Base and charging pile

By designing a forklift slot and a hinged protective plate on the base of the charging pile, the problems of inconvenience in moving electric forklift charging piles and vibration are solved, achieving convenient transportation and structural protection.

CN224145789UActive Publication Date: 2026-04-21HANGZHOU DUNENG NEW ENERGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
HANGZHOU DUNENG NEW ENERGY CO LTD
Filing Date
2025-06-13
Publication Date
2026-04-21

AI Technical Summary

Technical Problem

Existing electric forklift charging stations are bulky, inconvenient to move, and susceptible to impact in warehouse environments, leading to stability and safety issues.

Method used

A base is designed that includes multiple forklift slots and an articulated protective plate. Forklifts can directly support the base through the forklift slots. The protective plate can cover or expose the forklift slots and is equipped with shock-absorbing pads to reduce vibration transmission. The base can also provide protection through buffers and shock-absorbing pads.

Benefits of technology

It improves the ease of transporting charging stations, protects the internal structure, reduces the impact of vibration, and enhances stability and safety.

✦ Generated by Eureka AI based on patent content.

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Abstract

The embodiment of the utility model provides a base and a charging pile, and relates to the technical field of charging piles. The base comprises a base body and a plurality of protection plates, the base body is provided with a plurality of forklift grooves, the forklift grooves are arranged at intervals, and each forklift groove penetrates in the length direction or the width direction of the base; the plurality of protection plates and the plurality of forklift grooves are arranged in a one-to-one correspondence manner; each protection plate is hinged to the base body, and the protection plates can shield or expose the corresponding forklift grooves. A first shock pad is arranged on the side, away from the forklift groove, of each protection plate. And a plurality of forklift grooves are formed, and reserved positions for insertion of the forklifts are configured, so that the transfer convenience is improved. And by arranging the protection plate, the forklift groove is covered, and the protection capacity of the internal structure of the charging pile is improved. And under the condition that the forklift pushes away the protection plate and inserts the protection plate into the forklift groove, the protection plate can separate the forklift from the top of the base through the first damping pad, so that vibration transmission of the forklift to the base is reduced.
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Description

Technical Field

[0001] This utility model relates to the field of charging pile technology, and more specifically, to a base and a charging pile. Background Technology

[0002] In the industrial logistics and warehousing sectors, electric forklifts are widely used due to their environmental friendliness, low noise, and high efficiency. Forklift charging stations, as supporting infrastructure, are crucial for their stability and safety. The charging station base, as the core component supporting the charging station, must not only withstand the weight of the equipment itself and external impacts, but also adapt to various complex working conditions in the warehousing environment.

[0003] However, current electric forklift charging stations are inconvenient to relocate due to their large overall weight. Utility Model Content

[0004] This utility model provides a base and a charging pile, which can facilitate forklifts to directly support the base for transportation, and also has shock absorption performance while protecting the internal structure of the charging pile.

[0005] The embodiments of this utility model can be implemented as follows:

[0006] An embodiment of this utility model provides a base for use in charging piles, comprising:

[0007] The base body has multiple forklift slots, which are spaced apart, and each forklift slot extends through the base body along its length or width.

[0008] Multiple protective plates are provided, each corresponding to one of the multiple forklift slots; each protective plate is hinged to the base body, and the protective plate can cover or expose the corresponding forklift slot; each protective plate has a first shock-absorbing pad on the side away from the forklift slot.

[0009] In an optional embodiment, the base further includes a plurality of second shock-absorbing pads, which are disposed in the forklift slot and are all connected to the base body.

[0010] In an optional embodiment, the base further includes buffers disposed on both sides of the base body along the forklift slot extension direction.

[0011] In an optional embodiment, the buffer includes a buffer plate and a spring, one end of the spring being connected to the base body and the other end of the spring being connected to the buffer plate.

[0012] In an optional embodiment, the buffer further includes a telescopic rod, one end of which is connected to the base body and the other end of which is connected to the buffer plate, and the spring is sleeved on the telescopic rod.

[0013] In an optional embodiment, a cushioning pad is provided on the side of the buffer plate away from the spring.

[0014] In an optional embodiment, the base body includes a base plate and a support foot, the base plate is connected to the support foot, and the protective plate is hinged to the base plate; the support foot has multiple forklift slots, each of which passes through the support foot along the length or width direction of the base plate; the base plate is used to connect to the housing of the charging pile; the support foot is a hollow structure.

[0015] In an optional embodiment, the base further includes a plurality of slide rails, each of the forklift slots having slide rails on both sides, and each slide rail having a roller.

[0016] In an optional embodiment, the base further includes a shim block disposed at the bottom of the base body.

[0017] An embodiment of this utility model also provides a charging pile, including a housing and a base as described in any of the above embodiments, wherein the base is connected to the housing and the base is used to support the housing.

[0018] The beneficial effects of the base and charging station of this utility model embodiment include, for example:

[0019] The base includes a base body and multiple protective plates. The base body has multiple forklift slots spaced apart, each extending along the length or width of the base. By providing multiple forklift slots, pre-designed positions are created for forklifts to insert the charging pile. Forklifts can directly support the base through these slots, eliminating the need to place the charging pile on a forklift loading platform for transfer, thus improving transport convenience. Furthermore, the protective plates correspond one-to-one with the forklift slots; each protective plate is hinged to the base body and can either cover or expose the corresponding forklift slot. The protective plates cover the forklift slots to prevent small animals such as mice from entering the base and damaging the internal structure of the charging pile, thereby enhancing protection. Each protective plate has a first shock-absorbing pad on the side away from the forklift slot. When a forklift pushes open the protective plate to insert into the forklift slot, the protective plate flips towards the forklift slot. The first shock-absorbing pad separates the forklift from the top of the base, reducing vibration transmission from the forklift to the base. Attached Figure Description

[0020] To more clearly illustrate the technical solutions of the embodiments of this utility model, the drawings used in the embodiments will be briefly introduced below. It should be understood that the following drawings only show some embodiments of this utility model and should not be regarded as a limitation on the scope. For those skilled in the art, other related drawings can be obtained based on these drawings without creative effort.

[0021] Figure 1 This is a schematic diagram of a charging pile (excluding the protective plate) provided in an embodiment of this utility model;

[0022] Figure 2 This is a schematic diagram of the base provided in an embodiment of the present utility model from a first-view perspective;

[0023] Figure 3 This is a schematic diagram of the base provided in an embodiment of the present invention from a second perspective;

[0024] Figure 4 This is a schematic diagram from a first-view perspective of the base with the protective plate removed, provided in an embodiment of this utility model.

[0025] Figure 5 This is a schematic diagram from a second perspective of the base with the protective plate removed, provided in an embodiment of this utility model.

[0026] Icons: 1000 - Charging pile; 100 - Base; 110 - Base body; 111 - Base plate; 112 - Support foot; 1121 - Forklift slot; 120 - Protective plate; 130 - First shock absorber; 140 - Second shock absorber; 150 - Buffer; 151 - Buffer plate; 152 - Spring; 153 - Telescopic rod; 154 - Buffer pad; 160 - Slide rail; 170 - Roller; 180 - Elevating block; 200 - Box body. Detailed Implementation

[0027] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the technical solutions of the embodiments of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this utility model, and not all embodiments. The components of the embodiments of this utility model described and shown in the accompanying drawings can generally be arranged and designed in various different configurations.

[0028] Therefore, the following detailed description of the embodiments of the present invention provided in the accompanying drawings is not intended to limit the scope of the claimed invention, but merely to illustrate selected embodiments of the invention. All other embodiments obtained by those skilled in the art based on the embodiments of the present invention without inventive effort are within the scope of protection of the present invention.

[0029] It should be noted that similar labels and letters in the following figures indicate similar items. Therefore, once an item is defined in one figure, it does not need to be further defined and explained in subsequent figures.

[0030] In the description of this utility model, it should be noted that if terms such as "upper," "lower," "inner," or "outer" are used to indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings, or the orientation or positional relationship in which the utility model product is usually placed during use, they are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this utility model.

[0031] Furthermore, the terms "first" and "second" are used only to distinguish descriptions and should not be interpreted as indicating or implying relative importance.

[0032] It should be noted that, where there is no conflict, the features in the embodiments of this utility model can be combined with each other.

[0033] In the industrial logistics and warehousing sectors, electric forklifts are widely used due to their environmental friendliness, low noise, and high efficiency. Forklift charging stations, as supporting infrastructure, are crucial for their stability and safety. The charging station base, as the core component supporting the charging station, must not only withstand the weight of the equipment itself and external impacts but also adapt to various complex working conditions in the warehousing environment. However, current electric forklift charging stations are inconvenient to move due to their overall large weight.

[0034] Based on this, please refer to Figures 1-3 The base 100 of the charging pile 1000 provided in the embodiments of this utility model can effectively improve the aforementioned technical problems. The base 100 in this embodiment allows for easy support by a forklift for transport, and also provides shock absorption while protecting the internal structure of the charging pile 1000. This base 100 is applied to the charging pile 1000, and all charging piles 1000 with this base 100 have the same functions as described above, which will not be elaborated further here.

[0035] Figure 1 This is a schematic diagram of the charging pile 1000 (excluding the protective plate 120) provided in an embodiment of this utility model. Please refer to... Figure 1In this embodiment, the charging pile 1000 includes a housing 200 and a base 100. The base 100 is connected to the housing 200 and supports the housing 200. Of course, the charging pile 1000 may also include other structures depending on the specific application scenario, and this is not limited here. To facilitate the handling of the charging pile 1000, a lifting ring is provided on the top of the housing 200 in this embodiment. Of course, the lifting ring can also be replaced with other lifting structures, and this is not limited here.

[0036] The following is a detailed introduction to the base 100.

[0037] Figure 2 This is a schematic diagram of the base 100 provided in an embodiment of the present utility model from a first-view perspective; Figure 4 This is a schematic diagram from a first-view perspective of the base 100 with the protective plate 120 removed, provided in an embodiment of this utility model. Please refer to... Figure 2 and combined Figure 4 In this embodiment, the base 100 includes a base body 110 and multiple protective plates 120. The base body 110 has multiple forklift slots 1121, which are spaced apart and each forklift slot 1121 extends through the base 100 along its length or width. Each protective plate 120 corresponds to one of the multiple forklift slots 1121. Each protective plate 120 is hinged to the base body 110 and can either cover or expose the corresponding forklift slot 1121. A first shock-absorbing pad 130 is provided on the side of each protective plate 120 away from the forklift slot 1121. That is, protective plates 120 are provided at both ends of the forklift slot 1121.

[0038] By setting multiple forklift slots 1121, reserved positions are configured for forklift insertion. Forklifts can directly support the base 100 through the forklift slots 1121, eliminating the need to place the charging pile 1000 on a forklift loading platform for forklift transfer, thus improving the convenience of transportation. A protective plate 120 covers the forklift slots 1121 to prevent small animals such as mice from entering the interior of the base 100 and damaging the internal structure of the charging pile 1000, thereby improving the protection of the charging pile 1000's internal structure. When the forklift pushes open the protective plate 120 and inserts into the forklift slot 1121, the protective plate 120 flips to one side of the forklift slot 1121. The protective plate 120, through the first shock-absorbing pad 130, separates the forklift from the top of the base 100, reducing the transmission of vibration from the forklift to the base 100.

[0039] Please continue reading. Figure 2In this embodiment, the base 100 also includes a shim 180, which is disposed at the bottom of the base body 110. Since the site where the charging pile 1000 is installed may have uneven ground, the shim 180 allows for height adjustment to keep the base 100 level, preventing uneven structural stress or poor electrical contact due to tilting. The shim 180 can be a threaded block for height adjustment via the threads. Alternatively, it can be a non-slip rubber block; this is not a limitation. Furthermore, the shim 180 lifts the base 100 off the ground, preventing water, oil, or corrosive liquids from directly contacting the base 100 and extending its service life. To improve the service life of the shim 180, it can be made of corrosion-resistant material. Other materials can also be used; this is not a limitation.

[0040] Figure 3 This is a schematic diagram of the base 100 provided in an embodiment of the present invention from a second perspective. Please refer to... Figure 3 To prevent damage to the charging pile 1000 caused by accidental impact when the forklift is inserted into the forklift slot 1121, the base 100 in this embodiment also includes a buffer 150, which is disposed on both sides of the base body 110 along the extension direction of the forklift slot 1121. Specifically, the buffer 150 in this embodiment includes a buffer plate 151 and a spring 152. One end of the spring 152 is connected to the base body 110, and the other end of the spring 152 is connected to the buffer plate 151. To enable the spring 152 to extend and retract in the impact direction and extend the service life of the buffer 150, the buffer 150 in this embodiment also includes a telescopic rod 153. One end of the telescopic rod 153 is connected to the base body 110, and the other end of the telescopic rod 153 is connected to the buffer plate 151. The spring 152 is sleeved on the telescopic rod 153. Alternatively, a support column can be provided on the base body 110 and the buffer plate 151 respectively, and the two ends of the spring 152 can be sleeved on the two support columns respectively. Furthermore, in this embodiment, a buffer pad 154 is provided on the side of the buffer plate 151 away from the spring 152. By providing the buffer pad 154 on the buffer plate 151, the buffering performance of the base 100 can be further improved, ensuring the safety of the charging pile 1000.

[0041] Please see Figure 4 In order to further improve the cushioning performance of the base 100, the base 100 in this embodiment also includes a plurality of second shock-absorbing pads 140, which are disposed in the forklift slot 1121 and are all connected to the base body 110.

[0042] In this embodiment, the first damping pad 130 and the second damping pad 140 can be rubber-based damping pads, such as natural rubber, neoprene rubber, nitrile rubber, etc., or polyurethane damping pads, silicone damping pads, etc., which are not limited here.

[0043] Please continue reading. Figure 4 In this embodiment, the base body 110 includes a base plate 111 and a support leg 112. The base plate 111 is connected to the support leg 112, and the protective plate 120 is hinged to the base plate 111. The support leg 112 has multiple forklift slots 1121, each forklift slot 1121 extending through the support leg 112 along the length or width direction of the base plate 111. The base plate 111 is used to connect to the housing 200 of the charging pile 1000. The support leg 112 is a hollow structure. By designing only the support leg 112 as a hollow structure, the weight of the base 100 can be reduced while ensuring the structural strength of the base 100, saving materials and costs. Of course, the support leg 112 can also be designed as a solid structure, which is not limited here.

[0044] Because the charging station 1000 is relatively large, it is inconvenient to adjust its placement if there are slight deviations. Please refer to [link / reference needed]. Figure 5 , Figure 5 This is a schematic diagram from a second perspective of the base 100 with the protective plate 120 removed, provided in an embodiment of the present invention. The base 100 in this embodiment also includes multiple slide rails 160, with slide rails 160 provided on both sides of each forklift slot 1121, and each slide rail 160 equipped with a roller 170. The slide rails 160 and rollers 170 facilitate adjustment of the position of the charging pile 1000. Furthermore, providing slide rails 160 at the forklift slot 1121 saves installation space and facilitates the installation of concealed slide rails 160, providing a certain degree of protection for the slide rails 160.

[0045] In summary, the base 100 of the charging pile 1000 includes a base body 110 and multiple protective plates 120. The base body 110 has multiple forklift slots 1121, which are spaced apart and each forklift slot 1121 extends along the length or width of the base 100. The multiple protective plates 120 are arranged one-to-one with the multiple forklift slots 1121. Each protective plate 120 is hinged to the base body 110 and can cover or expose the corresponding forklift slot 1121. A first shock-absorbing pad 130 is provided on the side of each protective plate 120 away from the forklift slot 1121. By setting multiple forklift slots 1121, reserved positions are configured for forklifts to insert the charging pile. The forklift can directly support the base 100 through the forklift slots 1121, eliminating the need to place the charging pile 1000 on a forklift loading platform and then have the forklift move it, thus improving the convenience of transportation. The protective plate 120 covers the forklift slot 1121 to prevent small animals such as mice from entering the base 100 through the forklift slot 1121 and damaging the internal structure of the charging pile 1000, thereby improving the protection of the internal structure of the charging pile 1000. When the forklift pushes open the protective plate 120 and inserts into the forklift slot 1121, the protective plate 120 flips to one side of the forklift slot 1121. The protective plate 120 can separate the forklift from the top of the base 100 through the first shock-absorbing pad 130 to reduce the transmission of vibration from the forklift to the base 100.

[0046] The above description is only a specific embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto. Any changes or substitutions that can be easily conceived by those skilled in the art within the technical scope disclosed in the present utility model should be included within the protection scope of the present utility model.

Claims

1. A base applied to a charging pile (1000), characterized in that, include: The base body (110) has multiple forklift slots (1121) with intervals between them, and each forklift slot (1121) extends through the base (100) along its length or width. Multiple protective plates (120) are provided, and the multiple protective plates (120) are provided in a one-to-one correspondence with the multiple forklift slots (1121); each of the protective plates (120) is hinged to the base body (110), and the protective plate (120) can cover or expose the corresponding forklift slot (1121); a first shock-absorbing pad (130) is provided on the side of each protective plate (120) away from the forklift slot (1121).

2. The base of claim 1, wherein, The base (100) also includes a plurality of second shock-absorbing pads (140), which are disposed in the forklift slot (1121) and are all connected to the base body (110).

3. The base of claim 1, wherein, The base (100) also includes buffers (150), which are disposed on both sides of the base body (110) along the extension direction of the forklift slot (1121).

4. The base of claim 3, wherein, The buffer (150) includes a buffer plate (151) and a spring (152). One end of the spring (152) is connected to the base body (110), and the other end of the spring (152) is connected to the buffer plate (151).

5. The base of claim 4, wherein, The buffer (150) also includes a telescopic rod (153), one end of which is connected to the base body (110), and the other end of which is connected to the buffer plate (151). The spring (152) is sleeved on the telescopic rod (153).

6. The base of claim 4, wherein, A buffer pad (154) is provided on the side of the buffer plate (151) away from the spring (152).

7. The base of claim 1, wherein The base body (110) includes a base plate (111) and a support foot (112). The base plate (111) is connected to the support foot (112), and the protective plate (120) is hinged to the base plate (111). The support foot (112) has multiple forklift slots (1121), and each forklift slot (1121) passes through the support foot (112) along the length or width direction of the base plate (111). The base plate (111) is used to connect to the housing (200) of the charging pile (1000). The support foot (112) is a hollow structure.

8. The base of claim 1, wherein, The base (100) also includes a plurality of slide rails (160), and each of the forklift slots (1121) is provided with slide rails (160) on both sides, and each of the slide rails (160) is provided with a roller (170).

9. The base of claim 1, wherein, The base (100) also includes a shim (180) disposed at the bottom of the base body (110).

10. A charging pile (1000), characterized in that, It includes a housing (200) and a base (100) as described in any one of claims 1-9, the base (100) being connected to the housing (200) and the base (100) being used to support the housing (200).