Charging pile base, charging pile box and charging pile
By designing the operating cavity and avoidance holes in the base of the charging pile, the problem of low installation efficiency of the charging pile is solved, the convenience and stability of installation are achieved, and the installation efficiency and safety are improved.
Patent Information
- Application Number
- CN202422874173.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-22
- Publication Date
- 2025-08-26
- Estimated Expiration
- 2034-11-22
AI Technical Summary
The existing charging piles are inefficient in installation and have safety risks, especially when using forklift installation, it is difficult to accurately align the embedded bolts.
A charging pile base is designed, including a main body part and a removable packaging plate. The main body part has an operating cavity and a avoiding hole. The packaging plate detachably blocks the opening of the operating cavity, and the bottom wall of the operating cavity is equipped with an avoiding hole to facilitate the forklift driver to accurately align the embedded bolts.
It improves the installation efficiency and stability of charging piles, reduces installation time, reduces operational complexity and error rate, and ensures the safety and aesthetics of charging piles.
Smart Images

Figure CN223266643U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of charging pile equipment, and in particular to a charging pile base, a charging pile box and a charging pile. Background Art
[0002] With the development of electric vehicles, the application of charging piles has gradually increased. Charging piles are generally installed in public buildings (such as gas stations, parking lots, etc.) or public facilities (such as residential areas, supermarkets, public buildings, etc.) to provide external DC power supply devices for electric vehicles' on-board or on-board replaceable batteries.
[0003] Due to the large size and weight of charging piles, manual installation requires the coordinated efforts of multiple personnel, which is not only time-consuming and labor-intensive, but also prone to safety hazards. Therefore, forklifts are often used during charging pile installation. Access holes are typically reserved on the front panel of the charging pile base, while the mounting holes for the embedded bolts are hidden within the base. Furthermore, the presence of these access holes limits viewing angles and operating space, making it difficult for forklift drivers to accurately align the mounting holes with the embedded bolts during installation. This not only prolongs installation time but can also affect the stability of the charging pile due to misalignment.
[0004] That is to say, the charging piles in the prior art have the problem of low installation efficiency. Utility Model Content
[0005] The main purpose of the utility model is to provide a charging pile base, a charging pile box and a charging pile, so as to solve the problem of low installation efficiency of charging piles in the prior art.
[0006] In order to achieve the above-mentioned purpose, according to one aspect of the present invention, a charging pile base is provided, including: a main body, the main body having at least two operating cavities arranged at intervals along a first direction, the operating cavity extending along a second direction, and the bottom wall of the operating cavity having a plurality of avoidance holes for avoiding embedded bolts, and the plurality of avoidance holes are arranged at intervals along the second direction; at least two packaging plates, the packaging plates are detachably arranged on two opposite sides of the main body, and the packaging plates block the openings at both ends of the operating cavity.
[0007] Furthermore, the operating cavity further comprises a side wall connected to the bottom wall, and an orthographic projection of the avoidance hole on a plane where at least one of the side walls is located is spaced apart from the side wall.
[0008] Furthermore, the charging pile base also includes at least two pressure plates, which are detachably arranged in the operating cavity and abut against the bottom wall of the operating cavity. The pressure plate has multiple connecting holes corresponding to the avoidance holes, and the embedded bolts are passed through the avoidance holes and the connecting holes.
[0009] Furthermore, the hole area of the connecting hole is smaller than the hole area of the avoiding hole; and / or the connecting hole is a waist-shaped hole.
[0010] Furthermore, the main body includes: a top plate; at least two vertical plates, which are spaced apart on one side of the top plate; at least two support plates, which are located on the same side of the top plate as the vertical plates, and the support plates, vertical plates and top plate form an operating cavity, and the support plates have avoidance holes.
[0011] Furthermore, the length of at least one vertical plate is smaller than the length of the support plate.
[0012] Furthermore, the support plate includes a first plate segment and a second plate segment connected at an angle, the first plate segment is connected to the top plate, the surface of the second plate segment facing the top plate is a bottom wall, the second plate segment has an avoidance hole, and the support plate also includes at least two third plate segments, at least two third plate segments are respectively arranged at both ends of the extension direction of the first plate segment, and the third plate segment is detachably connected to the packaging plate.
[0013] Furthermore, the packaging plate includes a packaging main plate segment and a packaging auxiliary plate segment connected to the end faces on both sides opposite to the packaging main plate segment, and the packaging auxiliary plate segment is connected to the vertical plate of the main body; and / or the ratio of the diameter of the avoidance hole to the diameter of the embedded bolt is greater than or equal to 1.5 and less than or equal to 3.
[0014] According to another aspect of the present invention, a charging pile box is provided, comprising the above-mentioned charging pile base.
[0015] According to another aspect of the present invention, a charging pile is provided, comprising the above-mentioned charging pile box.
[0016] Applying the technical solution of the present utility model, the charging pile base includes a main body and at least two packaging plates. The main body has at least two operating cavities spaced apart along a first direction. The operating cavity extends along a second direction, and the bottom wall of the operating cavity has a plurality of avoidance holes for avoiding embedded bolts. The plurality of avoidance holes are spaced apart along the second direction. The packaging plates are detachably arranged on opposite sides of the main body, and the packaging plates block the openings at both ends of the operating cavity.
[0017] By providing at least two operating chambers on the main body, when a forklift is used to install the charging pile base, the forklift's fork frame extends into the operating chamber through an opening at one end to lift the charging pile base and the cabinet assembly installed on the charging pile base. Because the packaging plate is detachably connected to the main body, when the charging pile base is installed, the packaging plate is separated from the main body, and the openings at both ends of the operating chamber are exposed to the outside. Since the avoidance holes are provided on the bottom wall of the operating chamber, when the openings are exposed to the outside, the staff can see whether the embedded bolts are aligned with the avoidance holes through the openings of the operating chamber, facilitating accurate alignment and installation of the avoidance holes and embedded bolts, effectively reducing installation time and improving installation efficiency, while ensuring the stability of the charging pile installation.
[0018] Furthermore, when installing the charging pile in this application, the avoidance hole can be seen by the forklift driver, facilitating the driver's operation and improving installation efficiency. By setting the ratio of the diameter of the avoidance hole to the diameter of the embedded bolt to be greater than or equal to 1.5 and less than or equal to 3, the forklift driver's operating requirements can be reduced, making it easier for the forklift driver to align the embedded bolt with the avoidance hole, further improving installation efficiency. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] The drawings constituting part of this application are provided to provide a further understanding of the present invention. The exemplary embodiments of the present invention and their descriptions are provided to explain the present invention and do not constitute an improper limitation of the present invention. In the drawings:
[0020] Figure 1 A schematic structural diagram of a charging pile box according to an optional embodiment of the present invention is shown;
[0021] Figure 2 Shown Figure 1 An exploded view of the charging pile base from one angle;
[0022] Figure 3 Shown Figure 2 Position relationship diagram of the top plate and vertical plate;
[0023] Figure 4 Shown Figure 2 Schematic diagram of the structure of the middle support plate;
[0024] Figure 5 Shown Figure 2 Schematic diagram of the structure of the middle packaging board;
[0025] Figure 6 A schematic diagram of the assembly position of the main body and the embedded bolts in an optional embodiment is shown;
[0026] Figure 7 Shown Figure 6 Schematic diagram of the assembly relationship between the main body, pressure plate and embedded bolts;
[0027] Figure 8 Shown Figure 6 The assembly relationship between the main body and the packaging board is shown in FIG.
[0028] Figure 9 A schematic structural diagram of a pressure plate in another optional embodiment of the present invention is shown.
[0029] The above drawings include the following reference numerals:
[0030] 10. Main body; 11. Operating cavity; 111. Bottom wall; 112. Avoidance hole; 113. Side wall; 12. Top plate; 13. Vertical plate; 131. Connecting plate section; 14. Support plate; 141. First plate section; 142. Second plate section; 143. Third plate section; 20. Encapsulation plate; 21. Encapsulation main plate section; 22. Encapsulation auxiliary plate section; 30. Pressing plate; 31. Connecting hole; 32. Pressing plate body; 33. Reinforcement rib; 40. Embedded bolts; 50. Charging pile base; 60. Cabinet assembly; 70. Installation wrench; 80. Nut; 90. Spring clip; 100. Gasket. DETAILED DESCRIPTION
[0031] It should be noted that, in the absence of conflict, the embodiments and features of the embodiments in this application can be combined with each other. The present invention will be described in detail below with reference to the accompanying drawings and in combination with the embodiments.
[0032] It should be noted that, unless otherwise specified, all technical and scientific terms used in this application have the same meaning as commonly understood by ordinary technicians in the technical field to which this application belongs.
[0033] In the present invention, unless otherwise specified, directional words such as "up, down, top, bottom" are usually used with reference to the directions shown in the drawings, or with reference to the components themselves in the vertical, perpendicular or gravity direction; similarly, for ease of understanding and description, "inside and outside" refer to the inside and outside relative to the outline of each component itself, but the above directional words are not used to limit the present invention.
[0034] In order to solve the problem of low installation efficiency of charging piles in the prior art, the main purpose of the present utility model is to provide a charging pile base, a charging pile box and a charging pile.
[0035] like Figures 1 to 9 As shown, the charging pile base includes a main body 10 and at least two packaging plates 20. The main body 10 has at least two operating cavities 11 spaced apart along a first direction. The operating cavity 11 extends along a second direction, and the bottom wall 111 of the operating cavity 11 has a plurality of avoidance holes 112 for avoiding embedded bolts 40. The plurality of avoidance holes 112 are spaced apart along the second direction; the packaging plates 20 are detachably arranged on opposite sides of the main body 10, and the packaging plates 20 block the openings at both ends of the operating cavity 11.
[0036] By providing at least two operating chambers 11 on the main body 10, when a forklift is used to fork-mount the charging pile base 50, the fork frame of the forklift extends from the opening at one end of the operating chamber 11 into the operating chamber 11 to lift the charging pile base 50 and the cabinet assembly 60 installed on the charging pile base 50. Since the packaging plate 20 is detachably connected to the main body 10, when the charging pile base 50 is fork-mounted, the packaging plate 20 is separated from the main body 10, and the openings at both ends of the operating chamber 11 are exposed to the outside. Since the avoidance holes 112 are provided on the bottom wall 111 of the operating chamber 11, when the openings are exposed to the outside, the staff can see from the opening of the operating chamber 11 whether the embedded bolts are aligned with the avoidance holes 112, which facilitates accurate alignment and installation of the avoidance holes 112 and the embedded bolts, effectively reducing installation time, improving installation efficiency, and ensuring the stability of the charging pile installation.
[0037] At least two removable packaging panels 20 are provided only on opposite sides of the main body 10, rather than on all four sides. When installing the charging pile base 50 to the preset position, only the packaging panels 20 on the front and rear sides need to be removed and installed. This not only reduces the number of steps in the installation process but also reduces the installation error rate caused by complex operations. Especially in outdoor conditions, this can significantly improve the work efficiency of installers and reduce installation difficulties caused by factors such as weather. Furthermore, the packaging panels 20 can effectively protect the internal structure of the operating cavity 11 from being exposed, which helps maintain the overall aesthetics of the charging pile. At the same time, this design does not sacrifice the convenience of installation, achieving a good balance between aesthetics and installation method.
[0038] Specifically, the avoidance hole 112 is located at the center of the operating cavity 11 and close to the openings at both ends of the operating cavity 11 .
[0039] Specifically, the ratio of the diameter of the avoidance hole 112 to the diameter of the embedded bolt 40 is greater than or equal to 1.5 and less than or equal to 3. This ratio range ensures that the embedded bolt 40 can smoothly pass through the avoidance hole 112, while preventing the hole diameter from being too large, thereby weakening the structural strength of the bottom wall 111 or increasing position uncertainty during installation, thereby facilitating a balance between installation flexibility and structural stability.
[0040] In addition, the optimization of the diameter of the avoidance hole 112 provides an appropriate margin for the connection between the embedded bolt 40 and the pressure plate 30, reducing the operating requirements of the forklift driver. Even if there is a slight alignment deviation during the installation process, the embedded bolt 40 can pass through the avoidance hole 112 smoothly, reducing the possibility of installation failure and improving the one-time success rate of installation. The optimization of the diameter of the avoidance hole 112 also improves the visual alignment effect of the embedded bolt 40 and the avoidance hole 112 during the installation process. In the operating cavity 11, the large-aperture avoidance hole 112 provides a clearer field of view for the forklift driver to judge the relative position of the embedded bolt 40 and the avoidance hole 112, while reducing the operating requirements of the forklift driver, thereby improving the accuracy of the installation and facilitating the improvement of installation efficiency.
[0041] In some alternative embodiments, see Figure 6 The operating chamber 11 also includes a side wall 113 connected to the bottom wall 111, and the orthographic projection of the avoidance hole 112 on the plane where at least one side wall 113 is located is spaced apart from the side wall 113. This arrangement allows the avoidance hole 112 to be exposed at the openings at both ends. During installation, the side wall 113 can be used as a reference, making it easier to judge the relative position between the avoidance hole 112 and the embedded bolt 40, thereby improving installation accuracy and reducing the need for repeated adjustments due to inaccurate alignment during installation. At the same time, it can also provide the operator with a clear line of sight, making it easier to observe the alignment of the avoidance hole 112 and the embedded bolt 40. Especially when using mechanical equipment such as a forklift for installation, the driver can accurately locate the relative position of the side wall 113 and the avoidance hole 112, reducing the difficulty of installation.
[0042] In addition, the orthographic projection of the avoidance hole 112 on the plane where at least one side wall 113 is located is spaced apart from the side wall 113, so that the avoidance hole 112 is exposed to the outside on both sides, providing the operator with a larger operating space, which is not only convenient for alignment and installation with the embedded bolts 40, but also convenient for accessing tools or equipment during later maintenance to carry out necessary inspections and repairs, thereby improving the flexibility and convenience of operation.
[0043] exist Figure 2 and Figure 7In the specific embodiment shown, the charging pile base also includes at least two pressure plates 30, which are detachably disposed within the operating cavity 11 and abut against the bottom wall 111 of the operating cavity 11. The pressure plate 30 has a plurality of connection holes 31 corresponding to the avoidance holes 112, and embedded bolts 40 are inserted through the avoidance holes 112 and the connection holes 31. The pressure plate 30 is detachably disposed within the operating cavity 11, and the embedded bolts 40 can pass through the connection holes 31 on the pressure plate 30 to connect with the nuts 80. A spring 90, a gasket 100, and other structures can also be disposed between the pressure plate 30 and the nut 80 to ensure that the charging pile is firmly fixed. This design effectively prevents the charging pile from shaking in the front-to-back direction, improving the safety of the charging pile and the user experience.
[0044] Optionally, when the embedded bolt 40 is connected to the nut 80 , the embedded bolt 40 and the nut 80 may be connected by installing the wrench 70 .
[0045] In addition, Figure 7 In the specific embodiment shown, the pressure plate 30 contacts the bottom wall 111 of the operating chamber 11 and is connected to the embedded bolts 40, which is equivalent to increasing the thickness of the bottom wall 111, thereby increasing the structural strength of the bottom wall 111, improving the overall stability of the charging pile, and ensuring the safe operation of the charging pile in harsh environments. The addition of the pressure plate 30 not only enhances the wind resistance of the charging pile, but also improves its ability to resist natural disasters such as earthquakes, providing a guarantee for the safe operation of the charging pile in more complex environments. Especially in windy areas, the stability of the charging pile is directly related to its safety and service continuity. The design of the pressure plate 30 can significantly improve the environmental adaptability of the charging pile.
[0046] In some alternative embodiments, see Figure 9 The pressing plate 30 is an L-shaped plate structure, and the design of the L-shaped plate structure is beneficial to increasing the structural strength of the main body 10.
[0047] In some alternative embodiments, see Figure 2 The pressure plate 30 includes a pressure plate body 32 and a reinforcing rib 33 arranged on the pressure plate body 32. The pressure plate body 32 is an L-shaped plate structure. The reinforcing rib 33 is connected to both plates of the L-shaped plate structure, which is beneficial to improving the structural strength of the pressure plate 30.
[0048] In some alternative embodiments, see Figure 2 The area of the connection hole 31 is smaller than that of the avoidance hole 112. The relatively large area of the avoidance hole 112 provides ample alignment space for the embedded bolt 40. Even if there is a slight misalignment during installation, the embedded bolt 40 can smoothly pass through the avoidance hole 112. This reduces alignment time and speeds up installation, especially in outdoor conditions, effectively preventing environmental factors (such as wind and poor visibility) from affecting installation efficiency.
[0049] Furthermore, the area of the avoidance hole 112 is larger than that of the connection hole 31, providing greater margin for error in alignment during installation. Even if there is a slight misalignment during operation, the avoidance hole 112 and the connection hole 31 can be used to ensure successful fixation, reducing installation failures and rework caused by inaccurate alignment.
[0050] In some alternative embodiments, see Figure 2 The connecting hole 31 is a waist-shaped hole. The long axis of the waist-shaped hole is parallel to the extension direction of the operating chamber 11. This design allows the embedded bolt 40 to move within a certain range to accommodate the relative position deviation between the avoidance hole 112 and the embedded bolt 40. The waist-shaped hole provides additional adjustment space for the embedded bolt 40. Even if the position of the embedded bolt 40 relative to the avoidance hole 112 is not 100% accurate, the embedded bolt 40 and the connecting hole 31 are ensured to be aligned and fixed, further improving installation flexibility and efficiency.
[0051] In addition, the design of the waist-shaped hole allows a certain positional deviation between the embedded bolt 40 and the avoidance hole 112. Even if there is a slight deviation in the position of the embedded bolt 40, the position of the embedded bolt 40 in the waist-shaped hole can be adjusted to make the connecting hole 31 and the embedded bolt 40 reach the optimal alignment state, thereby effectively reducing the installation error and ensuring the installation quality of the charging pile.
[0052] In some alternative embodiments, see Figure 2 The avoidance hole 112 is a circular hole. The design of the circular hole can reduce the interference between the embedded bolt 40 and the bottom wall 111 during the installation process, which is conducive to the installation of the embedded bolt 40 into the avoidance hole 112.
[0053] In some alternative embodiments, see Figure 2 The main body 10 includes a top plate 12, at least two vertical plates 13 and at least two support plates 14. The vertical plates 13 are spaced apart on one side of the top plate 12; the support plates 14 and the vertical plates 13 are located on the same side of the top plate 12. The support plates 14, the vertical plates 13 and the top plate 12 form an operating chamber 11, and the support plate 14 has an avoidance hole 112. The operating chamber 11 formed by the vertical plates 13 and the support plates 14 in combination with the top plate 12 provides the necessary operating space for the installation of the charging pile. This design ensures that during the installation process, such as when using a forklift, it is possible to enter from one end of the operating chamber 11 without being hindered by the structure. The vertical plates 13 and the support plates 14 are not only components of the operating chamber 11, but also provide additional structural support for the charging pile. This multi-dimensional support design can effectively disperse the weight of the charging pile cabinet, reduce the stress concentration of the charging pile base 50, and thus enhance the structural stability of the entire charging pile.
[0054] Furthermore, the formation of the operating chamber 11 and the design of the clearance holes 112 not only simplify the installation process but also facilitate subsequent maintenance and inspection. The clearance holes 112 on the support plate 14, particularly during fork mounting, allow the embedded bolts 40 to easily pass through the clearance holes 112 and connect with the pressure plate 30. Compared to traditional, smaller, waist-shaped holes, this large-diameter design significantly reduces alignment difficulties and improves installation flexibility and efficiency.
[0055] It should be noted that the top plate 12 and the vertical plate 13 can be separate structures or integrated structures, and no specific limitation is made here.
[0056] In some alternative embodiments, see Figure 2 、 Figure 6 and Figure 7 , the length of at least one vertical plate 13 is less than the length of the support plate 14. The length of the vertical plate 13 is less than the length of the support plate 14, which means that the vertical plate 13 will not completely enclose the operating cavity 11, leaving additional operating space. This is particularly important during the installation process, especially when it is necessary to align the embedded bolts 40. The operator can observe from the unenclosed side of the vertical plate 13, achieving more convenient alignment and installation, reducing obstacles that may be encountered during the installation process, and improving installation efficiency. This design of the vertical plate 13 also facilitates maintenance and inspection of the interior of the operating cavity 11. In the case of incomplete closure, maintenance personnel can more easily access the electrical connections and mechanical structures inside the charging pile base 50, and make necessary adjustments or replacements, reducing the time and cost of disassembly and reassembly, and improving maintenance efficiency.
[0057] In some optional embodiments, two opposite sides of the vertical plate 13 have outwardly extending connecting plate segments 131 , and the connecting plate segments 131 are connected to the packaging plate 20 via fasteners.
[0058] Furthermore, this design ensures that the charging pile base 50 maintains strength while reducing weight, making it easier to transport and install. It is suitable for charging piles that need to be frequently moved or installed in high-rise buildings, such as mobile charging vehicles and high-rise parking lots. By adjusting the length ratio of the vertical plate 13 and the support plate 14, the charging pile base 50 can reduce its own weight while maintaining structural stability. This is particularly important for scenarios where charging piles need to be frequently moved or installed in high-rise buildings with limited space. For example, in commercial office areas, charging piles may need to be adjusted according to parking space usage, and the lightweight design can significantly improve the convenience of installation and movement.
[0059] In some alternative embodiments, see Figure 2 and Figure 4The support plate 14 includes a first plate segment 141 and a second plate segment 142 connected at an angle. The first plate segment 141 is connected to the top plate 12. The second plate segment 142 has a bottom wall 111 on the side facing the top plate 12. The second plate segment 142 has an avoidance hole 112. The support plate 14 also includes at least two third plate segments 143, which are respectively arranged at both ends of the first plate segment 141 in the extension direction. The third plate segment 143 is detachably connected to the packaging plate 20. The angled connection of the first and second plate segments 141, 142, and the cooperation with the top plate 12 and the vertical plate 13 ensure that the space size of the operating chamber 11 is appropriate, while facilitating the connection between the first plate segment 141 and the top plate 12. The provision of the third plate segment 143 facilitates the connection between the main body 10 and the packaging plate 20. The detachable connection of the third plate segment 143 to the packaging plate 20 effectively increases the connection tightness between the main body 10 and the packaging plate 20, thereby improving the stability of the charging pile.
[0060] In some alternative embodiments, see Figure 5 The packaging plate 20 includes a packaging main plate segment 21 and a packaging auxiliary plate segment 22 connected to the end faces on both sides opposite to the packaging main plate segment 21, and the packaging auxiliary plate segment 22 is connected to the vertical plate 13 of the main body 10. The design of the packaging main plate segment 21 and the packaging auxiliary plate segment 22 of the packaging plate 20 enables the packaging plate 20 to not only block the openings at both ends of the operating cavity 11, but also be connected to the vertical plate 13 through the packaging auxiliary plate segment 22, forming a more closed and stable structure, reducing the impact of the external structure on the internal structure of the operating cavity 11. The connection design of the packaging auxiliary plate segment 22 and the vertical plate 13 simplifies the positioning and fixation of the packaging plate 20 during installation. During installation, the packaging plate 20 can be easily slid in from one side, and the natural fit and auxiliary alignment of the packaging auxiliary plate segment 22 and the vertical plate 13 reduces the need for fine adjustment of the packaging plate 20 and speeds up the installation process. Especially for large charging pile cabinets, this design can significantly improve installation efficiency.
[0061] exist Figure 5 In the illustrated embodiment, a portion of the packaging auxiliary plate segment 22 is an arc-shaped segment, so that the packaging auxiliary plate segment 22 can package the main body 10 in two directions.
[0062] In some optional embodiments, such as Figure 1As shown, the charging pile box includes the above-mentioned charging pile base 50. The charging pile box with the above-mentioned charging pile base 50 has the advantages of small installation error, high installation efficiency and high stability after installation. The avoidance hole 112 design of the charging pile base 50 allows the forklift to align the embedded bolts 40 more easily during the installation process, thereby greatly shortening the alignment time and improving the installation speed. This is especially important in an environment where a large number of charging piles are deployed, which can significantly reduce installation costs and speed up the project execution progress. The charging pile box of the present application, through the integrated innovative charging pile base 50 design, not only brings significant efficiency improvements in installation and maintenance, but also achieves comprehensive improvements in equipment stability, internal layout optimization, safety and user experience, which helps to promote the rapid deployment and efficient operation of electric vehicle charging infrastructure.
[0063] like Figure 1 As shown, the charging pile box further includes a cabinet assembly 60 , which is disposed on the charging pile base 50 .
[0064] In some optional embodiments, the charging pile includes the aforementioned charging pile housing. Charging piles with this housing have the advantages of minimal installation error, high installation efficiency, and high post-installation stability. By optimizing the charging pile housing, multiple technical benefits are achieved, including convenient installation, cabinet stability, simplified structure, reduced costs, easier maintenance, and a harmonious appearance and functionality.
[0065] Obviously, the embodiments described above are only part of the embodiments of the present invention, not all of them. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work should fall within the scope of protection of the present invention.
[0066] It should be noted that the terms used herein are only for describing specific embodiments and are not intended to limit the exemplary embodiments according to the present application. As used herein, unless the context clearly indicates otherwise, the singular form is also intended to include the plural form. In addition, it should be understood that when the terms "comprise" and / or "include" are used in this specification, they indicate the presence of features, steps, tasks, devices, components and / or combinations thereof.
[0067] It should be noted that the terms "first," "second," and the like in the specification and claims of this application and the accompanying drawings are used to distinguish similar objects and are not necessarily used to describe a specific order or precedence. It should be understood that the terms used in this manner are interchangeable where appropriate, so that the embodiments of the present application described herein can be implemented in an order other than that illustrated or described herein.
[0068] The above description is merely a preferred embodiment of the present invention and is not intended to limit the present invention. Those skilled in the art will readily appreciate that the present invention is susceptible to various modifications and variations. Any modifications, equivalent substitutions, or improvements 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 charging pile base, characterized in that: include: A main body (10), the main body (10) having at least two operating chambers (11) spaced apart along a first direction, the operating chamber (11) extending along a second direction, and a bottom wall (111) of the operating chamber (11) having a plurality of avoidance holes (112) for avoiding embedded bolts (40), the plurality of avoidance holes (112) being spaced apart along the second direction; At least two packaging plates (20) are detachably arranged on two opposite sides of the main body (10), and the packaging plates (20) cover openings at both ends of the operating cavity (11).
2. The charging pile base according to claim 1, characterized in that: The operating chamber (11) further comprises a side wall (113) connected to the bottom wall (111), and an orthographic projection of the avoidance hole (112) on a plane where at least one of the side walls (113) is located is spaced apart from the side wall (113).
3. The charging pile base according to claim 1, characterized in that: The charging pile base further comprises at least two pressing plates (30), the pressing plates (30) being detachably arranged in the operating cavity (11), and the pressing plates (30) being in contact with the bottom wall (111) of the operating cavity (11), the pressing plates (30) having a plurality of connecting holes (31) corresponding to the avoidance holes (112), and the embedded bolts (40) being passed through the avoidance holes (112) and the connecting holes (31).
4. The charging pile base according to claim 3, characterized in that: The hole area of the connecting hole (31) is smaller than the hole area of the avoidance hole (112); and / or The connecting hole (31) is a waist-shaped hole.
5. The charging pile base according to any one of claims 1 to 4, characterized in that: The main body (10) comprises: Top plate (12); At least two vertical plates (13), the vertical plates (13) being arranged at intervals on one side of the top plate (12); At least two support plates (14), the support plates (14) and the vertical plates (13) are located on the same side of the top plate (12), the support plates (14), the vertical plates (13) and the top plate (12) enclose the operating chamber (11), and the support plates (14) have the avoidance holes (112).
6. The charging pile base according to claim 5, characterized in that: The length of at least one of the vertical plates (13) is smaller than the length of the support plate (14).
7. The charging pile base according to claim 5, characterized in that: The support plate (14) comprises a first plate segment (141) and a second plate segment (142) connected at an angle, the first plate segment (141) being connected to the top plate (12), the second plate segment (142) having a side surface facing the top plate (12) being the bottom wall (111), the second plate segment (142) having the avoidance hole (112), the support plate (14) further comprising at least two third plate segments (143), the at least two third plate segments (143) being respectively arranged at both ends of the extension direction of the first plate segment (141), the third plate segment (143) being detachably connected to the packaging plate (20).
8. The charging pile base according to any one of claims 1 to 4, characterized in that: The packaging board (20) comprises a packaging main board segment (21) and packaging auxiliary board segments (22) connected to end surfaces on two sides opposite to the packaging main board segment (21), and the packaging auxiliary board segments (22) are connected to the vertical board (13) of the main body (10); and / or The ratio of the diameter of the avoidance hole (112) to the diameter of the embedded bolt (40) is greater than or equal to 1.5 and less than or equal to 3.
9. A charging pile box, characterized in that: The charging pile base (50) comprises the charging pile base (50) according to any one of claims 1 to 8.
10. A charging pile, characterized in that: Including the charging pile box according to claim 9.