Bidirectional unfolding type scooter charging device
By installing a photovoltaic panel stand on the scooter and using the drive gear system to increase the photoelectric power generation area, the problem of waste of municipal charging resources is solved, and an energy-saving and environmentally friendly charging method is realized.
Patent Information
- Application Number
- CN202422324850.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-24
- Publication Date
- 2025-07-22
- Estimated Expiration
- 2034-09-24
AI Technical Summary
The charging of existing scooters mainly relies on mains electricity, resulting in waste of resources and lack of energy-saving and environmentally friendly charging solutions.
The photovoltaic panel frame structure is adopted, and the photovoltaic panel frame is transformed by meshing between the driving gear and the driven gear, increasing the photovoltaic power generation area and realizing photoelectric power generation.
It increases the absorption area of light energy, reduces the dependence on municipal electricity, and realizes an energy-saving and environmentally friendly charging method.
Smart Images

Figure CN223141852U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of charging of scooters, and specifically, to a bidirectional unfolding charging device for scooters. Background Art
[0002] The electric scooter uses high-tech composite materials to make the vehicle body, which has the advantages of impact resistance, corrosion resistance, toughness, not easy to break, long service life, etc.
[0003] The fully enclosed elderly scooters are divided into two types: three-wheel and four-wheel. When the manufacturer designs them, they do not simply apply the configuration of the original two-wheel electric bicycle to the elderly scooter, but need to separately configure the motor and controller special for the scooter. In terms of functions, it is also different from the two-wheel electric bicycle, and more attention should be paid to the convenience and safety of the elderly when using it.
[0004] During the use of the scooter, it is charged by the mains power, which is extremely wasteful of resources. In view of this, this technical solution uses solar power generation, which relatively saves a part of the consumption of mains power, and is energy-saving and environment-friendly. Content of the Utility Model
[0005] The utility model provides a bidirectional unfolding charging device for scooters, which solves the problem that during the use of scooters in the related art, they are charged by the mains power, which is extremely wasteful of resources. In view of this, this technical solution uses solar power generation, which relatively saves a part of the consumption of mains power, and is energy-saving and environment-friendly.
[0006] The technical solution of the utility model is as follows: It includes
[0007] a charging board, and a driving cavity is arranged inside the charging board;
[0008] a folding and sliding assembly, and the folding and sliding assembly is arranged inside the driving cavity;
[0009] The folding and sliding assembly includes a driving cavity, a driving gear is arranged inside the driving cavity, a driven gear is meshed with the driving gear, a sliding rack is meshed with the driven gear, a connecting piece is arranged at the end of the sliding rack, a connecting shaft is arranged on the connecting piece, a moving piece is connected to the connecting shaft, and a photovoltaic panel frame is arranged on the moving piece.
[0010] As a further technical solution, a photovoltaic panel placement groove is opened on the inner bottom surface of the driving cavity, and the photovoltaic panel frame is located above the photovoltaic panel placement groove.
[0011] As a further technical solution, a sliding groove is opened on the end surface of the photovoltaic panel frame, a sliding strip is arranged on the inner side surface of the driving cavity, and the sliding groove is embedded inside the sliding strip.
[0012] As a further technical solution, the number of the driven gears and the sliding racks is two each. Both of the two driven gears are meshed with the driving gear, and the sliding racks are located at the upper and lower ends inside the driving cavity.
[0013] As a further technical solution, a knob is arranged inside the driving cavity. The knob extends out of the driving cavity, and one end of the knob is connected to the driving gear.
[0014] As a further technical solution, both the driving gear and the driven gears are arranged inside the driving cavity through connecting shafts.
[0015] The working principle and beneficial effects of the present utility model are as follows:
[0016] In the present utility model, after the driving gear rotates, it drives the driven gears to rotate, thereby driving the sliding racks in a meshed manner, causing the sliding racks to move. The connecting shafts on the connecting pieces drive the photovoltaic panel frame to translate. Photovoltaic panels are arranged on the photovoltaic panel frame, and photovoltaic panels are also installed in the driving cavity. Through the simultaneous light energy generation of the three photovoltaic panels, the area of light energy absorption is increased. Description of the Drawings
[0017] The following further describes the present utility model in detail in conjunction with the drawings and specific embodiments.
[0018] Figure 1 is a schematic structural diagram of the present utility model;
[0019] Figure 2 is an axonometric view inside the driving cavity of the present utility model;
[0020] Figure 3 is an axonometric view of the photovoltaic panel frame of the present utility model;
[0021] In the figure: 1, charging plate; 2, driving cavity; 3, opening and closing sliding assembly; 3-1, driving cavity; 3-2, driving gear; 3-3, driven gear; 3-4, sliding rack; 3-5, connecting piece; 3-6, connecting shaft; 3-7, moving piece; 3-8, photovoltaic panel frame; 4, photovoltaic panel placement groove; 5, sliding groove; 6, sliding strip; 7, knob. Detailed Embodiments
[0022] The following will clearly and completely describe the technical solutions in the embodiments of the present utility model in conjunction with the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without making creative efforts fall within the scope of protection of the present utility model.
[0023] Such as Figures 1 to 3As shown in the figure, this embodiment proposes a two-way unfolding charging device for a scooter, including
[0024] a charging board 1, and a driving cavity 2 is arranged inside the charging board 1;
[0025] an opening and closing sliding component 3, and the opening and closing sliding component 3 is arranged inside the driving cavity 2;
[0026] The opening and closing sliding component 3 includes a driving cavity 3-1, a driving gear 3-2 is arranged inside the driving cavity 3-1, a driven gear 3-3 is meshed with the driving gear 3-2, a sliding rack 3-4 is meshed with the driven gear 3-3, a connecting piece 3-5 is arranged at the end of the sliding rack 3-4, a connecting shaft 3-6 is arranged on the connecting piece 3-5, a moving piece 3-7 is connected to the connecting shaft 3-6, and a photovoltaic panel frame 3-8 is arranged on the moving piece 3-7.
[0027] In this embodiment, the charging board 1 is placed on the roof of the scooter, the driving cavities 3-1 are located on both sides of the driving cavity 2. After the driving gear 3-2 rotates, it drives the driven gear 3-3 to rotate, thereby driving the sliding rack 3-4 to move meshingly, so that the sliding rack 3-4 moves. The connecting shaft 3-6 on the connecting piece 3-5 drives the photovoltaic panel frame 3-8 to translate. Photovoltaic panels are arranged on the photovoltaic panel frame 3-8, and photovoltaic panels are also installed in the driving cavity 2. The three photovoltaic panels generate electricity from light energy at the same time, increasing the area of light energy absorption.
[0028] Specifically, a photovoltaic panel placement groove 4 is opened on the inner bottom surface of the driving cavity 2, and the photovoltaic panel frame 3-8 is located above the photovoltaic panel placement groove 4.
[0029] In this embodiment, the photovoltaic panel placement groove 4 is used to place photovoltaic panels.
[0030] Furthermore, a sliding groove 5 is opened on the end surface of the photovoltaic panel frame 3-8, a sliding strip 6 is arranged on the inner side surface of the driving cavity 2, and the sliding groove 5 is embedded inside the sliding strip 6.
[0031] In this embodiment, the sliding groove 5 is embedded in the sliding strip 6, making the sliding of the photovoltaic panel frame 3-8 more stable.
[0032] Furthermore, the number of the driven gears 3-3 and the sliding racks 3-4 is two each. The two driven gears 3-3 are both meshed with the driving gear 3-2. The sliding racks 3-4 are located at the upper and lower ends inside the driving cavity 3-1. A knob 7 is arranged inside the driving cavity 3-1. The knob 7 extends out of the driving cavity 3-1. One end of the knob 7 is connected to the driving gear 3-2. The driving gear 3-2 and the driven gear 3-3 are both arranged inside the driving cavity 3-1 through the connecting shaft 3-6.
[0033] In this embodiment, the knob 7 is used to manually rotate and drive the gear 3-2. The knob 7 can be replaced by a motor, and the rotation of the gear 3-2 is controlled by the start and stop of the motor.
[0034] When power generation is required, the charging board 1 is placed on the roof of the scooter. The driving chambers 3-1 are located on both sides of the driving chamber 2. After the driving gear 3-2 rotates, it drives the driven gear 3-3 to rotate, thereby driving the sliding rack 3-4 to engage and move the sliding rack 3-4. The connecting shaft 3-6 on the connecting piece 3-5 drives the photovoltaic panel frame 3-8 to translate. Photovoltaic panels are placed on the photovoltaic panel frame 3-8, and photovoltaic panels are also installed in the driving chamber 2. The three photovoltaic panels generate light energy simultaneously, increasing the area of light energy absorption.
[0035] The above are only the preferred embodiments of the present invention and are not intended to limit the present invention. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principles of the present invention shall be included within the protection scope of the present invention.
Claims
1. A two-way expandable charging device for a mobility scooter, characterized in that including a charging board (1) with a driving cavity (2) arranged inside it; an opening and closing sliding component (3) arranged inside the driving cavity (2); the opening and closing sliding component (3) includes a driving cavity (3-1), a driving gear (3-2) is arranged inside the driving cavity (3-1), a driven gear (3-3) is engaged with the driving gear (3-2), a sliding rack (3-4) is engaged with the driven gear (3-3), a connecting piece (3-5) is arranged at the end of the sliding rack (3-4), a connecting shaft (3-6) is arranged on the connecting piece (3-5), a moving piece (3-7) is connected to the connecting shaft (3-6), and a photovoltaic panel frame (3-8) is arranged on the moving piece (3-7).
2. The bidirectional unfolding type scooter charging device according to claim 1, wherein a photovoltaic panel placement groove (4) is opened on the inner bottom surface of the driving cavity (2), and the photovoltaic panel frame (3-8) is located above the photovoltaic panel placement groove (4).
3. The two-way unfolding charging device for a mobility scooter according to claim 1, wherein a sliding groove (5) is opened on the end surface of the photovoltaic panel frame (3-8), a sliding strip (6) is arranged on the inner side surface of the driving cavity (2), and the sliding groove (5) is embedded inside the sliding strip (6).
4. A two-way expandable charging device for a mobility scooter according to claim 1, characterized in that the number of the driven gears (3-3) and the sliding racks (3-4) is two, both of the two driven gears (3-3) are engaged with the driving gear (3-2), and the sliding racks (3-4) are located at the upper and lower ends inside the driving cavity (3-1).
5. A two-way expandable charging device for a mobility scooter according to claim 1, characterized in that, a knob (7) is arranged inside the driving cavity (3-1), the knob (7) extends out of the driving cavity (3-1), and one end of the knob (7) is connected to the driving gear (3-2).
6. The two-way unfolding charging device for a mobility scooter according to claim 1, characterized in that, the driving gear (3-2) and the driven gear (3-3) are both arranged inside the driving cavity (3-1) through the connecting shaft (3-6).