.

[0044] Figure numerals: 1. Walkway unit; 101. First hinge; 102. Longitudinal beam; 103. Width beam; 104. Connecting pad; 105. Connecting bottom plate; 2. Side unit; 201. Second hinge; 202. Side corrugated plate; 203. Side frame; 204. Side sealing plate; 205. Lower pad; 206. Upper pad; 207. Side adjustment block; 208. Side water guide plate; 3. Lifting ring; 4. First reinforcement rib; 5. Top unit; 501. Third hinge; 502. Top corrugated plate; 503. Top frame; 504. Top sealing plate; 505. Top water guide plate; 6. Support frame; 601. Fourth hinge; 7. Caulking pipe; 701. Caulking groove; 8. Second reinforcement rib; 801. Waist hole; 802. Limit bolt; 9. Door head unit. DETAILED DESCRIPTION

[0045] Exemplary embodiments of the present invention will be described in more detail below with reference to the accompanying drawings. Although exemplary embodiments of the present invention are shown in the accompanying drawings, it should be understood that the present invention can be implemented in various forms and should not be limited by the embodiments set forth herein. Rather, these embodiments are provided to enable a more thorough understanding of the present invention and to fully convey the scope of the present invention to those skilled in the art.

[0046] Reference Figure 1-11 , an embodiment of the present invention provides a modular power supply station, which may include:

[0047] A plurality of walkway units 1 are provided, each of which is connected to the infrastructure and comprises a plurality of first hinged members 101 arranged in a horizontal direction.

[0048] Multiple side units 2, each two side units 2 are connected by a detachable connection to form the four sides of the supply station, each side unit 2 includes multiple second hinges 201 and a lifting ring 3 located on the outside of the side unit 2 for unit lifting, the first hinge 101 and the second hinge 201 form a detachable hinge to enable the side unit 2 to flip along the walkway unit 1.

[0049] A plurality of first reinforcing ribs 4 are detachably connected to the lane unit 1 and the side unit 2 , respectively, so as to fix the lane unit 1 and the side unit 2 .

[0050] A plurality of top units 5 form the top of the supply station, one side end of each of the top units 5 is detachably connected to the side unit 2, and at least one third hinge 501 is respectively provided on the other three side ends. Every two top units 5 are installed relative to each other and are detachably hinged by the third hinge 501, wherein the lifting ring 3 is also provided on the outside of the top unit 5.

[0051] Multiple support frames 6, each support frame 6 is arranged below the top unit 5 and includes four fourth hinges 601 arranged at the vertices, and the third hinge 501 and the fourth hinge 601 form a detachable hinge to form a triangular structure between each support frame 6 and every two relatively installed top units 5.

[0052] In this embodiment, refer to Figure 1-8 As shown, the supply station may include a plurality of side units 1, a plurality of side units 2, a plurality of first reinforcing ribs 4, a plurality of top units 5 and a plurality of support frames 6. The side unit 1 is used to provide support for the supply station so as to facilitate the stable installation of the side unit 2. A plurality of side units 2 are used to form the four sides of the supply station. Those skilled in the art can determine the specific number of side units 2 based on the size of the supply station and the number of reserved station doors, which is not limited here. For example, after determining the position of the exit door, the side unit 2 may not be installed at that position, so that the size of one side unit 2 is used as the station door size. Refer to Figure 1 As shown, a door head unit 9 can also be set on the upper part of the two side units 2 adjacent to the station door position, so as to avoid the height of the station door being too high and better improve the rainproof performance of the supply station. The first reinforcing rib 4 is used to strengthen the connection between the side unit 2 and the sidewalk unit 1, so as to ensure the structural stability and bearing capacity of the supply station. The top unit 5 is used to form the top of the supply station. Those skilled in the art can determine the specific number of top units 5 according to the size of the supply station, and there is no limitation here. Among them, the support frame 6 is used to support the top unit 5, so as to improve the structural bearing capacity of the top unit 5.

[0053] Reference Figure 2 As shown, each of the walkway units 1 is connected to the infrastructure and includes a plurality of first hinges 101 arranged in the horizontal direction. The infrastructure can be understood as the foundation for the installation of the supply station. Figure 3 and Figure 4 As shown, each side unit 2 includes multiple second hinges 201 and a lifting ring 3 located on the outside of the side unit 2 for lifting the unit. The first hinges 101 and the second hinges 201 form a detachable hinge connection. When installing the side unit 2, the first hinges 101 and the second hinges 201 can be detachably hinged via the hinge axis, thereby automatically positioning the side unit 2. This avoids the need for manual measurement to determine the installation position of the side unit 2 during the installation process, saving time and effort.

[0054] The side unit 2 is hoisted by the lifting ring 3 so that the side unit 2 is flipped along the walkway unit 1, and is fixed by the first reinforcing rib 4 when the side unit 2 is flipped to be perpendicular to the walkway unit 1 (the side unit 2 is placed vertically), wherein, as shown in FIG8 , the first reinforcing rib 4 is detachably connected to the walkway unit 1 and the side unit 2, respectively. In addition, each side unit 2 is fixed to the walkway unit 1 by a plurality of first reinforcing ribs 4. Those skilled in the art can determine the number of first reinforcing ribs 4 between each side unit 2 and the walkway unit 1 according to actual needs, and no limitation is made here. Each two side units 2 can also be detachably connected. For example, a through hole is provided at the contact point of two adjacent side units 2, so that a bolt can be passed through the through hole horizontally and fixed in cooperation with a nut and a gasket. By analogy, the four sides of the supply station are formed by a plurality of side units 2.

[0055] Reference Figure 5 、 Figure 6 and Figure 7 As shown, each top unit 5 includes four side ends, one of which is removably connected to the side unit 2. At least one third hinge 501 is provided on each of the other three side ends, excluding one of the side ends. For example, two third hinges 501 may be provided on the side end opposite one of the side ends, and one third hinge 501 may be provided on each of the other two side ends. Each pair of top units 5 is mounted opposite each other and removably hinged via the third hinge 501. Specifically, the side end opposite one of the two top units 5 is secured via the third hinge 501. During disassembly of the refueling station, one of the two opposing top units 5 can be flipped around the third hinge 501, folding it, thus eliminating the need for disassembly of the top unit 5 and saving time and effort. Through holes are provided at the contact points between two adjacent sets of side units 2 (two opposing top units 5 constitute a set of side units 2), allowing bolts to be inserted horizontally through the holes and secured with nuts and washers. By analogy, a plurality of top units 5 form the top of the charging station.

[0056] Reference Figure 7As shown, each support frame 6 includes four fourth hinges 601 arranged on the support frame 6, and the four fourth hinges 601 can be respectively arranged on each vertex of the support frame 6. The third hinge 501 and the fourth hinge 601 form a detachable hinge to form a triangular structure between each support frame 6 and every two relatively installed top units 5 (each group of top units 5). Thereby, while supporting the top unit 5, the structural bearing capacity of the top unit 5 is also improved. The present application modularizes the structure of the power supply station, which can be quickly disassembled and installed at a fixed point, and is convenient to disassemble and assemble. While meeting the periodic movement requirements of the site, it also has good stability and bearing capacity.

[0057] Reference Figure 10 and Figure 11 As shown, the fourth hinge 601 can be inserted into the third hinge 501, thereby limiting the fourth hinge 601. The hinge shaft passes through the third hinge 501 and the fourth hinge 601, and a limiting rod perpendicular to the axis of the hinge shaft is provided at both ends, thereby completing the hinge connection between the third hinge 501 and the fourth hinge 601. When the two third hinges 501 are hinged, they can be cross-penetrated to form a limit. In another example, the structures of the first hinge 101, the second hinge 201, the third hinge 501 and the fourth hinge 601 can be the same, wherein the installation angles of each hinge can be different.

[0058] Reference Figure 2 As shown, an optional embodiment of the invention, the walkway unit 1 includes two long beams 102 and a plurality of width beams 103 fixed at equal intervals between the two long beams 102. The two long beams 102 are arranged in parallel, and the plurality of width beams 103 are arranged parallel to each other. A plurality of first hinges 101 are arranged at equal intervals on the long beams 102. A connecting pad 104 is provided at the top end of the width beam 103, and the connecting pad 104 is connected to the first reinforcing rib 4, and a connecting base plate 105 is provided at the bottom end of the long beam 102 and / or the width beam 103, and the connecting base plate 105 is connected to the infrastructure. For example, a through hole can be provided on the connecting base plate 105 so that a fixing member can be passed through to connect with the infrastructure. The fixing member can be an element such as an expansion bolt. The long beam 102, the width beam 103, the first hinge 101, the connecting pad 104 and the connecting base plate 105 can all be fixed by welding. The structural stability of the refueling station can be improved by welding.

[0059] Reference Figure 3 and Figure 4As shown, an optional embodiment of the invention, the side unit 2 can be a multi-layer composite structure, for example, including a side corrugated plate 202, a side frame 203 and a side sealing plate 204 in order from the outside to the inside. The side corrugated plate 202 can serve as the exterior facade of the supply station, and the side frame 203 is used to support the side unit 2 and to install various components on the side unit 2. The direction of the side frame 203 toward the side corrugated plate 202 is determined as the outside of the side unit 2, and the direction of the side frame 203 toward the side sealing plate 204 is determined as the inside of the side unit 2. The side corrugated plate 202 is adapted to the shape of the side frame 203, and is used to seal the side frame 203 from the outside of the supply station.

[0060] The second hinge 201 is provided at the bottom end of the side frame 203, and the lifting ring 3 is installed on the upper part of the side frame 203 for lifting the side unit 2 during the disassembly and assembly process, thereby improving the disassembly and assembly efficiency. The side frame 203 can be composed of crisscrossing side beams, and the upper part of the side frame 203 can be understood as the area where the height of the side frame 203 in the vertical direction is higher than the height of its center position. In addition, a lower pad 205 is also provided at the bottom end of the side frame 203, and the lower pad 205 is connected to the first reinforcing rib 4. In one example, the side unit 2 is also equipped with an insulation layer, and the insulation layer is provided between the side corrugated plate 202 and the side sealing plate 204, for thermal insulation inside and outside the four sides of the power supply station.

[0061] Reference Figure 8 As shown, in an optional embodiment of the invention, the supply station may further include a caulking tube 7. When the side unit 2 is in a vertical position, the caulking tube 7 is disposed between the side unit 2 and the lane unit 1, and is used to fill the gap between the side unit 2 and the lane unit 1 outside the supply station, thereby sealing the four sides of the supply station. The supply station may also include a locking bolt that vertically passes through the side frame 203, the caulking tube 7, and the longitudinal beam 102 to secure the caulking tube 7.

[0062] In order to ensure the sealing performance, the caulking tube 7 is provided with a caulking groove 701 which completely passes through the caulking tube 7 in the vertical direction. The side frame 203 and the long beam 102 are respectively provided with mounting grooves adapted to the caulking groove 701. Moreover, in the vertical direction, the caulking groove 701, the mounting groove on the side frame 203 and the mounting groove on the long beam 102 form an I-shaped hole. When fixing the caulking tube 7, the locking bolt is vertically arranged and horizontally moved into the caulking groove 701 and the mounting groove from the inner side of the side unit 2. The caulking tube 7 is fixed with nuts, gaskets, etc. to complete the sealing of the four sides of the supply station, and the connection between the side unit 2 and the aisle unit 1 can be further strengthened.

[0063] Reference Figure 9 As shown, in an optional embodiment of the invention, the supply station may also include multiple second reinforcing ribs 8, through which the side unit 2 and the top unit 5 are connected. The side unit 2, the top unit 5, and the second reinforcing ribs 8 are each provided with through holes for detachable connection. During installation, bolts can be passed horizontally through the through holes of the side unit 2 and the second reinforcing ribs 8, and then secured with nuts and washers. Furthermore, the multiple second reinforcing ribs 8 form a horizontal bearing surface, with one side end of the top unit 5 positioned on the bearing surface and secured to the multiple second reinforcing ribs 8. Bolts can be passed vertically through the through holes of the second reinforcing ribs 8 and the top unit 5, and then secured with nuts and washers. Prior to securing, the bolts limit the top unit 5, allowing the operator to independently secure the top unit 5 on one side without the need for assistance from other personnel, making installation convenient.

[0064] In an optional embodiment of the invention, an upper pad 206 is provided between the side frame 203 and the second reinforcing rib 8. The second reinforcing rib 8 further includes at least one waist hole 801. For example, two waist holes 801 may be provided vertically along the second reinforcing rib 8. The second reinforcing rib 8 is also provided with a limit bolt 802, which passes through the waist hole 801 to secure it to the upper pad 206. Furthermore, the second reinforcing rib 8 can be driven to move vertically along the waist hole 801 to adjust the height of the top unit 5. A side adjustment block 207 is also provided at the top of the side frame 203. The side adjustment block 207 is located below the second reinforcing rib 8. An adjustment bolt is also provided on the side adjustment block 207. The adjustment bolt passes through the side adjustment block 207 from bottom to top and forms a pressure contact with the second reinforcing rib 8 to limit the height of the top unit 5. That is, by screwing the adjusting bolt, the upper portion of the adjusting bolt presses against the lower portion of the second reinforcing rib 8 , thereby driving the second reinforcing rib 8 to rise or fall, which is suitable for adjusting the height of the top unit 5 within a small range.

[0065] Reference Figure 5 and Figure 6 As shown, an optional embodiment of the invention, the top unit 5 can be a multi-layer composite structure, which includes a top corrugated plate 502, a top frame 503 and a top cover plate 504 in order from the outside to the inside. The top corrugated plate 502 can serve as the exterior facade of the supply station, and the top frame 503 is used to support the top unit 5 and to install various components on the top unit 5. The direction of the top frame 503 facing the top corrugated plate 502 is determined as the outside of the top unit 5, and the direction of the top frame 503 facing the top cover plate 504 is determined as the inside of the top unit 5. The top corrugated plate 502 is adapted to the shape of the top frame 503 and is used to seal the top frame 503 from the outside of the supply station. The third hinge 501 and the lifting ring 3 are respectively arranged on the top frame 503 and face the inside of the top unit 5. The top frame 503 is fixed to the second reinforcing rib 8. In an optional embodiment of the invention, the top unit 5 may further include a heat-insulating layer, which is provided between the top corrugated plate 502 and the top sealing plate 504 to provide heat insulation between the inside and outside of the top of the power supply station.

[0066] Reference Figure 3-6As shown, in an optional embodiment of the invention, the side frame 203 further includes a horizontally disposed side water deflector 208, which is located above the second reinforcing rib 8. Correspondingly, the top unit 5 may further include a horizontally disposed top water deflector 505, which is located at the top of the top frame 503. Both the side water deflectors 208 and the top water deflector 505 are used to divert rainwater. After the refueling station is installed, a vertical water guide pipe may be installed, wherein the water guide pipe is connected to the side water deflector 208 and the top water deflector 505, and rainwater flows through the side water deflector 208 or the top water deflector 505 and is discharged through the water guide pipe.

[0067] In an optional embodiment of the invention, each component provided on each of the above units can be secured by welding. This welding can improve the structural stability of the supply station and further enhance its modularity. It can also facilitate assembly and disassembly while reducing the risk of component loss during transportation. For the walkway unit 1, the first hinge 101, the longitudinal beam 102, the width beam 103, the connecting pad 104 and the connecting bottom plate 105 can be fixed by welding; for the side unit 2, the second hinge 201, the side corrugated plate 202, the side frame 203, the side sealing plate 204, the lower pad 205, the upper pad 206, the side adjustment block 207, the side water guide plate 208 and the hanging ring 3 can be fixed by welding; for the top unit 5, the third hinge 501, the top corrugated plate 502, the top frame 503, the top sealing plate 504, the top water guide plate 505 and the hanging ring 3 can be fixed by welding; for the support frame 6, the fourth hinge 601 can also be fixed by welding.

[0068] The detachable connection mentioned above is not limited to the fixing by the combination of bolts and nuts, but also includes other connection types that use threads to form detachable connections, which are not limited here.

[0069] In summary, this embodiment discloses a modular power supply station, comprising a plurality of sidewalk units 1 detachably connected to the infrastructure, a plurality of sidewalk units 2 forming the four sides of the supply station, a plurality of top units 5 forming the top of the supply station, a plurality of first reinforcing ribs 4, and a plurality of support frames 6. The sidewalk units 2 and the sidewalk units 1 are detachably hinged via a first hinge 101 and a second hinge 201, facilitating positioning of the sidewalk units 2 during installation. The first reinforcing ribs 4 are detachably connected to the sidewalk units 1 and the sidewalk units 2, respectively, to secure the sidewalk units 1 and the sidewalk units 2. The top unit 5 is detachably connected to the sidewalk units 2, with each pair of top units 5 mounted opposite each other and detachably hinged via a third hinge 501. The third hinge 501 and a fourth hinge 601 on the support frame 6 form a detachable hinge, forming a triangular structure between each support frame 6 and each pair of oppositely mounted top units 5. Furthermore, lifting rings 3 are provided on the outsides of the sidewalk units 2 and the outsides of the top unit 5, respectively, for suspending the different units. The modular structure of the power supply station can be quickly disassembled and installed at a fixed point through the above structure. While meeting the periodic movement requirements of the station, it also has good stability and load-bearing capacity.

[0070] The various embodiments in this specification are described in a progressive manner, and each embodiment focuses on the differences from other embodiments. The same or similar parts between the various embodiments can be referenced to each other.

[0071] It is easy for those skilled in the art to think that any combination of the above embodiments is feasible, so any combination of the above embodiments is an implementation scheme of the present invention. However, due to space limitations, this specification will not describe them in detail here.

[0072] In the description provided herein, numerous specific details are described. However, it is understood that embodiments of the present invention may be practiced without these specific details. In some instances, well-known methods, structures, and techniques are not shown in detail so as not to obscure the understanding of this description.

[0073] Similarly, it should be understood that in order to streamline the invention and aid in understanding one or more of the various inventive aspects, in the above description of exemplary embodiments of the invention, various features of the invention are sometimes grouped together into a single embodiment, figure, or description thereof.

[0074] Furthermore, those skilled in the art will appreciate that although some embodiments described herein include certain features included in other embodiments but not other features, combinations of features from different embodiments are intended to be within the scope of the present invention and to form different embodiments. For example, in the claims, any of the claimed embodiments may be used in any combination.

Claims

1. A modular power supply station, characterized in that: The supply station includes: A plurality of walkway units (1), each walkway unit (1) being connected to an infrastructure and comprising a plurality of first hinged members (101) arranged in a horizontal direction, the walkway unit (1) comprising two longitudinal beams (102) and a plurality of width beams (103) fixed at equal intervals between the two longitudinal beams (102); A plurality of the first hinge members (101) are arranged at equal intervals on the longitudinal beam (102), a connecting pad (104) is provided at the top end of the width beam (103), and a connecting base plate (105) is provided at the bottom end of the longitudinal beam (102) and / or the width beam (103), and the connecting base plate (105) is connected to the infrastructure; A plurality of side units (2), each two side units (2) are detachably connected to form four sides of the supply station, each side unit (2) comprises a plurality of second hinges (201) and a lifting ring (3) located on the outside of the side unit (2) for unit lifting, the first hinge (101) and the second hinge (201) forming a detachable hinge to enable the side unit (2) to flip along the walkway unit (1), and the side unit (2) comprises, from the outside to the inside, a side corrugated plate (202), a side frame (203) and a side sealing plate (204); The second hinge (201) is provided at the bottom end of the side frame (203), the lifting ring (3) is installed on the upper part of the side frame (203), and a lower pad (205) is also provided at the bottom end of the side frame (203); A plurality of first reinforcing ribs (4) are respectively detachably connected to the connecting pad (104) of the lane unit (1) and the lower pad (205) of the side unit (2), so as to fix the lane unit (1) and the side unit (2); A plurality of top units (5) forming the top of the supply station, wherein one side end of each top unit (5) is detachably connected to the side unit (2), and at least one third hinge (501) is provided on each of the other three side ends, and each two top units (5) are installed relative to each other and detachably hinged by the third hinge (501), wherein the outer side of the top unit (5) is also provided with the lifting ring (3); A plurality of support frames (6), each support frame (6) is arranged below the top unit (5) and includes four fourth hinges (601) arranged at the vertices, and the third hinge (501) and the fourth hinge (601) form a detachable hinge to form a triangular structure between each support frame (6) and each two oppositely installed top units (5).

2. The modular power supply station according to claim 1, characterized in that: The supply station further comprises a caulking pipe (7), and when the side unit (2) is in a vertical state, the caulking pipe (7) is arranged between the side unit (2) and the lane unit (1); The supply station further comprises a locking bolt, which vertically passes through the side frame (203), the caulking pipe (7) and the longitudinal beam (102) to fix the caulking pipe (7).

3. The modular power supply station according to claim 1, characterized in that: The supply station further comprises a plurality of second reinforcing ribs (8), and the side unit (2) and the top unit (5) are connected via the second reinforcing ribs (8); The plurality of second reinforcing ribs (8) form a bearing surface in the horizontal direction, and a side end of the top unit (5) is located on the bearing surface and is fixed to the plurality of second reinforcing ribs (8) respectively.

4. The modular power supply station according to claim 3, characterized in that: An upper pad (206) is further provided between the side frame (203) and the second reinforcing rib (8), and the second reinforcing rib (8) is further provided with at least one waist hole (801); A limiting bolt (802) is further provided on the second reinforcing rib (8), and the limiting bolt (802) passes through the waist hole (801) and is fixed to the upper pad (206), and the second reinforcing rib (8) can be driven to move up and down along the waist hole (801) to adjust the height of the top unit (5); A side adjustment block (207) is also provided on the top of the side frame (203), and the side adjustment block (207) is located below the second reinforcing rib (8), wherein an adjustment bolt is also provided on the side adjustment block (207), and the adjustment bolt passes through the side adjustment block (207) from bottom to top and forms a pressure contact with the second reinforcing rib (8) to limit the height of the top unit (5).

5. The modular power supply station according to claim 3, characterized in that: The side frame (203) further comprises a horizontally arranged side water guide plate (208), and the side water guide plate (208) is located above the second reinforcing rib (8).

6. The modular power supply station according to claim 4, characterized in that: The top unit (5) comprises, from the outside to the inside, a top corrugated plate (502), a top frame (503) and a top sealing plate (504); The third hinge (501) and the lifting ring (3) are respectively arranged on the top frame (503), and the top frame (503) is fixed to the second reinforcing rib (8).

7. The modular power supply station according to claim 6, characterized in that: The top unit (5) further comprises a horizontally arranged top water guide plate (505), and the top water guide plate (505) is located at the top end of the top frame (503).

8. The modular power supply station according to claim 6, characterized in that: The top unit (5) and / or the side unit (2) are also provided with a heat-insulating layer; wherein, The thermal insulation layer is provided between the top corrugated plate (502) and the top sealing plate (504); and / or The heat-insulating layer is provided between the side corrugated plate (202) and the side sealing plate (204).

Citation Information

Patent Citations

  • Modularized power supply station

    CN218024906U