Multifunctional new energy automobile charging pile
The electric shelter and wind speed monitoring system solves the risk of damage to outdoor charging pile awnings in extreme weather, improves durability and cost-effectiveness, and is suitable for outdoor charging piles in various geological conditions and space restrictions.
Patent Information
- Application Number
- CN202510988285.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-17
- Publication Date
- 2025-09-26
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
The fixed awnings of existing outdoor charging piles cannot withstand the impact of strong winds, blizzards or hail, and are at risk of being overturned, crushed or damaged. The maintenance cost is high and it is difficult to implement on soft soil or in areas with limited space.
An electric shelter is used, including a tubular motor, a curved arm, a front beam and a shelter cloth. The shelter cloth is automatically opened and closed and folded by the motor drive. The shelter cloth can be retracted in strong winds by using a wind speed monitor. The vehicle's own weight is used for limiting and fixing, reducing dependence on large-volume foundations.
The durability of the shelter is improved, the risk of damage by strong winds, blizzards or hail is reduced, maintenance costs are reduced, and it can adapt to different geological conditions and space limitations.
Smart Images

Figure CN120697592A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of charging piles, and in particular to a multifunctional new energy vehicle charging pile. Background Art
[0002] Outdoor charging piles are exposed to rain, snow, strong light and extreme weather for a long time, which can easily lead to water ingress into the charging port, aging of components, and even safety hazards. To improve the user experience, existing technologies usually build fixed awnings above the charging piles; however, this type of structure has significant defects: the rigid awning cannot withstand the impact of strong winds, blizzards or hail, and there is a risk of being overturned, crushed or damaged, and the maintenance cost is high; at the same time, in order to prevent the awning from being damaged by wind, a large-volume concrete counterweight foundation needs to be constructed, which not only increases the project cost, but is also difficult to implement on soft soil foundations or in areas with confined space (such as the entrance area of an underground garage). Summary of the Invention
[0003] In order to overcome the shortcomings of fixed awnings, such as their inability to withstand strong winds, snowstorms or hail, the risk of being overturned, crushed or damaged, and the high maintenance cost, the present invention provides a multifunctional new energy vehicle charging pile.
[0004] The technical solution is as follows: a multifunctional new energy vehicle charging pile, including a parking base and a charging pile; the charging pile is installed on the parking base; it also includes an electric shelter, a connecting plate, a mounting rod and an electric sliding plate; the electric shelter is installed on the charging pile, and a camera is provided on the charging pile; the electric shelter is composed of a tubular motor, a curved arm, a front beam and a shelter cloth; a connecting plate is fixed at each end of the front beam of the electric shelter; an electric sliding plate is slidably connected to the parking base, and two symmetrically arranged protrusions are provided on the electric sliding plate; a mounting rod is connected to each end of the electric sliding plate; the two connecting plates are respectively connected to a mounting rod.
[0005] Furthermore, the shielding cloth of the electric shelter is coated with a polyvinylidene fluoride coating.
[0006] Furthermore, two symmetrically arranged guide plates are provided on the parking base, and the two protrusions on the electric sliding plate are respectively located on one guide plate.
[0007] Furthermore, a light strip is provided on the curved arm of the electric shelter.
[0008] Furthermore, a slope is provided on the front of the electric sliding plate.
[0009] Furthermore, a flexible photovoltaic panel is provided on the upper side of the shielding cloth of the electric shelter.
[0010] Furthermore, it also includes a mounting plate, an electric push rod and a baffle; a mounting plate is respectively connected to the upper part of the two mounting rods; a groove is respectively opened on the side of the two mounting plates facing the electric shelter; an electric push rod is respectively fixed on each mounting plate; a baffle is respectively fixed on the telescopic end of each electric push rod; each baffle is respectively slidably connected to a mounting plate; each connecting plate is respectively located in a groove; and the front side of each connecting plate is respectively in contact with a baffle.
[0011] Furthermore, a side of the connecting plate facing the mounting plate is beveled.
[0012] Furthermore, a reflective sleeve is included; each mounting rod is respectively provided with a reflective sleeve.
[0013] Furthermore, it also includes a rotating rod and a motor; each mounting rod is fixedly connected to a motor; each motor output shaft is rotatably connected to a rotating rod; each rotating rod is fixedly connected to the mounting plate; a wind speed monitor is provided on the electric shelter.
[0014] The beneficial effects of the present invention are as follows: 1. Under the shielding effect of the electric shelter, the owner can operate conveniently when getting off the car to charge on rainy days without getting wet by the rain; and, compared with fixed shelters, the electric shelter can be retracted in the event of strong winds, blizzards or hail, thereby preventing structural damage: the risk of the roof being blown over by strong winds, crushed by accumulated snow or damaged by hail is greatly reduced, and the durability and service life of the shelter itself are improved.
[0015] 2. The present invention uses the vehicle's own weight to limit and fix the front beam of the electric shelter, without the need to add a large number of additional fixed counterweights, reducing dependence on complex, deeply buried, and expensive foundation projects (such as large-volume concrete foundations). It is especially beneficial for sites with poor geological conditions or where large-scale excavation is inconvenient.
[0016] 3. The present invention provides a wind speed monitor on the electric shelter. When the wind speed monitor detects that the wind speed is extremely strong, the curved arm of the electric shelter is controlled to retract, so that the shelter cloth is rolled up, thereby preventing the shelter cloth from being damaged by strong wind. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 This is a schematic diagram of the three-dimensional structure of the multifunctional new energy vehicle charging pile of the present invention;
[0018] Figure 2 This is a schematic diagram of the three-dimensional structure of the multifunctional new energy vehicle charging pile, electric shelter, mounting pole, electric sliding plate and curved arm of the present invention;
[0019] Figure 3 This is a schematic diagram of the three-dimensional structure of the mounting rod and reflective cover of the multifunctional new energy vehicle charging pile of the present invention;
[0020] Figure 4 This is a schematic diagram of the three-dimensional structure of the electric push rod and baffle of the multifunctional new energy vehicle charging pile of the present invention;
[0021] Figure 5 This is a sectional view of the three-dimensional structure of the mounting plate and baffle of the multifunctional new energy vehicle charging pile of the present invention.
[0022] Explanation of the reference numerals: 1-parking base, 101-guide plate, 2-charging pile, 3-electric shelter, 4-connecting plate, 5-mounting rod, 6-electric sliding plate, 7-crank arm, 8-flexible photovoltaic panel, 9-front beam, 21-mounting plate, 2101-groove, 22-electric push rod, 23-baffle, 24-reflective sleeve, 31-rotating rod, 32-motor. DETAILED DESCRIPTION
[0023] The present invention will be further described below with reference to the accompanying drawings and examples.
[0024] Example 1: A multifunctional new energy vehicle charging pile, such as Figure 1-Figure 5 As shown, it includes a parking base 1 and a charging pile 2; the charging pile 2 is installed on the parking base 1;
[0025] It also includes an electric shelter 3, a connecting plate 4, a mounting rod 5 and an electric sliding plate 6; the electric shelter 3 is installed on the charging pile 2, and a camera is provided on the charging pile 2; the electric shelter 3 is composed of a tubular motor, a curved arm 7, a front beam 9 and a shelter cloth. When working, the tubular motor receives a control instruction to rotate the reel, thereby releasing or retracting the shelter cloth, driving the front beam 9 connected to the front end of the shelter cloth to move, so that the curved arm 7 extends or folds accordingly, thereby realizing the automatic opening and closing and retracting of the shelter cloth; a connecting plate 4 is welded at each end of the front beam 9 of the electric shelter 3; an electric sliding plate 6 is slidably connected to the parking base 1, and two symmetrically arranged protrusions are provided on the electric sliding plate 6; a mounting rod 5 is connected to each end of the electric sliding plate 6; the two connecting plates 4 are respectively connected to a mounting rod 5.
[0026] In order to enhance the ability to resist ultraviolet rays, acid rain and salt spray, thereby extending the service life, the shielding cloth of the electric shielding shed 3 is coated with a polyvinylidene fluoride coating.
[0027] Two symmetrically arranged guide plates 101 are provided on the parking base 1 , and the two protrusions on the electric sliding plate 6 are respectively located on one guide plate 101 .
[0028] In order to provide lighting for the car owner so that the car owner can perform charging operations in a dim environment, a light strip is provided on the curved arm 7 of the electric shelter 3.
[0029] In order to facilitate the vehicle to move above the electric sliding plate 6, a slope is provided on the front of the electric sliding plate 6.
[0030] A flexible photovoltaic panel 8 is provided on the upper side of the shielding cloth of the electric shielding shed 3 .
[0031] It also includes a mounting plate 21, an electric push rod 22 and a baffle 23; the upper part of the two mounting rods 5 is respectively connected to a mounting plate 21; the two mounting plates 21 are respectively opened with a groove 2101 on the side facing the electric canopy 3; each mounting plate 21 is respectively fixed with an electric push rod 22; the telescopic end of each electric push rod 22 is respectively fixed with a baffle 23; each baffle 23 is respectively slidably connected to a mounting plate 21; each connecting plate 4 is respectively located in a groove 2101; the front side of each connecting plate 4 is respectively in contact with a baffle 23.
[0032] In order to facilitate placement of the connecting plate 4 in the groove 2101 on the mounting plate 21 , a bevel is formed on the side of the connecting plate 4 facing the mounting plate 21 .
[0033] A reflective sleeve 24 is also included; each mounting rod 5 is respectively provided with a reflective sleeve 24.
[0034] by Figure 1 Based on the viewing angle, the side where the parking base 1 is located is the left.
[0035] When in use, when the vehicle drives towards the parking base 1, the camera on the charging pile 2 detects that the vehicle is about to enter the parking base 1, and then starts the electric canopy 3. The tubular motor in the electric canopy 3 drives the reel to release the shielding cloth, which drives the front beam 9 connected to the front end of the shielding cloth to move forward, so that the curved arm 7 extends, thereby realizing the automatic opening and closing of the shielding cloth. After the shielding cloth is fully unfolded, the owner drives the vehicle in and parks it on the parking base 1; in this way, under the shielding effect of the electric canopy 3, on rainy days, the owner can operate conveniently during the charging process when getting off the vehicle, and is not easily wetted by rain. In addition, during the charging process, the electric canopy 3 The charging pile 2 and the car charging port are shielded from light and rain, reducing the damage of the external environment to the charging pile 2 and the car charging port; after the vehicle leaves the parking base 1, the tubular motor of the electric shelter 3 receives the control command to rotate the reel, thereby retracting the shelter cloth, driving the front beam 9 connected to the front end of the shelter cloth to move backward, so that the curved arm 7 is folded, thereby realizing automatic folding of the shelter cloth; compared with fixed shelters, the electric shelter 3 can be retracted in the event of strong winds, blizzards or hail, thereby preventing structural damage, greatly reducing the risk of the roof being blown over by strong winds, crushed by accumulated snow or damaged by hail, and improving the durability and service life of the shelter body itself.
[0036] In the process of controlling the extension of the crank arm 7 to drive the front beam 9 forward to unfold the shade cloth, the electric sliding plate 6 is controlled to move forward synchronously within the parking base 1. The electric sliding plate 6 and the front beam 9 together drive the connecting plate 4 and the mounting rod 5 forward. When the vehicle enters the parking base 1, the two wheels away from the charging pile 2 are just located on the two protrusions of the electric sliding plate 6. In this way, the front beam 9 of the electric shade canopy 3 is limited and fixed by the vehicle's own weight, preventing the electric shade canopy 3 from being lifted and damaged when the wind blows. The front beam 9 of the electric shade canopy 3 is limited and fixed by the vehicle's own weight, eliminating the need for a large number of additional fixed counterweights, reducing reliance on complex, deeply buried, and expensive foundation projects (such as large-volume concrete foundations), and is particularly beneficial for sites with poor geological conditions or where large-scale excavation is inconvenient. It is noted that two symmetrical guide plates 101 are provided on the parking base 1. The two protrusions on the electric sliding plate 6 are located on each guide plate 101. The guide plates 101 guide the vehicle owner to accurately park the wheels on the protrusions of the electric sliding plate 6.
[0037] A light strip is provided on the curved arm 7 of the electric shelter 3. In a dim environment, the light strip is lit to emit light, providing lighting for the car owner, so that the car owner can perform charging operations in a dim environment.
[0038] A flexible photovoltaic panel 8 is provided on the shielding cloth of the electric shelter 3. After the shielding cloth is unfolded, the flexible photovoltaic panel 8 is unfolded synchronously to generate photovoltaic power and provide power for electronic components such as light strips.
[0039] When the car owner drives the vehicle into the parking base 1, if the mounting rod 5 is hit by mistake, the mounting rod 5 may be moved, and then the electric sunshade 3 may be squeezed and damaged by the connecting plate 4; therefore, a mounting plate 21 is provided on the mounting rod 5, and an electric push rod 22 and a baffle 23 are provided on the mounting plate 21. The connecting plate 4 is located in the groove 2101 of the mounting plate 21. When the front beam 9 of the electric sunshade 3 moves, the electric sliding plate 6 moves forward synchronously. The electric sliding plate 6 and the front beam 9 drive the baffle 23, the mounting plate 21, the connecting plate 4 and the mounting rod 5 to move forward. After the shielding cloth of the electric sunshade 3 is stretched to the limit, the electric push rod 22 is controlled Drive the baffle 23 away from the connecting plate 4, so that the baffle 23 moves away from the front of the connecting plate 4; at this time, when the car owner mistakenly operates and hits the mounting rod 5, the mounting rod 5, the mounting plate 21 and the electric sliding plate 6 can move backward individually and separate from the connecting plate 4 (the baffle 23 has been moved away from the front of the connecting plate 4), thus preventing the mounting rod 5 from squeezing and damaging the electric awning 3 through the connecting plate 4; this illustrates that the awning cloth of the electric awning 3 has been stretched to its limit and will not stretch forward any further, so there is no need to limit the front of the connecting plate 4, that is, after the baffle 23 is moved away from the front of the connecting plate 4, it does not affect the limiting and reinforcement effect of the mounting plate 21 on the connecting plate 4 and the front beam 9.
[0040] A reflective cover 24 is sleeved on the mounting rod 5 . When the vehicle light shines on the reflective cover 24 , the reflective cover 24 will reflect light, thereby warning the vehicle owner to drive carefully and reducing the occurrence of collision with the reflective cover 24 .
[0041] Example 2: Based on Example 1, Figure 1-Figure 5 As shown, it also includes a rotating rod 31 and a motor 32; each mounting rod 5 is fixedly connected to a motor 32; each motor 32 output shaft is rotatably connected to a rotating rod 31; each rotating rod 31 is fixedly connected to the mounting plate 21; a wind speed monitor is provided on the electric shelter 3.
[0042] In extremely strong winds, the shelter cloth portion of the electric shelter 3 is still at high risk of damage. Vehicle reinforcement mainly improves the anti-overturning and anti-displacement capabilities of the overall structure, but it has limited help in reducing the risks of local wind pressure, tearing, shaking wear and separation from the fixed points that the shelter cloth itself is subjected to. Therefore, a wind speed monitor is provided on the electric shelter 3. When the wind speed monitor detects that the wind speed is extremely strong, it controls the motor 32 on the left to drive the corresponding rotating rod 31 and the mounting plate based on the top-down view. 21 rotates counterclockwise, controlling the motor 32 on the right to drive the corresponding rotating rod 31 and the mounting plate 21 to rotate clockwise, so that the mounting plate 21 is moved away from the rear of the connecting plate 4 (the baffle 23 has been moved away from the front of the connecting plate 4, and the rotating rod 31 and the mounting plate 21 are not blocked by the connecting plate 4 when rotating); then the electric shelter 3 is controlled to retract the shelter cloth, driving the front beam 9 connected to the front end of the shelter cloth to move backward, so that the curved arm 7 is folded accordingly, thereby realizing the automatic retraction of the shelter cloth to prevent the shelter cloth from being damaged by strong winds.
[0043] The embodiments of the present invention are described in detail above with reference to the accompanying drawings. However, the present invention is not limited to the above embodiments. Various changes can be made within the scope of knowledge of those skilled in the art without departing from the spirit of the present invention.
Claims
1. A multifunctional new energy vehicle charging pile, comprising a parking base (1) and a charging pile (2); the charging pile (2) is installed on the parking base (1); characterized in that, The electric awning (3), a connecting plate (4), a mounting rod (5) and an electric sliding plate (6) are also included; the electric awning (3) is mounted on the charging pile (2), and a camera is provided on the charging pile (2); the electric awning (3) is composed of a tubular motor, a crank arm (7), a front beam (9) and a shielding cloth; a connecting plate (4) is fixedly connected to each end of the front beam (9) of the electric awning (3); the parking base (1) is slidably connected to the electric sliding plate (6), and the electric sliding plate (6) is provided with two symmetrically arranged protrusions; the electric sliding plate (6) is connected to each end of the mounting rod (5); and the two connecting plates (4) are respectively connected to a mounting rod (5).
2. A multifunctional new energy vehicle charging pile according to claim 1, characterized in that: The shielding cloth of the electric shielding shed (3) is coated with a polyvinylidene fluoride coating.
3. The multifunctional new energy vehicle charging pile according to claim 1, characterized in that: Two symmetrically arranged guide plates (101) are provided on the parking base (1), and the two protruding portions on the electric sliding plate (6) are respectively located on one guide plate (101).
4. The multifunctional new energy vehicle charging pile according to claim 1, characterized in that: A light strip is provided on the curved arm (7) of the electric shelter (3).
5. The multifunctional new energy vehicle charging pile according to claim 1, characterized in that: The front portion of the electric sliding plate (6) is provided with an inclined surface.
6. The multifunctional new energy vehicle charging pile according to claim 1, characterized in that: A flexible photovoltaic panel (8) is provided on the upper side of the shielding cloth of the electric shielding shed (3).
7. The multifunctional new energy vehicle charging pile according to claim 1, characterized in that: The utility model also comprises a mounting plate (21), an electric push rod (22) and a baffle (23); the upper parts of the two mounting rods (5) are respectively connected to a mounting plate (21); the two mounting plates (21) are respectively provided with a groove (2101) on one side facing the electric shelter (3); each mounting plate (21) is respectively fixedly connected to an electric push rod (22); the telescopic end of each electric push rod (22) is respectively fixedly connected to a baffle (23); each baffle (23) is respectively slidably connected to a mounting plate (21); each connecting plate (4) is respectively located in a groove (2101); and the front side of each connecting plate (4) is respectively in contact with a baffle (23).
8. The multifunctional new energy vehicle charging pile according to claim 7, characterized in that: The connecting plate (4) has an oblique angle on one side facing the mounting plate (21).
9. The multifunctional new energy vehicle charging pile according to claim 7, characterized in that: It also includes a reflective sleeve (24); each mounting rod (5) is respectively provided with a reflective sleeve (24).
10. The multifunctional new energy vehicle charging pile according to claim 7, characterized in that: It also includes a rotating rod (31) and a motor (32); each mounting rod (5) is fixedly connected to a motor (32); the output shaft of each motor (32) is rotatably connected to a rotating rod (31); each rotating rod (31) is fixedly connected to the mounting plate (21); and a wind speed monitor is provided on the electric shelter (3).